[1] CHEN J Z, LIAO W H.Design, testing and control of a magnetorheological actuator for assistive knee braces[J]. Smart Materials and Structures,2010,19(3):29-35. [2] TSE T, CHANG C C. Shear-mode rotary MR damper for small-scale structural control experiments[J]. Journal of Structural Engineering,2004,130(6):904-911. [3] GORDANINEJAD F, WANG X, HITCHCOCK G, et al. Modular high-force seismic magneto-rheological fluid damper[J]. Journal of Structural Engineering,2010,136(2):135-143. [4] SUNG K G, CHOI S B. Effect of an electromagnetically optimized magnetorheological damper on vehicle suspension control performance[J]. Proceedings of the Institution of Mechanical Engineers Part D-Journal of Automobile Engineering,2008,222(D12):2307-2319. [5] YU M, DONG X M, CHOI S B, et al. Human simulated intelligent control of vehicle suspension system with MR damper[J]. Journal of Sound and Vibration,2009,319(3):753-767. [6] WANG D H, LIAO W H. Semi-active suspension systems for railway vehicles using magnetorheological dampers: part I. system integration and modeling[J]. Vehicle System Dynamics,2009,47(11):1305-1325. [7] WANG D H, LIAO W H. Semi-active suspension systems for railway vehicles using magnetorheological dampers: part II. simulation and analysis[J]. Vehicle System Dynamics,2009,47(12):1439-1471. [8] SCRUGGS J T, IWAN W D. Control of a civil structure using an electric machine with semi-active capability[J]. Journal of Structural Engineering,2003,129(7):951-959. [9] CHOI W S, JUNG H J, LEE I W, et al. Smart passive system based on magnetorheological damper[J]. Smart Materials and Structures,2005,14(4):707-714. [10] CHOI Y T, WERELEY N M. Self-powered magnetorheological dampers[J]. Journal of Vibration and Acoustics-Transactions of the ASME,2009,131(4):44-50. [11] CHEN C, LIAO W H. A self-sensing magnetorheological damper with power generation[J]. Smart Materials and Structures,2012,21(2):1-14. [12] GUAN X C, HUANG Y H, RU Y, et al. A novel self-powered MR damper: theoretical and experimental analysis[J]. Smart Materials and Structures,2015,24(10):1-13. [13] ZUO L, SCULLY B, SHESTANI J, et al. Design and characterization of an electromagnetic energy harvester for vehicle suspensions[J].Smart Materials and Structures,2010,19(4):1007-1016. [14] DONG M X. Design and characterization of axial flux permanent magnet energy harvester for vehicle magnetorheological damper[J]. Smart Materials and Structures,2016,25(1):1-20. [15] 董小闵,彭少俊,于建强.自供电式汽车磁流变减振器特性研究[J].机械工程学报,2016,52(20):83-91. [16] JASTRZEBSKI L, SAPINSKI B. Electrical interface for a self-powered MR damper based vibration reduction system[J]. Acta Mechanica et Automatica,2016,10(3):165-172. [17] CHOI S B, LEE H S, PARK Y P. H∞ control performance of a full-vehicle suspension featuring magnetorheological dampers[J]. International Journal of Vehicle Mechanics and Mobility,2002,38(5):341-360. [18] 陈杰平,陈无畏,祝辉,等.基于Matlab/Simulink的随机路面建模与不平度仿真[J].农业机械学报,2010,41(3):11-15. |