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Thermal Stress Based Power Routing of Smart Transformer With CHB and DAB Converters

机译:具有CHB和DAB转换器的智能变压器基于热应力的功率路由

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摘要

The smart transformer (ST) is a potential solution for an upgrade of the electric distribution grid, which enables to provide services to the grid and dc connectivity. However, the power electronics within the system are challenged by high reliability requirements. One possible solution to increase the reliability is to employ prognosis to predict the failures and avoid down times of the system. Traditional maintenance scheduling is based on the remaining useful lifetime (RUL) of the individual components or the forecasted failure probability. For a further increase of the time to the next maintenance, it is desired to have similar wear out of all components, which need to be maintained or exchanged. In this article, it is proposed to route the power internally in a modular power converter consisting of a cascaded H-bridge connected to dual active bridges in order to influence the RUL of its building blocks. Therefore, a thermal stress based wear-out control is designed for addressing the processed power dependent failures of the devices in the building blocks of the ST. Compared to the conventional power routing methods, the impact of the proposed system-level control considering electrical and thermal parameter variations is demonstrated using Monte Carlo analysis.
机译:智能变压器(ST)是配电网升级的潜在解决方案,可为电网和直流连接提供服务。然而,系统内的电力电子设备受到高可靠性要求的挑战。提高可靠性的一种可能解决方案是采用预测来预测故障并避免系统停机。传统的维护计划基于单个组件的剩余使用寿命(RUL)或预测的故障概率。为了进一步增加下一次维护的时间,期望所有部件具有相似的磨损,需要维护或更换。在本文中,建议在模块化功率转换器中内部路由功率,该功率转换器由级联的H桥组成,该H桥连接到双有源桥,以影响其构件的RUL。因此,设计了一种基于热应力的磨损控制,以解决ST构件中设备的已处理功率相关故障。与传统的电源布线方法相比,使用蒙特卡洛分析证明了考虑电和热参数变化的建议系统级控制的影响。

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