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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Approximate Bayesian Probabilistic-Data-Association-Aided Iterative Detection for MIMO Systems Using Arbitrary -ary Modulation
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Approximate Bayesian Probabilistic-Data-Association-Aided Iterative Detection for MIMO Systems Using Arbitrary -ary Modulation

机译:使用任意进制调制的MIMO系统的近似贝叶斯概率数据关联辅助迭代检测

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摘要

In this paper, the issue of designing an iterative-detection-and-decoding (IDD)-aided receiver, relying on the low-complexity probabilistic data association (PDA) method, is addressed for turbo-coded multiple-input-multiple-output (MIMO) systems using general M -ary modulations. We demonstrate that the classic candidate-search-aided bit-based extrinsic log-likelihood ratio (LLR) calculation method is not applicable to the family of PDA-based detectors. Additionally, we reveal that, in contrast to the interpretation in the existing literature, the output symbol probabilities of existing PDA algorithms are not the true a posteriori probabilities (APPs) but, rather, the normalized symbol likelihoods. Therefore, the classic relationship, where the extrinsic LLRs are given by subtracting the a priori LLRs from the a posteriori LLRs, does not hold for the existing PDA-based detectors. Motivated by these revelations, we conceive a new approximate Bayesian-theorem-based logarithmic-domain PDA (AB-Log-PDA) method and unveil the technique of calculating bit-based extrinsic LLRs for the AB-Log-PDA, which facilitates the employment of the AB-Log-PDA in a simplified IDD receiver structure. Additionally, we demonstrate that we may dispense with inner iterations within the AB-Log-PDA in the context of IDD receivers. Our complexity analysis and numerical results recorded for Nakagami-m fading channels demonstrate that the proposed AB-Log-PDA-based IDD scheme is capable of achieving a performance comparable with that of the optimal maximum a posteriori (MAP)-detector-based IDD receiver, while imposing significantly lower computational complexity in the scenarios considered.
机译:本文针对低速概率概率数据关联(PDA)方法设计迭代检测解码(IDD)辅助接收机的问题,针对Turbo编码的多输入多输出通用 M 进制调制的MIMO(MIMO)系统。我们证明经典的候选搜索辅助基于位的外部对数似然比(LLR)计算方法不适用于基于PDA的探测器系列。此外,我们发现,与现有文献中的解释相反,现有PDA算法的输出符号概率不是真正的后验概率(APP),而是归一化的符号似然。因此,对于现有的基于PDA的检测器而言,经典关系式(通过从后验LLR减去先验LLR来给出外部LLR)不成立。受这些启示的启发,我们构思了一种新的基于贝叶斯定理的近似对数域PDA(AB-Log-PDA)方法,并揭示了计算AB-Log-PDA的基于位的外部LLR的技术,这有利于就业简化的IDD接收器结构中的AB-Log-PDA的结构。此外,我们证明了在IDD接收器的情况下,我们可以省去AB-Log-PDA中的内部迭代。我们对Nakagami- m 衰落信道记录的复杂性分析和数值结果表明,基于AB-Log-PDA的IDD方案能够实现与最佳后验最佳(MAP)相当的性能。基于检测器的IDD接收器,同时在考虑的场景中大大降低了计算复杂度。

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