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Bistatic RCS Calculations From Cylindrical Near-Field Measurements—Part II: Experiments

机译:圆柱近场测量的双基地RCS计算—第二部分:实验

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Bistatic radar cross section (RCS) is computed from cylindrical near-field measurements obtained in a radio anechoic chamber with the target illuminated by a compact-range reflector. Near-field measurement is convenient where the RCS of complex targets is not amenable to computation or where computational results require experimental confirmation. A companion paper addresses the theory of cylindrical near-field scanning with reference to our experimental system. RCS of canonical targets derived from near-field measurement are in good agreement with theory. This paper compares the far fields computed from the near-field measurements with numerical solutions. Separating the target-scattered fields from incident and background fields presents a major challenge in an indoor bistatic radar configuration. We discuss the errors introduced by a residue of the incident field that is not canceled by the background subtraction method currently in use. A slow drift in system parameters and probe column oscillations are among the contributing factors
机译:根据在无线电消声室中获得的圆柱近场测量值计算双基地雷达横截面(RCS),目标由紧凑范围的反射器照明。在复杂目标的RCS不适合计算或计算结果需要实验确认的情况下,近场测量非常方便。伴随论文参考我们的实验系统阐述了圆柱近场扫描的理论。由近场测量得出的典型目标的RCS与理论吻合良好。本文将近场测量计算出的远场与数值解进行了比较。在室内双基地雷达配置中,将目标散射场与入射场和背景场分开是一个重大挑战。我们讨论由入射场的残差引入的错误,该残差不能被当前使用的背景减法抵消。系统参数的缓慢漂移和探针柱的振荡是其中的重要因素

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