用于水电厂同步发电机动态仿真的有效模型

J. W. Tsotie, R. Wamkeue
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引用次数: 1

摘要

本文研究了作为水电厂主要部件的同步发电机的实际建模问题。所研究的发电系统包括液压回路、调速系统、励磁系统和SG。每个系统组件都被格式化为状态形式。SG状态模型以磁场电压为唯一可控输入变量,以定子电流、磁场电流和定子电压为输出观测变量,既包括饱和现象,也包括机械运动。由此产生的灵活SG模型连接到其他发电厂组件,可以预测各种测试,例如:经典的三相突然短路测试,开路定子现场短路测试以及负载抑制和线路切换测试。为了证明所提出的电厂建模框架的有效性,使用Matlab/Simulink程序对不同的测试和电厂场景(自动电压调节器(AVR)开断)进行了广泛的仿真和讨论。
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An efficient model of synchronous generator for hydraulic power plant dynamic simulations
The paper is concerned with practical modelling of the synchronous generator (SG) as the main component of the hydroelectric power plant. The generation system under study comprises the hydraulic circuit, the speed regulator, the excitation system and the SG. Each system component is formatted into state form. The SG state model developed with field voltage as the only controlled input variable and with stator currents, field currents and stator voltages as output observed variables, includes both the saturation phenomenon and the mechanical motion. The resulting flexible SG model connected to other power plant components allows predicting various tests such as: the classical three-phase sudden short-circuit test, the field short-circuit test with the stator in open circuit and the load rejection and line-switching tests. In order to prove the effectiveness of the proposed power plant modeling framework, extensive simulations using the Matlab/Simulink program are performed and discussed for different tests and plant scenarios (automatic voltage regulator (AVR) on and off).
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