Advanced Field Weakening Control for Maximum Output Power Operation of Induction Motor in a Limited Environment

  • Seo, Yong-Joo (Department of Electrical Engineering, Pusan University) ;
  • Go, Hee-Young (Department of Electrical Engineering, Pusan University) ;
  • Kim, Jang-Mok (Department of Electrical Engineering, Pusan University)
  • Published : 2012.11.23

Abstract

A load motor used for warship or submarine is with limited volume and weight, also specific environmental tests like impact, vibration, noise, temperature and EMC/EMI have to be satisfied. Induction motors, synchronous motors, BLDC motor and etc, are used depending on the purpose of using military equipment. Induction Motors are used for a number of military equipment more commonly due to the robust structure and simple maintenance. Domestic and foreign warships have a wide range of voltages as the DC voltage sources with battery are mainly used for them. The ${\Delta}-connection$ operation of the induction motor is required to make the maximum power in a low voltage level. But the elements' temperature of the inverter increases due to high input current when it is in the ${\Delta}-connection$ operation. Therefore, the induction motor must be driven with the Y-connection. The lack of voltage needs to be with the field weakening control. This paper suggests the optimum field weakening control algorithm to drive the induction motor with maximum power in a limited thermal and DC voltage condition.

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