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Modeling and control of a hysteresis IPM motor drive for electric submersible pumps

机译:潜水电泵的磁滞IPM电机驱动器的建模和控制

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This paper presents the modeling and performance analysis of a hysteresis IPM motor drive for electric submersible pumps (ESPs). The purpose of this paper is to extend the run-life of the downhole ESPs in offshore oil recovery plants by introducing a more reliable and more efficient submersible hysteresis IPM motor drive into the existing ESP technology. An adjustable speed controller has been designed in order to soft-start the motor at variable frequencies. Simulations have been carried out to obtain the performances of a 3-phase 4-pole 208V 2.5 kW hysteresis IPM motor drive for ESP load. Experimental investigations have been also carried out for a laboratory prototype 2.5 kW hysteresis IPM motor. Both the simulation and experimental results are presented and analyzed in this paper. Based on the simulation and the experimental results, the hysteresis IPM motor can be a possible replacement for the standard induction motors currently used for downhole ESPs.
机译:本文介绍了用于潜水电泵(ESP)的磁滞IPM电机驱动器的建模和性能分析。本文的目的是通过在现有的ESP技术中引入更可靠,更高效的潜水磁滞IPM电动机驱动器,来延长海上采油厂的井下ESP的使用寿命。设计了可调速控制器,以便以可变频率软启动电动机。已经进行了仿真以获得用于ESP负载的三相4极208V 2.5 kW磁滞IPM电动机驱动器的性能。还对实验室原型2.5 kW磁滞IPM电动机进行了实验研究。给出了仿真结果和实验结果,并进行了分析。根据仿真和实验结果,磁滞IPM电机可以替代当前用于井下ESP的标准感应电机。

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