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并网变流器的同步稳定性。

Synchronization stability of power-grid-tied converters.

机构信息

State Key Laboratory of Advanced Electromagnetic Engineering and Technology, Hubei Electric Power Security and High Efficiency Key Laboratory, School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan 430074, China.

China Southern Power Grid Electric Power Research Institute (SEPRI), Guangzhou 510080, China.

出版信息

Chaos. 2023 Mar;33(3):032102. doi: 10.1063/5.0136975.

Abstract

Synchronization stability is one of central problems in power systems, and it is becoming much more complicated with the high penetration of renewable energy and power electronics devices. In this paper, we review recent work by several nonlinear models for renewable-dominated power systems in terms of multiple timescales, in particular, grid-tied converters within the DC voltage timescale. For the simplest model, a second-order differential equations called the generalized swing equation by considering only the phase-locked loop (PLL) is obtained, which shows a similar form with the well-known swing equation for a synchronous generator in the traditional power systems. With more outer controllers included, fourth-order and fifth-order models can be obtained. The fourth-order model is called the extended generalized swing equation, exhibiting the combined function of grid synchronization and active power balance on the DC capacitor. In addition, a nonlinear model for a two coupled converter system is given. Based on these studies, we find that the PLL plays a key role in synchronization stability. In summary, the value of this paper is to clarify the key concept of the synchronization stability in renewable-dominated power systems based on different nonlinear models, which still lacks systematic studies and is controversial in the field of electrical power engineering. Meanwhile, it clearly uncovers that the synchronization stability of converters has its root in the phase synchronization concept in nonlinear sciences.

摘要

同步稳定性是电力系统的核心问题之一,随着可再生能源和电力电子设备的高渗透率,它变得更加复杂。在本文中,我们根据多时间尺度,特别是在直流电压时间尺度内的电网连接转换器,回顾了最近关于可再生能源主导的电力系统的几个非线性模型的工作。对于最简单的模型,通过仅考虑锁相环(PLL)来获得称为广义摇摆方程的二阶微分方程,该方程与传统电力系统中同步发电机的著名摇摆方程具有相似的形式。通过包含更多的外部控制器,可以得到四阶和五阶模型。四阶模型称为扩展广义摇摆方程,在直流电容器上展示了电网同步和有功功率平衡的组合功能。此外,还给出了一个用于两个耦合转换器系统的非线性模型。基于这些研究,我们发现 PLL 在同步稳定性中起着关键作用。总之,本文的价值在于基于不同的非线性模型阐明可再生能源主导的电力系统中同步稳定性的关键概念,这在电气工程领域仍然缺乏系统的研究和争议。同时,它清楚地揭示了转换器的同步稳定性源于非线性科学中的相位同步概念。

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