Gaussian Approximation based WCDMA and OFDMA System Performance Investigation for Various Fading Channels

Parveen Singla, Vikas Gupta, Rinkesh Mittal, Ramanpreet Kaur, Jaskirat Kaur
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Abstract

Wideband Code Division Multiple Access (WCDMA) systems and Orthogonal Frequency Division Multiple Access (OFDMA) technique were the basic of modern wireless systems aimed to provide enriched services. But the channel impairments always put a limit on modern systems that also includes AC-MIMO Radio, 802.11ac and LTE/VoLTE. Here, the conduct of WCDMA and OFDMA primarily based totally structures is analyzed via way of means of widely recognized primary Gaussian Approximation (GA) in which interference and noise to the gadget is generated via way of means of suggest and variance approximations of noise power. In order to generate the faded transmitted signal Weibull, Rayleigh, Rician and Nakagami distributions have been applied to systems. OFDMA and WCDMA system performances for different fading environments have been observed by error rate graphs. It is validated that inclusion of fading in the system increases error rate and the performance of OFDMA system is much better than WCDMA system.
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基于高斯逼近的WCDMA和OFDMA系统各种衰落信道性能研究
宽带码分多址(WCDMA)系统和正交频分多址(OFDMA)技术是现代无线系统的基础,旨在提供丰富的业务。但是,信道障碍总是限制现代系统的使用,包括AC-MIMO Radio、802.11ac和LTE/VoLTE。本文通过广泛认可的初级高斯近似(primary Gaussian Approximation, GA)方法分析了基于WCDMA和OFDMA的总体结构的性能,其中对器件的干扰和噪声是通过噪声功率的建议近似和方差近似产生的。为了产生衰落的传输信号,系统中应用了威布尔分布、瑞利分布、瑞利分布和中川分布。用误码率图观察了OFDMA和WCDMA系统在不同衰落环境下的性能。验证了系统中加入衰落会增加误码率,并且OFDMA系统的性能比WCDMA系统好得多。
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