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Iterative parallel-trellis MAP equalizers with nonuniformly-spaced prefilters for sparse multipath channels

机译:具有稀疏多路径通道的非均匀间隔预滤波器的迭代并行网格MAP均衡器

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A maximum a posteriori (MAP) equalizer is derived in this paper by formulating the forward/backward recursion MAP algorithm (i.e. the BCJR algorithm) on a parallel-trellis representation that was previously proposed for equalizing sparse multipath channels. Several enhancements are suggested to further improve the performance and/or reduce the complexity of the resultant MAP equalizer. Results show that the parallel-trellis MAP equalizers utilizing 2-state trellises are the predominant structures applicable to minimum-phase sparse multipath channels when binary phase shift keying (BPSK) modulation is assumed. However, for nonminimum-phase sparse multipath channels, prefiltering is generally indispensable and is accomplished using the feedforward filter (FFF) of a nonuniformly-spaced decision feedback equalizer (NU-DFE) optimized under the minimum mean square error (MMSE) criterion, which also preserves the sparseness of the resultant minimum-phase impulse response. The simplicity of the 2-state, parallel-trellis structure leads to a low computational load that is comparable to those of uniformly-spaced and nonuniformly-spaced tapped-delay-line (TDL) equalizers, but attains much superior performance over the latter types of equalizers. Moreover, iterations can be added to improve the accuracy of the inter-trellis intersymbol interference (ISI) estimates and the residual ISI estimates due to channel truncation, and are especially effective in mitigating the precursor ISI terms due to non-ideal prefiltering.
机译:本文通过在并行网格表示上制定前向/后向递归MAP算法(即BCJR算法)来推导最大后验(MAP)均衡器,该算法先前曾提出用于均衡稀疏多径信道。建议进行一些增强,以进一步改善性能和/或降低所得MAP均衡器的复杂性。结果表明,当假设采用二进制相移键控(BPSK)调制时,利用2态网格的并行网格MAP均衡器是适用于最小相位稀疏多径信道的主要结构。但是,对于非最小相位稀疏多径通道,预滤波通常是必不可少的,它是使用在最小均方误差(MMSE)准则下优化的非均匀间隔判决反馈均衡器(NU-DFE)的前馈滤波器(FFF)来完成的,还保留了产生的最小相位脉冲响应的稀疏性。 2态并行网格结构的简单性导致较低的计算负载,可与均匀间隔和非均匀间隔的抽头延迟线(TDL)均衡器相媲美,但与后者相比,性能要好得多均衡器。此外,可以添加迭代以提高网格间符号间干扰(ISI)估计和由于信道截断而引起的残留ISI估计的准确性,并且在缓解由于非理想预滤波而导致的前驱ISI项方面特别有效。

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