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A Residue Number System Based Parallel Communication Scheme using Orthogonal Signaling: Part I-System Outline

机译:基于残差数系统的正交信令并行通信​​方案:第一部分 - 系统概述

摘要

A novel signaling scheme is presented, where a set of orthogonal signals is transmitted in parallel. The signals are selected according to the so-called residue number system (RNS). Hence the system is essentially a multiple code parallel communication scheme using high modulation alphabets. It is demonstrated that the system’s performance can be substantially improved by exploiting a number of advantageous properties of the RNS arithmetic. In Part I of this paper, we focus our attention on the system’s description and on the associated background of the RNS arithmetic, as well as on the performance evaluation of the residue number system arithmetic, using both nonredundant and redundant moduli based orthogonal signaling schemes, over an additive white Gaussian noise (AWGN) channel. Redundant RNS codes are introduced in order to protect the transmitted information. The detection techniques used in this novel system are different from conventional detectors. Specifically, a novel decision algorithm, referred to as a ratio statistic test, is designed, which implies dropping some of the lowest reliability demodulation outputs before the residue digits are transformed back to binary symbols. This improves the system’s performance. This dropping technique is different from the conventional “errors and erasures” decoding, where the erased symbols (or bits) should be computed and filled during decoding. We argue that the demodulated/decoded information can be obtained by decoding the retained or undiscarded symbols upon exploiting the properties of the RNS arithmetic. Our numerical results show that the proposed scheme constitutes a high-efficiency parallel transmission method for high-bit-rate communication, achieving a coding gain of 2 dB at a bit error rate of $10^{-6}$ over AWGN channels. Index Terms—Code-division multiple access (CDMA), error control, orthogonal signalling, parallel signalling, ratio statistic test, redundant residue number system (RRNS), residue number system (RNS).
机译:提出了一种新颖的信令方案,其中一组正交信号被并行发送。根据所谓的残数系统(RNS)选择信号。因此,该系统本质上是使用高调制字母的多码并行通信方案。事实证明,通过利用RNS算术的许多有利属性,可以大大提高系统的性能。在本文的第一部分中,我们将注意力集中在系统描述和RNS算术的相关背景上,以及使用基于非冗余和冗余模量的正交信令方案对残数系统算术的性能评估,在加性高斯白噪声(AWGN)通道上。引入了冗余RNS码,以保护传输的信息。在该新颖系统中使用的检测技术不同于常规检测器。具体来说,设计了一种新颖的决策算法,称为比率统计测试,该算法意味着在将残差位转换回二进制符号之前,丢弃一些最低可靠性的解调输出。这样可以提高系统的性能。这种丢弃技术与常规的“错误和擦除”解码不同,传统的“错误和擦除”解码应在解码期间计算并填充已擦除的符号(或位)。我们认为,通过利用RNS算术的属性解码保留或未丢弃的符号,可以获得解调/解码的信息。我们的数值结果表明,所提出的方案构成了一种用于高比特率通信的高效并行传输方法,在AWGN信道上以$ 10 ^ {-6} $的误码率实现了2 dB的编码增益。索引词-码分多址(CDMA),差错控制,正交信令,并行信令,比率统计测试,冗余残数系统(RRNS),残数系统(RNS)。

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  • 作者

    Yang L-L.; Hanzo L.;

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  • 年度 2002
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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