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Evaluation of the Efficiency of Line-Start Permanent-Magnet Machines as a Function of the Operating Temperature

机译:根据工作温度评估线启动永磁电机的效率

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摘要

The standard squirrel-cage induction machine has nearly reached its maximum efficiency. In order to further increase the energy efficiency of electrical machines, the use of permanent magnets in combination with the robust design and the line start capability of the induction machine is extensively investigated. Many experimental designs have been suggested in literature, but recently, these line-start permanent-magnet machines (LSPMMs) have become off-the-shelf products available in a power range up to 7.5 kW. The permanent magnet flux density is a function of the operating temperature. Consequently, the temperature will affect almost every electrical quantity of the machine, including current, torque, and efficiency. In this paper, the efficiency of an off-the-shelf 4-kW three-phase LSPMM is evaluated as a function of the temperature by both finite-element modeling and by practical measurements. In order to obtain stator, rotor, and permanent magnet temperatures, lumped thermal modeling is used.
机译:标准的鼠笼式感应电机几乎已达到其最大效率。为了进一步提高电机的能效,广泛研究了永磁体与感应电机的稳健设计和线路启动能力的结合使用。文献中已经提出了许多实验设计,但是最近,这些线启动式永磁电机(LSPMM)已成为功率高达7.5 kW的现成产品。永磁通量密度是工作温度的函数。因此,温度将影响机器的几乎所有电量,包括电流,扭矩和效率。在本文中,通过有限元建模和实际测量,评估了现成的4 kW三相LSPMM效率与温度的关系。为了获得定子,转子和永磁体的温度,使用集总热模型。

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