Improving the performance of hysteresis direct torque control of IPMSM using active filter topology

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Abstract

This paper describes an active filter topology to improve the performance of hysteresis direct torque control (HDTC) of interior permanent magnet synchronous motor (IPMSM). The filter topology consists of an active filter and two RLC filters, and is connected to the main power circuit through a 1:1 transformer. The active filter is characterized by detecting the harmonics in the motor phase voltages and injecting equivalent harmonic voltages to produce almost sinusoidal voltage waveform to the motor terminals. The active filter uses hysteresis voltage controller while the motor main circuit uses hysteresis direct torque control. The simulation results of this combined control structure show considerable torque ripple reduction in the steady state range and adequate dynamic torque performance as well as considerable harmonic voltage and EMI noise reduction.

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Gulez, K., Adam, A. A., & Pastaci, H. (2006). Improving the performance of hysteresis direct torque control of IPMSM using active filter topology. Sadhana - Academy Proceedings in Engineering Sciences, 31(3), 245–258. https://doi.org/10.1007/BF02703380

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