用于多机电力系统中发电机控制的动态COI跟踪概念

Z. Lan, D. Gan, Libao Shi, Y. Ni, T. Bi
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引用次数: 8

摘要

在传统的励磁控制概念中,故障发生后,发电机的功率角和频率被驱动到预先设计的工作点。本文将其命名为恒点稳定(CPS)概念。提出了一个新的概念——动态惯性中心(COI)跟踪概念。在该概念中,每台发电机的功率角和频率跟踪电力系统的动态COI。与CPS概念相比,所提出的动态COI跟踪概念的一个显著特点是发电机不再局限于恒定的角度点或频率,而是跟踪系统的动态COI轨迹以保持转子角度和频率的同步。广域测量系统(WAMS)将用于将COI信号转换到每个发生器。WAMS信号的延时在一定范围内是允许的。为了对这两个概念进行比较,首先建立了基于这两个概念的控制系统模型。然后,利用反推法设计了两个鲁棒控制器来实现这两个概念的控制目标。最后,基于2区4机试验电力系统进行了动态仿真,对比了两种控制器的控制效果,并与传统的AVR + PSS励磁系统进行了对比。版权所有©2007 John Wiley & Sons, Ltd
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic COI‐tracking concept for the control of generators in multi‐machine power systems
In the conventional excitation control concept, the power angle and frequency of a generator are driven to a pre-designed operation point after the fault occurs. It is named as Constant Point Stabilization (CPS) concept in this paper. A novel concept, called dynamic Center of Inertia (COI)-tracking concept is proposed in this paper. In the concept, the power angle and frequency of each generator track the dynamic COI of the power system. Compared to CPS concept, a salient feature the suggested dynamic COI-tracking concept has is that the generators are not restricted to constant angle point or frequency any longer but track the dynamic COI trajectory of the system to keep synchronous in rotor angle and frequency. Wide area measurement system (WAMS) will be used to transform COI signals to each generator. The time delay within a certain limit of WAMS signals is permitted. To make comparison between the two concepts, the control system models based on the two concepts are first established. Then, using the back-stepping method, two robust controllers are designed to achieve the control objectives of the two concepts. At last, dynamic simulations are carried out based on a 2-area-4-machine test power system, and the control effects of the two controllers, together with that of the conventional AVR + PSS excitation system, are compared. Copyright © 2007 John Wiley & Sons, Ltd.
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来源期刊
European Transactions on Electrical Power
European Transactions on Electrical Power 工程技术-工程:电子与电气
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