Tag: DLNA

IFA Internationaler Funkaustellung 2009 Comments

The Internationaler Funkaustellung series of trade shows held in Berlin are considered in the industry to be the biggest consumer-electronics trade show. This is even though the show used to be a two-yearly event. In my opinion, the shows are mainly used for launching equipment destined for the European and Asian markets such as PAL-system video equipment or equipment that works on 240V 50Hz AC current; whereas the Consumer Electronics Show held in Las Vegas in January is typically for launching equipment destined for North America.

Second year with appliances as part of the show

This year has been the second year that the Internationaler Funkaustellung has exhibited kitchen and laundry appliances. There is more show space dedicated to these products and an increasing amount of space has been allocated to companies selling “smallgoods” – benchtop appliances, floor care, personal care and the like. One of the main focal representative classes of device have been the so-called lifestyle appliances led by the espresso machines.

The main trend has been for the market to be driven by people replacing worn-out inefficient appliances with better, more energy-efficient appliances that suit their needs. It is mainly working on the industry’s premise of users gaining approximately 10 years of service out of the typical home appliance.

This issue also includes interest in the built-in appliances as an alternative to freestanding appliances. This may be a personal comment but It might be worth noting that the European market aren’t in to “pushing down” older appliances to secondary service such as “beer fridges”. This may be due to such things as proactive take-back and recycle programs existing in those countries as well as higher energy costs. Other interesting facts to know about this class of goods is that more appliance makers are relying on electronic circuitry rather than electromechanical means like bimetallic-strip thermostats / timers or motor-driven timers to control the appliances.

Building Automation (HVAC, security systems, “smart home”, “smart grid”)

The home-automation sector which encompasses HVAC (heating and air-conditioning) and building security hasn’t gained strength in the IFA even though there is the energy-efficient “smart-grid” impetus lurking around the corner. The main problem with this is that there ISN’T A COMMON PLATFORM for this application.

Dominance of large-screen HDTV sets

The key product of this year’s IFA was the flat-panel large-screen high-definition TV set. These have been made more cost-effective due to an oversupply of LCD screen modules because business doesn’t want to spend on LCD panels and notebooks because of the financial downturn.

More customers wore interested in large-screen lounge-room sets because of the increased activity towards digital HDTV in Europe. This was encompassing countries that were switching off analogue TV service and going “all-digital” and / or new high-definition channels “lighting up” as well as an increasing amount of HD content being produced. This has also led to a strong replacement-set market, but are older sets still being connected to set-top boxes and “pushed down” to secondary roles?

One main trend being observed was the design of LED-backlit LCD screens leading to energy efficiency and high contrast ratio compared to cold-cathode-fluorescent backlit LCD screens. There has been a fair bit of activity concerning 3D HDTV which was being promoted by the major Japanese firms, especially Sony and Panasonic. Most of the equipment was primarily prototypes showing “known-quantity” content.

As for online connectivity, the main driver for this was access to online-supplied information and entertainment in the lounge room. This has usually manifested in TVs having Ethernet sockets and software that is part of a “widget platform” and / or DLNA-compliant media playback ability. It is also being extended to BluRay players that work with BD-Live interactive content. In this case, Samsung integrated a YouTube front-end in to their BluRay player while Sony ran with two WiFi-enabled BluRay players that can be part of the DLNA Home Media Network. The fact that BD-Live compatible BluRay players are being equipped with DLNA or other network applications is to permit people who own flatscreen HDTVs that don’t have network connectivity to connect these sets to the home network and the Internet.

Mobile Internet Devices

There has been some activity on the Mobile Internet Device front even though the smartphone industry is competing with this class of device. Toshiba had released the JournE touchscreen MID while SMIT released the MID-560 Android-driven unit which works in a similar manner to Clarion’s ClarionMIND portable navigation device / MID. A Chinese outfit called Optima had introduced the Maemo MID which was driven by a Chinese-built Linux distribution. This one raised the stakes by providing integrated 3G WWAN abilities, which could appeal to carriers who want these as a way of reducing subscriber “churn”.

Conclusion

There may not be much in the way of home-network and IT hardware appearing at the Internationaler Funkaustellung this year but most of the endpoint devices are actually appearing in the consumer electronics devices like the flatscreen TVs.

Feature Article – DLNA Network Media Series: Integrating classical music in to your digital-music collection

Beethoven ….. Mozart ……. Schubert ……. Wagner ……… Handel …….. Vivaldi ……. How can you have them in your online music collection?

You may already have established a music collection centred around classical music and / or opera; with at least a few of those Deutsche Grammophon recordings or are just cottoning on to the Great Classics as a break from the regular popular music. Yet you want to add the music in to your digital collection for use on your iPod / portable MP3 player or to play through your DLNA-based home media network. The main problem you will end up with is how to locate a specific work or movement / aria / chorus in your collection; or material by a specific composer.

It may not appeal to those of you who prefer to listen to classical music from an LP or CD through very fine equipment, especially from audiophile-quality recordings or boutique labels; but those of you who are used to and don’t mind listening to classical music from the radio or cassettes or or play classical LPs and CDs through commonly-available equipment may be accepting of this practice.

Most music-management software pitched at classical-music enthusiasts works on a presumption that the music collection is exclusively focused to this genre. But the reality for most music collections is that there is a mixture of the classical-music genre as well as jazz and popular music existing in the collections. It also includes situations where there are recordings that feature a performer performing a collection of classical and other pieces, recordings featuring highlighted works by a particular composer or “themed” classical-music albums with pieces based on a common theme like a “Most Favourite Selection”; music mood or composition era.

How will you be integrating classical music in to your digital music collection

You may buy the music as MP3 files from an online music download service like what is currently being offered by Deutsche Grammophon or may simply buy classical-music CDs and “rip” them to your computer’s hard disk. In some cases, you may copy music you have on legacy analogue media like LPs to your hard disk.

What standards to implement

Unlike most contemporary popular music, this kind of music demands high quality recording and playback and is more so if you take this genre more seriously. The preferred order for storing the music in your master collection when you “rip” from CD or record from analogue media would be:

  1. FLAC or similar lossless codec at best bitrate available
    This may have compatibility problems with most of the portable media players on the market, because they don’t have native support for this codec. Some DLNA-based media-player components, usually those hifi components made by companies who make equipment for discerning listeners may support this codec natively. If you wish to work with this codec, make sure that the media server or “jukebox” program that you use can transcode from this format to LPCM for DLNA applications or MP3 at 320kbps, AAC at 200kbps or WMA at 192kbps for portable media player applications. Most such programs that rip to these codecs can support these transcoding requirements
  2. AAC at 200kbps or WMA at 192kbps
    These offer a tradeoff between good quality sound and storage efficiency and most devices on the market do support either of these codecs natively. It may still be worth it to check if the media server or “jukebox” program can transcode as mentioned above.
  3. MP3 at 320kbps
    This is the codec that is often used for digital media but the only problem with it is that it is not efficient. It is also the preferred codec that is used when you download music via an online store.

The metadata issue

How does a person refer to a particular piece of classical music?

Instrumental and vocal works Opera, Ballet, Oratorios, Musical Theatre
Composer Composer
Work Work
Movement (for multi-movement works such as symphonies, concerti, etc) Act or Part (works performed over multiple acts or parts)
Some works, most notably Vivaldi’s “Four Seasons”, are primarily a group of multi-movement works that are intended to be thought of as a group, but each work or each movement can be considered as an item. Scene, Aria, Chorus, etc

The works can be further differentiated by the performers who had a part in performing the work, such as a solo performer, orchestra (with a particular conductor), opera company or theatre.

Organising the Metadata

This is made more difficult because most music metadata is organised based on most popular music where the concept of an album is a collection of songs by one or more artists.

You will have to organise the metadata manually whenever you add a recording of a complete work to the music collection. This is more so where you buy a recording with multiple multi-movement works like nearly all concerto and sonata CDs and an increasing number of symphony CDs. Some of these recordings may have a multi-movement work plus a few single-movement works rather than two or more multi-movement works. This may not be of issue when you have recordings which are a selection of single pieces and/or key movements, arias and choruses from larger works.

You could give each work its own “album” name and make sure each movement in the work is given a track number that is consecutive to how the movements are meant to be performed. Another good practice would be to change the movement’s or part’s  “title” field to <<movement number>>-<<movement’s full name within work>>. There are some works that have a highlighted part within one of the movements, such as the 4th movement in Beethoven’s 9th Symphony. Here, the “Ode To Joy” chorus will typically be its own track and may be numbered “5” in the album track order, even though it is part of the 4th movement. You may still have to have this part being numbered as “5” in the album track order and the title’s movement number being “4a” so as to properly place it as part of its parent movement.

Also, if you are dealing with a suite of multi-movement works like Vivaldi’s “Four Seasons”, you may have to have each work, such as the “Spring” concerto as its own album. Similarly, long-form musical-theatre works like operas and ballets that are performed over multiple acts may need to have each act as its own album.

As well, you will need access to the “Composer” field for modifying and searching so you can integrate the composer as a key domain. This should be kept consistent in respect to the name of the composer. Try to avoid using name variations across different works by the same composer; and especially avoid referring to a composer by surname only. This can be more of an issue with works by Johann Sebastian Bach who was a very prolific composer; as well as the works composed by his sons such as that popular “Musette” piano piece. As for genres, the music should be listed under the “Classical” genre or similar genres.

Searching for the music

You may have to search amongst the “Album” metadata in the “Classical” genre to find works. As well, you should have access to the “Composer” metadata field – Windows Media Connect, Twonkymedia, Asset UPnP and other good servers provide for this. Musical theatre works like opera could have each act as its own work e.g. “La Traviata Act 1”, “La Traviata Act 2”.

You may need to search based on composer then work methodology if you are after a particular work. If you want to run a sequence of works, you will need to add the works to a “now playing” queue in your DLNA media player or controller. A good idea is to use playlists for keeping suites of multi-movement works like Vivaldi’s “Four Seasons”, or particular musical-theatre works together for sequential playback.

What needs to be done for music metadata management to cater for classical music

Data structures and fields in the databases need to exist to encompass the structure of classical music; primarily works, parts of long-form works (acts, etc) and suites of works. There also need to be data views that work commensurately with classical music’s structure i.e. to support “composer, works group, work, movement, performer(s)”. As well, music-management programs, including portable-media-player firmware and music metadata reference sites like Gracenote need to apply the different data structures and views when they are handling classical music. This can be made easier by detecting if a recording is identified as being part of the “classical music” super-genre; as well as providing a view structure for all classical-music recordings based on the “composer, works group, work, movement”; as well as the conventional “album-based” view for classical-music recordings so as to cater for “collection” recordings.

Summary

Once you can get your hands on the music metadata by editing it manually, you can safely integrate your classical music into your online music library while being sure you can locate that favourite work or movement.

Please feel free to leave any comments on how you had gone about integrating your classical music in to your online music library.

DLNA and UPnP AV in the business

Originally posted: 5 January 2009, Updated 6 July 2009

Very often, DLNA and UPnP AV are typically marketed as being for use in the home due to the reduced amount of configuration needed for devices that comply to these standards. But devices based on these standards can appeal to business use, especially to small “mum and dad” shops, community / religious organisations and other similar businesses who don’t have regular access to “big business” IT resources.

The functionality is typically available as low-cost or free software or, in some cases like Windows XP and Vista, available as part of the operating system. There are some “business-grade” network-attached storage boxes that have the functionality for business continuity as well as the ability to work as DLNA-compliant media servers. A good example of this are the Netgear ReadyNAS units and the QNAP units, including the TS-459U Series 4-disk rackmount “pizza-box” NAS server which would be pitched at the office server room.

The main issue that one will have with this kind of setup will be that the network that you intend to connect the equipment on must be on the same subnet or logical network, served by the same DHCP server. This will be fine for most small-business, and SOHO networks, including the “private” segment of networks that provide Internet access to the public such as wireless hotspots and Internet cafes.

If you are concerned about security of business data or the integrity of business systems, you could run a separate server for the DLNA-presented media data rather than use the main server for this purpose. Then you can lock down the main server as tightly as it should be for the data.

Visual Merchandising

DLNA-based setups can come in to their own when it comes to all sorts of visual merchandising applications. This is more so for small businesses who cannot afford to buy business-grade “digital signage” or find the “digital signage” difficult to manage due to complex setup requirements.

You can have images or videos of products that are always kept fresh and up-to-date and can intermingle these images and videos with up-to-date “electronic signage” that you create with programs like Microsoft PowerPoint. The best example of this being used would be the real-estate agent who uses the setup to show pictures of the houses he has currently for sale or a beauty salon showing examples of the most fashionable hairstyles they have done lately.

A DLNA-compliant network electronic picture frame like the Kodak EX1011 or the D-Link DSM-210 can work wonders here as can any DLNA-compliant network media receiver (or games console) hooked up to a large flat-screen TV or monitor. Similarly, a DLNA-compliant flat-screen TV like one of Sony’s recent LCD TVs can fulfil the same needs here, especially now that the cost of these sets in in affordable territory and the sets are available from most electrical retailers.

The media server can be part of the file server’s functions or can be hosted on a separate box such as a network-attached storage unit. You just need to add the media to this server by using a standard network file-transfer protocol like SMB or FTP.

You will need to make sure that the media server presents the files either by keywords (tags) and / or folders of the file system so that you can file the pictures how you want to file them. Windows Media Player and TwonkyMedia do support working by keywords and folders.

If you use a presentation program like Microsoft PowerPoint to create “electronic signage”, you just need to export all of the slides in your presentation as JPEG files in to a folder available to the media server. This is done in PowerPoint by opening the presentation and selecting “File” – “Save As” and selecting “JPEG” as the file type. You then have the option of exporting the current slide as a JPEG or exporting all the slides in the presentation as JPEG files in a folder named after the title of the presentation.

Background Music

If you are sick and tired of the radio or those business-to-business music services, you can use a computer as a music server, with the music playing out through a DLNA-compliant network media player such as one of those Internet radios.

As I have mentioned in my previous DLNA feature articles, it is very easy to do whether you decide to use a computer or a network-attached storage box as a media server. Most of the network-enabled music players support shuffle-play which can be very useful for this application and a lot of them have a line-out connection so you can connect them to a public-address amplifier or music-on-hold interface.

Education – The media library

A DLNA-based media system can work well when it comes to education. It doesn’t matter whether the idea is to show a video to a class or whether a student is viewing a video they saw in class “once more” in the library.

A capable DLNA media server with a properly-indexed media collection can work wonders here, with the users selecting the AV material through the DLNA media player’s user interface. Most such players can connect to existing AV equipment or the DLNA functionality can be part of the equipment’s functionality.

Similarly, if the media server provides it, you could allow Web-based access via any computer connected to the facility’s network. This can allow wireless-linked computers to be used to “pull up” the learning resources.

Other business-based DLNA applications

DLNA is eventually heading in the direction of a common IP-hosted data system for transferring media between portable and fixed devices. A typical application may include uploading images and movies from a digital camera or camcorder to a “base” computer for editing and viewing. Similarly, there may be the application of downloading AV material from a computer to a smartphone so it can be viewed on that phone’s display.

Conclusion

What needs to happen is that DLNA needs to be viewed as not just being for the home but being for business and educational life as well.

Feature Article – DLNA Network Media Series: Setting up PC-less networked AV

Why set up a PC-less networked AV setup

A PC-less networked AV setup doesn’t need a particular computer to be present and running to provide AV media to DLNA client devices.

The media is provisioned by a box that is designed for providing AV media to client devices 24/7. This avoids situations where the media is not available due to the PC crashing or being infested with malware; both events that can be very common occurrences with most home computers. There is no need to worry about a PC which is being used for playing games or doing other system-intensive activities limiting media availability. Similarly, these setups use less energy than a PC working as a media server.

This setup also suits today’s laptop-based computing environment where laptop computers are more likely to be moved from place to place. It also suits environments like holiday houses where there is no real use in keeping a desktop computer on the premises but there is the desire to have occasional Internet access at such locations.

As well, this kind of setup appeals to computer-shy people who may want to benefit from digitally-hosted media. This is because there is no need to have a noisy ugly computer in the house for this kind of activity to occur.

Another bonus is that when you add more media client devices to the network, a dedicated media server can handle the increased demand more capably. Contrast this with a PC where the odds of failing when serving more devices can increase rapidly.

What kinds of PC-less media server exist?

Dedicated DLNA music server (Philips Streamium WACS-7000, Sony GigaJuke  NAS-S55HDE, etc)

This unit is typically in the form of a hi-fi system or component that is part of such a system. It has a single hard disk that is primarily for storing media, typically music files and have a network interface, either in the Ethernet or 802.11g wireless form.

Such units will have a built-in CD drive and can “rip” audio tracks from CDs loaded in that drive. They will have access to a metadata service like Gracenote so that the tracks are properly indexed by song title, artist (both album and contributing), genre and album title. As well, they could record audio to the hard drive from a device connected to the server’s line-level input or, where applicable, from a built-in radio tuner. This is in a similar manner to recording music to tapes from the radio using that good old cassette deck.

A lot of these systems expose features and functions that only work best with selected client equipment sold by the server’s manufacturer. They may have limitations concerning transferring audio files to and from the unit’s hard disk, which may limit backup or secondary-storage opportunities. Usually they require a computer to run a special utility in order to transfer music files to or from the unit.

Standalone NAS (network-attached storage) box

These devices are simply a dedicated file-storage device that is connected to the home network and handles files according to standard network-based file-handling protocols. They often provide backup file storage and secondary file storage for computers on the network as well as media-server functionality.  Some users may use the hard disks in these units as a “holding bay” for their computer’s hard-disk contents while they are upsizing that computer’s hard disk.

These boxes will typically come either as a single-disk unit which is the size of a book or as a multi-disk unit that is typically the size of a toaster or breadmaker. These units  either uses the hard disks as a huge storage volume or sets aside some of the disks as a “shadow store” for the data should any of the disks fail. This latter technique, which also provides higher data throughput is known as RAID which stands for Redundant Array of Independent Disks.

They are available as a unit fitted out with the necessary hard disks to the capacity you pay for or as an enclosure where you install hard disks that you buy separately. Earlier versions of these enclosures required the user to mess around with a screwdriver and end up losing screws in the assembly process, but the newer units just require the user to slide in or “clip in” the hard disks.

This class of device includes “headless” small-scale server platforms like Windows Home Server and some Linux distributions which can be expanded by the user to perform different functions. They may include this kind of software being loaded on an otherwise-redundant PC that is being repurposed as a small-form file server.

This device will be the way to go eventually because of its ability to provide a flexible media-sharing solution for most small networks.

"Ripping" NAS units

There are a class of NAS boxes that are just like a regular NAS box, having the same number of hard disks as these devices and having the same capacity and functionality as these boxes. But these units, such as the RipFactory RipServer, have a built-in optical disk drive and software which “rips” CDs loaded in to the unit’s optical drive, in a similar manner to a dedicated DLNA music server. They will use a music metadata service like Gracenote to index the tracks that are ripped from the CDs loaded in the unit’s optical drive. These units would be considered as a “bridge” between the dedicated DLNA music server and a general-purpose NAS box.

USB hard disk connected to a DLNA-compliant USB file server

Another common method is to use a USB network file server device that is connected to a USB external hard disk. The device can typically be part of another network device like a router or just become a standalone box. These units, again, handle files according to the standard network-based file-transfer protocols.

They work best with one self-powered USB hard disk because most of these server devices usually run on a low-output power supply that typically powers the electronics within. Most of these units also don’t have the logic to properly handle a USB hub or multiple USB hard disks. If you are using a small hard disk that doesn’t have its own power supply, you may need to connect it via a self-powered USB hub. Similarly, you may find that using a self-powered USB hub can assure reliable service with any of the USB file servers that can support USB hubs,

These setups are useful for a temporary media-sharing arrangement where you are providing media to one or two devices or as an auxiliary media server for other media that isn’t always used.

Storing your media on these devices

If you use a dedicated NAS unit without a built-in optical drive, you will need to make sure that you have SMB (Windows, MacOS X, Linux) or NFS (Linux) read/write access to the media share on that NAS unit. As well, make sure that there is a desktop shortcut, mapped drive letter or other mount point to that share on your computer(s) that you are preparing the media on.

Prepare your media as you normally would, with it ending up in your computer’s media directories. Then copy the media directories to the NAS media share using the standard practices that you use for copying files and directories. You may need to set up a “sync” routine to automatically copy new media to the media share so you can be sure that the new media is available on the network.

Avoid the temptation to "rip" a CD directly to the network share because there is the increased likelihood of errors and slow performance due to multiple points of failure existing between the CD and the NAS’s hard disk, being the optical drive, the ripping and encoding processes and the network transfer process.

Increasing and evolving the DLNA networked media system

One media Server, work towards a NAS unit

This is more analogous to a business’s file server where the IT department want to make sure that all company data is seen as one collection to back up and manage and is at one location. This may appeal to you if you want to have only one primary storage point for your media.

The only limitation about this is that if you need to “do anything” with the NAS unit like upsize it or replace a failed hard disk, you will have to have the media library out of action.

Two or more Media Servers serving different content

You may want to have the media on two or more media servers rather than one media server. This may appeal to a household which has young adults or adolescent children living in it. In this situation, they may want to keep their media on an NAS that they have responsibility for and can take with them when they move on. This avoids you having your media server being “clogged up” with their media which you will less likely want to touch whether they are with you or when they have left your place.

Similarly, you may have media to do with your personal activity as well as media to do with your business or community-engagement activity. Here, you can run a separate media server which houses your business media and this one can be managed under business standards and be financially underwritten by your business. This includes Web developers who run a NAS box as a “Web-page workbench” and want to view primary pictures for their Web page on a DLNA media client attached to the big-screen TV.

Here, you create the different media servers but you make sure they have different names so that your DLNA client devices can differentiate between the server devices. You may use different types of server such as a USB hard disk connected to a DLNA-capable USB file server for a small project or a business-class NAS unit for your business data.

An increasing number of NAS devices pitched at the domestic market are starting to support the ability to aggregate multiple DLNA media libraries in to one large media library. This allows the user to point their media client device at one reference point for all the media that exists on the one home network.

Media Servers in different geographical locations

There may be the possibility of running another DLNA-based media network in another geographic location like a business premises or another house.

The main issue about this is keeping both locations in sync with the desired content. You may have to use an Internet-based sync utility which is supported by your media server to synchronise content between locations.

On the other hand, you could set up an IP-based NAS-NAS backup set for incremental or differential (only files that are new or have changed) backup, but the backup jobs could still be large if any metadata is changed.

You would have to make sure that both NAS units are accessible from the Internet. This may involve establishment of a “dynamic DNS” setup through the use of “DynDNS” or similar utilities; or having each location have a fixed IP address. Then there is the issue of setting up a port-forwarding rule in your router, which may be easy if your NAS units implements UPnP-based port forwarding and you are using a UPnP-compliant router in each location. On the other hand, you may have to visit the router’s Web page to set up the port-forward rules.

This situation hasn’t been made easy because typically the concept of using multiple NAS boxes for applications like multi-location file storage hasn’t been defined as a key application.

Conclusion

Once you have moved towards the PC-less DLNA-based media network, you will thank yourself that you have headed down that path. You won’t need to keep a noisy computer on all the time just to enjoy your music over the network.

Feature Article – DLNA Media Network Series: Getting Started with DLNA Media Sharing

UPDATED 26 January 2010

Most of us will end up with a large collection of picture, music or video files on our computers, especially if we use our computers as a large media library. It would be nice to have access to this content without having to copy it out to thumbdrives, SD cards or iPods before we can enjoy it.

Why share your music, pictures and video the DLNA way?

An increasing number of dedicated network media client devices are on the market and nearly all of these devices work according to the UPnP AV / DLNA media-client standards. The ubiquitous Xbox 360 and Sony PlayStation 3 games consoles that every teenage boy dreams of having both work according to these standards. Most manufacturers who are selling premium table radios are supplying at least one which can pick up Internet radio broadcasts through a home network and these sets are also capable of picking up media made available to them from a UPnP AV media server. I have reviewed a few of these units in this blog lately, such as the Pure Evoke Flow and the Revo iBlik RadioStation. This same function is increasing becoming a product differentiation feature for most consumer electronics equipment like home-theatre receivers and flat-screen televisions.
 

004 - Denon S-52 network audio receiver playing Pink Floyd over the network

  
Denon S-52 Wireless Network CD Music Systm (DLNA enabled)
  
005 - Tivoli Networks Radio
Tivoli NetWorks Internet Radio (DLNA enabled)
 
By using a DLNA-based setup, you don’t need to install different media-server programs for each network-media client that you happen to buy. In some situations, you may only need to run whatever is supplied with the computer’s operating system.

Setting up your network for DLNA media

Most home, small-business and some branch-office networks don’t require any revision because they typically are one logical network that spans the premises with the router that exists at the network-Internet “edge” being the device that handles basic network housekeeping. This doesn’t matter whether the network has one or more media segments like WiFi wireless, Cat5 Ethernet or HomePlug powerline cabling.
 
You will need to know the ESSID and the WEP or WPA security key for your wireless network. This may be obtained through the router’s Web administration page or through your client PC’s wireless-network-setup parameters such as in Windows Connect Now. If you are connecting your DLNA media client to the network via wireless, you will need to make sure that the wireless access point or router is broadcasting the ESSID so you can pick it from a list using the device’s user interface and be sure you are “in reach” of the network. This practice would be important when you run a multi-access-point wireless network or simply to help with making sure that neighbouring wireless networks are set up properly. As well, you will need to be ready to enter the WEP or WPA security passphrase by “picking out” characters from a list using buttons on the device or its remote control.
Home Network with DLNA equipment
 

Network layout

 

Setting up your PC jukebox software for DLNA

If you are running Windows XP, Vista or 7, you can use Windows Media Player 11 or Windows Media Player 12 (in the case of Windows 7) as your media server. Before you start “ripping” CDs to the hard disk, make sure the program is set to rip without DRM (Copy Protect Music checkbox in the Rip Music options tab is cleared) and that it is set to rip CDs at 192kbps WMA or 320kbps MP3. The reason I would rip at these settings is to be assured of sound reproduction that is as close to the CD album as possible. You may use the MP3 codec for maximum compatibility or WMA for efficient storage if your DLNA media clients can handle WMA.
.Windows Media - CD ripping settings
 
As well, you will have to set Windows Media Player 11 to automatically permit devices to benefit from its media library. This is done by going to “Library”, then selecting “Media Sharing” and clicking on “Settings”. The “Media Sharing – Default Settings” dialog box will open whereupon you make sure that the “Allow new devices and computers automatically” checkbox is selected.
If you don’t use any sort of ratings in your media as far as sharing is concerned, you may have to select “All ratings” in both the “Star Ratings” and “Parental Ratings” options. This will make sure all media is available for all of the devices.
Windows Media - Media Sharing settings
For your pictuers, you will have to add the folder that contains your photos to Windows Media Player’s media library. Similarly, you will have to do this for your video folders.
 
 
Linux users have access to a large plethora of media-server software such as TwonkyVision and TVersity as well as a large collection of open-source media-server software. You will still have to use a CD jukebox program set up to rip CDs at 320kbps MP3.
 
Apple and Windows users who use iTunes as their CD jukebox but will need to use either TwonkyVision, Elgato EyeConnect or Allegro Media Server. They will need to make sure that the iTunes directory is the one to be provided by the media server. Again, iTunes will need to be set up to rip at 320kbps MP3 for best compatibility and quality. The program may support transcoding to lower bandwidth settings for use whenever music is being transferred out to an iPod.
 
Infact, I have written up some more detailed information about setting up an Apple Macintosh computer to work as part of a DLNA-based home media network because of the increasing popularity of these computers. The article, “UPnP AV (DLNA) for the Apple Macintosh platform”, covers other media server programs that exist for that platform.
 
 The media server would need to be set up to work with the folders that are being used as the primary folders for music, photo and video storage.  I have explained how to go about this for your music, especially if you use iTunes or Windows Media Player. For your photos and videos, you simply add the folders used by your photo management and video management software to store your images.
 
 
 The DLNA media-server programs typically index music files according to artist, album, track, genre, and some may support separate identification of composers, contributing artists (important for soundtracks and compilation albums) and other metadata for pictures and videos. Some, like TwonkyVision, allow for alphabetical clustering and other efficient sorting arrangements. This is typically because UPnP AV / DLNA allows for the server to determine how it presents the library to the client devices.
 
As far as playlists are concerned, they will typically be listed in a “Playlists” collection with each playlist being its own collection in that tree. By having a playlist as a collection of tracks rather than a reference to a playlist file, it means that the media clients don’t have to be compatible with the playlist file format that the jukebox program works with.
 
Some of the media servers like Windows Media Player 11 or TwonkyVision support transcoding to common file formats for situations where a DLNA media client cannot handle a particular media type. This can come in handy for file types like WMA which aren’t handled by all UPnP AV media players.
 

Setting up the DLNA clients

Enrolling the DLNA clients in to your network

You will need to make your DLNA media client become part of the network. This can be a simple task of plugging it in to your Ethernet network segment or into your HomePlug powerline network segment using a HomePlug-Ethernet bridge.

Integrating wireless-enabled DLNA clients to the wireless network

If you are connecting your wireless-enabled DLNA media client to the WiFi network, you will need to configure it for this network. This will require you to enter the device’s setup menu and select the option pertaining to wireless network setup. Then you get the device to search for your network’s ESSID which is commonly referred to as the SSID, Network Name or something similar. Once your device has detected your wireless network, you will be prompted to enter the WEP or WPA security passphrase. At this point, enter the passphrase in to the device. These procedures will have to be done as mentioned in the “Setting up your network for DLNA media” section.
 
Some DLNA network media clients may use a “quick set-up” method like Windows Connect Now or WPS. This will typically involve either transferring a USB memory key between a Windows XP or Vista wireless-equipped notebook computer and the device; or registering the device with the wireless router. This procedure may be as simple as pressing a “register” button on the router and the device or copying the device’s PIN number (which would be on the device itself or in a WPS setup option in the device’s setup menu) in to the wireless router’s setup menu.
 
If you use MAC-address filtering on your wireless router, you will need to register the DLNA media device as an “accepted” network device. This will require you to copy the device’s wireless MAC address, which will be on a sticker attached to the device itself, in to the router’s trusted MAC-address list.

Making sure the DLNA clients detect the media server

You will need to make sure that the media server program is running on the PC that has the media that you are sharing. Most such programs may run a media server component as a background task while the computer is fully on but some may require the jukebox program to be running all the time.
Another thing to check is the desktop firewall software. This should be set to allow the media server software outbound and inbound access to the network as a server. The Windows Firewall software that is part of all Microsoft desktop operating systems since Windows XP Service Pack 2 makes this easy by allowing immediate access to Windows Media Player or asking you if you want to allow the application to have network access. Other third-party firewalls may require the server application to be allowed Internet access by you adding the software to their application “white lists”.
You may have to select “Network Music”, “PC Music” or something similar on most network-enabled music devices like Internet radios in order to gain access to the music library that you have made available.  Then you select the “hostname” of the PC, which may be commensurate to its standard computer name or its primary owner’s name. The DLNA client will then show the media type that it can work with. You then select that type and use the controls to select the media you are interested in.

Summary

Once you have your network and media-server computer set up properly, you can work with providing music and other media to network media receiver devices without much hassle.