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Reconfigurable parasitic control for antenna arrays and subarrays

机译:天线阵列和子阵列的可重构寄生控制

摘要

Reconfiguration of parasitically controlled elements in a phased array is used to expand the range of operational functions. Embedded array elements can be frequency tuned, and bandwidth can be improved by using reconfiguration to broaden the bandwidth of the embedded elements. For high gain arrays, beam squint can be a limiting factor on instantaneous bandwidth. Reconfiguration can alleviate this problem by providing control of the element phase centers. Scan coverage can be improved and scan blindness alleviated by controlling the embedded antenna patterns of the elements as well as by providing control of the active impedance as the beam is scanned. Applying limited phase control to the elements themselves can alleviate some of the complexity of the feed manifold. A presently preferred method of designing reconfigurable antennas is to selectively place controlled parasitic elements in the aperture of each of the antenna elements in the phased array. The parasitic elements can be controlled to change the operational characteristics of the antenna element. The parasitic elements are controlled by either switching load values in and out that are connected to the parasitic elements or are controlled by applying control voltages to variable reactance circuits containing devices such as varactors. The parasitic elements can be controlled by the use of a feedback control subsystem that is part of the antenna system which adjusts the RF properties of the parasitic components based on some observed metric. The controllable characteristics include directivity control, tuning, instantaneous bandwidth, and RCS.
机译:相控阵中寄生控制元件的重新配置用于扩展操作功能的范围。嵌入式阵列元件可以进行频率调谐,通过使用重新配置来加宽嵌入式元件的带宽,可以提高带宽。对于高增益阵列,斜射斜视可能是瞬时带宽的限制因素。通过提供对元素相位中心的控制,重新配置可以缓解此问题。通过控制元件的嵌入式天线方向图以及在扫描波束时提供对有源阻抗的控制,可以提高扫描覆盖率并减轻扫描盲度。将有限的相位控制应用于元件本身可以减轻进料歧管的某些复杂性。设计可重构天线的当前优选方法是将受控寄生元件选择性地放置在相控阵中每个天线元件的孔径中。可以控制寄生元件以改变天线元件的操作特性。寄生元件可以通过切换与寄生元件连接的负载值的输入和输出来控制,也可以通过将控制电压施加到包含变容二极管等器件的可变电抗电路来控制。可以通过使用作为天线系统一部分的反馈控制子系统来控制寄生元件,该反馈控制子系统基于一些观察到的度量来调整寄生组件的RF特性。可控制的特性包括方向性控制,调谐,瞬时带宽和RCS。

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