基于有限元仿真方法的 VSC-HVDC 控制保护装置的湿度扩散过程分析和寿命预测

Changgeng Li, Yutao Cheng, Xiaochao Hou
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摘要

基于电压源换流器的高压直流输电(VSC-HVDC)对于整合可再生能源和促进区域间电力传输至关重要。本研究评估了这些系统中对电网稳定运行至关重要的控制和保护装置的可靠性。湿度对这些设备的运行条件和使用寿命都有很大影响。以往的研究依赖于大量的全条件疲劳测试,缺乏有效的测试模型和详细的机理分析。为了弥补这一不足,我们开发了湿度扩散模型,以全面研究湿度扩散机制。利用所获得的见解,Hallberg-Peck 模型被用于预测这些设备的寿命,定量评估湿度变化如何影响其可靠性。这种方法采用了严格的失效标准,从而得出了保守的预测寿命。与 GB/T 2423.50-2012 中的基准相比,该方法的预测准确率达到了 85.648%,验证了我们模型的准确性以及我们的模拟技术在严格条件下的有效性。这项研究提供了重要的理论数据,是指导在不同环境湿度下精确维护设备的重要工具。
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Humidity Diffusion Process Analysis and Life Prediction of a VSC-HVDC Control Protection Device Based on a Finite Element Simulation Method
Voltage Source Converter-based High-Voltage Direct Current Transmission (VSC-HVDC) is essential for integrating renewable energy sources and facilitating inter-regional power transmission. This study evaluates the reliability of control and protection devices within these systems, which are crucial for the stable operation of power grids. Humidity significantly affects both the operational conditions and lifespan of these devices. Previous studies, reliant on extensive full-condition fatigue testing, have lacked effective test models and detailed analyses of mechanisms. To address this gap, a humidity diffusion model was developed to comprehensively investigate moisture diffusion mechanisms. Using the insights gained, the Hallberg–Peck model was applied to predict the lifespan of these devices, quantitatively assessing how changes in humidity affect their reliability. This approach employs a stringent failure criterion, leading to a conservative predicted lifespan. This method achieved a prediction accuracy of 85.648% compared to the benchmarks in GB/T 2423.50-2012, validating the accuracy of our model and the effectiveness of our simulation technology under stringent conditions. This research provides vital theoretical data and serves as an essential tool for guiding the precise maintenance of equipment in varying environmental humidity levels.
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