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Antenna Array for Passive Radar: Configuration Design and Adaptive Approaches to Disturbance Cancellation

机译:无源雷达天线阵列:干扰消除的配置设计和自适应方法

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We consider the selection of an antenna array configuration, composed of a small number of omnidirectional elements, to be exploited for passive radar sensors. Based on properly identified pattern characteristics and design criteria for practical applications, a suitable planar configuration is selected that allows both angular selectivity and direct signal attenuation. The selected configuration is further optimized in terms of sidelobe level by resorting to appropriate amplitude tapering. Moreover, three different approaches are investigated for antenna-based adaptive disturbance cancellation, and a comparative performance analysis is carried out. Simulation results show that an effective clutter suppression is obtained if the direct signal from the transmitter is attenuated by means of spatial adaptive cancellation, and the multipath echoes from stationary obstacles are removed by means of temporal adaptive cancellation. In particular, the approach based on the Sidelobe Canceller is shown to yield good performance while requiring a limited system complexity.
机译:我们考虑选择由少量全向元件组成的天线阵列配置,以用于无源雷达传感器。基于正确识别的图案特性和实际应用的设计标准,选择合适的平面配置,该配置既可以实现角度选择性,又可以进行直接信号衰减。通过采用适当的幅度渐减,就旁瓣电平而言进一步优化了所选配置。此外,针对基于天线的自适应干扰消除,研究了三种不同的方法,并进行了比较性能分析。仿真结果表明,如果通过空间自适应消除来衰减来自发射机的直接信号,并且通过时间自适应消除来消除来自固定障碍物的多径回波,则可以有效地抑制杂波。特别地,示出了基于旁瓣消除器的方法产生良好的性能,同时要求有限的系统复杂性。

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