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Approaching waterfilling capacity of parallel channels by higher order modulation and probabilistic amplitude shaping

机译:通过高阶调制和概率幅度整形来接近并行通道的注水能力

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Parallel, additive white Gaussian noise (AWGN) channels with an average sum power constraint are considered. It is shown how the waterfilling Shannon capacity can be approached by higher order modulation and probabilistic amplitude shaping (PAS). This is achieved by a new distribution matching approach called product distribution matching (PDM). The asymptotic performance of PDM is analyzed by achievable rates. A heuristic for optimizing the input distribution is proposed, which enables signaling at a target spectral efficiency with a fixed-rate forward error correction (FEC) code, while the optimal power allocation is ensured by mercury-waterfilling and a simple bit-loading strategy. Finite blocklength simulation results with 5G low-density parity-check codes show power savings of around 1 dB compared to a conventional scheme with uniform input distributions.
机译:考虑具有平均和功率约束的并行,加性高斯白噪声(AWGN)通道。它显示了如何通过更高阶的调制和概率振幅整形(PAS)来达到充水香农的能力。这是通过一种称为产品分销匹配(PDM)的新分销匹配方法来实现的。通过可达到的速率来分析PDM的渐近性能。提出了一种用于优化输入分布的试探法,该试探法可使用固定速率前向纠错(FEC)码以目标频谱效率进行信号发送,同时通过水银注水和简单的位加载策略确保最佳的功率分配。与具有均匀输入分布的传统方案相比,使用5G低密度奇偶校验码进行的有限块长仿真结果显示,功率节省约1 dB。

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