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2-D Van Atta Array of Wideband, Wideangle Slots for Radiative Wireless Power Transfer Systems

机译:辐射无线功率传输系统的宽带宽角槽的二维Van Atta阵列

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We present a 2-D Van Atta array for far-field wireless power transfer systems. The antenna array is made up of wideband, wideangle long slots. The monostatic radar cross section (RCS) of the finite array is derived by windowing the aperture field distribution of the corresponding infinite case. It is shown that for oversampled apertures, the array behaves as an ideal Van Atta reflector. Therefore, the proposed solution can collect and reradiate the total power impinging on it from a remote source over a large field of view and bandwidth. The array design is presented and validated through measurements over a relative bandwidth of 24% centered at a frequency of 5.8 GHz. The array consists of four slots, each fed by eight coaxial ports. Coaxial cables are used to connect pairs of feeds in a Van Atta configuration. A bidirectional amplifier is also introduced into the Van Atta scheme to amplify the collected energy before retransmission to a possible moving user for wireless power transfer. Off-the-shelf components are used to implement the bidirection amplifier. The amplifier is matched across the bandwidth of the array and provides 5 dB gain. Monostatic RCS measurements show that the array exhibits −10 dB beamwidths of about 118° and 80° in the E- and H-planes, over the entire bandwidth. In addition, it is shown that when the array ports are terminated with matched loads, the antenna RCS is reduced by approximately −15 dB with respect to the Van Atta case. This experimentally confirms that the array collects the total energy impinging from a remote source.
机译:我们提出了一种用于远场无线功率传输系统的二维Van Atta阵列。天线阵列由宽带,广角长缝隙组成。有限阵列的单基地雷达截面(RCS)是通过对相应无限情况的孔径场分布进行加窗处理得出的。结果表明,对于过采样的光圈,该阵列表现为理想的Van Atta反射镜。因此,所提出的解决方案可以在较大的视场和带宽上收集并辐射来自远程源的总功率。提出并通过以5.8 GHz频率为中心的24%相对带宽上的测量来验证阵列设计。该阵列由四个插槽组成,每个插槽由八个同轴端口馈电。同轴电缆用于连接Van Atta配置中的成对馈电。 Van Atta方案中还引入了双向放大器,以放大收集的能量,然后再重新传输给可能的移动用户进行无线功率传输。现成的组件用于实现双向放大器。放大器在整个阵列带宽上匹配,并提供5 dB的增益。单静态RCS测量表明,该阵列在E和H平面上的整个带宽范围内展现出约118°和80°的-10 dB波束宽度。另外,示出了当阵列端口以匹配的负载端接时,相对于范阿塔的情况,天线RCS减小了大约-15dB。这从实验上证实了该阵列收集了从远程源撞击的总能量。

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