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Reseach Article

A Pursuit of Dynamic Address Alternator for Wimax Deinter leaver

Published on September 2015 by Yogeesh.T.R., Shreekanth.T
National Conference “Electronics, Signals, Communication and Optimization"
Foundation of Computer Science USA
NCESCO2015 - Number 4
September 2015
Authors: Yogeesh.T.R., Shreekanth.T
93cc9694-4065-4985-9489-e44f58a7998e

Yogeesh.T.R., Shreekanth.T . A Pursuit of Dynamic Address Alternator for Wimax Deinter leaver. National Conference “Electronics, Signals, Communication and Optimization". NCESCO2015, 4 (September 2015), 20-25.

@article{
author = { Yogeesh.T.R., Shreekanth.T },
title = { A Pursuit of Dynamic Address Alternator for Wimax Deinter leaver },
journal = { National Conference “Electronics, Signals, Communication and Optimization" },
issue_date = { September 2015 },
volume = { NCESCO2015 },
number = { 4 },
month = { September },
year = { 2015 },
issn = 0975-8887,
pages = { 20-25 },
numpages = 6,
url = { /proceedings/ncesco2015/number4/22317-5346/ },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Proceeding Article
%1 National Conference “Electronics, Signals, Communication and Optimization"
%A Yogeesh.T.R.
%A Shreekanth.T
%T A Pursuit of Dynamic Address Alternator for Wimax Deinter leaver
%J National Conference “Electronics, Signals, Communication and Optimization"
%@ 0975-8887
%V NCESCO2015
%N 4
%P 20-25
%D 2015
%I International Journal of Computer Applications
Abstract

In the modern communication system, the variety of technology leads to the developmental concepts and for that wireless technology also plays a prominent role in the field of modern communication. WiMAX has got its own limitation. The key difficulty is Deinterleaver design and it needs ample hardware if all the modern schemes and code rates have to be designed on field programmable gate array (FPGA). Floor function is one such design with a great degree impotence of hardware. This paper is an attempt to have a variable newer technology and to regulate the impotence of the hardware. Mathematical model has been done in order to remove hardware impotence and by introducing embedded multiplier in FPGA interconnection delay has been reduced . The internal multiplier of FPGA along with 16QAM and 64 QAM modulations have made this connectivity novel and efficient.

References
  1. B. Upadhyaya and S. Sanyal, "Efficient implementation of address generator for WiMAX Deinterleaver. " circuits and systems II: Express Briefs, IEEE transactions on Vol 60. No. 8 pp. 492-496, Aug 2013.
  2. B. Li, Y. Qin. C. P. Low and C. L. Gwee, "A survey on mobile WiMAX [wireless broadband access," communications magazines IEEE vol. 45, no. 12. pp. 70-75 Dec 2007.
  3. "IEEE standards for local and metropolitan area networks part 16: Air interface for fixed board wireless access systems amendment 2: Medium access control modifications and additional physical layer specifications for 2-11 GHz," IEEE std-802. 16a-2004 (Amendment to Ieee standard 802. 16-2001), pp. 0—292, 2005.
  4. W. Konhauser, "Broadband wireless access solutions-Progressive challenges and potential value of next generation. "Wireless Pers. Commun. , vol. 37 no. 3/4, pp. 243--259, May 2006, published By Foundation of Computer Science.
  5. Local and metropolitan networks--part16: Air interface for fixed broadband wireless access systems," IEEE standard 802. 16- 2004, 2004.
  6. Y. -N. Chang and Y. -C. Ding, ``A low-cost dual-mode deinterleaver design,'' in Consumer Electronics, 2007. ICCE 2007. Digest of Technical Papers. InternationalConference on, Jan 2007, pp. 1--2.
  7. B. Upadhyaya and S. Sanyal, ``an improved lut based recon-figurable multimodeInterleaver for wlan application,'' Int. J. Recent Trends Eng. Tech. , ACEEE, vol. 6,no. 2, pp. 183--188, 2011.
  8. A. Khater, M. Khairy, and S. E. -D. Habib, ``Efficient fpga implementation for the ieee 802. 16e interleaver,'' in Microelectronics (ICM), 2009 International Conference on, Dec 2009, pp. 181--184.
  9. B. Upadhyaya, S. I. S. Misra and S. K. Sanyal, ``Novel design of address generator for wimax multimode interleaver using fpga based finite state machine,'' in Computer and Information Technology (ICCIT), Dhaka, Bangladesh 2010 13th International Conference on, Dec 2010, pp. 153—1
  10. R. Asgh and D. Liu, ``2d realization of wimax channel interleaver for efficient hardware implementation,'' in World Acad. Sci. Eng. Technol, vol. 51, 2009, pp. 25 -- 29.
  11. J. G. Andrews, A. Ghosh, and R. Muhamed, Fundamentals of WiMAX: Understanding Broadband Wireless Networking (Prentice Hall Communications Engineering and Emerging Technologies Series). Upper Saddle River, NJ, USA: Prentice Hall PTR, 2007.
  12. M. Khan and S. Ghauri "The WiMAX 802. 16e physical layer model," in wireless, mobile and multimedia networks, 2008. IET international conference on Jan 2008. pp. 117-120.
  13. I. Kuon and J. Rose "Measuring the gap between fpga and asics," in proc. Int. symp. Field Programmable Gate Arrays, Monterey, CA, USA, 2006, pp. 21—30.
  14. Xilinx Spartan 3 FPGA family: Complete data sheet, vl. 2 ed. , Xilinx inc. , Jun 27 2013.
Index Terms

Computer Science
Information Sciences

Keywords

Wimax (worldwide Interoperatability For Microwave Access) Deinterleaving.