DocumentCode :
21756
Title :
Power Electronics Control of an Energy Regenerative Mechatronic Damper
Author :
Roshan, Yaser M. ; Maravandi, Amir ; Moallem, Mehrdad
Author_Institution :
Sch. of Mechatron. Syst. Eng., Simon Fraser Univ., Surrey, BC, Canada
Volume :
62
Issue :
5
fYear :
2015
fDate :
May-15
Firstpage :
3052
Lastpage :
3060
Abstract :
This paper presents the development of a power electronics controller for a proof-of-concept energy regenerative damper in vehicular applications. The damper consists of an efficient motion conversion mechanism to convert translational base vibration into reciprocating rotary motion, a brushless three-phase permanent-magnet rotary machine, and a three-phase power converter. A power electronics boost controller is developed to capture the generated electrical power and store it into a battery that allows overcoming kinematic nonlinearities in the motion conversion stage. To this end, a sliding-mode controller that can enforce a resistive behavior across the terminals of the rotary machine by regulating the converter´s input current in real time is presented. Through the proposed approach, the mechanical damping coefficient of the system can be controlled, on demand, with an energy regenerative function. The performance of the developed system is evaluated under sinusoidal excitation inputs and transient conditions when operating with a damping coefficient of 650 $hbox{N}cdothbox{s/m} $ synthesized through power electronics and control. Experimental results that evaluate the performance of the proposed energy regenerative damper are presented.
Keywords :
battery powered vehicles; brushless machines; damping; machine control; mechatronics; permanent magnet machines; power electronics; rotary convertors; shock absorbers; variable structure systems; vibration control; battery power storage; brushless three-phase permanent magnet rotary machine; mechanical damping coefficient; power electronics controller; proof-of-concept energy regenerative damper; regenerative mechatronic damper; sliding mode controller; three-phase power converter; translational base vibration into reciprocating rotary motion conversion; vehicular applications; Batteries; Control systems; Damping; Power electronics; Resistance; Shock absorbers; Energy regenerative damping; motion conversion; sliding-mode control; three-phase converters;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2015.2392714
Filename :
7010921
Link To Document :
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