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A Comprehensive Simulation Platform for Switched Reluctance Generator System

机译:开关磁阻发电机系统的综合仿真平台

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A Switched Reluctance Generator (SRG) system normally encompasses three main components: SR machine, controller and converter. On-going research on simulation and modelling of SRG system has focused on one component. There is a lack of a more comprehensive approach which integrates all three components into one simulation platform. We have developed a simulation model comprising SR machine, control and converter using MATLAB/Simulink. The main advantage of a simulation model is to reduce time and cost by having to perform changes on the prototype machine. In this paper, the work is focused on developing the optimal control algorithm for the platform. Optimal parameters are identified and characterized in terms of highest percentage of power generated. From simulation, the most influential parameters affecting the power generated are the firing angles and voltage level. So, a function relating the optimized parameter with machine performance was developed. The proposed control technique will provide easy implementation and ensure high machine performance. The effectiveness of the proposed method is demonstrated by simulation results. The work will aid in development of SRG by providing a platform to determine the best generating operation before real implementation, reducing manufacturing time and cost.
机译:开关磁阻发电机(SRG)系统通常包含三个主要组件:SR机器,控制器和转换器。对SRG系统的仿真和建模的持续研究集中在一个组件上。缺少将所有三个组件集成到一个仿真平台中的更全面的方法。我们使用MATLAB / Simulink开发了包括SR机器,控制和转换器的仿真模型。仿真模型的主要优点是通过必须在原型机上执行更改来减少时间和成本。在本文中,工作重点是为平台开发最佳控制算法。可以根据所产生的最高功率百分比来确定和表征最佳参数。通过仿真,影响产生功率的最有影响力的参数是点火角度和电压水平。因此,开发了将优化参数与机器性能相关联的功能。提出的控制技术将提供易于实施的方法并确保较高的机器性能。仿真结果证明了该方法的有效性。这项工作将通过提供一个在实际实施之前确定最佳发电运行的平台,从而缩短SRG的开发时间并降低成本。

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