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Multiple-symbol noncoherent decoding of uncoded and convolutionally coded continuous phase modulation

机译:未编码和卷积编码的连续相位调制的多符号非相干解码

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摘要

Recently, a method for combined noncoherent detection and decoding of trellis-codes (noncoherent coded modulation) has been proposed, which can practically approach the performance of coherent detection. Here, we successfully apply the technique to the detection of Continuous Phase Modulation (CPM), coded or uncoded. Both full and partial response CPM schemes with arbitrary modulation index are considered. This method is based on multiple-symbol observations, such that the observations are time-overlapped. The results show that most CPM schemes require short observations to achieve almost the same power efficiency as optimally detected coherent CPM. Compared to the previously proposed methods for noncoherent detection that can approach the coherent performance, the required observation length is much shorter and also the decoding complexity is much lower. A new trellis diagram for noncoherent CPM is suggested for simplifying the analysis and the decoder structure. The error performance for uncoded CPM is evaluated by using the union bound technique applied on the symbol-difference trellis diagram. For the coded case a pair-state trellis is required. Very efficient sub-optimal decoding algorithms with very small degradation may implement the noncoherent decoder. The performance achieved with these algorithms is demonstrated by simulations.
机译:近来,已经提出了一种用于网格码的组合非相干检测和解码的方法(非相干编码调制),该方法可以实际地实现相干检测的性能。在这里,我们成功地将该技术应用于编码或未编码的连续相位调制(CPM)的检测。考虑了具有任意调制指数的全部和部分响应CPM方案。此方法基于多符号观测值,因此观测值是时间重叠的。结果表明,大多数CPM方案需要简短的观察才能获得与最佳检测到的相干CPM几乎相同的功率效率。与先前提出的可以实现相干性能的非相干检测方法相比,所需的观察长度要短得多,解码复杂度也要低得多。建议使用一种新的非相干CPM网格图,以简化分析和解码器结构。未编码CPM的错误性能通过使用应用于符号差异格状图的并集绑定技术进行评估。对于编码情况,需要成对的网格。具有非常小的降级的非常有效的次优解码算法可以实现非相干解码器。通过仿真证明了这些算法所实现的性能。

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