首页> 外文会议>IEEE Conference on Industrial Electronics and Applications; 20070523-25; Harbin(CN) >A Novel Method for Nonlinear Modeling and Dynamic Simulation of a Four-Phase Switched Reluctance Generator System Based on MATLAB/SIMULINK
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A Novel Method for Nonlinear Modeling and Dynamic Simulation of a Four-Phase Switched Reluctance Generator System Based on MATLAB/SIMULINK

机译:基于MATLAB / SIMULINK的四相开关磁阻发电机系统非线性建模和动态仿真的新方法

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摘要

Based on the nonlinear inductance model and electromagnetic field finite-element analysis (FEA) of Switched Reluctance Generator (SRG), a novel method for modeling and simulation of the SRG system was proposed in MATLAB/SIMULINK environment. In this model, to analyze both dynamic and static state of the system's outputs realistically, the power inverter, excitation source and loads were modeled based on SIMULINK/SimPowerSystems(PSB). On the basis of this nonlinear model, three typical control strategies are simulated and analyzed, and then a high performance controller with two closed-loops was designed based on PI and Current Chopping (CC) control strategies. Simulation results really report the work status of SRG system and validate the applicability of the model and the controller.
机译:基于开关磁阻发电机(SRG)的非线性电感模型和电磁场有限元分析(FEA),提出了一种在MATLAB / SIMULINK环境下对SRG系统进行建模和仿真的新方法。在该模型中,为了现实地分析系统输出的动态和静态,基于SIMULINK / SimPowerSystems(PSB)对功率逆变器,励磁源和负载进行了建模。在此非线性模型的基础上,对三种典型的控制策略进行了仿真和分析,然后基于PI和电流斩波(CC)控制策略设计了具有两个闭环的高性能控制器。仿真结果真实地报告了SRG系统的工作状态,并验证了模型和控制器的适用性。

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