A Hybrid EMC Testing Facility: Combining Transmission Line and Reverberation Chamber Measurement System

Kai Chen, Wenjun Qi, Peng Peng, Hailong Wang, Xueqi Shen, Yongjiu Zhao, Qian Xu
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Abstract

By combining a transmission line system (TLS) and a reverberation chamber (RC), a hybrid electromagnetic compatibility (EMC) testing facility is designed and constructed. Generally, the lowest usable frequency (LUF) of an RC is limited by its dimension, which limits the application of RCs for EMC testing at low frequencies. Therefore, to improve the field uniformity (FU) of an RC at frequencies lower than the LUF, a TLS is integrated into the RC. After optimizing the load resistance, length, and width of the TLS, the resonant frequency and electric field spikes of the hybrid system are eliminated. The FU of the E-field in the system is greatly improved in the frequency range of 0-30 MHz. Moreover, using an oscillating wall stirrer in the RC, the FU satisfies the standard (IEC 61000-4-21) above 80 MHz. Results show that combining the TLS and the RC testing system could be widely used for EMC testing in the frequency range of 0-30 MHz and 80 MHz-6 GHz.
一种混合式电磁兼容测试设备:传输线与混响室相结合的测量系统
将传输线系统(TLS)与混响室(RC)相结合,设计并搭建了混合电磁兼容性(EMC)测试设备。一般情况下,RC的最低可用频率(LUF)受其尺寸的限制,这限制了RC在低频电磁兼容测试中的应用。因此,为了提高RC在低于LUF频率下的场均匀性(FU),在RC中集成了TLS。通过对负载电阻、长度和宽度进行优化,消除了混合系统的谐振频率和电场尖峰。在0 ~ 30 MHz的频率范围内,系统中e场的FU得到了很大的提高。此外,在RC中使用振荡壁式搅拌器,FU满足80 MHz以上的标准(IEC 61000-4-21)。结果表明,将TLS与RC测试系统相结合,可广泛用于0 ~ 30mhz和80mhz ~ 6ghz频率范围内的电磁兼容测试。
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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