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BLIND CHANNEL ESTIMATION IN DELAY DIVERSITY FOR FREQUENCY SELECTIVE CHANNELS1
作者姓名:ZhaoZheng  JiaYing  YinQinye
作者单位:[1]IntelChinaResearchCenter,IntelChinaLtdBeijingBranch,Beijing100020 [2]SchoolofElectronicsandInformationEng.,Xi‘anJiaotongUniv.,Xi’an710049
基金项目:the National Natural Science Foundation of China (No.69872029)
摘    要:Delay diversity is an effective transmit diversity technique to combat adverse effects of fading. Thus far, previous work in delay diversity assumed that perfect estimates of current channel fading conditions are available at the receiver and training symbols are required to estimate the channel from the transmitter to the receiver. However, increasing the number of the antennas increases the required training interval and reduces the available time with in whichdata may be transmitted. Learning the channel coefficients becomes increasingly difficult for the frequency selective channels. In this paper, with the subspace method and the delay character of delay diversity, a channel estimation method is proposed, which does not use training symbols. It addresses the transmit diversity for a frequency selective channel from a single carrier perspective in the form of a simple equivalent flat fading model. Monte Carlo simulations give the performance of channel estimation and the performance comparison of our channel-estimation-based detector with decision feedback equalization, which uses the perfect channel information.

关 键 词:延迟分集  盲信道估计  子空间法  频率选择性信道  阵列信号处理
收稿时间:9 May 2002

Blind channel estimation in delay diversity for frequency selective channels
ZhaoZheng JiaYing YinQinye.BLIND CHANNEL ESTIMATION IN DELAY DIVERSITY FOR FREQUENCY SELECTIVE CHANNELS1[J].Journal of Electronics,2003,20(5):326-336.
Authors:Zhao Zheng  Jia Ying  Yin Qinye
Affiliation:1. Intel China Research Center, Intel China Ltd Beijing Branch, Beijing 100020
2. School of Electronics and Information Eng., Xi'an Jiaotong Univ., Xi'an 710049
Abstract:Delay diversity is an effective transmit diversity technique to combat adverse effects of fading. Thus far, previous work in delay diversity assumed that perfect estimates of current channel fading conditions are available at the receiver and training symbols are required to estimate the channel from the transmitter to the receiver. However, increasing the number of the antennas increases the required training interval and reduces the available time within which data may be transmitted. Learning the channel coefficients becomes increasingly difficult for the frequency selective channels. In this paper, with the subspace method and the delay character of delay diversity, a channel estimation method is proposed, which does not use training symbols. It addresses the transmit diversity for a frequency selective channel from a single carrier perspective in the form of a simple equivalent flat fading model. Monte Carlo simulations give the performance of channel estimation and the performance comparison of our channel-estimation-based detector with decision feedback equalization, which uses the perfect channel information.
Keywords:Delay diversity  Subspace method  Blind channel estimation  Frequency selective channels  Array signal processing
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