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首页> 外文期刊>Journal of power electronics >Braking Torque Closed-Loop Control of Switched Reluctance Machines for Electric Vehicles
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Braking Torque Closed-Loop Control of Switched Reluctance Machines for Electric Vehicles

机译:电动汽车开关磁阻电机的制动转矩闭环控制

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摘要

In order to promote the application of switched reluctance machines (SRM) in electric vehicles (EVs), the braking torque closed-loop control of a SRM is proposed. A hysteresis current regulator with the soft chopping mode is employed to reduce the switching frequency and switching loss. A torque estimator is designed to estimate the braking torque online and to achieve braking torque feedback. A feed-forward plus saturation compensation torque regulator is designed to decrease the dynamic response time and to improve the steady-state accuracy of the braking torque. The turn-on and turn-off angles are optimized by a genetic algorithm (GA) to reduce the braking torque ripple and to improve the braking energy feedback efficiency. Finally, a simulation model and an experimental platform are built. The simulation and experimental results demonstrate the correctness of the proposed control strategy.
机译:为了促进开关磁阻电机(SRM)在电动汽车(EV)中的应用,提出了SRM的制动转矩闭环控制。采用软斩波模式的磁滞电流调节器可降低开关频率和开关损耗。扭矩估算器设计用于在线估算制动扭矩并实现制动扭矩反馈。前馈加饱和补偿扭矩调节器的设计目的是减少动态响应时间并提高制动扭矩的稳态精度。通过遗传算法(GA)优化了接通和断开角度,以减少制动转矩波动并提高制动能量反馈效率。最后,建立了仿真模型和实验平台。仿真和实验结果证明了所提出控制策略的正确性。

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