A high-power RF transmission line status monitoring method based on sound recognition

F. Zeng, W. Ma, Liang Lu
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Abstract

To ensure the safe operation of a superconducting accelerator system, real-time monitoring of the RF power source, transmission lines, and superconducting cavities is essential. Currently, the main method for monitoring the status of transmission lines in superconducting accelerator systems is through monitoring the standing wave ratio. However, it is difficult to effectively monitor faults during high reflection or full reflection operations, which can pose significant safety risks. To address this issue, this paper proposes an online monitoring and positioning technique for RF transmission line faults based on acoustic fingerprinting. By studying the spectral characteristics and transmission mechanism of high-power RF transmission line faults, the sound recognition and classification experiment achieved a recognition accuracy of 98.0%, demonstrating the feasibility of this method in identifying faults in RF transmission lines.
一种基于声音识别的大功率射频传输线状态监测方法
为了保证超导加速器系统的安全运行,对射频电源、传输线和超导腔体的实时监控是必不可少的。目前,监测超导加速器系统中传输线状态的主要方法是监测驻波比。然而,在高反射或全反射作业中,故障难以有效监测,存在较大的安全隐患。针对这一问题,本文提出了一种基于声指纹的射频传输线故障在线监测与定位技术。通过对大功率射频传输线故障的频谱特征和传播机理的研究,进行了声音识别分类实验,识别准确率达到98.0%,证明了该方法在射频传输线故障识别中的可行性。
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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