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Study of deployed and modular active phased-array multibeam satellite antenna

机译:部署和模块化有源相控阵多波束卫星天线的研究

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摘要

A deployed, self-cooled and modular (tile-based) active phased array for multibeam applications has recently been proposed in the literature. This novel antenna facilitates the implementation of large array antennas in space with many beams from the same aperture, offering a flexible payload with the potential for high traffic capacity. However, the configuration also raises some questions about degradation in antenna performance, due to constraints such as non-circular aperture, frame gap, uniform amplitude excitation, and a calibration boom deployed in front of the array. Methods dealing with these issues are discussed in this paper. It is shown that a phase-only optimization technique can effectively reduce interference between same-frequency spatially reused beams, and can compensate for EIRP and C/I degradation for tile-correlated errors and failures.
机译:最近在文献中提出了一种用于多光束应用的已部署,自冷却和模块化(基于瓦片的)有源相控阵。这种新颖的天线有助于在空间中实现大型阵列天线,并具有来自同一孔径的许多波束,从而提供了灵活的有效载荷,并具有高通信量的潜力。但是,由于诸如非圆形孔径,帧间隙,均匀振幅激励以及在阵列前部部署的校准臂之类的限制,该配置还引发了一些有关天线性能下降的问题。本文讨论了解决这些问题的方法。结果表明,仅相位优化技术可以有效地减少同频空间复用波束之间的干扰,并可以针对与瓦片相关的错误和故障补偿EIRP和C / I降级。

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