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Compensation of Non-linear Distortion Effects in MIMO-OFDM Systems Using Constant Envelope OFDM for 5G Applications

机译:使用恒定包络OFDM为5G应用来补偿MIMO-OFDM系统中的非线性失真效应

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Orthogonal frequency division multiplexing (OFDM) is a multicarrier transmission system that can achieve high data rate over wireless channels. At the same time, multiple input multiple output OFDM (MIMO-OFDM) in wireless communication systems has been exposed to offer significant improvement over wireless technology by providing transmit diversity. It has become a promising technique for high-performance 5G broadband wireless communications. However, the main problem associated with MIMO-OFDM is that its signal exhibits high peak-to-average power ratio (PAPR), which causes nonlinear distortion and consequently performance degradation. Besides, PAPR carries weaknesses such as an increase in power consumption of high power amplifier (HPA) and analog to digital converter (ADC). Thus, 5G base stations will push up power requirements because energy consumption grows with the number of transceiver elements. So, mobile operators must find the right compromise that, on the one hand, guarantees a certain level of performance to a data flow, and, on the other hand, the energy cost generated for the deployment of the network. For this, as part of the management of power consumption, we propose MIMO constant envelope OFDM (MIMO-CE-OFDM) technique. In this work, we used MIMO-CE-OFDM to mitigate the nonlinear effect of HPA and ADC. To perform practical simulations, we have used COST 2100 MIMO channel model. In this paper, a MIMO-CE-OFDM system has been presented and analyzed under COST 2100 channel model conditions. Simulation results are given to illustrate the performance of 2x2 MIMO-CE-OFDM in the presence of both HPA and ADC nonlinearity. This work shows that the effect of nonlinearity is shown to be negligible on MIMO-CE-OFDM signal.
机译:正交频分复用(OFDM)是一种多载波传输系统,可以通过无线信道实现高数据速率。同时,通过提供传输分集,已经公开了在无线通信系统中的多输入多输出OFDM(MIMO-OFDM)以提供对无线技术的显着改进。它已成为高性能5G宽带无线通信的有希望的技术。然而,与MIMO-OFDM相关的主要问题是其信号表现出高峰平均功率比(PAPR),这导致非线性失真并因此进行性能下降。此外,PAPR携带弱点,例如高功率放大器(HPA)的功耗增加,以及模数转换器(ADC)。因此,5G基站将推动功率要求,因为能量消耗随收发器元件的数量而增长。因此,移动运营商必须找到正确的妥协,即一方面,将一定程度的性能保证到数据流,另一方面,为网络部署生成的能量成本。为此,作为功耗管理的一部分,我们提出了MIMO恒定的信封OFDM(MIMO-CE-OFDM)技术。在这项工作中,我们使用MIMO-CE-OFDM来减轻HPA和ADC的非线性效果。要执行实用模拟,我们使用了2100 MIMO频道模型。本文在成本2100频道模型条件下呈现和分析了MIMO-CE-OFDM系统。仿真结果是说明在HPA和ADC非线性存在下2x2 MIMO-CE-OFDM的性能。这项工作表明,非线性的效果显示在MIMO-CE-OFDM信号上可忽略不计。

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