Compact Radar Cross-Section Measurement Setup and Performance Evaluation

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Maximilian F. Sundermeier, Dirk Fischer
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引用次数: 2

Abstract

Abstract. Radar cross-section measurements require the background reflections to be much lower than the reflections of the device under test. Although, anechoic chambers with special target holders meet this requirement, they are expensive and still have imperfections. To further reduce background reflections or to measure in environments where an anechoic chamber is not suitable, digital signal processing can be used to reduce background reflections. In this paper, a complete signal processing chain realized in Matlab is proposed, involving time gating of the measured target response and a background subtraction technique. Furthermore, the proposed signal processing includes a calibration procedure with either a single known calibration target or multiple known targets to improve measurement uncertainties. A compact measurement setup, consisting of a vector network analyzer and two horn antennas, is used to evaluate the overall performance and the advantages of a multiple known target calibration in a practical manner. The calibrated setup is able to measure the radar cross-section in a frequency range from 2 to 12 GHz with a mean error of less than 0.2 dB for both, VV and HH polarization combinations. It could also be shown, that a multi target calibration can result in an improvement of the measurement uncertainty by about 2.5 %.
紧凑型雷达截面测量装置及性能评估
摘要雷达截面测量要求背景反射远低于被测设备的反射。尽管具有特殊目标支架的消声室满足这一要求,但它们价格昂贵,而且仍然存在缺陷。为了进一步减少背景反射或在不适合消声室的环境中进行测量,可以使用数字信号处理来减少背景反射。本文提出了一个在Matlab中实现的完整信号处理链,包括测量目标响应的时间门控和背景减法技术。此外,所提出的信号处理包括具有单个已知校准目标或多个已知目标的校准过程,以改善测量不确定性。由矢量网络分析仪和两个喇叭天线组成的紧凑型测量装置用于以实用的方式评估多个已知目标校准的总体性能和优势。校准后的装置能够测量2至12频率范围内的雷达横截面 GHz,平均误差小于0.2 VV和HH极化组合的dB。还可以表明,多目标校准可以将测量不确定度提高约2.5 %.
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Radio Science
Advances in Radio Science ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
0.90
自引率
0.00%
发文量
3
审稿时长
45 weeks
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