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Large-Signal Stability Criteria in DC Power Grids With Distributed-Controlled Converters and Constant Power Loads

机译:具有分布式控制转换器的直流电网中的大信号稳定标准和恒力负载

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摘要

The increasing adoption of power electronic devices may lead to large disturbance and destabilization of future power systems. However, stability criteria are still an unsolved puzzle, since traditional small-signal stability analysis is not applicable to power electronics-enabled power systems when a large disturbance occurs, such as a fault, a pulse power load, or load switching. To address this issue, this paper presents for the first time the rigorous derivation of the sufficient criteria for large-signal stability in DC microgrids with distributed-controlled DC-DC power converters. A novel type of closed-loop converter controllers is designed and considered. Moreover, this paper is the first to prove that the well-known and frequently cited Brayton-Moser’s mixed potential theory (published in 1964) is incomplete. Case studies are carried out to illustrate the defects of Brayton-Moser’s mixed potential theory and verify the effectiveness of the proposed novel stability criteria.
机译:增加电力电子设备的采用可能导致未来电力系统的大扰动和不稳定。然而,稳定标准仍然是一个未解决的拼图,因为当发生大的干扰时,传统的小信号稳定性分析不适用于电力启用的电力系统,例如故障,脉冲功率负载或负载切换。为了解决这个问题,本文首次介绍了具有分布式控制的DC-DC电源转换器的DC微电网中大信号稳定性的严格推导。设计并考虑了一种新型的闭环转换器控制器。此外,本文是第一个证明众所周知和经常引用的布雷顿 - Moser的混合潜力理论(于1964年发布)是不完整的。进行案例研究以说明Brayton-Moser的混合潜在理论的缺陷,并验证所提出的新型稳定标准的有效性。

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