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An Optimal Design of Multiple Antenna Positions on Mobile Devices Based on Mutual Coupling Analysis

机译:基于相互耦合分析的移动设备上多天线位置的最佳设计

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摘要

The topic of practical implementation of multiple antenna systems for mobile communications has recently gained a lot of attention. Due to the area constraint on a mobile device, the problem of how to design such a system in order to achieve the best benefit is still a huge challenge. In this paper, genetic algorithm (GA) is used to find the optimal antenna positions on a mobile device. Two cases of 3×3 and 4×4 MIMO systems are undertaken. The effect of mutual coupling based on Z-parameter is the main factor to determine the MIMO capacity concerning the objective function of GA search. The results confirm the success of the proposed method to design MIMO antenna positions on a mobile device. Moreover, this paper introduces the method to design the antenna positions for the condition of nondeterministic channel. The concern of channel variation has been included in the process of finding optimal MIMO antenna positions. The results suggest that the averaging position from all GA solutions according to all channel conditions provides the most acceptable benefit.
机译:用于移动通信多个天线系统的实际实施主题最近获得了很多关注。由于移动设备上的区域限制,如何设计这样一个系统以实现最佳益处的问题仍然是一个巨大的挑战。在本文中,遗传算法(GA)用于在移动设备上找到最佳天线位置。进行了两种3×3和4×4 MIMO系统。基于Z参数的互联耦合的影响是确定关于GA搜索的目标函数的MIMO容量的主要因素。结果证实了所提出的方法在移动设备上设计MIMO天线位置的方法。此外,本文介绍了设计用于非定值通道条件的天线位置的方法。信道变化的关注已经包括在找到最佳MIMO天线位置的过程中。结果表明,根据所有渠道条件的所有GA解决方案的平均位置提供了最可接受的益处。

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