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Design of nonuniformly spaced tapped-delay-line equalizers for sparse multipath channels

机译:稀疏多径信道的非均匀间隔抽头延迟线均衡器设计

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摘要

Analytical expressions that explicitly indicate the tap values and tap positions of infinite-length, T-spaced tapped-delay-line (TDL) equalizers for sparse multipath channels are derived. Simple design rules for allocating taps to finite-length, minimum mean-square error, nonuniformly spaced TDL equalizers (NU-Es) are formulated based on the derived results. The design-rule-based methodology demonstrates a better tradeoff between accuracy and efficiency than existing tap-allocation schemes. The resultant NU-Es also achieve a lower overall computational complexity than conventional, uniformly spaced TDL equalizers (U-Es) of the same span for both directly adaptive and channel-estimate-based implementations. Moreover, a square-root raised cosine (SRRC) receive filter matched to a SRRC transmit filter is better than a matched filter when used to precede a NU-E.
机译:导出了明确表示稀疏多径通道的无限长,T间隔抽头延迟线(TDL)均衡器的抽头值和抽头位置的解析表达式。根据得出的结果,制定了用于将抽头分配给有限长度,最小均方误差,非均匀间隔TDL均衡器(NU-E)的简单设计规则。与现有抽头分配方案相比,基于设计规则的方法证明了在准确性和效率之间更好的权衡。对于直接自适应和基于信道估计的实现,所得的NU-E的总计算复杂度也比相同跨度的传统的,均匀间隔的TDL均衡器(U-E)低。而且,与SRRC发送滤波器匹配的平方根升余弦(SRRC)接收滤波器在用于NU-E之前比匹配滤波器更好。

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