Dynamic Models of Synchronous Machines

J. Chow, J. Sanchez-Gasca
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Abstract

This chapter focuses to develop positive‐sequence synchronous machine models suitable for dynamic simulation of power system disturbances. A synchronous machine subject to a 3‐phase fault exhibits a variety of time responses in different time scales, namely, the transient and subtransient effects, as it settles to a new steady state after the fault is cleared. The chapter discusses how to interface the detailed synchronous machine model to the power network, and how to develop a linearized synchronous machine model. The generator terminal voltages are developed using the states from the synchronous machine dynamic model. The linearization of power systems with subtransient generator models will increase the dimensions of the state variables and the system matrix. The chapter shows the systematic reduction of the 2‐axis model to simpler models, including the flux‐decay model and the electromechanical model. It should be noted that finite‐element methods have been proposed to compute the machine parameters.
同步电机的动态模型
本章的重点是开发适合电力系统扰动动态仿真的正序同步电机模型。发生三相故障的同步电机在不同的时间尺度上表现出不同的时间响应,即瞬态和亚瞬态效应,因为它在故障清除后稳定到一个新的稳态。本章讨论了如何将详细的同步电机模型与电网接口,以及如何建立线性化的同步电机模型。利用同步电机动态模型的状态来确定发电机端电压。对具有次暂态发电机模型的电力系统进行线性化将增加状态变量和系统矩阵的维数。本章展示了将2轴模型系统地简化为更简单的模型,包括通量衰减模型和机电模型。应该注意的是,已经提出了有限元方法来计算机器参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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