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首页> 外文期刊>E3S Web of Conferences >Topology and control algorithms for a permanent magnet synchronous motor as a part of a vehicle with in-wheel motors
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Topology and control algorithms for a permanent magnet synchronous motor as a part of a vehicle with in-wheel motors

机译:永磁同步电动机作为车载车载电机的一部分的拓扑和控制算法

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摘要

This article describes an electric drive system’s topology with a permanent magnet synchronous motor for a wide speed range applications. Topology consists of a synchronous motor with permanent magnets (PMSM) and two inverters connected to the beginnings and to the ends of the PMSM’s stator windings. The first inverter is connected to a storage battery, while the other one to a floating bridge capacitor, which acts as a back-EMF compensator. The article proposes electric drive system topolo-gy and its control algorithm. Simulation modeling was implemented by the MATLAB/Simulink software package. Simulation results shows that the proposed electric drive system, in comparison with the standard topology with a ?star? stator windings connection, is able to increase the maximum speed of PMSM in the field weakening mode by 17%. The maximum achievable torque on the rotor shaft at the maximum speed of the PMSM motor was increased by 16.6%. Also, developed topology allows to in-crease the speed range in the constant torque mode by 34%.
机译:本文介绍了电动驱动系统的拓扑,具有永磁同步电动机,用于广泛的速度范围应用。拓扑由具有永磁体(PMSM)的同步电动机组成,两个逆变器连接到开始,并连接到PMSM定子绕组的末端。第一逆变器连接到蓄电池,而另一个到浮桥电容器,其用作后射电压补偿器。本文提出了电动驱动系统Topolo-Gy及其控制算法。仿真建模由MATLAB / SIMULINK软件包实现。仿真结果表明,建议的电动驱动系统与A星的标准拓扑相比?定子绕组连接,能够将现场弱化模式中PMSM的最大速度提高17%。在PMSM电机的最大速度下转子轴上的最大可实现扭矩增加了16.6%。此外,开发的拓扑允许在恒定扭矩模式下递增速度范围为34%。

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