20222022 International Conference on Electrical Machines (ICEM)Requires access

A Fast Estimation of the Initial Rotor Position of Synchronous Reluctance Motors

Andrea Credo, F. Parasiliti, M. Tursini, Marco Villani

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Abstract

This paper proposes a new technique for estimating the initial rotor position of synchronous reluctance motors, which takes advantage of the magnetic anisotropy of the machine. The method is based on a particular supply voltage pattern which allows the computation of the initial rotor position by measuring the value of the phase currents and their derivates with a stationary rotor. The study is applied to a prototype of a 3kW synchronous reluctance motor with a flux barrier rotor. Both realistic simulations (accounting for the non-linear machine behavior) and experimental tests show the error between the estimated initial position and the effective one.

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What this paper is about

This paper proposes a new technique for estimating the initial rotor position of synchronous reluctance motors, which takes advantage of the magnetic anisotropy of the machine. The method is based on a particular supply voltage pattern which allows the computation of the initial rotor position by measuring the value of the phase currents and their derivates with a stationary rotor. The study is applied to a prototype of a 3kW synchronous reluctance motor with a flux barrier rotor. Both realistic simulations (accounting for the non-linear machine behavior) and experimental tests show the error between the estimated initial position and the effective one.

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Available abstract

This paper proposes a new technique for estimating the initial rotor position of synchronous reluctance motors, which takes advantage of the magnetic anisotropy of the machine. The method is based on a particular supply voltage pattern which allows the computation of the initial rotor position by measuring the value of the phase currents and their derivates with a stationary rotor. The study is applied to a prototype of a 3kW synchronous reluctance motor with a flux barrier rotor. Both realistic simulations (accounting for the non-linear machine behavior) and experimental tests show the error between the estimated initial position and the effective one.

Key concepts: Magnetic reluctance, Rotor (electric), Control theory (sociology), Reluctance motor, Switched reluctance motor, Position (finance), Synchronous motor, Wound rotor motor

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