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Joint Transceiver Design for OFDM Systems

Joint Transceiver Design for OFDM Systems
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摘要 Orthogonal Frequency Division Multiplexing(OFDM) is an effective technique to deal with a frequency selective channel since it can convert the channel into some flat fading subchannels.However,very different output SNR values of the subchannels will lead to poor bit error performance when a linear equalizer and Equal Bit Allocation(EBA) are adopted in OFDM systems.So,we proposed three novel nonlinear Joint Transceiver(JT) schemes based on Zero-Forcing(ZF) criterion and Minimum Mean Square Error(MMSE) criterion respectively,which can transform all subchannels of an OFDM system into subchannels with identical channel gain.Thus,EBA is equivalent to the Optimum Bit Allocation(OBA) for these subchannels.Numerical analysis helps us to obtain the theoretical approximate BER values of the JT scheme.Simulation results verify the numerical analysis and confirm that the performance of our proposed JT scheme greatly outperforms the traditional linear equalizer with EBA at moderate and high SNR values. Orthogonal Frequency Division Multiple- xing (OFDM) is an effective technique to deal with a frequency selective channel since it can convert the channel into some flat fading subchannels. However, very different output SNR values of the sub- channels will lead to poor bit error performance when a linear equalizer and Equal Bit Allocation (EBA) are adopted in OFDM systems. So, we proposed three novel nonlinear Joint Transceiver (JT) schemes based on Zero-Forcing (ZF) criterion and Minimum Mean Square Error (MMSE) criterion respectively, which can transform all subchannels of an OFDM system into subchannels with identical channel gain. Thus, EBA is equivalent to the Optimum Bit Allocation (OBA) for these subchannels. Numerical analysis helps us to obtain the theoretical approximate BER values of the JT scheme. Simulation results verify the numerical analysis and confirm that the performance of our proposed JT scheme greatly outperforms the traditional linear equalizer with EBA at moderate and high SNR values.
出处 《China Communications》 SCIE CSCD 2012年第2期43-51,共9页 中国通信(英文版)
基金 the National Natural Science Foundation of China for Distinguished Young Scholars,the National Key Basic Research Program of China (973 program),the National Natural Science Foundation of China,the National Science and Technology Major Project,the Special Research Fund of State Key Laboratory,the 111 Project
关键词 OFDM joint transceiver design VBLAST dirty paper coding OFDM系统 收发器 线性均衡器 设计 最小均方误差 误码性能 数值分析 频率选择性
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