大型风电场激振次同步振荡建模与特征分析

Cees van Vledder, J. R. Torres, A. Ştefanov, P. Palensky, O. Anaya‐Lara, Bas Kruimer, F. Gonzalez-Longatt
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引用次数: 0

摘要

在现代信息物理能源系统(CPESs)中,电力电子接口发电量(PEIG)的数量急剧增加。PEIG的有限能力(例如惯性、过流),以及它们的位置和特定技术设计的控制系统,改变了不同类型的稳定性现象的动态特性,例如次同步振荡(sso)。由于PEIG控制与周围电网动态响应之间的相互作用相互冲突,在亚秒时间尺度内,可能会出现阻尼不良的SSO。本文重点研究了这种相互作用的建模和评估,重点研究了大型全变流器(又称4型)风力发电厂(WPPs)的集成。通过组合不同的分析工具,实现的模型支持对低阻尼单点登录的发生和可观察性进行敏感性评估。基于状态空间模型的特征分析被迭代地用于确定在WPP控制器设置不适当的情况下,主导单点系统的阻尼变异性。功率谱密度(PSD)分析用于定性地估计在cceps的不同总线上的低阻尼SSO的可观测程度。采用DIgSILENT PowerFactory 2022 SP1对改进版的IEEE-39总线系统进行了数值测试。提出了在监测和广域阻尼控制临界SSOs中使用相量测量单元(pmu)产生的数据的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and Eigenanalysis of Sub-synchronous Oscillations Excited by Large Wind Power Plants
The amount of power electronic interfaced generation (PEIG) is significantly proliferating in modern cyber-physical energy systems (CPESs). The limited capabilities (e.g. inertia, over-current) of PEIG, together with their location and technology-specific designed control systems, alter the dynamic properties of different types of stability phenomena, e.g. sub-synchronous oscillations (SSOs). A poorly damped SSO can emerge, within a sub-second time scale, through conflicting inter-actions between the controls of PEIG and the dynamic response of the surrounding electrical network. This paper focuses on the modelling and assessment of such interactions, with emphasis on the integration of large-size full converter (a.k.a. type-4) based wind power plants (WPPs). By combining different analysis tools, the implemented model supports sensitivity assessment of the occurrence and observability of a poorly damped SSO. State-space model based eigenanalysis is iteratively used to ascertain damping variability of a dominant SSO, excited by inappropriate controller settings of the WPP. Power spectral density (PSD) analysis is used to qualitatively estimate the degree of observability of the poorly damped SSO across different buses of a CEPS. Numerical tests are performed on a modified version of the IEEE-39 bus system by using DIgSILENT PowerFactory 2022 SP1. Suggestions are provided for the deployment of data generated from phasor measurement units (PMUs) in the monitoring and wide-area damping control of critical SSOs.
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