Comparative Performance of Point-to-Point Multiple Input Multiple Output System under Weibull and Rayleigh Fading Channels

Azhar Hussein Neama, Ghanim A. Al-Rubaye, Article Info
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Abstract

Multiple-input multiple-output (MIMO) technologies use multiple antennas at the sender and the receiver to get the high data rate that the next-generation communication system needs. This paper compares MIMO systems using the Quadrature Phase Shift Keying  (QPSK) modulation scheme for two-channel distributions of Rayleigh and Weibull types. The performance of the work is far with the Minimum Mean Square Equalizer (MMSE) in terms of Bit Error Rate (BER) for various antenna number situations on the transmitter and receiver sides. The MIMO module is carried out using MATLAB code. The channel noise will be a signal of random noise that is generated. To mitigate the impact of inter-channel interference, the MMSE approach employs inverse filtering at the receiver, and BER will be calculated. According to simulation results, the system's performance is primarily influenced by the number of antennas; it decreased as the number of antennas increased, and the BER of the Weibull channel decreased as the two-parameter value increased
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魏布尔和瑞利衰减信道下的点对点多输入多输出系统性能比较
多输入多输出(MIMO)技术在发送端和接收端使用多个天线,以获得下一代通信系统所需的高数据传输率。本文对使用正交相移键控(QPSK)调制方案的 MIMO 系统进行了比较,该方案适用于 Rayleigh 和 Weibull 类型的双通道分布。在发射端和接收端的不同天线数量情况下,工作性能与最小均方均衡器(MMSE)的误码率(BER)相差甚远。MIMO 模块使用 MATLAB 代码实现。信道噪声将是随机产生的噪声信号。为了减轻信道间干扰的影响,MMSE 方法在接收器上采用了反滤波,并将计算误码率。根据仿真结果,系统性能主要受天线数量的影响;天线数量越多,系统性能越差,而 Weibull 信道的误码率则随着双参数值的增加而降低
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CiteScore
0.70
自引率
0.00%
发文量
74
审稿时长
50 weeks
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