利用相关分析技术对区域间振荡进行模态振型估计和模态识别

Song Han, Zhengguo Xu, Cheng Wu
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引用次数: 2

摘要

本文提出了一种利用相关分析(CA)快速估计区域间振荡(IAO)振型及相应振型的新算法。该方法首先利用离线计算获得的先验模态知识设计低通或带通滤波器,从来自广域测量系统(WAMS)的每个tie线有源功率信号中提取出与目标模态强相关的弱阻尼分量。然后利用这些时域信号CA的自相关系数和互相关系数确定总能对应某一模态的联络线功率偏差和等效速度偏差的区域间模态形。最后,通过离线计算和在线修正的模态形式(MF)对IAO特征的结果进行校核,以确定当前状态下的主导模态及其模态振型。利用平稳和非平稳两对合成信号验证了CA的适用性,并对华东电网4区9母线系统和规划案例进行了实例研究,结果表明该算法是高效有效的,也表明该算法在大容量电力系统WAMS中具有潜在的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mode shape estimation and mode identification for inter-area oscillations utilizing correlation analysis techniques
This paper presents a new algorithm for rapid estimating inter-area oscillation(IAO) mode shapes and corresponding modes using correlation analysis(CA). It firstly extracts a weak damping component strongly associated with objective mode from each tie-line active power signal came from WAMS(Wide Area Measurement System), through a low-pass or band-pass filter which is designed by a priori modal knowledge obtained from off-line calculation. Then the self-correlation and cross-correlation coefficients resulted from CA of these time-domain signals are used to determine a inter-area mode shape of tie-line power deviation and equivalent speed deviation which is always able to correspond to a mode. Finally, the results about IAO features are checked with the modal form(MF) from off-line calculation and on-line correction in order to confirm the dominant mode and its mode shape at current state. Two pairs of stationary and non-stationary synthetic signals are utilized to verify the applicability of CA. The case studies have been carried out on a 4-area and 9-bus system and a planning case in East China Power Grid(ECPG), and the results show that the proposed algorithm is efficient and effective, and also indicate the potential practicability for WAMS of bulk power system.
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