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Efficiency Enhancement of General AC Drive System by Remanufacturing Induction Motor With Interior Permanent-Magnet Rotor

机译:再制造带有内置永磁转子的感应电动机可提高通用交流驱动系统的效率

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Alternating-current motor drive systems consume the majority of global electricity, but most of them are still not efficient enough. This paper proposes a complete solution to the efficiency enhancement of general induction motor (IM) drive systems with the least cost and a high reliability. On the motor side, the squirrel-cage rotors of IMs are replaced with optimally designed interior permanent-magnet (PM) rotors without damping windings; meanwhile, other assemblies remained unchanged. Stators with both wye- and delta-connected windings are investigated, and super premium efficiency (IE4) is achieved on all the remanufactured motors in this paper. On the drive side, the maximum efficiency per ampere algorithm is realized based on the position-sensorless control to better exert the motor efficiency and reduce the system cost. For applications where an original IM is used under a grid drive, this paper safely switches the remanufactured interior PM synchronous motors from an inverter to the grid drive. A total of seven prototypes with different rated powers and velocities are remanufactured, and various experiments are provided as the verifications of the effectiveness and practicability of the proposed solution.
机译:交流电动机驱动系统消耗了全球大部分电力,但其中大多数仍然不够高效。本文提出了一种以最低的成本和较高的可靠性来提高通用感应电动机(IM)驱动系统效率的完整解决方案。在电机方面,IMs的鼠笼式转子被优化设计的内部永磁(PM)转子取代,且没有阻尼绕组。同时,其他程序集保持不变。研究了星形和三角形连接绕组的定子,本文中所有再制造的电动机均实现了超高效率(IE4)。在驱动器方面,基于无位置传感器控制实现了每安培算法的最大效率,以更好地发挥电机效率并降低系统成本。对于在电网驱动器下使用原始IM的应用,本文将重新制造的内部PM同步电动机从逆变器安全切换到电网驱动器。总共重新制造了七个具有不同额定功率和速度的原型,并提供了各种实验来验证所提出解决方案的有效性和实用性。

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