高压直流换流阀系统晶闸管可靠性寿命模型研究

Qiang Li, Yantao Lou, C. Su, Ziyi Xu, Binbing Xia, Feng Wang
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引用次数: 0

摘要

在高海拔环境下,空气湿度、温度、压力、大气中子等因素都会对相关电气设备产生影响,也给高压直流输电工程的可靠运行带来困难,特别是对换流阀系统中的关键器件晶闸管。建立考虑具体工程应用环境条件影响的准确的设备寿命模型,对提高设备的可靠性和运维方案的制定具有重要意义。基于现有的加速寿命试验理论,结合大功率晶闸管的工作特点,搭建了高海拔条件下的晶闸管寿命试验箱。通过所有被测晶闸管的长期耐压,记录击穿晶闸管的实际运行时间,最后得到高海拔环境下晶闸管故障率与不同偏置电压之间的寿命预测模型。模型和试验结果表明,晶闸管的故障率与外加偏置电压呈正相关。本试验建立的高海拔地区电压应力下晶闸管故障率模型可用于计算高海拔环境下实际工程不同工况下晶闸管故障率,对预测整个高压直流输电系统的寿命和提高可靠性具有重要的指导意义。
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 Reliability Life Model of Thyristor in HVDC Converter Valve System in High-altitude Environment
Under the high-altitude environment, air humidity, temperature, pressure, atmospheric neutron and other factors will affect related electrical equipment, it also brings difficulties to the reliable operation of HVDC transmission projects, especially the thyristor, the key device in the converter valve system. Establishing an accurate device life model considering the influence of specific engineering application environmental conditions is of great significance to improve the reliability of devices and the setting of operation and maintenance schemes. Based on the existing accelerated life test theory and the working characteristics of high-power thyristors, this paper builds a thyristor life test chamber at high altitudes. Through the long-term withstand voltage of all the tested thyristors, the actual running time of the breakdown thyristors is recorded, and finally the life prediction model between the thyristor failure rate and different bias voltages in the high-altitude environment is obtained. The model and test results show that the failure rate of thyristor is positively correlated with the applied bias voltage. The failure rate model of thyristor under voltage stress in high-altitude area established by this test can be used to calculate the failure rate of thyristor under different operating conditions of actual engineering in high-altitude environment, and it has important guiding significance for predicting the life and improving the reliability of the entire HVDC transmission system.
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