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MMSE and adaptive prediction of time-varying channels for OFDM systems

机译:MMSE和OFDM系统时变信道的自适应预测。

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We propose decision-directed channel predictors for orthogonal frequency-division multiplexing (OFDM) communications over time-varying channels. Channel prediction is capable of yielding up-to-date channel state information even without regular transmission of pilot symbols. It is thus potentially useful for delay-free equalization, antenna combining, space-time decoding, adaptive modulation, adaptive power control, and adaptive transmit antenna diversity. We derive a minimum mean-square error channel predictor and its efficient discrete Fourier transform implementation. Furthermore, we develop adaptive predictors that do not require any statistical prior knowledge and are able to track nonstationary channel and noise statistics. Simulation results involving an OFDM receiver in which channel prediction is used for delay-free equalization demonstrate the excellent performance of the proposed techniques even for fast time-varying channels.
机译:我们提出了用于时变信道上的正交频分复用(OFDM)通信的决策导向信道预测器。即使不定期发送导频符号,信道预测也能够产生最新的信道状态信息。因此,它对于无延迟均衡,天线组合,空时解码,自适应调制,自适应功率控制和自适应发射天线分集很有用。我们推导了最小均方误差信道预测器及其有效的离散傅里叶变换实现。此外,我们开发了不需要任何统计先验知识并且能够跟踪非平稳信道和噪声统计的自适应预测器。包含将信道预测用于无延迟均衡的OFDM接收机的仿真结果证明了所提出技术的出色性能,即使对于快速时变信道也是如此。

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