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Redundant Design of Modular DC Solid-State Transformer Based on the Long Term Reliability Evaluation

机译:基于长期可靠性评估的模块化直流固态变压器的冗余设计

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The solid-state transformer (SST) is promising to be applied in smart grid, traction systems and distributed generation systems, for its high efficiency, low costs and high controllability compared with line-frequency transformers. As the interface of future energy systems, the reliability of SST is of great importance. As a converter with modular structure, the redundancy design is one important measure to improve the reliability of SST. However, current redundancy designs are usually based on the reliability evaluation results obtained from the stable operation condition of SST, without taking the longterm mission profile of the converter into account. Besides, the aging of power semiconductor devices (PSDs) and capacitors are seldom considered while evaluating the reliability. In this paper, the reliability of the modular DC-SST for power distribution applications, including the long-term mission profile and aging of critical devices, is evaluated. An improved aging model of capacitors is also used. Moreover, the loss model of PSDs and capacitors that considers the number of modules is proposed in this paper as well. It combines the reliability evaluation result and redundancy design together, making the redundancy design of DC-SST more creditable.
机译:与线频变压器相比,固态变压器(SST)具有高效率,低成本和高可控性,可应用于智能电网,牵引系统和分布式发电系统。作为未来能源系统的界面,SST的可靠性非常重要。作为具有模块化结构的转换器,冗余设计是提高SST可靠性的重要措施。然而,目前的冗余设计通常基于从SST的稳定操作条件获得的可靠性评估结果,而不考虑转换器的Longterm任务配置文件。此外,在评估可靠性时,电力半导体器件(PSD)和电容器的老化很少考虑。在本文中,评估了用于配电应用的模块化DC-SST的可靠性,包括关键设备的长期任务配置文件和老化。还使用改进的电容器老化模型。此外,本文还提出了考虑模块数量的PSD和电容器的损耗模型。它将可靠性评估结果和冗余设计结合在一起,使得DC-SST更加可信的冗余设计。

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