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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Design and Optimization of Sparse Planar Antenna Arrays for Wireless 3-D Local Positioning Systems
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Design and Optimization of Sparse Planar Antenna Arrays for Wireless 3-D Local Positioning Systems

机译:无线3-D局部定位​​系统的稀疏平面天线阵列的设计和优化

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In this paper the design and measurement verification of optimized planar sparse arrays for use in wireless localization applications are presented. Existing literature on array optimization has mainly been concerned with arrays intended for imaging applications. As the array requirements for 3-D localization in multipath environments are essentially different, we made an analysis of the array parameters important for this specific application. The set of challenging practically relevant requirements for the optimization of the planar array layout was defined, including a restriction to a small number of antennas and minimal interelement distance bigger than $lambda /2$ . An adapted multi-objective particle swarm optimization stochastic algorithm was employed to optimize array for the robust and precise direction of arrival of a single source inside a wide angular scan range up to ±60° in azimuth and elevation planes. Two optimized receive arrays consisting of eight patches were manufactured and measured to present the trade-off achieved under the desired requirements. The effects of optimized array parameters on the performance of 3-D positioning are validated by angle measurements in an anechoic chamber and different indoor scenarios.
机译:本文介绍了用于无线定位应用的优化平面稀疏阵列的设计和测量验证。关于阵列优化的现有文献主要涉及用于成像应用的阵列。由于在多径环境中进行3-D定位的阵列要求本质上是不同的,因此我们分析了对于此特定应用很重要的阵列参数。定义了一组对平面阵列布局进行优化的具有挑战性的实际相关要求,包括对少量天线的限制以及最小元素间距离大于$λ/ 2的限制。采用了一种自适应的多目标粒子群优化随机算法来优化阵列,以使单个信号源在方位角和仰角平面内高达±60°的宽角度扫描范围内的鲁棒且精确的到达方向。制造并测量了两个由八个贴片组成的优化接收阵列,以呈现在所需要求下取得的折衷。优化的阵列参数对3-D定位性能的影响已通过消声室和不同室内场景中的角度测量得到了验证。

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