王彬

个人信息Personal Information

副教授

招生学科专业:
动力工程及工程热物理 -- 【招收硕士研究生】 -- 能源与动力学院
航空宇航科学与技术 -- 【招收硕士研究生】 -- 能源与动力学院
能源动力 -- 【招收硕士研究生】 -- 能源与动力学院

任职 : 国家自然科学基金委通讯评审,教育部学位与研究生教育发展中心优秀研究生学位论文函评专家,Elsevier航空与自动化工程领域技术专著通讯评审。中国机械工程学会流体传动与控制分会第七届委员会智能流控专业委员。

毕业院校:浙江大学

学历:浙江大学

学位:工学博士学位

所在单位:能源与动力学院

办公地点:明故宫校区 A10

联系方式:binwang@nuaa.edu.cn

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Study on Precise Displacement Control of a Miniature Hydraulic System via RBF-DOB

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所属单位:能源与动力学院

发表刊物:IEEE Access

摘要:For compact and efficient actuation, miniature hydraulic system has overwhelming superiority in power to weight ratio. However, it always involves nonlinear interferences like variable hose volume or oil bulk modulus, which greatly restricts control performance for the actuation. In this paper, a miniature hydraulic volume-controlled actuation system is introduced and the problem of precise displacement control of the system in presence of variable hose volume caused by uncertain external load is investigated. A radical basis function-disturbance observer (RBF-DOB) hybrid control strategy based on back-stepping theory is proposed. The system and the controller are mathematically modeled and simulation to demonstrate the validity of the RBF-DOB. Comparison to proportion-integral-differential and sliding model control (SMC) methods indicates that, the system using RBF-DOB has highest displacement precision and best dynamic performance. SMC is inclined to exhibit the best robustness but inferior jitter in control command output. As far as anti-disturbance capacity is concerned, RBF-DOB control strategy falls between other two counterparts. RBF-DOB hybrid control strategy can substantially solve the problems of nonlinear interferences resulted from uncertain system parameters and different load states in miniature hydraulic actuation systems. © 2013 IEEE.

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发表时间:2018-01-01

合写作者:张楠,Ji, Hengyu

通讯作者:王彬