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MLSD Bounds and Receiver Designs for Clipped OFDM Channels

机译:限幅OFDM通道的MLSD范围和接收器设计

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摘要

We derive tight closed-form approximations of symbol and bit error probability on maximum-likelihood sequence detection (MLSD) of Nyquist-rate and oversampled OFDM systems over the AWGN, flat and frequency-selective quasi-static Rayleigh fading channels. Contrary to common knowledge, we show that on a frequency-selective channel, clipping at the transmitter leads to achievable frequency-diversity and performance gain over unclipped systems with MLSD. We derive closed-form expressions of the diversity and the performance gain over the no-clipping case, as well as the optimal clipping ratio for a given system. We show that such diversity and performance gain are a result of both clipping and channel frequency-selectivity, and they do not occur on the AWGN and flat fading channels.We also present a new near-optimum detection algorithm that achieves the MLSD performance bound with a few iterations for the clipped OFDM systems with both high and low clipping levels on the AWGN and flat Rayleigh fading channels. For the frequency selective channel, we present a receiver design that utilizes the advantage of clipping to some extent. We consider rectangular QAM signaling in this paper.
机译:我们在AWGN,平坦和频率选择性准静态瑞利衰落信道上的奈奎斯特速率和过采样OFDM系统的最大似然序列检测(MLSD)上,得出符号和误码率的紧密封闭式近似值。与常识相反,我们表明,在频率选择通道上,与不带MLSD的非限幅系统相比,在发射机处的削波可实现可实现的频率分集和性能增益。我们推导了无削波情况下分集和性能增益的闭式表达式,以及给定系统的最优削波比。我们证明了这种分集和性能增益是削波和信道频率选择性的结果,并且它们不会出现在AWGN和平坦衰落信道上。我们还提出了一种新的近最佳检测算法,该算法实现了MLSD性能的约束。在AWGN和平坦瑞利衰落信道上具有高和低限幅电平的限幅OFDM系统的一些迭代。对于频率选择性信道,我们提出了一种在一定程度上利用削波优势的接收机设计。我们在本文中考虑矩形QAM信令。

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