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Comparative Study on Dual-Channel Switched Reluctance Generator Performances Under Single- and Dual-Channel Operation Modes

机译:单通道和双通道工作模式下双通道开关磁阻发生器性能的比较研究

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摘要

The multichannel generator is a kind of special generator, which is developed to enhance power reliability in safety critical applications. This paper compares the dynamic performance computation for a 12/8 dual-channel switched reluctance generator (DCSRG) under single- and dual-channel operation modes. First, the static phase self- and mutual inductances are numerically calculated through finite element analysis (FEA). Based on the magnetic characteristics, the mathematical and simulation models of DCSRG under different operation modes are presented. In the dual-channel model, the effect of mutual coupling between phases of each channel in the DCSRG is considered. By using these proposed dynamic models, the different performances for the DCSRG under single- and dual-channel operation modes, such as generating process under closed-loop control, steady-state performance at different conditions, sudden change in load operation, and the operating status when changing from motoring to generating, are predicted and compared. Finally, a 12/8 DCSRG system is built for experimentation. The simulation and experimental results are also compared in the DCSRG system under different operation modes to verify the proposed modeling and analysis.
机译:多通道发电机是一种特殊的发电机,其开发目的是提高安全关键型应用中的电源可靠性。本文比较了在单通道和双通道工作模式下12/8双通道开关磁阻发电机(DCSRG)的动态性能计算。首先,通过有限元分析(FEA)数值计算静态自感和互感。根据磁特性,给出了DCSRG在不同工作模式下的数学模型和仿真模型。在双通道模型中,考虑了DCSRG中每个通道的相位之间的相互耦合效应。通过使用这些提出的动态模型,DCSRG在单通道和双通道运行模式下的不同性能,例如闭环控制下的发电过程,不同条件下的稳态性能,负载运行的突然变化以及运行情况。从电动机到发电的状态进行预测和比较。最后,构建了一个12/8 DCSRG系统进行实验。在DCSRG系统中,以不同的操作模式对仿真和实验结果进行了比较,以验证所提出的建模和分析。

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