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Analysis on starting performance of a novel wound rotor Line-start Permanent Magnet Synchronous Motor

机译:新型绕线式线启动永磁同步电动机的启动性能分析

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Under the crane's working conditions, a Wound Rotor Line-start Permanent Magnet Synchronous Motor (WRLSPMSM) is designed in this paper. Rotor external resistance can be connected to the prototype, and rotor resistance determines when the maximum torque appears. So this paper puts forward a method to improve the starting performance, which PWM chopping is adopted to control rotor external DC fixed resistance. Because the number of rotor external AC resistance is limited, the starting torque has fluctuation when rotor external AC resistance is switched. Rotor external DC fixed resistance is controlled by PWM chopper technology. Regulate the rotor external DC fixed resistance rapidly to reduce torque ripple and realize speed stepless. Detailed theoretical analysis shows that starting torque is mainly affected by asynchronous torque and generated braking torque, and also according the analysis determines the value of rotor external DC fixed resistance. Meanwhile considering the influence of slots per pole per phase q on cogging torque, which easily disturbs the system's precise controlling during the low speed running, the fraction-slot winding is adopted in the prototype. The PWM chopping control method makes the starting process safer and more convenient than asynchronous motor.
机译:在起重机的工作条件下,本文设计了绕线启动永磁同步电动机(WRLSPMSM)。转子外部电阻可以连接到原型,转子电阻决定何时出现最大转矩。因此,本文提出了一种提高起动性能的方法,即采用PWM斩波控制转子的外部直流固定电阻。由于转子外部交流电阻的数量受到限制,因此在切换转子外部交流电阻时,启动转矩会发生波动。转子外部直流固定电阻由PWM斩波器技术控制。快速调节转子的外部直流固定电阻,以减少转矩波动并实现无级调速。详细的理论分析表明,起动转矩主要受异步转矩和产生的制动转矩影响,并据此确定转子外部直流固定电阻的值。同时考虑到每相每极槽距q对齿槽转矩的影响,这很容易干扰低速运行时系统的精确控制,因此在原型中采用了分数槽绕组。 PWM斩波控制方法使启动过程比异步电动机更安全,更方便。

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