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Surface-Permanent-Magnet Synchronous Machine Design for Saliency-Tracking Self-Sensing Position Estimation at Zero and Low Speeds

机译:用于零速和低速显着性跟踪自感位置估计的表面永磁同步电机设计

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摘要

Elimination of externally mounted position sensors and their associated cables is a goal for drive manufacturers. This paper addresses design methods of surface-permanent-magnet (SPM) synchronous machines for saliency-tracking self-sensing (position sensorless) position estimation. Machine spatial saliency is created by stator magnetic saturation due to the rotor zigzag leakage flux from SPMs. Using the machine saliency created by zigzag leakage flux can allow an SPM machine to be suitable for saliency-tracking position estimation without the need of any special rotor design modification. In addition, another major benefit is achieved, i.e., a saliency role reversal whereby $L_{d} > L_{q}$. This has the advantage of reducing machine cross-saturation and increasing the feasible region for closed-loop self-sensing control. All the design procedures are verified by the finite-element analysis, and a 50-W SPM machine is used for experimental evaluation.
机译:消除外部安装的位置传感器及其相关的电缆是驱动器制造商的目标。本文提出了用于显着性跟踪自感(无位置传感器)位置估计的表面永磁同步电机的设计方法。由于SPM产生的转子之字形泄漏磁通量,定子磁饱和会产生机器空间显着性。使用之字形漏磁通产生的机器显着性可使SPM机器适用于显着性跟踪位置估计,而无需进行任何特殊的转子设计修改。另外,实现了另一个主要优点,即显着角色反转,由此$ L_ {d}> L_ {q} $。这样的优点是减少了机器的交叉饱和,并增加了闭环自感应控制的可行区域。所有设计程序均经过有限元分析验证,并使用50 W SPM机器进行实验评估。

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