Showing posts with label faculty. Show all posts
Showing posts with label faculty. Show all posts

Tuesday, June 02, 2009

Software Defined Radio

SOFTWARE DEFINED RADIO [SDR]


[Here is an article on SDR compiled by my students Shijesh, Sibil, Shyju and John by browsing the internet, books and journals]


The rapid growth of technology and changing trends in the Communication techniques has paved way for the introduction of many telecommunication devices, many of which are not feasible to modify cost effectively due to lack of flexibility in their implementation. Software Defined Radio (SDR) technology mitigates this problem by providing the flexibility through software.


Software-Defined Radio (SDR) is a rapidly evolving technology that is receiving enormous recognition and generating widespread interest in the telecommunication industry. Over the last few years, analog radio systems are being replaced by digital radio systems and programmable hardware modules are increasingly being used in digital radio systems at different functional levels. SDR technology aims to take advantage of these programmable hardware modules to build open-architecture based radio system software.


An SDR system is a radio communication system where components that have typically been implemented in hardware are instead implemented using software on embedded computing devices. In other words SDR is a Radio in which some or all of the physical layer functions are software defined.


A Radio is any kind of device that wirelessly transmits or receives signals in the radio frequency (RF) part of the electromagnetic spectrum to facilitate the transfer of information.

In today's world, radios exist in a multitude of items such as cell phones, computers, car door openers, vehicles, and televisions.


While the concept of SDR is not new, the rapidly evolving capabilities of digital electronics are practical enabling many processes that were once only theoretically possible.

In the past, radio systems were designed to communicate using one or two waveforms [waveform here refers to any specific standard like Global System for Mobile Communications (GSM), Code Division Multiple Access (CDMA), and Time Division Multiple Access (TDMA) or it can be as simple as Frequency or Amplitude Modulation (FM or AM)].


As a result, two groups of people with different types of traditional radio were not able to communicate due to incompatibility problems. The need to communicate with people using different types of equipment can only be solved using software programmable radios because of its flexible architecture.

Traditional hardware based radio devices limit cross-functionality and can only be modified through physical intervention. This results in higher production costs and minimal flexibility in supporting multiple waveform standards. By contrast, software defined radio technology provides an efficient and comparatively inexpensive solution to this problem, allowing multi-mode, multi-band and/or multi-functional wireless devices that can be enhanced using software upgrades

The primary goal of SDR is to replace as many analog components and hardwired digital VLSI devices of the transceiver (radio) as possible with programmable devices.

Some of the advantages of SDR are:

  1. Multifunctionality. The same piece of hardware i.e. the radio set can be used to transmit, receive and process different communication signals that adhere to different air interface standards. This can be done simply by reconfiguring the software.
  2. Global Mobility. The same piece of hardware i.e. the radio set can be used in different parts of the world that endorse different air interface standards. This can again be done simply by reconfiguring the software.
  3. Compactness and power efficient design. Unlike traditional non-SDR systems, which require multiple hardware sets for multi-functional communication, the same piece of SDR hardware can be reduced for such a purpose. This results in compact and power –efficient design, especially as the number of systems increases.
  4. Ease of manufacture. A SDR comprises of fewer hardware parts than a traditional radio since most processing is done in software within a general-purpose microprocessors or special purpose microprocessors like the DSP, or in reconfigurable hardware including FPGAs. This eases the production cycle for the manufacturer with lesser parts to standardize and produce.
  5. Ease of upgrades. Any service upgrade can be easily introduced through the release of new software versions without the expense of recalling or replacing the hardware units. A user can simply download the software off the internet and load it into the SDR.

The most significant asset of SDR is versatility. Wireless systems employ protocols that vary from one service to another. Even in the same type of service, for example wireless fax, the protocol often differs from country to country. A single SDR set with an all-inclusive software repertoire can be used in any mode, anywhere in the world. Changing the service type, the mode, and/or the modulation protocol involves simply selecting and launching the requisite program, and making sure the batteries are adequately charged if portable operation is contemplated.

The ultimate goal of SDR engineers is to provide a single radio transceiver capable of playing the roles of GSM phone, CDMA phone, Wimax terminal, wireless fax, wireless Web browser, Global Positioning System (GPS) unit, and other functions still in the realm of science fiction.


VIKRAM KARVE

http://vikramkarve.sulekha.com

vikramkarve@sify.com

http://www.linkedin.com/in/karve

© vikram karve., all rights reserved.




Monday, February 18, 2008

Telecom and IT Reference Book

Book Review by Vikram Waman Karve


TECH TERMS – What every Telecommunications and Digital Media Professional Should Know


Tell me, what is a zombie? No, no! It’s not the witchcraft zombie I’m talking about, nor am I referring to those automaton nerds, lost cases, you see around you. Okay, I’ll give you a hint – this zombie has got something to do with IT. Still clueless?

Did you know that Zombie refers to hackers’ use of other people’s personal computers to either conceal their online activities or to launch attacks on other computers? Once a computer has been turned into a “zombie” it can be used as a repository for illegal software, become a clandestine meeting place for hackers to conduct secret meetings, be used to send pornographic or other undesirable e-mail or spam, serve as the launching point for a denial of service attack, and so on – all without the knowledge of the zombie computer’s owner. So don’t let your PC become a zombie.

Did you know all this? Well, I didn’t – till I read a marvellous book, a splendid Technical Thesaurus, called TECH TERMS. This book is packed with a wealth of knowledge comprising must-know terms and concepts for every Telecom and IT professionals worth her salt. This book encapsulates an essential list of Internet, IT, Telecom, Digital, Broadcasting, and Computing terms one needs to master to remain current through thorough understanding of state-of-the-art technology and concepts – a sine qua non for survival and success in the rapidly advancing world of Telecommunications and Information Technology.

Title: TECH TERMS – What every Telecommunications and Digital Media Professional Should Know

Author: Jeff Rutenbeck

Elsevier (2006) 280 pp

ISBN 13: 978-0-240-80757-7

The “tech terms” are arranged alphabetically and each term is assigned a “level” of 1, 2, or 3 indicating the degree to which a term or concept can be considered fundamental or foundational to a particular technological domain [level 1], those which require some understanding [level 2], and highly specialized or complicated concepts [level 3].

Cyberspace, Blog, Hacker, Byte, Broadband, iPod, Database are level 1 terms; Technobabble, TCP/IP, GPS, GSM, ADSL, ISDN, Cybersquatting, Wiki, Bluetooth, Blu-Ray, Ethernet, URL, Router, Zombie, Honeypot, WYSIWYG, Nanotechnology are level 2 terms, and terms and concepts like CDMA, NICAM, CPDP, XSS, DLL, ColdFusion are level 3 terms.

Hey, do you know the full form of URL? Or USB? Or FIFO? Or ISDN?

Why don’t you just go down to your nearest bookstore or library and get a copy of this book? TECH TERMS is an excellent reference book, a must-have for all IT Pros in today’s techno-centric world.


[Reviewed by VIKRAM WAMAN KARVE]


http://vikramkarve.sulekha.com

http://www.linkedin.com/in/karve

http://www.ryze.com/go/karve


vikramkarve@sify.com

vikramkarve@hotmail.com