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Transient angle stability analysis of grid-connected converters with the first-order active power loop

机译:一阶有功功率回路并网变流器的暂态角稳定性分析

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As the increasing application of power electronic converters in electric power grids, the stability of grid-connected converters has become a major concern for reliable operations of the power grid. This paper analyzes the transient stability of grid-connected converters with the first-order active power loop. It points out that the conventional equal-area criterion, which has been widely used in the transient stability analysis of synchronous generators, may not apply to grid-connected converters, due to the different dynamic characteristics between converters and synchronous generators. To tackle this challenge, this paper employs the phase portrait to analyze the transient stability of power converters, and it is found that the better transient stability performance can be achieved if the grid-connected converters are controlled as the first-order nonlinear system. Simulations and experimental results are given to verify the effectiveness of the theoretical analysis.
机译:随着电力电子转换器在电网中的越来越多的应用,并网转换器的稳定性已经成为电网可靠运行的主要关注点。本文分析了具有一阶有功功率环路的并网转换器的暂态稳定性。指出由于同步发电机和同步发电机之间动态特性的不同,已广泛用于同步发电机暂态稳定性分析的常规等面积判据可能不适用于并网变换器。为了解决这一挑战,本文采用相图来分析功率变换器的暂态稳定性,发现如果将并网变换器作为一阶非线性系统进行控制,则可以实现更好的暂态稳定性能。通过仿真和实验结果验证了理论分析的有效性。

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