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An adaptive sliding-mode observer with a tangent function-based PLL structure for position sensorless PMSM drives
Affiliation:1. Department of Automation Science and Engineering, South China University of Technology, Guangzhou 510640, China;2. Hermes-Microvision, Inc., San Jose, CA, 95131, USA;1. Department of Electrical Engineering, Southern Taiwan University of Science and Technology, 1 Nan-Tai Street, Yong-Kang District, Tainan City 710, Taiwan, ROC;2. Department of Electronics and Electrical Engineering, Ho Chi Minh City University of Technology and Education, Ho Chi Minh City, Viet Nam
Abstract:This paper proposes a position estimation strategy for the sensorless control of permanent-magnet synchronous motors (PMSMs) based on an improved sliding-mode observer (SMO) and a tangent function-based phase-locked loop (PLL) structure. The improved SMO adopts a rotor speed-related adaptive feedback gain, and is able to derive a flux model-based estimator that contains rotor position and speed direction information. To extract accurate rotor position from the proposed SMO and reduce position estimation errors in both forward and reverse rotation of the PMSM, a tangent function-based PLL structure is established. The proposed SMO together with the PLL structure realises a solution to position and speed estimation for sensorless PMSM drives. Compared with the conventional back electromotive force (EMF)-based position estimator, the proposed position estimation strategy has advantages of simple design and robust estimation performance at a wider speed range. Effectiveness of the proposed method has been validated with simulations on virtual platform.
Keywords:Position estimation  Sliding-mode observer (SMO)  Sensorless control  Permanent-magnet synchronous motor (PMSM)  Phase-locked loop (PLL)
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