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Wound field synchronous motor with hybrid circuit for neighborhood electric vehicle traction improving fuel economy

机译:具有混合电路的绕线同步电动机,用于邻域电动汽车牵引,可提高燃油经济性

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摘要

Increasing the low mileage associated with electric vehicles is a major requirement. Improving the efficiency of the traction motor is one solution to solve the mileage problem. In this study, we propose a method to improve the efficiency of a wound field synchronous motor (as the traction motor) in case of neighborhood electric vehicles. The wound field synchronous motor is a salient pole machine that generates a negative reluctance torque when operating in the second quadrant, reducing its efficiency. However, second quadrant operation is inevitable due to voltage limitation in the high-speed range. Here, we propose a hybrid circuit comprising U, V, W windings and X, Y, Z windings. The high-speed efficiency of the wound field synchronous motor is improved by changing the connection between the windings. Further, a neighborhood electric vehicle with a wound field synchronous motor was simulated using an advanced vehicle simulator (ADVISOR) to verify the proposal. The hybrid circuit increased the fuel economy of the electric vehicle by up to 3.8%. Finally, a validation experiment was conducted using a fabricated motor prototype.
机译:增加与电动车辆相关的低里程是主要要求。提高牵引电动机的效率是解决里程问题的一种解决方案。在这项研究中,我们提出了一种在邻域电动汽车的情况下提高绕线同步电动机(作为牵引电动机)效率的方法。绕线同步电动机是一个凸极电机,当在第二象限中运行时会产生负磁阻转矩,从而降低了效率。然而,由于在高速范围内的电压限制,第二象限操作是不可避免的。在这里,我们提出了一种混合电路,包括U,V,W绕组和X,Y,Z绕组。通过改变绕组之间的连接,可以提高绕线同步电动机的高速效率。此外,使用先进的车辆模拟器(ADVISOR)对具有缠绕磁场同步电动机的邻域电动汽车进行了模拟,以验证该建议。混合动力电路使电动汽车的燃油经济性提高了3.8%。最后,使用装配好的电机原型进行了验证实验。

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