PD超声信号与UHF信号检测集成技术研究

Guozhi Zhang, Changyue Lu, Xingyu Yu, Hanlv Tian, Xiaoxing Zhang
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引用次数: 0

摘要

新型电力系统的建设对关键电力设备运行状态的智能感知提出了更高的要求,鉴于目前的超声信号和高频电磁波传感系统功能单一,导致电力设备PD综合检测系统结构复杂,且超声传感器和超高频天线传感器为刚性结构,将导致在弧形电力设备上安装复杂。本文研究了局部放电超声信号与高频电磁波信号感知的集成技术,以PVDF压电材料为衬底,数字间电极为传感单元,建立了超声与高频电磁波感知的集成结构模型。利用COMSOL软件中的压电-固体模块和HFSS软件分别对集成传感器的超声传感性能和超高频电磁波传感性能进行了仿真分析。仿真结果表明:对于频率范围为20kHz ~ 200kHz的超声波信号,当频率为52.1khz、89.3khz、94.8khz和171khz时,集成传感器的表面位移超过0.0025mm,在94.8khz的信号下,最大表面位移为0.044mm,声电转换效率最高,这表明集成传感器感知的信号范围为20kHz ~ 200kHz;对于0.3GHz ~ 3GHz的UHF电磁波信号,在0.4GHz ~ 0.45GHz、0.55GHz ~ 0.6GHz和1.7GHz ~ 3GHz频段,集成传感器的VSWR≤5,反射功率≤44.44%。本设计的集成传感器具有同时检测局部放电辐射超声信号和高频电磁波信号的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Integrated Technology of PD Ultrasonic Signal and UHF Signal Detection
The construction of new power systems places higher demands on the intelligent sensing of the operating status of key power equipment, in view of the complex structure of the comprehensive detection system for PD of power equipment caused by the single function of the current ultrasonic signal and high-frequency electromagnetic wave sensing system, as well as ultrasonic sensors and UHF antenna sensors are rigid structures, which will lead to complex installation on arc-shaped power equipment, this paper presents the research on the integration technology of partial discharge ultrasonic signal and high-frequency electromagnetic wave signal perception, PVDF piezoelectric material is used as the substrate, and interdigital electrode as sensing unit, establish an integrated structural model of ultrasonic and high-frequency electromagnetic wave sensing. The ultrasonic sensing performance and UHF electromagnetic wave sensing performance of the integrated sensor are simulated and analyzed by Piezoelectricity-Solid module in COMSOL and HFSS respectively. The simulation results show that: For ultrasonic signals in the frequency range of 20kHz to 200 kHz, when the frequencies are 52.1khz, 89.3khz, 94.8khz, and 171khz, the surface displacement of the integrated sensor exceeds 0.0025mm, under the signal of 94.8khz, the maximum surface displacement is 0.044mm, and the acoustic-electric conversion efficiency is the highest, this indicates that the integrated sensor senses signals in the range of 20kHz∼200kHz; for 0.3GHz∼3GHz UHF electromagnetic wave signal, in the 0.4GHz ∼ 0.45GHz, 0.55GHz ∼ 0.6GHz and 1.7GHz ∼ 3GHz, the VSWR of the integrated sensor is ≤ 5 and reflected power is ≤ 44.44%. This designed integrated sensor has the feasibility of sensing partial discharge radiation ultrasonic signal and high-frequency electromagnetic wave signal at the same time.
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