Channel Coding at Low Capacity

Mohammad Fereydounian;Hamed Hassani;Mohammad Vahid Jamali;Hessam Mahdavifar
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引用次数: 12

Abstract

Low-capacity scenarios have become increasingly important in the technology of the Internet of Things (IoT) and the next generation of wireless networks. Such scenarios require efficient and reliable transmission over channels with an extremely small capacity. Within these constraints, the state-of-the-art coding techniques may not be directly applicable. Moreover, the prior work on the finite-length analysis of optimal channel coding provides inaccurate predictions of the limits in the low-capacity regime. In this paper, we study channel coding at low capacity from two perspectives: fundamental limits at finite length and code constructions. We first specify what a low-capacity regime means. We then characterize finite-length fundamental limits of channel coding in the low-capacity regime for various types of channels, including binary erasure channels (BECs), binary symmetric channels (BSCs), and additive white Gaussian noise (AWGN) channels. From the code construction perspective, we characterize the optimal number of repetitions for transmission over binary memoryless symmetric (BMS) channels, in terms of the code blocklength and the underlying channel capacity, such that the capacity loss due to the repetition is negligible. Furthermore, it is shown that capacity-achieving polar codes naturally adopt the aforementioned optimal number of repetitions.
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低容量信道编码
在物联网(IoT)和下一代无线网络技术中,低容量场景变得越来越重要。这种场景要求在容量极小的信道上进行高效可靠的传输。在这些限制条件下,最先进的编码技术可能无法直接应用。此外,先前关于最优信道编码的有限长度分析的工作提供了对低容量区域限制的不准确预测。本文从有限长度的基本限制和编码结构两个方面研究了低容量信道编码。我们首先指定低容量制度的含义。然后,我们描述了低容量条件下各种类型信道编码的有限长度基本限制,包括二进制擦除信道(BECs),二进制对称信道(BSCs)和加性高斯白噪声(AWGN)信道。从代码结构的角度来看,我们描述了在二进制无内存对称(BMS)信道上传输的最佳重复次数,根据代码块长度和底层信道容量,使得由于重复造成的容量损失可以忽略不计。此外,研究表明,容量实现极化码自然采用上述最优重复数。
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CiteScore
8.20
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