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Optimization research of turn-on angle and turn-off angle based on switched reluctance starter/generator system

机译:基于开关磁阻起动器/发电机系统的接通角和断开角的优化研究

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Switched reluctance starter/generator has stronger competition ability in the hybrid system by reason of the large starting torque, easy to switch from electric to power, high power density, wide speed range, high efficiency, high reliability, low cost, etc. In order to improve the performance of switched reluctance starter/generator system, the master switch angle is needed to optimize. In this paper, according to the serious nonlinear characteristic of switched reluctance motor, the nonlinear simulation model is built by wavelet neural network method. The system starting opening turn-on and turn-off angle has been optimized with the purpose of maximizing the torque and the system power opening turn-on and turn-off angle has been optimized with the purpose of both biggest power output and optimal efficiency. The optimum switch angles are obtained under the two states. Experiments verification has finished on the prototype system of SRM/G system experimental platform.
机译:开关磁阻启动器/发电机具有混合动力系统,因为其启动转矩大,易于从电切换到功率,功率密度高,速度范围宽,效率高,可靠性高,成本低等优点,因此在混合动力系统中具有较强的竞争能力。为了提高开关磁阻启动器/发电机系统的性能,需要优化主开关角度。针对开关磁阻电机的严重非线性特性,利用小波神经网络方法建立了非线性仿真模型。为了最大程度地提高转矩,已优化了系统的开始开合角度和关闭角度,并以最大的功率输出和最佳效率为目标对系统的电源开合和关闭角度进行了优化。在两种状态下可获得最佳开关角度。在SRM / G系统实验平台的原型系统上完成了实验验证。

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