Hybrid Meta-Heuristic Algorithms Based Optimal Antenna Selection for Large Scale MIMO in LTE Network

R. A. Patil, P. Kavipriya, B. Patil
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Abstract

MIMO is a type of antenna technology which utilizes multiple antennas to separate signals traveling in various paths as a result of reflections, etc., to be separated and their ability utilized to enhance the throughput of data and the signal to noise ratio which in return enhances the performance of the system. For providing enhanced signal performance and enhanced data rates, MIMO is utilized within LTE. When the quantities of antennas are increased, there is increase in the probability that deep fading is experienced by at least some antennas, which affects the overall efficiency of the MIMO system. To handle these issues, a reliable technique has been presented that involves selection of antenna subset. The proposed technique incorporates combination of SBO and PSO for antenna selection. Antenna selection’s main concept is to utilize a bounded quantity of analog chains that are adaptively switched to subset of the available antennas capable of preserving the selection diversity gains and also can minimize the quantity of radio frequency chains needed. The maximum channel capacity of the channel has been considered as the objective function for selecting optimal antennas. The comparison of the proposed approach’s performance and the existing approaches’ performance is done. From the simulation result, it has been shown that the presented approach’s performance has been better than the performance of the existing approaches in terms of BER, energy efficiency, spectral efficiency and optimal transmit power.
基于混合元启发式算法的LTE网络大规模MIMO天线优化选择
MIMO是一种天线技术,它利用多个天线将由于反射等原因在不同路径上传播的信号分离开来,并利用它们的能力来提高数据吞吐量和信噪比,从而提高系统的性能。为了提供增强的信号性能和增强的数据速率,MIMO在LTE中被使用。当天线数量增加时,至少部分天线出现深度衰落的概率会增加,从而影响MIMO系统的整体效率。为了解决这些问题,提出了一种可靠的天线子集选择技术。该技术将SBO和PSO相结合用于天线选择。天线选择的主要概念是利用有限数量的模拟链,这些模拟链可以自适应地切换到能够保持选择分集增益的可用天线的子集,并且还可以最小化所需的射频链的数量。将信道的最大信道容量作为选择最优天线的目标函数。将所提方法的性能与现有方法的性能进行了比较。仿真结果表明,该方法在误码率、能量效率、频谱效率和最优发射功率等方面均优于现有方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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