The design of low cost valve-and-pump compounded pressure control system for the hydro viscous clutch

被引:4
作者
Gong, Guofang [1 ]
Wang, Fei [1 ]
Qin, Yongfeng [1 ]
Zhang, Yakun [1 ]
Sun, Chenchen [1 ]
Yang, Huayong [1 ]
机构
[1] Zhejiang Univ, State Key Lab Fluid Power & Mechatron Syst, Hangzhou, Peoples R China
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
Hydro viscous clutch; Compounded pressure control; Adaptive robust control; Feedforward PID control; SLIDING-MODE CONTROL; ADAPTIVE ROBUST-CONTROL; NONLINEAR-SYSTEMS; TRACKING CONTROL; ACTUATORS; STRATEGY; ROBOT;
D O I
10.1016/j.mechatronics.2019.102310
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Hydro viscous clutch (HVC) is a power transmission unit which relies on shear stress of fluid to transmit driving torque. The conventional pressure control system suffers from high minimum operating pressure problem. This makes the HVC has a large drag torque and greatly limits the usage flexibility. In this article, a valve-and-pump compounded pressure control (VCPC) system is proposed for the hydro viscous clutch (HVC) to enlarge the working pressure range in the low pressure direction. The pressure of the control cylinder is adjusted by the rotary speed of pump or the electro-proportional relief valve (ERV) when the VCPC system works on different pressure stage. The adaptive robust control (ARC) algorithm and the feedforward PID algorithm are introduced into the VCPC system for the purpose of obtaining better pressure tracking performance. The effectiveness of the proposed VCPC system is validated through the compared experiments. Electromagnetic interference is considered and experiment results are carefully analyzed. It can be concluded that the pressure control range is increased by 38% with the proposed VCPC system. And compared with conventional control algorithms, the ARC algorithm has a better pressure tracking performance and relatively smooth input signal on low pressure stage.
引用
收藏
页数:12
相关论文
共 40 条
[21]   Supervisor control strategy of synchronizer for wet DCT based on online estimation of clutch drag torque [J].
Lu, Tongli ;
Li, Hongkui ;
Zhang, Jianwu ;
Hao, Hongtao .
MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2016, 66-67 :840-861
[22]   Development of Pump and Valves Combined Hydraulic System for Both High Tracking Precision and High Energy Efficiency [J].
Lyu, Litong ;
Chen, Zheng ;
Yao, Bin .
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2019, 66 (09) :7189-7198
[23]   Study on BP Neural Network PID Control for Hydro-viscous Drive System [J].
Meng, Qingrui ;
Wang, Jian ;
Wang, Daoming ;
Wang, Kai ;
Song, Baocheng .
ENERGY DEVELOPMENT, PTS 1-4, 2014, 860-863 :1525-1529
[24]   Accurate sliding-mode control of pneumatic systems using low-cost solenoid valves [J].
Nguyen, T. ;
Leavitt, J. ;
Jabbari, F. ;
Bobrow, J. E. .
IEEE-ASME TRANSACTIONS ON MECHATRONICS, 2007, 12 (02) :216-219
[25]   Vector Control of Induction Motor Using an Integral Sliding Mode Controller with Anti-windup [J].
Oliveira C.M.R. ;
Aguiar M.L. ;
Monteiro J.R.B.A. ;
Pereira W.C.A. ;
Paula G.T. ;
Almeida T.E.P. .
Journal of Control, Automation and Electrical Systems, 2016, 27 (02) :169-178
[26]   Force control for hydraulic load simulator using self-tuning grey predictor - fuzzy PID [J].
Truong, Dinh Quang ;
Ahn, Kyoung Kwan .
MECHATRONICS, 2009, 19 (02) :233-246
[27]   Enhancing roll stability of heavy vehicle by LQR active anti-roll bar control using electronic servo-valve hydraulic actuators [J].
Van Tan Vu ;
Sename, Olivier ;
Dugard, Luc ;
Gaspar, Peter .
VEHICLE SYSTEM DYNAMICS, 2017, 55 (09) :1405-1429
[28]  
Xie F.W., 2009, MIN SCI TECHNOL, V19, P544, DOI [10.1016/S1674-5264(09)60102-2, DOI 10.1016/S1674-5264(09)60102-2]
[29]   A Data Driven Approach to Uncover Deficiencies in Online Reputation Systems [J].
Xie, Hong ;
Lui, John C. S. .
2015 IEEE INTERNATIONAL CONFERENCE ON DATA MINING (ICDM), 2015, :1045-1050
[30]  
Xie HW, 2016, PROGNOST SYST HEALT