会议专题

Channel Estimation and Equalization for OFDM Wireless System with Medium Doppler Spread

A new channel estimator ML+SOPI is proposed for medium time-variant wireless channel, where ML denotes maximum likelihood used to estimate the CIR of pilot sequence (PS) whereas second-order polynomial (SOP) interpolation (SOPI) is to compute channel matrix of each symbol by these estimated CIRs. Then, three schemes are formed as follows: scheme A , an union of ML+SOPI and one-tap equalizer (OTE), where interpolation is based on symbol level and CIR viewed as constant; scheme B, a combination of ML+SOPI and zeroforcing equalizer (ZFE), where interpolation is conducted on sampling-point level and CIR approximated as linear; scheme C, an union of ML+SOPI and Jeon equalizer 11 with the same assumptions as scheme B. The complexity of ZFE in scheme B is reduced by Neumann expansion and IFFT/FFT, which has far lower complexity than Jeon equalizer for long cyclic prefix(>10). The simulated results in mobile channel are as follows: when normalized Doppler spread (NDS) approaches 0.1, schemes B and C realize approximately the same BER performance, and perform far better than scheme A.Thus, scheme B is preferred for practical applications.

time-variant normalized Doppler spread maximum likelihood second-order polynomial interpolation

Shu Feng Bi Yi-feng Wang Jian-xin Cheng Shi-xin

Department of Communication Engineering, Nanjing University of Science and Technology, China;Nation Department of Communication Engineering, Nanjing University of Science and Technology, China Nation Mobile Communications Research Laboratory, Southeast University, Nanjing, China

国际会议

第三届IEEE无线通讯、网络技术暨移动计算国际会议

上海

英文

2007-09-21(万方平台首次上网日期,不代表论文的发表时间)