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Radar Cross Section of Dipole Phased Arrays: Estimation and Reduction

机译:偶极相控阵的雷达横截面:估计和减少

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This paper is for Special Session “Special Topics on the Theory and Applications of Antennas and Arrays” organized by Prof. Prabhakar Pathak. Defense applications demand design of low observable targets. Further it is required that high performance antenna/array mounted on the platform should meet low RCS requirements. Conversely, it is essential that any active/passive technique used to reduce RCS should not degrade the antenna performance. The estimation and hence control of array RCS involve the calculation of scattered field at each level within the array system taking all possible interactions (e.g., mutual coupling) into account. In this paper, the estimation and optimization of in-band RCS of phased arrays on planar and nonplanar platforms is presented in terms of antenna mode scattering. The main challenge lies in reducing array RCS, when the array is radiating. This problem is handled through active RCS reduction. Using an efficient modified improved LMS algorithm, the RCS pattern is modified in such a way that the scattered power towards the probing radar becomes minimum.
机译:本文以Prabhakar Pathak教授组织了特别会议“关于天线和阵列的理论和应用的特殊主题”。防御应用需求设计低可观察目标。此外,要求安装在平台上的高性能天线/阵列应满足低RCS要求。相反,对于减少RCS的任何主动/被动技术都应该不会降低天线性能。阵列RC的估计和因此控制涉及计算阵列系统内的每个级别的散射场,以考虑所有可能的交互(例如,相互耦合)。本文在天线模式散射方面呈现了平面和非平面平台上相控阵列的带内RC的估计和优化。当阵列辐射时,主要挑战在于减少阵列RCS。此问题通过Acceact RCS减少处理。使用高效修改的改进的改进的LMS算法,以这样的方式修改RCS图案,使得探测雷达的散射功率变为最小。

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