Tag: Wi-Fi 6

Wi-Fi to become strong as a location and range-finding technology

Article – From the horse’s mouth

D-Link DIR-X5460 Wi-Fi 6 router press picture courtesy of D-Link USA

Multi-antenna Wi-Fi 6 and similar routers like this D-Link router could be part of allowing Wi-Fi to work as a location-tracking, range-finding and way-finding technology

Wi-Fi Alliance

Wi-Fi Location™: Performance drivers for Wi-Fi® ranging technologies and its achievable accuracies

My Comments

Qualcomm is driving Wi-Fi further as a location and ranging tool through the use of its own silicon. This is in addition to the Ekahau effort to use Wi-Fi as a real-time location system for business.

But it’s more about making sure that the Wi-Fi network is capable to answer Bluetooth and UWB wireless technologies in this space. This is being facilitated by Wi-Fi devices having multiple antennas and operating on multiple bands, That can exploit different bands’ radio-frequency characteristics like transmission / reception range.

In the business world, this may be about staff or asset tracking, indoor navigation amongst other uses. It may even be about “pointing” a laptop, tablet or smartphone to the closest printer or similar peripheral so you cut down on the amount of time it takes to select that peripheral. Airports, shopping centres and similar places will benefit in the form of enhanced indoor navigation for staff and end-users.

But as far as the Wi-Fi home network is concerned, this could come in to its own in a strong way.

This would be facilitated by the use of most recent-issue value-priced and premium Wi-Fi routers having multiple antennas thanks to newer Wi-Fi iterations like Wi-Fi 5, Wi-Fi 6 and Wi-Fi 7 that implement various MIMO techniques; along with the ability to work on multiple wavebands.

Then there is an increased interest in multiple-access-point Wi-Fi networks thanks to Wi-Fi repeaters, distributed Wi-Fi (mesh) networks and access points that use Ethernet or wired “no-new-wires” networking technology like powerline networks as a backhaul. This is often implemented to fill in Wi-Fi dark spots within your home caused by things like highly-dense building materials or metal used as part of building materials or insulation.

NETGEAR Orbi with Wi-Fi 6 press picture courtesy of NETGEAR

Even distributed Wi-Fi setups like this NETGEAR Orbi with WI-Fi 6 system will serve the same purpose

One key use case for the home is the smart-home technology based on “Internet of Things” devices. The classic use cases would be the robot vacuum cleaners that move around your house, keeping the floors clean or the robot lawnmowers that keep your lawn mown down.

In the context of home and automotive security, it could be about geofencing and similar algorithms that limit the operation of smart locks or vehicle locking systems. It could even extend to preemptive control of heating / air-conditioning and lighting so when you are near home, the heating or lights come on.

To some extent, this could extent to healthcare at home including ageing at home. For example, this may be about fall detection or wandering detection for dementia sufferers. Or it could be about proof-of-presence and time/attendance records for paid carers.

The “nearest peripheral” location will come in to its own with the home network if you have multiple network-capable TVs or printers on your premises. Here, it could be about having the default printer being the one that is closest to you even if you take your laptop to the kitchen for example. It could also extend to use of Wi-Fi Aware for “across-the-room” use cases like transferring data between devices or user discovery with social media and online games.

Therefore in a lot of use cases, Wi-Fi will be valued as a location and ranging technology even if the network of concern is a small network that covers a house or small business.

Deutsche Telekom fields their first Wi-Fi 6 DSL modem router

Article (German language / Deutsche Sprache)

Deutsche Telekom Speedport Pro Plus DSL modem router press picture courtesy of Deutsche Telekom GmBH

Deutsche Telekom Speedport Pro Plus – a DSL modem router that uses Wi-Fi 6

Telekom Speedport Pro Plus: Erster DSL-Router mit Wi-Fi 6 (Telekom Speedport Pro Plus First DSL router with Wi-Fi 6) | Computer Bild

From the horse’s mouth

Deutsche Telekom

Speedport Pro Plus: the premium router for Wi-Fi 6 networks (Press Release)

My Comments

Interest still exists in DSL-based WAN technology especially in VDSL-based fibre-copper setups like fibre-to-the-basement or fibre-to-the-cabinet / fibre-to-the-node. Here this is to utilise existing telephone cabling between the fibre-copper point and the customer’s premises while it is worth it to keep this cable in use.

But Deutsche Telekom have offered to their German market the SpeedProt Pro Plus DSL modem router which is the first of its kind for that market to have Wi-Fi 6 (802.11ax) for the Wi-Fi segment. For network security, this router works to the WPA3 security standards for Wi-Fi networks, and it can support meshed operation with Deutsche Telekom’s Speedport equipment. It is answering a reality that an increasing number of Wi-Fi client devices like smartphones, tablets and laptops are being equipped with Wi-Fi 6 wireless networking.

The use of Wi-Fi 6 network technology is being seen as very important within Europe where most people who live in the cities live in apartments. It also will underscore for countries like Australia where apartment dwelling within urban areas is gaining acceptance.

This device has 12 antennas compared to the AVM Fritz!Box 7590 having eight antennas. This allows for higher local-network-level throughput and increasingly-robust operation. There is also for Gigabit Ethernet connections for the local network and a Gigabit Ethernet connection as an alternative Internet connection. That is important for fibre-to-the-premises connections or fibre-copper setups implementing cable-TV or Ethernet technology and dependent on an external modem.

As is the trend nowadays with European-made home-network routers, the Telekom Speedport Pro Plus has a VoIP endpoint including a fully-featured DECT cordless-telephone base station. This device supports smart-home functionality for smart-home peripherals that work according to Wi-Fi, Zigbee or the European favourite technology that is DECT-ULE. That is part of their Magenta SmartHome platform that they are offering within Germany.

This is an example of Wi-Fi 6 coming to a carrier-supplied modem router and proving its case with Internet subscribers who stick with the equipment offering that their telco or ISP provide. Who knows when your local telco or ISP will offer their service with Wi-Fi 6 equipment in tow?

AT&T moves towards a Mi-Fi with full 5G and Wi-Fi 6 for the American market

Article AT&T Netgear Nighthawk 5G Pro MiFi router press picture courtesy of AT&T

AT&T adds new a Netgear 5G hotspot that you will actually be able to buy | CNet

From the horse’s mouth

AT&T

NETGEAR Nighthawk 5G Hotspot Pro Arrives at AT&T Sept. 18 (Press Release)

5G Product Page (announcing pending arrival of this Mi-Fi hotspot)

NETGEAR

NIGHTHAWK® M5 MOBILE ROUTER (MR5200) – Product Page

My Comments

Telstra has become the first telco in the world to offer a “Mi-Fi” mobile-broadband router that supports both 5G mobile broadband across all bands including mmWave on the Internet side and Wi-Fi 6 connectivity on the LAN side. This was offered when they initially launched their 5G mobile broadband service and this kind of coverage was important for Australian use where 5G services are likely to be deployed in sparsely-populated regional and rural areas.

AT&T now is offering to the general American public a Mi-Fi device that works on the full 5G waveband for its Internet connection side, and Wi-Fi 6 for its local network side. Here, that covers the lower frequencies of the 5G waveband along with the higher frequencies associated with mmWave coverage.

They previously offered a 5G Mi-Fi device but this was offered to a very limited customer base. Also Verizon offers a similar device with 5G and Wi-Fi 6 but their device only works the mmWave bands rather than the whole of the 5G band.

In addition, the Netgear Nighthawk 5G Mobile Hotspot Pro, also known as the MR5200,  that AT&T offers has an Ethernet LAN connection for use with printers, network-attached storage devices, desktop computers and smart TVs. It has USB-C connectivity, most likely for power and data (5G modem) functionality.

The Netgear Nighthawk 5G Mobile Hotspot Pro is fit for purpose with American emergency service thanks to its ability to work with FirstNet, which is AT&T’s LTE emergency-services communications network,

This device is expected to cost US$510 upfront or US$17 / month over 30 months before service costs. As well, AT&T are offering data service plans for this device with you paying US$60 per month for a 15Gb monthly data allowance or US$85 per month for 35Gb.

Their overage fee is US$10 for every 2Gb over your plan’s limit and, at the moment, they don’t have a “throttled bandwidth” option available for their plans in lieu of that. That will limit AT&T’s 5G mobile-broadband service’s role to a secondary or temporary Internet service. It is symptomatic of an American telecommunications and Internet-service that has become highly concentrated over the last five years with it heading slowly back to the “Ma Bell” days.

AT&T is rolling out 5G mobile-broadband coverage over most of the key cities in the USA that matter with this coverage increasing at the moment.

But AT&T’s Netgear Nighthawk 5G Mobile Hotspot Pro is one of the first devices of this kind offered to a dense Northern-Hemisphere country that ticks all the boxes for the latest wireless mobile-communications technologies. That is to provide 5G mobile broadband across the low frequency bands and high-frequency mmWave bands and supply this data across a Wi-Fi 6 LAN.

It is showing that mobile-telephony carriers are fronting up with Mi-Fi devices that work the 5G mobile broadband and WI-Fi 6 standards, leading to some very capable devices and services.

AVM moves towards value-priced Wi-Fi 6 with the FritzBox 7530 AX

Article – German Language / Deutsche Sprache

AVM FritzBox 7530 press image courtesy of AVM GmBH

AVM to launch the Wi-Fi 6 version of the FritzBox 7530 modem router in Germany as the FritzBox 7530 AX – an affordable Wi-Fi 6 option

AVM Fritz!Box 7530 AX kann vorbestellt werden | Caschy’s Blog

Das ist die neue AVM Fritz!Box 7530 AX | Caschy’s Blog

My Comments

This year is being the year where some home-network hardware manufacturers are offering Wi-Fi routers equipped with Wi-Fi 6 to the mainstream user segment. This includes some of these devices being offered either at an affordable price or as carrier-supplied equipment when you sign up to Internet service. As well some of the devices being offered are infact modem routers that have an integrated modem for the broadband service.

Now AVM has joined the party by offering the FritzBox 7530 AX home Internet gateway router initially to the German market. This unit, which will retail there from 1 September for approximately EUR€169 is based on the FritzBox 7530 modem-router family.

But its Wi-Fi access point is compliant to Wi-Fi 6 (IEEE 802.11ax) wireless-networking standards and uses a 2-stream approach for each waveband. This means it will offer 1200Mb/s data transfer speed on the 5GHz waveband and 600Mb/s on the legacy 2.4GHz waveband. It has a VDSL modem along with the ability to have one of the four Gigabit Ethernet LAN ports as a WAN (Internet service) port for fibre-optic connectivity.

There is VoIP capability with a built-in analogue telephony adaptor for legacy handsets along with a DECT base station for DECT cordless handsets. It supports DECT-ULE-based home automation with a primary intention to work with AVM’s DECT-ULE home-automation devices, namely their smart plugs and thermostatic radiator valves.

Of course, there will be the secure reliable home-network expectations that AVM is know for. This includes keeping these devices automatically updated with the latest firmware, something that was considered out of the ordinary for this class of device.

What is being highlighted is the idea of more companies providing Wi-Fi 6 as part of a commodity-priced home-network router, which will lead to this wireless-network technology becoming more ubiquitous.

Linksys and Deutsche Telekom bring Wi-Fi 6 home networks to the mainstream

Linksys MR7350 Wi-Fi 6 Mesh Router press picture courtesy of Belkin

Linksys MR7350 Wi-Fi 6 Broadband Mesh router – the first of the affordable Wi-Fi 6 routers

Articles

Deutsche Telekom Speedport Smart 4 Plus

Telekom Speedport Smart 4 Plus mit Wi-Fi 6 steht in den Startlöchern {Telekom Speedport Smart 4 Plus with Wi-Fi 6 is in the starting blocks) | Caschy’s Blog (German language / Deutsche Sprache)

Linksys MAX-STREAM AX1800 Mesh Wi-Fi 6 Router

Linksys unveils a more affordable mesh router with WiFi 6 | Engadget

From the horse’s mouth

Linksys

Linksys Expands MAX-STREAM Mesh Router Portfolio With Its Most Affordable WiFi 6 Solution (Press Release)

MAX-Stream Mesh Wi-Fi 6 Router (MR7350) – Product Page

My Comments

Two companies have pushed Wi-Fi routers which are about bringing Wi-Fi 6 (802.11ax) technology within the reach of everyone who is establishing a home network based around a fixed broadband Internet service. This is being drawn out of necessity thanks to smartphones, tahlets and laptops released through this year being equipped with Wi-Fi 6 connectivity.

The first of these is Deutsche Telekom who have poised to release in to the German market a unit that will be typically supplied to a household signing up for fixed broadband Internet offered by that telco. This unit, known as the Speedport Smart 4 Plus is equipped with Wi-Fi 6 and will be about providing this technology in a turnkey manner to a home Internet service customer. It is ready to be launched at the IFA 2020 trade fair at Berlin in September.

The other is Linksys who have offered the MR7350 broadband router through retail channels for USD$149. It is rated as an AX1800 unit which will provide an average throughput for a Wi-Fi 6 router. But it is able to be part of Linksys’s Intellignent Mesh distributed-Wi-Fi setup, thus allowing you to expand your network’s Wi-Fi range when teamed with a compatible Linksys Wi-Fi router.

Engadget’s review described the Linksys MR7350 router as being fit for starting a Wi-Fi 6 network to cover an average-sized apartment or townhome unit. It can also be seen as an affordable infill access point for a Linksys Intelligent Mesh distributed-Wi-Fi setup, especially if you decide to put a better router from that product range as the Internet edge of your home network.

But what I am pleased about these devices is that they are an effort to bring Wi-Fi 6 (802.11ax) technology in to most home networks. These efforts may be continued on by other carriers, and home-network equipment manufacturers.

Consumer Electronics and Personal IT trends for 2020

Every year in January, the Consumer Electronics Show is run in Las Vegas, USA and this show does give a glimpse in to what trends will affect consumer electronics and personal IT. In most cases, these are products that will be on the marketplace this year or products that are a proof-of-concept or prototype that demonstrates an upcoming technology.

The problem is that this exhibition focuses on what will be available in North America but a lot of the technology will be relevant to the rest of the world. In a lot of these cases, localised variants will appear at various trade shows or PR events that occur in Europe or other areas.

As well, the trade-show circuit will attract service-level information-technology companies who don’t need to make hardware or have a hardware platform, or be a content creator. Here, it will be simply about the provision of IT-based services as part of a ubiquitous computing environment including the concept of experience-driven computing.

Connectivity Technology

Over the past year, the two main technologies that were called out regarding online connectivity or the home network were 5G mobile broadband and Wi-Fi 6 (802.11ax) wireless local networks. This is about very-high-bandwidth wireless data communications whether out and about or within your home or other small network.

As various radiocommunications regulatory agencies around the world “open up” the 6GHz waveband for Wi-Fi network use with the USA’s Federal Communications Commission the first to do so, the Wi-Fi Alliance have created a specification identifier for network equipment working this waveband. Here, it is known as Wi-Fi 6E as a way to identify the fact that the device can work the 6GHz waveband, and is in contrast to Wi-Fi 6 (802.11ax) devices that only work the 2.4GHz and 5GHz wavebands.

D-Link DIR-X5460 Wi-Fi 6 router press picture courtesy of D-Link USA

One of D-Link’s Wi-Fi 6 routers that also supports Wi-Fi EasyMesh – setting the standard for home network technology this year

Both these technologies became real with an increase in client devices or small-network infrastructure hardware supporting at least one of these technologies. This included laptop computers and smartphones having this kind of functionality baked in to them as well as more home-network routers, distributed-WI-Fi systems and range extenders being equipped with Wi-Fi 6. There is even the fact that some of the network-infrastructure vendors like Linksys and NETGEAR are offering routers that combine both technologies – 5G mobile broadband as a WAN (Internet) connection and Wi-Fi 6 as a LAN (local-network) connection.

A step in the right direction for distributed-Wi-Fi networks was to see major home-network brands offer routers and/or range extenders compliant to the WI-Fi EasyMesh standard. This allows you to create a distributed Wi-Fi network with equipment from different vendors, opening up the market for equipment from a diverse range of vendors including telcos and ISPs along with a pathway towards innovation in this space.

Bluetooth hasn’t been forgotten about here with the new Bluetooth audio specification being “set in stone” and premiered at CES 2020. This specification, known as Bluetooth LE Audio, works on the Bluetooth Low Energy profile and supports the LC3 (Low Complexity Communications Codec) audio codec that packages the equivalent of an SBC audio stream used by Bluetooth audio setups in half the bandwidth. This allows for longer battery runtimes which will also lead to smaller form-factors for audio devices due to the reduced need for a larger battery.

It also supports multiple independent and synchronous audio streams to be sent from one source device to many sink devices. This strengthens use cases like hearing aids that work with Bluetooth and may supersede the inductive loop as a technology for assisted-listening setups. As well, the multiple-streaming technology will be a boon to applications like multichannel Bluetooth speaker setups; or Bluetooth headphones as part of assistive audio, multilingual soundtrack options or semi-private listening arrangements.

The Bluetooth LE Audio technology is to be released in the first half of 2020 with compatible devices being on the market by 2021. But there will also be the issue of having device support for this technology being baked in to operating systems as a class driver.

Dell XPS 13 2-in-1 Ultrabook - USB-C power

USB 4 will be the next stage for hardware connectivity and will include Thunderbolt 3

As for wired peripheral interconnection, USB 4.0 will be surfacing as a high-speed connection standard for computers and mobile devices. There will be compatibility with Thunderbolt 3 due to Intel signing over the intellectual property rights for that protocol to the USB Implementers Forum. But this may be used by some computer vendors as a product differentiator although the market will prefer that USB 4 computers and peripherals work with those that use Thunderbolt 3. Let’s not forget that the physical connector for USB 4 will be the Type C connection.

Let’s not forget that newer Android phones will use USB Power Delivery as the official standard for transferring power from chargers or powerbanks to themselves. This is about avoiding the use of proprietary fast-charge technologies and using something that is defined by the industry for this purpose.

Computer trends

Lenovo IdeaPad Creator 5 15" clamshell laptop press picture courtesy of Lenovo USA

Lenovo IdeaPad Creator 5 15″ clamshell prosumer / content-creator laptop

At the moment, as I outlined in the article about “prosumer” content creators being identified by computer manufacturers as a significant market segment, this year is being seen as a time to launch performance-optimised computers targeted at this user group. These units will be optimised to work with popular content-creation software in a sure-fire manner.

Let’s not forget that Lenovo is tying up with NEC in order to create the LAVIE computer brand that targets mobile professionals. This was after Toshiba spun off their laptop-computer division as “Dynabook” brand then sold it to Sharp; and Sony sold off their VAIO computer brand with it existing as a premium computer brand. But is this symbolic of what the Japanese computer names are heading towards where they focus on creating premium business laptops and tablets.

As well as offering their newer-generation CPUs, Intel has demonstrated that they can offer their own high-performance personal-computer display infrastructure. They even demonstrated a graphics card that use Intel-designed discrete GPU technology. This leads towards them competing with NVIDIA and AMD when it comes to discrete graphics-infrastructure technology and could lead to a three-way race in this field.

It is alongside AMD placing a lot of effort on their Ryzen CPUs which are leading towards them in a position to effectively compete on a par with Intel’s Core CPUs. As well, Intel and AMD could head towards creating performance computing setups that are based around their CPUs and discrete graphics infrastructure technology, including setups that have the CPU and discrete GPU on the same silicon.

There is also an increase in the number of “Always Connected PCs” that run with ARM RISC microarchitecture rather than the traditional Intel i86/i64 CISC microarchitecture. They will be about operating on batteries for a very long time and have 4G, if not 5G mobile-broadband modems with classic SIM or eSIM service authentication. Most likely I would see them as being the direction for portable mainstream business computing.

Dell G5 15 Special Edition budget gaming notebook press picture courtesy of Dell USA

Dell G5 15 Special Edition budget gaming laptop with AMD Ryzen and Radeon silicon

For gaming, Dell has premiered a budget gaming-grade laptop that uses an AMD Ryzen CPU and an AMD Radeon graphics processor but is styled like their other “G Series” gaming laptops. As well, Lenovo took an interesting step with one of their gaming laptops by using Intel integrated graphics processors for its graphics infrastructure while equipping it with a Thunderbolt 3 port. Here, the user is to buy an external graphics module, typically the Lenovo BoostStation card-cage unit which is their first product of its kind that they released, to have the machine perform at its best. What this is about is a trend towards creating an entry-level performance laptop product range, very similar to buying the increased-performance “GT” variant of a popular family car model.

Lenovo ThinkPad X1 FOLD prototype folding-display computer press picture courtesy of Intel USA

Co-engineered by Intel and Lenovo, ThinkPad X1 FOLD is a foldable-screen device built on the Intel Core processor with Intel Hybrid Technology (code-named “Lakefield”). (Credit: Lenovo) – an example of what folding computers are about

 

Another trend that is being shown frequently is multiple-screen or folding-screen portable computers. This is being promoted by Intel and Microsoft in the context of Windows 10X and newer Intel chipsets. It is being driven by the multiple-screen or folding-screen smartphone that Samsung and others are on the verge of releasing as finished products. But this technology will have a limited appeal towards early adopters until it is seen as legitimate by the general user base.

As far as small-form-factor desktop computers are concerned, Intel is working towards a modular “next unit of computing” platform which has the whole computer system on a card the same size as a traditional PCI expansion card. This platform, known as Ghost Canyon uses the “Compute Element” which is the user-swappable card, is intended to bring hack the joys of us upgrading a computer’s performance by ourselves even if we go for a smaller computer platform.

Connected-TV technology

This year has heralded interest in 8K UHDTV which has effectively twice the resolution of 4K UHDTV. As well, the 8K Association has been formed in order to set standards for domestic 8K UHDTV applications and promote this technology.

It is in conjunction with ATSC 3.0, also known as NextGenTV, being premiered at CES 2020 as a new direction for free-to-air TV in the USA. It us being valued thanks to people moving away from cable and satellite pay-TV services towards Netflix and other video-on-demand services augmented by free-to-air TV. Here, it will allow Americans to benefit from 4K UHDTV and Dolby Atmos technology via the TV antenna. Like with DVB and HBBTV-based standards used in Europe and Oceania, this technology combines the over-the-air signal with broadband Internet data to achieve advanced TV experiences.

There is also increased robustness as far as antenna-based reception is concerned which may allow for use of indoor antennas without their associated problems. As well, mobile users will benefit from this newer technology for on-the-road viewing. But there will also be an emphasis towards broadcast-LAN operation with one tuner offering a broadcast signal amongst multiple TVs. Users can upgrade their existing televisions to this technology by connecting an ATSC 3.0 set-top box to their TV as they see fit, but there will be some TVs, most likely “living-room” models from a few manufacturers, that will support this standard.

The 4K AMOLED screen is entering the “Goldilocks” territory when it comes to product price and screen size – not too big and expensive, not too small or cheap, but just right. It is seen by the trade as a “mid-market” territory but, for a TV, it is about something that appeals to more people without being too ostentatious or requiring one to pay a price’s ransom.

The advantage it has over the LCD screen that rules this market territory is to have increased contrast and richer colours, something that those of you who have a smartphone or tablet with an OLED display benefit from. As well, it is a technology that legitimises the high-dynamic-range and wide-colour-gamut video reproduction technology being pushed by the film and video industries.

Here, Sony released the first 48” 4K AMOLED screen that would be able to fit most viewing areas. This includes apartments and small houses as well as use in bedrooms, or secondary lounge areas including living rooms which aren’t frequently used for watching TV. As well, some AMOLED TV manufacturers are pitching sets that cost under US$1000. Here, this price point puts the AMOLED TV within reach of most middle-class families who are considering upgrading to this kind of technology without paying a price that sounds too vulgar.

Another trend affecting TVs is support for variable high refresh rates. Here, it appeals towards games consoles being able to work with game-optimised variable-refresh-rate monitors typically partnered with PC-based desktop gaming rigs, offering the same kind of display refresh rate as the display card on a gaming-rig PC would offer. This is being factored in because the large-screen TV is being valued in the context of gaming, especially with one-machine multiple-player games or the excitement of playing a favourite game on that big screen.

As well, I see the Apple TV and Android TV platforms as dominant smart-TV / set-top-box platforms due to the existence of strong code bases, strong developer communities and a well-nurtured app store. Here, the Android platform will appeal to TV vendors who haven’t invested in a smart-TV platform along with some third-party set-top box vendors. But the Android TV platform as a set-top-box platform has to be disassociated from the so-called “fully-loaded” Android boxes that are sold online from China for access to pirated TV content.

This is being driven by an avalanche of video-on-demand services that will appear over this year. Some of these will be subscription-based and offer new original content produced by the service’s owner while others will use advertising, perhaps as part of a freemium arrangement, and work heavily on licensing deep back-catalogue material. There will also be an effort amongst the new video-on-demand providers to take an international approach, appearing in multiple markets around the world, most likely with the goal of licensing content in all international markets concurrently.

It will even lead to each content-production name having its own video-on-demand service that primarily hosts content from its stable. But the question that will come about is how many video-on-demand subscriptions will we be having to budget for and maintain if we want content that reflects our choices.

Audio Technology

The DAB+ digital broadcast radio platform is increasing its footprint within Europe and across some parts of Africa and Asia. It includes some European countries like Norway and Switzerland moving their broadcast infrastructure away from AM and FM radio to this technology.

Pure Sensia 200D Connect Internet radio

Pure Sensia 200D Connect Internet radio – a representative of the current trend towards the “hybrid radio” concept

Here, it would be about an increased variety of devices that have broadcast-radio reception functionality based on this platform, including those that have Bluetooth and/or Internet-radio functionality. As well, more vehicle builders are being encouraged to supply DAB+ radios as factory-standard in all of their vehicles. Let’s not forget that value-priced DAB+ and Internet radio equipment will be equipped with a colour display that shows things like station branding or album cover-art while you listen to that station.

RadioDNS will be something that facilitates a hybrid broadcast-broadband approach to broadcast radio. This will include the ability to switch between broadcast-radio channels and an Internet radio stream for the same radio station or allow for richer supporting content to appear on the set’s display. It can also be about a “single-dial” approach to finding stations on broadcast and Internet bands. But RadioDNS has been given more “clout” in to the USA due to it being able to work with AM, FM or HD Radio (IBOC digital radio on AM and FM) which is used there.

Sonos’s partnership with IKEA, the furniture store who sells furniture that you assemble yourself with an Allen key, is demonstrating that a high-end multiroom-audio platform can be partnered with a commodity retail brand. What it could lead to is an incentive to build these kind of platforms around a mixture of premium, value and budget units, allowing for things like a low-risk “foot-in-the-door” approach for people starting out on that platform or people who have the premium equipment building out their system with cheaper equipment in secondary listening areas. It could even put pressure on the industry to adopt a common standard for multiroom-audio setups.

The streaming audio-on-demand scene is moving in a manner as to shore itself up against Spotify. Initially this is about offering either an advertising-supported free limited-service tier as what Amazon and Google are doing, or to offer a premium service tier with a focus on CD-quality or master-quality sound which is what Amazon is doing. But it could easily go beyond the “three-tier service” such as improved playlists, underrepresented content, support for standalone audio equipment, and business music services. As well, your ISP or telco could be providing access to a streaming-audio service as part of their service package or you buy a piece of network-enabled audio equipment and benefit from reduced subscription rates for an online music service.

The headphone scene is setting some strong contenders when it comes to excellent value-for-money for noise-cancelling Bluetooth headsets.

Bose initiated this battle with the QuietComfort 35 II headphones with the technological press’s reviewers seeing them as a standard setter for this class of headset. Then Sony introduced the WH1000XM3 headphones and these were seen on a par with the Bose cans but at a more affordable price with some press using terms like “Bose-killers” to describe them. Bang & Olufsen came in to the party and offered a premium noise-cancelling Bluetooth headset known as the Beoplay H9. But lately Bose also answered Sony by offering the Noise Cancelling 700 headset that effectively did that job in a minimalist form. This is while Sony are intending to launch the WH1000XM4 this year to raise the bar against Bose and their current product.

As far as “true wireless” active-noise-cancelling earbuds are concerned, Apple with their AirPods Pro and Sony with their WF1000XM3 have established themselves at the top of the pack for excellence. What I see of this is someone else could answer them to achieve that same level of excellence especially at a value price. This product class is also likely to benefit from the Bluetooth LC Audio specification due to the requirement for a small battery in each earbud and the small size of each earbud.

What Apple, Bose, Sony and B&O are highlighting is that they could easily compete with each other to achieve excellent products when it comes to headphones you use with your laptop, smartphone or tablet. It could even be a chance for other companies to join in and raise the bar for premium everyday-use headset design, including the idea of having audiophile headphone qualities in this class of headset.

Voice assistant platforms and ambient computing

Amazon Alexa and Google Assistant will still bring forth newer devices, whether in the form of speakers or displays. But Amazon Alexa and Microsoft Cortana will be part of the Open Voice Initiative allowing the same physical hardware to handle multiple voice assistant platforms.

A question that will arise through this year is whether there will be a strong direction towards having these devices work as a fixed audio or video telephony endpoint. This is whether the device works in a similar fashion to the classic landline telephone service with its own number; or as an extension to a smartphone that is part of a mobile telecommunications service.

The voice-assistant platforms will end up becoming part of an ambient computing trend that is underscored by facilitators like Internet of Things and distributed computing. Here, it is about computing that blends in with your lifestyle rather than being a separate activity.

As far as the Internet Of Things is concerned, the Connected Home over IP protocol was set in stone. This effort, facilitated by Amazon, Google and Apple with the oversight of the Zigbee Alliance, is about an IP-driven Internet-Of-Things data transport architecture. The idea is to do away with protocol gateways which were being used with various smart-home applications but the manufacturers were goading consumers to use their own protocol gateways with their devices rather than a third-party solution. There will be an emphasis on a safe secure interoperable Internet-of-Things network.

Data security and equipment maintenance in our personal and business lives

The Social Web will be considered a very important part of our lives with us primarily benefiting from it on tablets, smartphones or highly-portable laptops.

But it will still be a key disinformation vector. One of the new methods expected to be exploited this year is the creation of deepfakes. These are audio and video items created using artificial intelligence to make it as though a person said something when they didn’t. There will even be the ability to make the voice or face of a deepfaked person appear older or younger than they were when they were recorded, while make the voice or face appear as fluid as that of a real person.

Here, it will be used as a cyber weapon to create political, social and business instability by these representing our leaders whether they be in government, business or other circles. The deepfake will also be of value as a phishing tool in order to make the threat or plea appear to be more authentic to the victim.

As well, ransomware will begin to take on a network-wide dimension and affect business and service availability. Sensitive data, whether of a personal or business nature, will end up becoming the bargaining chip for ransomware hackers. This is in contrast to access to a computer user’s data resources which was often the case with ransomware.

The Internet Of Things will also be considered a continual security risk especially due to poor software and firmware quality control. It will lead to a conversation regarding the maintenance of our online devices through their lifecycle, including making sure they are running software that is stable and secure.

Then there is the “end-of-support” issue where a manufacturer ceases to show interest on older online devices that are currently in use. That is a question that is surfacing when one invests a significant amount of money in to the devices and people don’t want to throw out older equipment just because the manufacturer doesn’t want to support it anymore. It also goes against the grain of the post-Global-Financial-Crisis attitude most of us have adopted where we don’t want to support a throwaway society but want to see what we buy exist for the long haul.

The Sonos debacle raised the issue about what level of functionality the user should expect from their device along with how platform-based setups consisting of legacy and newer devices should behave. It also raised the issue of keeping the device’s software stable and secure.

Conclusion

This year will be considered a very interesting time for our online life as we see improvements to existing technologies along with newer conversations about how system-based technologies continue to evolve with a secure stable mindset.

Wi-Fi 6 is here for certain

Articles

TP-Link Archer AX6000 Wi-Fi 6 broadband router product picture courtesy of TP-Link USA

TP-Link Archer AX6000 Wi-Fi 6 broadband router – an example of a Wi-Fi 6 router

Wi-Fi 6: Better, faster internet is coming — here’s what you need to know | CNet

Should You Upgrade to Wi-Fi 6? | PC Mag

Previous Coverage

New nonenclature for Wi-Fi wireless networks

What will 802.11ax Wi-Fi wireless networking be about?

From the horse’s mouth

Wi-Fi Alliance

Wi-Fi CERTIFIED 6™ delivers new Wi-Fi® era (Prress Release)

Wi-Fi CERTIFIED 6™ delivers new Wi-Fi® era {Product Page)

My Comments

The Wi-Fi Alliance have started this week to certify devices as to whether they are compliant to the new Wi-Fi 6 (802.11ax) wireless-network standard. This effectively means that this technology will be ready for prime time.

But what will it offer?

NETGEAR Orbi with Wi-Fi 6 press picture courtesy of NETGEAR

NETGEAR Orbi Wi-Fi 6 – the first distributed Wi-Fi setup with Wi-Fi 6 technology

Wi-Fi 6 will offer a theoretical data throughput of 10Gbps which is 30% faster than Wi-Fi 5 setups. There will also be the ability for one access point or route to support many Wi-Fi client devices at once thus preventing that device from being “oversubscribed” and underperforming when many devices come on board. It answers a common situation where a small network that is typically served by one Wi-Fi router ends up having to support multiple Wi-Fi client devices like laptops, smartphones, smart speakers of the Amazon Echo kind, and set-top devices for streaming video. It is facilitated through the use of a higher-capacity MU-MIMO technology.

In addition, the Wi-Fi 6 routers and access points implement OFDMA technology to share channels and use them efficiently. It will mean that multiple Wi-Fi 6 networks can coexist without underperforming which will be of benefit for apartment dwellers or trade shows and conferences where multiple Wi-Fi networks are expected to coexist.

There is also the targeted wake time feature to “schedule” use of a Wi-Fi 6 network by battery-operated devices. This will allow them to know when to send data updates to the network especially if they don’t change status often, which will benefit “Internet-of-Things” devices where there is the desire to run them for a long time on commodity batteries.

A requirement that will be placed on Wi-Fi 6 devices is to support WPA3 security for their network security standard. It is to improve the expectation upon these devices for a secure Wi-Fi network.

At the moment, routers and access points based on Wi-Fi 6 will be positioned at the premium end of the market and be typically targeted towards “be first with the latest” early adopters. But over the next year or two, the market will settle out with devices at more affordable price points.

Premium smartphones, tablets and laptops that are being redesigned from the ground up with new silicon will end up with Wi-Fi 6 network interface chipsets. This will apply to the Samsung Galaxy S10 family, computers based on Intel Ice Lake CPUs and the Apple iPhone 11 family. As well, some network-hardware vendors are offering add-on Wi-Fi 6 network adaptors that plug in to your laptop computer’s USB port to enable it for the new technology.

At the moment, if you are running a network with a Wi-Fi 5 access point or router that is serving devices based on Wi-Fi 4 (802.11n) and Wi-Fi 5 (802.11ac) technology, you don’t need to upgrade the access point or router yet.

But if you have to replace that device due to the existing unit dying or you intend to set up a new Wi-Fi network, it may be worth investigating the purchase of network infrastructure equipment based on Wi-Fi 6.

You will also find that each device will be provided with “best case” performance based on its technology. This means that if you install a Wi-Fi 6 access point or router on your network then subsequently sign a subsidised-equipment post-paid service contract for a smartphone with Wi-Fi 6 technology built in, the smartphone will work to Wi-Fi 6 levels while your laptop that supports Wi-Fi 5 technology works to that prior technology without impeding your smartphone’s Wi-Fi 6 functionality.

If you bought one of the earlier Wi-Fi 6 routers or distributed Wi-Fi setups which works to pre-certification standards, check your manufacturer’s site for any new firmware that will have the device working to the current specifications and upload it to your device.

Wi-Fi 6 wireless networks will become a major boon for evolving local-area networks towards higher capacity and faster throughput on wireless segments.

6GHz Wi-Fi technology moving towards room-by-room Gigabit Wi-Fi

Article

NETGEAR Orbi distributed WiFi system press image courtesy of NETGEAR

Distributed Wi-Fi setups like this NETGEAR Orbi will be heading towards the Gigabit Wi-Fi goal on the 6GHz waveband

ARRIS: How 6 GHz Wi-Fi will revolutionise the connected home | Wi-Fi Now

My Comments

ARRIS who make home-network equipment for the American market, are pushing the idea that the 6 GHz Wi-Fi network is a major evolution for the home network.

This is coming about due to various national government departments who have oversight over radiocommunications use within their jurisdiction working on regulatory instruments to open up unlicensed low-power indoor use of the 6 GHz radio waveband. Such regulation is expected to be passed by the FCC in the US by mid-year 2020 and OFCOM in the UK by 2021 with other jurisdictions to follow suit over the next few years.

It will open up seven new 160MHz channels for the Wi-Fi 6 technology with the feasibility to open up a Gigabit Wi-Fi network. This is expected to lead to the evolution of the self-configuring distributed Wi-Fi setup with a Gigabit Wi-Fi backbone plus each access point offering a 160MHz Wi-Fi 6 channel alongside support for low-power narrower-bandwidth 2.4GHz and 5GHz channels for legacy equipment.

There will be the implementation of Wi-Fi EasyMesh and Wi-Fi EasyConnect standards to permit secure setup and an open-frame heterogenous distributed-wireless network.

One limitation I do see confronting this ideal that Arris put forward is the short-wavelength Wi-Fi backbone which can be a hindrance with certain building materials and construction approaches like double-brick walls. There will also be the requirement to run many access points to make sure the average home is covered properly. Here, the wired backbone whether “new wires”  like Ethernet or “no new wires” like HomePlug AV2 powerline or MoCA TV-antenna coaxial still has toe be considered for a multiple-access-point network.

ARRIS was even positioning for the evolution of the distributed Wi-Fi network to have each room with its own access-point node capable of yielding Gigabit bandwidth. They also put forward ideas like having these access points mounted on the ceiling. But I would also prefer the idea of a normally-sessile endpoint device like a network printer, Amazon-Echo-style smart speaker or a smart TV being its own access point that is part of the distributed Wi-Fi network. It then avoids the need to equip a room with an extra access point if you are intending to have this kind of device in that room.

The use of Wi-Fi 6 technologies will also be about working with environments that are congested as far as Wi-Fi wireless networking is concerned. These environments like multiple-premises buildings, airports or hotels are likely to have many Wi-Fi devices operating on many Wi-Fi networks which with prior technologies leads to poor performance especially on the throughput and latency side.

It may have to take a few years for the Wi-Fi wireless network to hit the Gigabit throughput mark as the 6 GHz band opens up and more access-point and client devices come on the market.

NETGEAR to offer one of the first Wi-Fi 6 distributed-wireless setups

Article NETGEAR Orbi with Wi-Fi 6 press picture courtesy of NETGEAR

Netgear takes its Orbi mesh Wi-Fi system to the next level with Wi-Fi 6 | PC World

From the horse’s mouth

NETGEAR

LEADING A NEW ERA OF WI-FI, NETGEAR ANNOUNCES ORBI MESH WI-FI SYSTEM USING WI-FI 6 SPECIFICALLY DESIGNED FOR THE GIGABIT INTERNET HOME (Press Release)

Product Page

My Comments

As Wi-Fi 6 (802.11ax) wireless networking comes to the fore, there will be a desire to see distributed-wireless-network systems that support this technology. Here it’s about being able to support many Wi-Fi client devices like laptops, tablets and smartphones along with devices that are designed “Wi-Fi first” including smart-home devices.

NETGEAR have started to refresh the Orbi distributed Wi-Fi system by making a new version that supports this new technology as part of the product lineup they are premiering in Las Vegas at this year’s Consumer Electronics Show. It uses the separate radio backhaul that their Orbi system is know for, thus avoiding a dent in performance that can be brought about with systems that use the main “fronthaul” Wi-Fi segment for their backbone data transfer.

But it uses four data streams across the dedicated Wi-Fi 6 backhaul to allow high-speed high-capacity data transfer. It is in addition to four concurrent data streams on the 2.4GHz band and four concurrent data streams on the 5GHZ band for the client devices to use. The system is powered by Qualcomn networking system-on-chip silicon that allows for the higher data throughput.

It is expected to appear during the second half of 2019, primarily as an updated take of the RBK50 wide-coverage devices. A question that will perplex those of us who have an Orbi distributed-Wi-Fi setup is whether the existing Orbi equipment will work with the newer Wi-Fi 6 Orbi devices.

This is more so where smaller or specialised Orbi satellite modules like the RBS50 Orbi Outdoor Satellite unit or the Orbi Voice which is a combination of a satellite unit and Amazon-Alexa-driven smart speaker are part of your Orbi setup. Or you like the idea of “pushing down” existing equipment to secondary purposes so you get more value out of the equipment you own.

What is being highlighted is the idea of using Wi-Fi 6 as a future-proof approach for wireless local networking, including distributed- Wi-FI setups.

5G mobile broadband and Wi-Fi can complement each other

Article

Netgear Nighthawk 5G Mobile Hotspot press image courtesy of NETGEAR USA

Netgear Nighthawk 5G Mobile Hotspot – first retail 5G device

Why You’ll Still Need Wifi When 5G Is Everywhere, According To The Wi-Fi Alliance | Gizmodo

Wi-Fi Alliance: Wi-Fi, 5G will be complementary | FierceWireless

My Comments

There is some hype being driven by organisations defending the 5G mobile broadband and Wi-Fi wireless LAN technologies about their technology being the only one for our connected lives.

Some existing devices use 5G mobile-broadband technology but connect to endpoint devices like mobile phones using Wi-Fi. Initially they are routers being deployed by mobile carriers as a proof of concept or for network trials while AT&T were offering a “Mi-Fi” for retail sale in the USA that implements 5G technology. At the moment, 5G hasn’t been rolled out in the form of a smartphone or a mobile-broadband modem that is integrated in or connected by USB to a host computer.

Both Wi-Fi 5 (802.11ac and prior technologies) and 4G LTE mobile broadband have seen widespread deployment with each technology being seen by mobile users as offering a complementary role. Networks and equipment running the newer technologies (5G and Wi-Fi 6) will be backward compatible and offer a best-case approach to this compatibility. That is if both the network and end-user equipment run the same technology, the user gains the most benefit from what the new technology offers.

It has been identified that both technologies at their latest specification can complement each other. Here, 5G will earn its keep in the outdoors and in a mobile context while the Wi-Fi 6 (802.11ax) technology will earn its keep indoors. This is although public-access Wi-Fi networks will be seen by mobile carriers as a cost-effective data-offload tool.

Wi-Fi also has supporting technologies like WiGig and Wi-Fi HaLow. The former one will match 5G for speed but uses a short range equivalent to an ordinary room in the house, while the latter benefits from long range and power efficiency but doesn’t have the speed. Wi-Fi HaLow will then end up in the smart-home, smart-building, connected-car and smart-city application spaces where data throughput isn’t all that necessary. This is while WiGig will end up with virtual reality, augmented reality, 4G video and other bandwidth-intensive applications.

Then there is also the kind of spectrum available for each technology. Wi-Fi technologies primarily rely on unlicensed radio spectrum which makes them popular for households and businesses to deploy. It is in contrast to 5G which, like other cellular mobile telecommunications technologies, relies on licensed radio spectrum which the mobile carrier has to deal with the national radiocommunications authority organise and purchase a license to use.

There is also a trend regarding wireless-network equipment design where there is a software-defined approach towards the media-level components. This is facilitated with small-footprint high-capability computing power and can allow the same piece of equipment to honour newer standards.

Another factor that is never raised is the concept of the local network where data can be transferred between co-located devices at the same premises. 5G is really positioned as a wireless “last mile” setup for providing telecommunications and Internet service to the end-user. This is while Wi-Fi is intended primarily to work as a local network but is used to distribute a single broadband service to multiple endpoint devices.

What really is now seen is that the new 5G mobile broadband and Wi-Fi 6 (802.11ax) LAN technologies can complement each other in a horses-for-courses manner.