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Performance Evaluation of WiMAX/IEEE 802.16 OFDM Physical Layer - page 88 / 107

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[25] Rohling, M.; May, T.; Bruninghaus, K.; Grunheid, R.,Broad­band OFDM radio transmission for multimedia applications”,proceedings of the IEEE, Vol.87, Iss.10, Oct 1999, Pages:1778­1789

[26] John A. C. Bingham, Multicarrier Modulation for Data Transmission: An Idea Whose Time Has Come”, IEEE Communications Magazine, pp. 5 ­ 14, May 1990.

[27] H. Sari, G. Karam, and I. JeanclauTra,nsmission techniques for digital terrestrial TV broadcastingIEEE Communications Magazine, pp.100–109, Feb. 1995.

[28]

C.

Eklund,IEEE

Standard

802.16:

A Technical

Overview

of

the

WirelessMAN™ Air Interface pp. 98­107, June 2002

for Broadband

Wireless Acce, s” IEEE

Commun. Mag.,

[29] IEEE Std 802.11a­1999(R2003), Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) specifications: High­speed Physical Layer in the 5 GHz Band”, June 2003

[30] IEEE Std 802.11g, Part 11: Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) specifications Amendment 4: Further Higher Data Rate Extension in the 2.4 GHz Band”, June 2003

[31] ETSI TS 101 475, ”Broadband Radio Access Networks (BRAN); HIPERLAN Type

2; Physical (PHY) layer”, April 2000

[32] J.M. CioffA.,

multicarrier

p. rimer Stanford

University,

http://www.stanford.edu/group/cioffi/documents/multicarrier.pdf”, last accessed on

15.05.2007

[33]

What

does

WiMAX

Forum

Certified™

http://www.wimaxforum.org/technology/faq/”, last accessed on 02.06.2007

[ 3 4 ] D a n i e l S . B a u m , S i m u l a t i n g t h e S U I C h a n n e l M o d e l s , I E E 8 0 2 . 1 6 3 c ­ 0 1 _ 5 3

77

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