基于星座整形的非线性高斯噪声下速率最优通信

Hiroki Iimori, G. Abreu
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引用次数: 0

摘要

在传统的无线通信系统模型中,加性高斯白噪声被假定为线性的。然而,在越来越重要的一类新兴通信系统中-例如设备对设备(D2D),全双工(FD)和低成本物联网(IoT)通信系统-由设备接近(D2D),剩余自干扰(FD)和不完美功率放大(IoT)等因素引起的非线性不能再被忽视。提高这类系统性能的一种可能机制是优化所利用的发射星座,这在文献中被称为星座整形。考虑到这一点,我们提出了一种概率星座塑造方案,以最大限度地提高受非线性AWGN影响的通信系统的可实现速率。为此,我们导出了任意调制的非线性加性高斯白噪声(AWGN)系统的互信息(MI)的解析表达式,并通过数值优化相应的信道输入分布使互信息(MI)最大化。结果是一个半解析方案(与解析目标优化数值),它被证明优于系统采用传统的(均匀分布)星座。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rate-optimal communication under nonlinear Gaussian noise via constellation shaping
In the traditional model of wireless communications systems, additive white Gaussian noise (AWGN) is assumed to be linear. However, in an increasingly important class of emerging communication systems — e.g. device-to-device (D2D), full-duplex (FD) and low-cost Internet-of-things (IoT) communication systems — the nonlinearity caused by factors such as device proximity (D2D), residual self-interference (FD) and imperfect power amplification (IoT) can no longer be neglected. A possible mechanism to improve the performance of such systems is to optimize the transmit constellation utilized, which is known in the literature as constellation shaping. With that in mind, we propose a probabilistic constellation shaping scheme to maximize the achievable rates of communication systems affected by nonlinear AWGN. To this end, we derive the analytical expression of the mutual information (MI) of such nonlinear additive white Gaussian noise (AWGN) systems with arbitrary modulation, and maximize the latter by numerically optimizing the corresponding channel input distribution. The result is a semi-analytical scheme (with analytical objective optimized numerically) which are shown to outperform systems employing conventional (uniformly distributed) constellations.
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