使用压缩算法降低 NOMA 波形的峰值与平均功率比

Q3 Engineering
Arun Kumar, Nishant Gaur
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引用次数: 0

摘要

摘要未来的无线通信系统可以通过使用基于非正交多址接入(NOMA)的方法来容纳巨大的连接并提高频谱效率。然而,高峰值平均功率比(PAPR)水平会对 NOMA 产生负面影响,导致系统性能下降和功率放大器更加复杂。本研究建议利用 512、256 和 64 个子载波的压缩方法来降低 NOMA 中的 PAPR,以解决这一问题。使用非线性压缩技术(如 μ-law 和 A-law 压缩)可有效压缩 NOMA 信号的高峰值功率,从而减少失真并提高整个系统的可靠性。仿真评估了所建议的压缩方法的有效性,结果表明 PAPR 显著降低,确保了基于 NOMA 的通信系统中误码率(BER)有效性和传输弹性的提高。建议的方法与传统的 A-律(C-A-律)和 μ-律(C-μ-律)进行了对比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Peak to Average Power Ratio Reduction Using Companding Algorithm for NOMA Waveform

Peak to Average Power Ratio Reduction Using Companding Algorithm for NOMA Waveform

Abstract

Future wireless communication systems can accommodate huge connections and improve spectrum efficiency by using the approach based on non-orthogonal multiple access (NOMA). High peak-to-average power ratio (PAPR) levels can, however, negatively affect NOMA, resulting in decreased system performance and more complicated power amplifiers. This study suggests PAPR reduction in NOMA by utilizing companding methods for 512, 256, and 64 sub-carriers to address this problem. The high peak power of NOMA signals may be effectively compressed by using nonlinear companding techniques, such as μ-law and A-law companding, which reduces distortion and improves overall system dependability. Simulations are used to assess the effectiveness of the suggested companding methods, and the findings show a significant reduction in PAPR assuring an increased bit error rate (BER) effectiveness and transmission resilience in NOMA-based communication systems. The suggested method is contrasted with the conventional A-law (C-A-Law) and μ-law (C-μ-law).

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来源期刊
Radioelectronics and Communications Systems
Radioelectronics and Communications Systems Engineering-Electrical and Electronic Engineering
CiteScore
2.10
自引率
0.00%
发文量
9
期刊介绍: Radioelectronics and Communications Systems  covers urgent theoretical problems of radio-engineering; results of research efforts, leading experience, which determines directions and development of scientific research in radio engineering and radio electronics; publishes materials of scientific conferences and meetings; information on scientific work in higher educational institutions; newsreel and bibliographic materials. Journal publishes articles in the following sections:Antenna-feeding and microwave devices;Vacuum and gas-discharge devices;Solid-state electronics and integral circuit engineering;Optical radar, communication and information processing systems;Use of computers for research and design of radio-electronic devices and systems;Quantum electronic devices;Design of radio-electronic devices;Radar and radio navigation;Radio engineering devices and systems;Radio engineering theory;Medical radioelectronics.
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