关于 AWGN 信道虚二次整数上良好嵌套网格编码存在性的简化证明

IF 6.3 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Maryam Sadeghi;Renming Qi;Chen Feng;Hassan Khodaiemehr;Yu-Chih Huang
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引用次数: 0

摘要

本文研究了通过构造 A 从虚二次域的整数环生成的嵌套网格码。我们的主要目标是简化证明嵌套网格码的存在,使其达到加性白高斯噪声(AWGN)信道的容量。我们通过引入离散随机抖动而不是连续随机抖动来改变嵌套网格码的随机集合。这一调整使我们能够将嵌套网格码与嵌套线性码相提并论,从而使证明与嵌套线性码的证明一样简单明了。此外,我们还证明了这种网格集合在特定约束条件下对均方误差(MSE)量化具有有利的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Simpler Proof on the Existence of Good Nested Lattice Codes Over Imaginary Quadratic Integers for AWGN Channel
This paper investigates nested lattice codes generated through Construction A from the ring of integers of an imaginary quadratic field. Our primary goal is to offer a streamlined proof of the existence of nested lattice codes that can attain the capacity of an Additive White Gaussian Noise (AWGN) channel. We alter the random ensemble of nested lattice codes by introducing discrete random dithers instead of continuous random dithers. This adjustment enables us to draw a parallel between nested lattice codes and nested linear codes, facilitating a proof that remains as straightforward as that used for nested linear codes. Furthermore, we demonstrate that this collection of lattices exhibits favorable properties for Mean Square Error (MSE) quantization under specific constraints.
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来源期刊
CiteScore
13.70
自引率
3.80%
发文量
94
审稿时长
10 weeks
期刊介绍: The IEEE Open Journal of the Communications Society (OJ-COMS) is an open access, all-electronic journal that publishes original high-quality manuscripts on advances in the state of the art of telecommunications systems and networks. The papers in IEEE OJ-COMS are included in Scopus. Submissions reporting new theoretical findings (including novel methods, concepts, and studies) and practical contributions (including experiments and development of prototypes) are welcome. Additionally, survey and tutorial articles are considered. The IEEE OJCOMS received its debut impact factor of 7.9 according to the Journal Citation Reports (JCR) 2023. The IEEE Open Journal of the Communications Society covers science, technology, applications and standards for information organization, collection and transfer using electronic, optical and wireless channels and networks. Some specific areas covered include: Systems and network architecture, control and management Protocols, software, and middleware Quality of service, reliability, and security Modulation, detection, coding, and signaling Switching and routing Mobile and portable communications Terminals and other end-user devices Networks for content distribution and distributed computing Communications-based distributed resources control.
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