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Lifetime Analysis of Metallized Polypropylene Capacitors in Modular Multilevel Converter Based on Finite Element Method

机译:基于有限元法的模块化多级转换器中金属化聚丙烯电容的寿命分析

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摘要

Metallized polypropylene capacitors (MPPCs) are widely used in the modular multilevel converter (MMC) for high-voltage direct-current transmission systems because of their lower power losses and self-healing capability. The performance of MPPCs in MMC deteriorates with time due to the increase in the equivalent series resistance and a decrease in the capacitance. Therefore, the reliability analysis of MPPC is critical. This article proposes a finite element method (FEM) to analyze the reliability of MPPC by considering corrosion failure. First, the equivalent electric model and actual thermal model of the MPPC are established to calculate power losses and temperature distribution of the MPPC. Second, the corrosion failure of the MPPC is analyzed and simulated by the FEM model, and the lifetime model of MPPC is established by the aging model of polypropylene film and verified by the traditional lifetime model of corrosion failure and the floating aging tests. Finally, the voltage of each submodule (SM) is extracted in the MMC model, and the lifetime of MPPCs in each SM is analyzed by combining the FEM model and the lifetime model. The results show that in the MMC, the SMs in each arm near the dc line or the middle part have a lower lifetime of MPPCs.
机译:由于其较低的功率损耗和自愈能力,金属化聚丙烯电容器(MPPC)广泛用于高压直流传输系统的模块化多级转换器(MMC)。由于等效串联电阻的增加和电容减小,MMC在MMC中的MPPCS的性能劣化。因此,MPPC的可靠性分析至关重要。本文提出了一种有限元方法(FEM)来通过考虑腐蚀失败来分析MPPC的可靠性。首先,建立MPPC的等效电模型和实际热模型,以计算MPPC的功率损耗和温度分布。其次,通过FEM模型分析和模拟MPPC的腐蚀失败,并通过聚丙烯薄膜的老化模型建立MPPC的寿命模型,并通过传统的腐蚀失败和浮动老化试验验证。最后,通过组合有限元模型和寿命模型,分析每个SM的MMC模型中提取每个子模型(SM)的电压。结果表明,在MMC中,在DC线或中间部分附近的每个臂中的SMS具有较低的MPPC寿命。

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