BER and PSD Improvement of FBMC with Higher Order QAM Using Hermite Filter for 5G Wireless Communication and beyond

Hise Teferi Dumari, Gelmecha Demissie Jobir, R. Shakya, R. Singh
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Abstract

Nowadays, multicarrier modulation schemes are being widely used in wireless communication system than single-carrier modulation techniques. Single-carrier modulation schemes are less capable of dealing with multipath fading channels than multicarrier modulation schemes, which results in lower spectral efficiency. Multicarrier modulation schemes have the ability to overcome multipath fading channels. Multicarrier modulation technique currently used in 4G technology in many countries is OFDM and it is easy for implementation, immune to interference, and provide fast data rate. However, the rising users demand on wireless communication resulted in need for further advancement of wireless communication system. The present OFDM transmission does not fulfill the requirements of 5G wireless communication system and beyond due to major limitations such as out of band emission and usage of cyclic prefix. To overcome the challenges of OFDM, different modulation schemes like Filter Bank Multicarrier with Offset-QAM, Filter Bank Multicarrier with QAM, Universal Filter Multicarrier, Filtered-OFDM, and Weighted Overlap and Added-OFDM are proposed. In this study, the Filter Bank Multicarrier with QAM using Hermite prototype filter is proposed to overcome drawbacks of OFDM and all other proposed waveforms. The performances of each multicarrier technique are analyzed based on power spectral density and bit error rate. Simulation result shows that the power spectral density of FBMC with QAM using Hermite filter resulted in 4.7 dB reduction of out of band emission compared to FBMC with QAM using PHYDYAS filter. The bit error rate is also reduced for Vehicular A, Vehicular B, Pedestrian A, and Pedestrian B channel models.
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基于Hermite滤波器的高阶QAM FBMC在5G及以后无线通信中的误码率和PSD改进
目前,在无线通信系统中,多载波调制技术比单载波调制技术得到了更广泛的应用。与多载波调制方案相比,单载波调制方案处理多径衰落信道的能力较差,导致频谱效率较低。多载波调制方案具有克服多径衰落信道的能力。目前许多国家在4G技术中采用的多载波调制技术是OFDM,具有实现简单、抗干扰、数据速率快等优点。然而,随着用户对无线通信需求的不断增长,无线通信系统需要进一步发展。由于带外发射和循环前缀的使用等主要限制,目前的OFDM传输不能满足5G及以后无线通信系统的要求。为了克服OFDM的挑战,提出了不同的调制方案,如带偏移QAM的滤波器组多载波、带QAM的滤波器组多载波、通用滤波器多载波、滤波OFDM和加权重叠加OFDM。本文提出了一种基于Hermite原型滤波器的QAM滤波器组多载波,克服了OFDM和所有其他波形的缺点。基于功率谱密度和误码率分析了各种多载波技术的性能。仿真结果表明,与采用PHYDYAS滤波器的FBMC + QAM相比,采用Hermite滤波器的FBMC + QAM的功率谱密度降低了4.7 dB的带外发射。车辆A、车辆B、行人A和行人B通道模型的误码率也降低了。
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