유도전동기 드라이브에서의 단위전류당 최대토크적응 제어기의 다운전점에서의 성능 연구

Performance of Adaptive Maximum Torque Per Amp Control at Multiple Operating Points for Induction Motor Drives

초록

The highly efficient operation of induction motors has been studied in the past years. Among the many attempts made to obtain highly efficient operation, Maximum Torque Per Amp (MTPA) controls in induction motor drives were proposed. This method enables induction motor drives to operate very efficiently since it achieves the desired torque with the minimal stator current. This is because the alternate qd induction motor model (AQDM) is a highly accurate mathematical model to represent the dynamic characteristics of induction motors. However, it has been shown that the variation of the rotor resistance degrades the performance of the MTPA control significantly, thus leading to its failure to satisfy the maximum torque per amp condition. To take into consideration the mismatch between the actual value of the rotor resistance and its parameter value in the design of the control strategy, an adaptive MTPA control was proposed. In this work, this adaptive MTPA control is investigated in order to achieve the desired torque with the minimum stator current at multiple operating points. The experimental study showed that (i) the desired torque was accurately achieved even though there was a deviation of the order of 5% from the commanded torque value at a torque reference of 25 Nm (tracking performance), and (ii) the minimum stator current for the desired torque (maximum torque per amp condition) was consistently satisfied at multiple operating points, as the rotor temperature increased.

키워드

Induction motor modelmaximum torque per amp (MTPA) controlmaximum torque per amp conditionmultiple operating pointsrotor resistance variationthermal effects
제목
유도전동기 드라이브에서의 단위전류당 최대토크적응 제어기의 다운전점에서의 성능 연구
제목 (타언어)
Performance of Adaptive Maximum Torque Per Amp Control at Multiple Operating Points for Induction Motor Drives
저자
권춘기공용해
DOI
10.5762/KAIS.2018.19.3.584
발행일
2018
저널명
한국산학기술학회논문지
19
3
페이지
584 ~ 593