基于双边天线方向选择(BAPS)的5G系统最优智能天线选择

Dipali Bansal, M. Tripathy, S. Padhi
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引用次数: 0

摘要

5G系统中的无线通信提高了传输速率和分组传送率。在优化天线参数的基础上,提高5G通信性能的方法有多种。本文提出了一种新的双边天线方向图选择(BAPS)方法,作为从天线参数中选择频谱方向图的优化技术。根据到达方向(DOA)优化选择最佳天线,以获得更高的增益参数值。结合波束形成技术,估计信号的频谱,形成天线的信号方向图,代表5G通信系统中智能天线的设计。这些频谱选择和DOA的模式验证为通信选择的天线提供了最佳匹配。这提高了传输的高增益和信号强度。这也降低了信号中的噪声比。由于采用BAPS技术对天线参数进行了优化选择,这将比传统通信系统降低功耗。结果分析通过与其他先进方法的比较,验证了所提优化技术的性能。
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Bilateral Antenna Pattern Selection (BAPS) based Optimal Smart Antenna Selection in 5G system
The wireless communication in 5G system enhances the transmission rate and the packet delivery ratio. There are several methods to improve the performance of 5G communication based on the optima selection of Antenna parameters. In this paper, a novel bilateral antenna pattern selection (BAPS) was proposed as the optimization technique for the best selection of spectrum pattern from the antenna parameters. Based on the Direction of Arrival (DOA), the best antenna was selected optimally to achieve the higher value of gain parameter. The spectrum of the signal was estimated to form the signal pattern of an antenna with the combination of beamforming technique to represent the design of smart antenna in the 5G communication system. These spectrum selections and the pattern validation of an DOA provides the best match of antenna that are selected for the communication. This improves the high gain and the signal strength for transmission. This also reduces the noise ratio in the signal. Due to the optimal selection of antenna parameters by using BAPS technique, this will reduce the power consumption than the traditional communication system. The result analysis validates the performance of proposed optimization technique by comparing with the other state-of-art methods.
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