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Saliency Ratio and Power Factor of IPM Motors With Distributed Windings Optimally Designed for High Efficiency and Low-Cost Applications

机译:IPM电机的凸度比和功率因数,针对高效,低成本应用进行了优化设计,具有分布式绕组

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This paper uses formal mathematical optimization techniques based on parametric finite-element-based computationally efficient models and differential evolution algorithms. For constant-power applications, in the novel approach described, three concurrent objective functions are minimized: material cost, losses, in order to ensure high efficiency, and the difference between the rated and the characteristic current, aiming to achieve very high constant-power flux-weakening range. Only the first two objectives are considered for constant-torque applications. Two types of interior permanent magnet rotors in a single- and double-layer V-shaped configuration are considered, respectively. The stator has the typical two slots per pole and phase distributed winding configuration. The results for the constant-torque design show that, in line with expectations, high efficiency and high power factor machines are more costly, and that the low-cost machines have poorer efficiency and power factor and most importantly, and despite a common misconception, the saliency ratio may also be lower in this case. For constant-power designs, the saliency ratio can be beneficial. Nevertheless, despite a common misconception, when cost is considered alongside performance as an objective, a higher saliency ratio does not necessarily improve the power factors of motors suitable for ideal infinite flux weakening.
机译:本文使用基于参数有限元的高效计算模型和差分进化算法的形式化数学优化技术。对于恒定功率应用,在描述的新颖方法中,三个并发的目标函数被最小化:材料成本,损耗(为了确保高效率)以及额定电流和特性电流之间的差,旨在实现非常高的恒定功率弱通量范围。对于恒转矩应用,仅考虑前两个目标。分别考虑了单层和双层V形构造的两种类型的内部永磁体转子。定子的每个极和相分布绕组配置通常具有两个槽。恒转矩设计的结果表明,符合预期的是,高效率和高功率因数的机器成本更高,而低成本机器的效率和功率因数较差,最重要的是,尽管存在常见的误解,在这种情况下,显着性比率也可能会更低。对于恒定功率设计,显着比可能是有益的。尽管如此,尽管存在一个普遍的误解,但将成本与性能作为目标加以考虑时,较高的凸度比并不一定会改善适合于理想无限磁通削弱的电动机的功率因数。

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