Robust Spatio-Temporal Partial-Response Signaling over a Frequency-Selective Fading MIMO Channel with Imperfect CSI

J. Bailleul, L. Jacobs, M. Guenach, M. Moeneclaey
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引用次数: 1

Abstract

Partial-response signaling is known to facilitate the equalizer design because a controlled amount of residual interference is permitted. The design of the target impulse response of the partial-response precoder often assumes perfect channel state information, which is unfortunately not available at the transmitter in most practical applications. Consequently, this contribution focuses instead on the robust and joint design of a spatio-temporal target impulse response and the equalization coefficients for a frequency-selective fading multiple-input multiple-output communication channel based on current and/or previous noisy channel estimates. More precisely, the error in the channel estimates is statistically modeled, and robustness is achieved by minimizing the mean-squared estimation error averaged over the joint distribution of the actual channel and the available channel estimates. Numerical results of the bit error rate confirm that the proposed robust partial-response signaling not only provides a significant performance gain compared to traditional full-response signaling, but also outperforms the naive approach, which ignores channel estimation errors.
具有不完全CSI的频率选择性衰落MIMO信道上的鲁棒时空部分响应信令
部分响应信号被认为有助于均衡器设计,因为残余干扰的控制量是允许的。部分响应预编码器的目标脉冲响应设计通常假定信道状态信息是完美的,但在大多数实际应用中,这种状态信息在发射机端是无法获得的。因此,这一贡献侧重于基于当前和/或先前噪声信道估计的频率选择性衰落多输入多输出通信信道的时空目标脉冲响应和均衡系数的鲁棒和联合设计。更准确地说,信道估计中的误差是统计建模的,并且鲁棒性是通过最小化实际信道和可用信道估计联合分布的平均估计误差来实现的。误码率的数值结果证实,与传统的全响应信令相比,所提出的鲁棒部分响应信令不仅提供了显着的性能增益,而且优于忽略信道估计误差的幼稚方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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