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Turbo equalization of serially concatenated turbo codes using a predictive DFE-based receiver - Springer

机译:使用基于DFE的预测接收机对串行级联Turbo码进行Turbo均衡-Springer

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This paper investigates the performance of various “turbo” receivers for serially concatenated turbo codes transmitted through intersymbol interference (ISI) channels. Both the inner and outer codes are assumed to be recursive systematic convolutional (RSC) codes. The optimum turbo receiver consists of an (inner) channel maximum a posteriori (MAP) decoder and a MAP decoder for the outer code. The channel MAP decoder operates on a “supertrellis” which incorporates the channel trellis and the trellis for the inner error-correcting code. This is referred to as the MAP receiver employing a SuperTrellis (STMAP). Since the complexity of the supertrellis in the STMAP receiver increases exponentially with the channel length, we propose a simpler but suboptimal receiver that employs the predictive decision feedback equalizer (PDFE). The key idea in this paper is to have the feedforward part of the PDFE outside the iterative loop and incorporate only the feedback part inside the loop. We refer to this receiver as the PDFE-STMAP. The complexity of the supertrellis in the PDFE-STMAP receiver depends on the inner code and the length of the feedback part. Investigations with Proakis B, Proakis C (both channels have spectral nulls with all zeros on the unit circle and hence cannot be converted to a minimum phase channel) and a minimum phase channel reveal that at most two feedback taps are sufficient to get the best performance. A reduced-state STMAP (RS-STMAP) receiver is also derived which employs a smaller supertrellis at the cost of performance.
机译:本文研究了通过符号间干扰(ISI)信道传输的串行连接的Turbo码的各种“ turbo”接收器的性能。假定内部和外部代码都是递归系统卷积(RSC)代码。最佳turbo接收机包括一个(内部)最大信道后验(MAP)解码器和一个用于外码的MAP解码器。通道MAP解码器在“超级网格”上运行,该网格合并了通道网格和内部纠错码的网格。这被称为采用SuperTrellis(STMAP)的MAP接收器。由于STMAP接收器中超网格的复杂度随信道长度呈指数增长,因此我们提出了一种采用预测决策反馈均衡器(PDFE)的更简单但次优的接收器。本文的主要思想是使PDFE的前馈部分位于迭代循环之外,而在循环内部仅合并反馈部分。我们将此接收器称为PDFE-STMAP。 PDFE-STMAP接收器中超网格的复杂性取决于内部代码和反馈部分的长度。对Proakis B,Proakis C的研究(两个通道的频谱零点都在单位圆上全为零,因此无法转换为最小相位通道)和最小相位通道表明,最多两个反馈抽头足以获得最佳性能。还导出了简化状态的STMAP(RS-STMAP)接收器,该接收器以性能为代价采用了较小的网格。

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