FAC与OATS/SAC之间新的关联算法

Jong Hwa Kwon, H.H. Park, Hyung-Do Choi
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引用次数: 0

摘要

本文提出了全消声室(FAC)与开放区试验场(OATS)、半消声室(SAC)等具有地平面的试验设施之间的新的相关算法,以期将FAC作为备选的试验设施。该方法是将EUT建模为等效的多极集。假设EUT是电性小的,只需要保留初始的多极矩,即电偶极和磁偶极项。然后使用一系列FAC测量来确定等效EUT偶极矩和相对相位。然后,偶极子模型允许人们在地面屏幕上模拟EUT的辐射发射。因此,可以模拟各种标准要求的奥特奥特排放测量。这种未知源对象的等效偶极子模型先前已成功地用于单/双端口TEM波导。本文回顾了与FAC相关的多极模型的基础知识,详细介绍了适用于FAC的各种测量方案,并给出了FAC和SAC的测量结果,以验证所提出的相关算法
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New correlation algorithm between FAC and OATS/SAC
This paper proposes the new correlation algorithm between the fully anechoic chamber (FAC) and the test facilities with ground plane such as open area test site (OATS), semi-anechoic chamber (SAC), etc. in order to use the FAC as an alternative test facility. The approach is to model the EUT as an equivalent set of multipoles. Assuming the EUT is electrically small, only the initial multipole moments, the electric and magnetic dipole terms, need be retained. A sequence of FAC measurements is then used to determine the equivalent EUT dipole moments and relative phases. The dipole model then allows one to simulate the radiated emission from EUT over a ground screen. Thus, emission measurements over an OATS as called for by various standards may be simulated. Such equivalent dipole modeling of an unknown source object has previously been successfully developed for the single/double port TEM waveguide. This paper reviews the basics of the multipole model as it relates to FAC, details various measurement schemes appropriate to FAC, and presents the results of measurements at both FAC and SAC in order to verify the proposed correlation algorithm
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