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Design of High Power Density and High Efficiency Wound-Field Synchronous Motor for Electric Vehicle Traction

机译:电动车辆牵引大功率密度和高效伤口场同步电动机设计

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摘要

This paper deals with a design method to improve the power density and energy efficiency of a wound-field synchronous motor (WFSM) using hairpin type rectangular wire for electric vehicle traction. First, the prototype is analyzed via experiments to come up with plans to improve it. In addition, mechanical loss of the prototype including the bearing and brush friction losses is obtained and used for designing the improved motor. After then, an analytical approach is presented for the magnetic circuit design to minimize magnetic resistance in the motor core. Also, the analytical methods are proposed to predict the resistance of the field and armature windings. At this step, rectangular wire is considered for the armature winding to reduce the copper loss. Moreover, the calculation process is presented to estimate the iron loss considering harmonics. The performances such as power density and efficiency of the improved WFSM are analyzed and compared with those of the prototype. In addition, the energy efficiency of the motors in the new European drive cycle (NEDC) is analyzed. Finally, the performances of the improved WFSM are compared with the experimental results to verify the validity of the proposed design process.
机译:本文涉及一种设计方法,可以使用发动型矩形电线来提高伤口场同步电动机(WFSM)的功率密度和能量效率。首先,通过实验分析原型,提出计划改进它。另外,获得包括轴承和刷摩擦损失的原型的机械损失并用于设计改进的电动机。此后,提出了一种用于磁路设计的分析方法,以最小化电机芯中的磁阻。而且,提出了分析方法来预测场和电枢绕组的电阻。在该步骤中,考虑矩形线用于电枢绕组以降低铜损。此外,提出了计算过程以估计考虑谐波的铁损。分析了改进的WFSM的功率密度和效率等性能,并与原型的那些进行比较。此外,分析了新欧洲驱动周期(NEDC)中电机的能量效率。最后,将改进的WFSM的性能与实验结果进行比较,以验证所提出的设计过程的有效性。

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