A Perspective on Power Converters Design: Stability and Reliability Aspects

A. Azizi, S. Peyghami, Frede Blaabjerg
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Abstract

This paper proposes a new approach for design of power electronics converters considering reliability and stability issues from a system level perspective. Conventional design approaches rely only the reliability of the overall system. However, a converter failure can also introduce stability issues, which in turn increase the risk of loss of load in power electronics-based power systems. This may be severe considering increasing failure rate due to aging of converters. In this paper, a modeling approach is proposed to link the reliability of the converter, stability, and risk of the system in order to design a converter to guarantee acceptable performance of the overall system. Simulations on a hybrid micro grid (HMG) illustrate that even though the stability issues increase the total risk of the system, optimal oversizing and redesigning of the critical components can reduce the risk of system and minimize the adverse impacts of the system stability.
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电源变换器设计的观点:稳定性和可靠性方面
本文提出了一种从系统层面考虑可靠性和稳定性问题的电力电子变换器设计新方法。传统的设计方法只依赖于整个系统的可靠性。然而,转换器故障也会带来稳定性问题,从而增加基于电力电子的电力系统的负载损失风险。考虑到由于转换器老化而增加的故障率,这可能是严重的。本文提出了一种将变换器的可靠性、稳定性和系统风险联系起来的建模方法,从而设计出保证整个系统可接受性能的变换器。在混合微电网(HMG)上的仿真表明,尽管稳定性问题增加了系统的总风险,但对关键部件进行优化的超大尺寸和重新设计可以降低系统的风险,使系统稳定性的不利影响最小化。
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