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http://dx.doi.org/10.5050/KSNVE.2010.20.12.1176

Active Vibration Control Experiment of Cantilever Using Active Linear Actuator for Active Engine Mount  

Yang, Dong-Ho (동국대학교 기계공학과)
Kwak, Moon-K. (동국대학교 기계로봇에너지공학과)
Kim, Jung-Hoon (현대자동차)
Park, Woon-Hwan ((주)파브코)
Sim, Ho-Seok ((주)파브코)
Publication Information
Transactions of the Korean Society for Noise and Vibration Engineering / v.20, no.12, 2010 , pp. 1176-1182 More about this Journal
Abstract
Vibrations caused by automobile engine are absorbed mostly by a passive-type engine mount. However, user specifications for automobile vibrations require more stringent conditions and higher standard. Hence, active-type engine mount have been developed to cope with such specifications. The active-type engine mount consists of sensor, actuator and controller where a control algorithm is implemented. The performance of the active engine mount depends on the control algorithm if the sensor and actuator satisfies the specification. The control algorithm should be able to suppress persistent vibrations caused by the engine which are related to engine revolution. In this study, three control algorithms are considered for suppressing persistent vibrations, which are the positive position feedback control algorithm, the strain-rate feedback control algorithm, and the modified higher harmonic control algorithm. Experimental results show that all the control algorithms considered in this study are effective in suppressing resonant vibrations but the modified higher harmonic controller is the most effective controller for non-resonant vibrations.
Keywords
Active Engine Mount; Active Vibration Control; PPF; SRF; HHC; Controller;
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Times Cited By KSCI : 3  (Citation Analysis)
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