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3D Antenna Characterization for WPT Applications

机译:WPT应用程序的3D天线特征

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摘要

The main goal of this paper is to present a three-dimensional (3D) antenna array to improve the performance of wireless power transmission (WPT) systems, as well as its characterization with over-the-air (OTA) multi-sine techniques. The 3D antenna consists of 15 antenna elements attached to an alternative 3D structure, allowing energy to be transmitted to all azimuth directions at different elevation angles without moving. The OTA multi-sine characterization technique was first utilized to identify issues in antenna arrays. However, in this work, the technique is used to identify which elements of the 3D antenna should operate to transmit the energy in a specific direction. Besides, the 3D antenna design description and its characterization are performed to authenticate its operation. Since 3D antennas are an advantage in WPT applications, the antenna is evaluated in a real WPT scenario to power an RF–DC converter, and experimental results are presented.
机译:本文的主要目的是呈现三维(3D)天线阵列,以改善无线电力传输(WPT)系统的性能,以及其具有空气过度(OTA)多正弦技术的表征。 3D天线由连接到替代3D结构的15个天线元件组成,允许在不移动的情况下以不同的仰角发送到所有方位角方向的能量。首先利用OTA多正弦表征技术来识别天线阵列中的问题。然而,在这项工作中,该技术用于识别3D天线的哪个元件应该操作以在特定方向上传输能量。此外,执行3D天线设计描述及其表征以验证其操作。由于3D天线在WPT应用中是一个优势,因此在实际WPT场景中评估天线以供电RF-DC转换器,并且提出了实验结果。

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