Research on Electromagnetic Compatibility of High Precision Measurement System

Ke Lu, Gengpei Xia, Yupei Tang, Feiyang Teng, Jie Luo, Lin Tan
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Abstract

In order to solve the electromagnetic compatibility (EMC) problem of the high precision measurement system in a research center, the EMC characteristics of the measurement system and the surrounding electronic equipment are analyzed. The mechanism that the sensors in the measurement system are susceptible to electromagnetic interference is analyzed in depth, and the common measures to protect them from electromagnetic interference are introduced. It is determined that the main electromagnetic disturbance source around the measuring system is the servo drive system. The composition of servo drive system and the characteristics of electromagnetic disturbance are introduced and analyzed. The electromagnetic immunity characteristics of the measurement system are tested, including conducted immunity and radiated immunity. The electromagnetic emission characteristics of the servo drive system are tested, including conducted emission and radiation emission. The EMC immunity level curve of the measurement system is obtained by analyzing the test data. According to the sensitive electromagnetic frequency band of the measurement system, the electromagnetic emission of the servo system is rectified. Finally, the measurement system and servo system are redesigned and optimized to make the measurement system free from the electromagnetic interference of peripheral equipment and achieve the required measurement accuracy.
高精度测量系统电磁兼容性研究
为了解决某科研中心高精度测量系统的电磁兼容问题,对测量系统及其周围电子设备的电磁兼容特性进行了分析。深入分析了测量系统中传感器易受电磁干扰的机理,介绍了常用的保护传感器免受电磁干扰的措施。确定了测量系统周围的主要电磁干扰源是伺服驱动系统。介绍并分析了伺服驱动系统的组成和电磁干扰特性。测试了测量系统的电磁抗扰度特性,包括传导抗扰度和辐射抗扰度。测试了伺服驱动系统的电磁发射特性,包括传导发射和辐射发射。通过对测试数据的分析,得出了测量系统的电磁兼容抗扰度曲线。根据测量系统的敏感电磁频段,对伺服系统的电磁发射进行整流。最后,对测量系统和伺服系统进行了重新设计和优化,使测量系统不受周边设备的电磁干扰,达到要求的测量精度。
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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