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Optimal Design of Switchable Wearable Antenna Array for Wireless Sensor Networks

机译:无线传感器网络可切换可穿戴天线阵列的优化设计

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摘要

In the paper, we present a novel approach to the optimum design of wearable antenna arrays intended for off-body links of wireless body area networks. Specifically, we investigate a four-element array that has a switchable radiation pattern able to direct its higher gain towards a signal source and a lower gain towards an interference. The aim is to increase the signal to interference ratio. We apply a genetic algorithm to optimize both the spatial placement and the feed phasing of the elementary on-body antennas. We propose a simplified, computationally efficient model for the simulation of the array radiation pattern. The model is based on full-wave simulations obtained with a simplified cylindrical model of the human body. We also propose, implement, and evaluate four objective functions based on signal to interference ratio, i.e., min-max, nadir point distance maximization, utopia point distance minimization, and full Pareto-like. Our optimized design obtained with this approach exhibits a significant performance improvement in comparison to the initial heuristic design.
机译:在本文中,我们提出了一种用于可穿戴天线阵列的最佳设计的新颖方法,该阵列旨在用于无线人体局域网的体外链路。具体来说,我们研究一种具有可切换辐射图的四元素阵列,该辐射图能够将其较高的增益导向信号源,将较低的增益导向干扰。目的是增加信噪比。我们应用遗传算法来优化基本人体天线的空间布局和馈电定相。我们提出了一种简化的,计算效率高的模型,用于模拟阵列辐射方向图。该模型基于通过简化的人体圆柱模型获得的全波仿真。我们还提出,实现和评估基于信号干扰比的四个目标函数,即最小-最大,最低点距离最大化,乌托邦点距离最小和完全帕累托样。与最初的启发式设计相比,通过这种方法获得的优化设计具有显着的性能改进。

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