Analysis of Filtered Multicarrier Modulation Techniques Using Different Windows for 5G and Beyond Wireless Systems

Sourav Debnath, Samin Ahmed, S. M. Shamsul Alam
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Abstract

In contemporary wireless communication systems, multicarrier modulation schemes have become widely adopted over single-carrier techniques due to their improved capacity to address challenges posed by multipath fading channels, leading to enhanced spectral efficiency. Orthogonal frequency division multiplexing (OFDM), a prevalent multicarrier scheme in 4G, is favored for its ease of implementation, interference resilience, and high data rate provision. But it falls short of meeting the requirements for 5G and beyond due to limitations such as out-of-band (OOB) emissions and cyclic prefixes. This paper introduces the filter bank multicarrier (FBMC) and universal filtered multicarrier (UFMC) with quadrature amplitude modulation (QAM) and phase shift keying (PSK) waveforms through Additive White Gaussian Noise channel (AWGN), Rayleigh fading channel and Rician channel. The objective of this paper is to enhance the performance of UFMC with reduced complexity through the new filtering approach for achieving optimal outcomes. The proposed scheme, incorporating Tukey filtering technique, demonstrates superior performance in reducing peak-to-average power ratio (PAPR) and improving bit error ratio (BER) compared to the original UFMC signal without necessitating additional power increments. Specifically, the UFMC system with Tukey filtering achieves a notable net gain of 5 dB. Simulation results demonstrate that utilizing various filter types in FBMC and UFMC systems, combined with QAM modulation, significantly reduces OOB emissions compared to conventional systems. In aspect to BER, Tukey window showed almost 10−6 at 15 dB SNR in UFMC which is better than FBMC.
使用不同窗口的滤波多载波调制技术在 5G 及以后无线系统中的应用分析
在当代无线通信系统中,多载波调制方案由于能更好地应对多径衰落信道带来的挑战,从而提高频谱效率,已被广泛采用,而不是单载波技术。正交频分复用(OFDM)是 4G 领域中一种流行的多载波方案,因其易于实施、抗干扰能力强和数据传输速率高而备受青睐。但由于带外(OOB)发射和循环前缀等限制,它无法满足 5G 及更高的要求。本文介绍了滤波器组多载波(FBMC)和通用滤波多载波(UFMC),它们采用正交振幅调制(QAM)和相移键控(PSK)波形,通过加性白高斯噪声信道(AWGN)、瑞利衰落信道和里阡信道。本文的目的是通过新的滤波方法提高 UFMC 的性能,同时降低其复杂性,以获得最佳结果。与原始 UFMC 信号相比,包含 Tukey 滤波技术的拟议方案在降低峰均功率比 (PAPR) 和改善误码率 (BER) 方面表现出卓越的性能,而无需增加额外的功率增量。具体而言,采用 Tukey 滤波技术的 UFMC 系统实现了 5 dB 的显著净增益。仿真结果表明,与传统系统相比,在 FBMC 和 UFMC 系统中使用各种类型的滤波器并结合 QAM 调制,可显著减少 OOB 发射。在误码率方面,UFMC 在 15 dB SNR 时,Tukey 窗口的误码率接近 10-6,优于 FBMC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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