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Optimum MIMO-OFDM Detection With Pilot-Aided Channel State Information

机译:具有导频信道状态信息的最优MIMO-OFDM检测

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An optimum receiver for multiple-input multiple output orthogonal frequency-division multiplexing (MIMO-OFDM) communication systems accounting for realistic channel estimation is proposed. The receiver is assumed to comply with the emerging IEEE 802.11n standard and its performance is compared against that of a genie receiver (corresponding to ideal channel estimation) and a mismatched receiver (using estimated channel state information in the ideal channel metric). Receiver complexity is addressed in two steps: first, by developing an iterative expression of the receiver metric and second by implementing a spectral approximation, which allows a dramatic reduction of the receiver complexity with unnoticeable degradation. Since the optimum receiver is based on the availability of channel distribution information, it is shown by numerical results that its estimation has a marginal effect on the error performance and does not represent an issue for the receiver implementation.
机译:提出了一种考虑实际信道估计的,用于多输入多输出正交频分复用(MIMO-OFDM)通信系统的最佳接收机。假定接收器符合新兴的IEEE 802.11n标准,并将其性能与genie接收器(对应于理想信道估计)和不匹配的接收器(使用理想信道度量中的估计信道状态信息)进行比较。接收器复杂度可通过两个步骤解决:首先,通过开发接收器度量的迭代表达式,其次通过实施频谱近似,这可以显着降低接收器复杂度,并且不会引起明显的降级。由于最佳接收器基于信道分布信息的可用性,因此数值结果表明,其最佳估计对差错性能有边际影响,并且不代表接收器实现的问题。

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