Title :
Energy Regenerative Suspension Using an Algebraic Screw Linkage Mechanism
Author :
Sabzehgar, Reza ; Maravandi, A. ; Moallem, Mehrdad
Author_Institution :
Sch. of Mechatron. Syst. Eng., Simon Fraser Univ., Surrey, BC, Canada
Abstract :
This paper presents the development of a novel energy-regenerative suspension mechanism. The system consists of a mass-spring unit coupled with an algebraic screw kinematic pair, a rotary permanent magnet synchronous generator (PMSG), and a three-phase boost charger connected to a battery. The algebraic screw converts the translational vibration into a reciprocating rotary motion which drives the PMSG through a planetary gearhead. A pulse-width-modulated three-phase boost converter is then used to convert the energy generated by the rotary machine into battery charge. To this end, a control and switching algorithm is utilized that makes the battery appear as a pseudo-resistor across the terminals of the rotary machine. Introducing this pseudo-resistive characteristic across the machine produces the same effect as mechanical damping with an energy regenerative function. The design and analysis of the regenerative suspension mechanism are presented by considering the dynamics of the electromechanical device, parameters of the suspension system, and the base excitation input profile. Experimental results are presented that evaluate performance of the proposed regenerative damper on a small-scale suspension system, which demonstrate the feasibility of building energy-regenerative dampers.
Keywords :
algebra; couplings; damping; fasteners; permanent magnet generators; suspensions (mechanical components); vibrations; PMSG; algebraic screw kinematic pair; algebraic screw linkage mechanism; base excitation input profile; battery charge; control algorithm; energy regenerative suspension; mass-spring unit; mechanical damping; planetary gearhead; pseudo-resistive characteristic; pulse-width-modulated three-phase boost converter; reciprocating rotary motion; rotary permanent magnet synchronous generator; small-scale suspension system; switching algorithm; three-phase boost charger; translational vibration; Batteries; Damping; Fasteners; Resistance; Shock absorbers; Vibrations; Energy conversion; energy harvesting; mechatronic damper; regenerative suspension; switched-mode converters;
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
DOI :
10.1109/TMECH.2013.2277854