高斯碰撞信道的调制和编码

G. Caire, Emilio Leonardi, E. Viterbo
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引用次数: 17

摘要

研究了高斯多址碰撞信道(G-MACC)上相干慢跳频通信的信号空间编码。我们定义了具有最大抗碰撞性的信号集和交织器。在不假设完全交错的情况下,对这些信号集与外部分组编码和硬(纯错误)解码相连接所获得的包错误概率和频谱效率进行了评估。给出了封闭表达式,计算机模拟结果与分析结果完全吻合。讨论了良好交织器的结构。更一般地说,我们给出了在用户编码和解码策略的各种假设下,手头G-MACC的信息中断概率和可实现(遍历)率的表达式。中断概率产生有限交错深度的限制包错误概率(延迟限制系统)。可实现的速率产生了大交错深度(无延迟约束系统)的极限系统频谱效率。并与其它经典多址方案进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modulation and coding for the Gaussian collision channel
We study signal-space coding for coherent slow frequency-hopped communications over a Gaussian multiple-access collision channel (G-MACC). We define signal sets and interleavers having maximum collision resistance. The packet-error probability and the spectral efficiency obtained by these signal sets concatenated with outer block coding and hard (error-only) decoding is evaluated without assuming perfect interleaving. Closed-form expressions are provided and computer simulations show perfect agreement with analysis. The structure of good interleavers is also discussed. More generally, we present expressions for the information outage probability and for the achievable (ergodic) rate of the G-MACC at hand, under various assumptions on user coding and decoding strategies. The outage probability yields the limiting packet-error probability with finite interleaving depth (delay-limited systems). The achievable rate yields the limiting system spectral efficiency for large interleaving depth (delay-unconstrained systems). Comparisons with other classical multiple-access schemes are provided.
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