DocumentCode :
1062132
Title :
Ropeless Elevator With Linear Switched Reluctance Motor Drive Actuation Systems
Author :
Lim, Hong Sun ; Krishnan, Ramu
Author_Institution :
Virginia Polytech. Inst. & State Univ., Blacksburg
Volume :
54
Issue :
4
fYear :
2007
Firstpage :
2209
Lastpage :
2218
Abstract :
Linear switched reluctance motor (LSRM) drives are investigated and proved in this study as an alternative actuator for vertical linear transportation applications such as a linear elevator. A one-tenth-scaled prototype elevator that is focused on a home elevator with LSRMs is designed, and extensive experimental correlation is presented for the first time in this paper. The proposed LSRM has twin stators and a set of translator poles without yoke placed between the two stators. The features of the LSRM and the prototype elevator are described. Furthermore, a control strategy for the prototype elevator is introduced consisting of four control loops, viz., (1) current, (2) force, (3) velocity, and (4) position feedback control loops. Force control of the experimental prototype elevator employs the proposed force distribution function. A trapezoidal velocity profile is introduced to control vertical travel position smoothly during ascent, descent, and stop of the elevator. Conventional proportional-integral controller is used for the current and velocity control loops and their designs are described. The proposed control strategy is dynamically simulated and experimentally correlated. The analytical and experimental results of this paper prove that LSRMs are one of the strong candidates for linear elevator propulsion drives.
Keywords :
PI control; electric propulsion; feedback; force control; lifts; linear motors; position control; reluctance motor drives; velocity control; LSRM drives; current control loops; linear elevator propulsion drives; linear switched reluctance motor drive actuation systems; position feedback control loops; proportional-integral controller; ropeless elevator; translator poles; trapezoidal velocity profile; velocity control loops; vertical linear transportation applications; Elevators; Feedback control; Force control; Force feedback; Hydraulic actuators; Prototypes; Reluctance motors; Stators; Transportation; Velocity control; Elevator; force control; force distribution function (FDF); linear switched reluctance motor (LSRM); vertical propulsion system;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2007.899875
Filename :
4276949
Link To Document :
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