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A Generalized State-Space Modeling of Three Phase Self-Excited Induction Generator For Dynamic Characteristics and Analysis

机译:三相自励感应发电机动态特性的广义状态空间建模与分析

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Dynamic characteristics assessment of three phase self excited induction generator is one of the main issue in isolated applications as it proves its importance in recent years. The transient characteristics of SEIG has important role to define its better applicability. In this paper a generalized state-space dynamic modeling of a three phase SEIG has been developed using d-q variables in stationary reference frame for transient analysis. The proposed model for induction generator, load and excitation using state space approach can handle variable prime mover speed, and various transient conditions e.g. load perturbation, switching states etc. Also the effect of variation of excitation capacitance on system is analyzed. SEIG behavior has been investigated considering the effect of main and cross flux saturation for various transient conditions. The equation developed has been simulated using powerful software MATLAB/SIMULINK, and its responses justify the proposed model
机译:三相自激感应发电机的动态特性评估是隔离应用中的主要问题之一,因为它证明了近年来的重要性。 SEIG的瞬态特性对于定义其更好的适用性具有重要作用。在本文中,已经开发了一个三相SEIG的广义状态空间动态建模,该模型使用固定参考系中的d-q变量进行瞬态分析。所提出的用于感应发电机,使用状态空间方法的负载和励磁的模型可以处理可变的原动机速度以及各种瞬态条件,例如负载扰动,开关状态等。还分析了励磁电容变化对系统的影响。考虑到各种瞬态条件下主磁通和交叉磁通饱和的影响,对SEIG行为进行了研究。已使用强大的软件MATLAB / SIMULINK对开发的方程进行了仿真,其响应证明了所提出的模型的合理性。

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