A Fast Estimation of the Initial Rotor Position of Synchronous Reluctance Motors
Andrea Credo, F. Parasiliti, M. Tursini, Marco Villani
Abstract
Andrea Credo, F. Parasiliti, M. Tursini, Marco Villani
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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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