首页> 外文会议>International Conference on Space Information Technology; 20071115-17; Wuhan(CN) >Clutter Mitigation for Space Based Radar by Appropriate Choices of Array Aspect Ratio and Radar PRf
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Clutter Mitigation for Space Based Radar by Appropriate Choices of Array Aspect Ratio and Radar PRf

机译:杂乱缓解以空间为基础的雷达阵列通过长宽比和雷达PRF的适当的选择

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Different from the airborne scenario, space time adaptive processing (STAP) for space based radar (SBR) is a full system design task whose performance is significantly determined by radar system parameters such as array aspect ratio and PRF. To mitigate clutter, the two parameters should be appropriately designed. The suppression of mainbeam clutter is discussed while taking the earth's rotation and high range foldovers into consideration. Clutter rank is derived by modeling it as an equivalent two-dimensional spatially band-limited process and it is shown to be a function of array aspect ratio and radar PRF. Relationships between clutter rank and the two parameters are analyzed. Optimal array aspect ratio and radar PRF are obtained by minimizing clutter rank with the tradeoff of minimum discernable velocity (MDV). A high fidelity modeling of SBR is given to illustrate the effectiveness of the method.
机译:与机载场景不同,用于天基雷达(SBR)的时空自适应处理(STAP)是一项完整的系统设计任务,其性能在很大程度上取决于雷达系统参数(如阵列长宽比和PRF)。为了减轻混乱,应适当设计这两个参数。讨论了抑制主光束杂波的问题,同时考虑了地球的自转和高倍率折叠。通过将杂波秩建模为等效的二维空间带限过程,可以得出杂波秩,并且该杂波秩显示为阵列纵横比和雷达PRF的函数。分析了杂乱等级与两个参数之间的关系。通过以最小可分辨速度(MDV)权衡最小化杂波等级来获得最佳阵列纵横比和雷达PRF。给出了SBR的高保真建模,以说明该方法的有效性。

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