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Comparison Performance Evaluation of MIMO-FBMC and MIMO-UFMC systems for various equalization techniques

机译:各种均衡技术的MIMO-FBMC和MIMO-UFMC系统的比较和性能评估

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The evolution of wireless systems has taken place in a remarkably short time, offering incredible technological advances that will change the way how people communicate and interact with each other, These advances have come in several generations, Every generation to standards, capabilities and new techniques. Fifth-generation wireless networks face a variety of challenges in supporting large-scale heterogeneous networks. For this, new multi-carrier modulations and their associations with multi-antenna systems have been developed to support these changes. In this context, this article presents a comparative study of two systems, MIMO- FBMC/OQAM (Multiple-Input Multiple-Output - Filter Bank Multi-Carrier and Offset Quadrature Amplitude Modulation) and MIMO-UFMC (Universal Filtered Multi-Carrier) with different equalization techniques such as Zero Forcing (ZF), Minimum Mean Square Error (MMSE) and Maximal Ratio Combining (MRC). These two modulation techniques are evaluated in a Rayleigh channel in terms of signal-to-noise ratio (SNR) and bit error ratio (BER). The simulation is performed, and the mathematical analysis confirms that the performance of the MIMO-FBMC / OQAM technique with the MRC equalizer is a better choice than the MIMO-UFMC to suppress any intersymbol interference (ISI) and reduces the total noise power.
机译:无线系统的发展发生在非常短的时间内,它提供了令人难以置信的技术进步,它将改变人们相互交流和交互的方式。这些进步已经经历了几代人,每一代人都遵循标准,能力和新技术。第五代无线网络在支持大规模异构网络方面面临各种挑战。为此,已经开发了新的多载波调制及其与多天线系统的关联来支持这些变化。在这种情况下,本文对两个系统进行了比较研究,MIMO-FBMC / OQAM(多输入多输出-滤波器组多载波和偏移正交幅度调制)和MIMO-UFMC(通用滤波多载波)不同的均衡技术,例如零迫切(ZF),最小均方误差(MMSE)和最大比合并(MRC)。这两种调制技术在瑞利信道中根据信噪比(SNR)和误码率(BER)进行评估。进行了仿真,并且数学分析证实,具有MRC均衡器的MIMO-FBMC / OQAM技术的性能比MIMO-UFMC更好,可以抑制符号间干扰(ISI)并降低总噪声功率。

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