Experimental Study of the Direct Drive Hydraulic System with the Torque Mode

Author:

Zhang ChenyangORCID,Jiang Hongzhou

Abstract

The torque mode is more suitable for the direct drive 6 degree of freedom (6-DOF) parallel mechanism than the speed mode that both dynamic coupling and current coupling among motors are easily solved, but its key parameters and dynamic characteristics have never been studied, which are important and are the goals of this paper. First the hydraulic system of the direct drive 6-DOF parallel mechanism is simplified. Then the transfer function of the direct drive hydraulic system with the torque mode is deduced together with that of the speed mode. Finally, comparative experiments are conducted. Results show that the dynamic characteristics of the system with the torque mode which are generally worse than those with the speed mode, are mainly determined by the parameters of the motor-pump second-order element of the transfer function composed of two under-damped second-order elements, proportion differentiation (PD) control strategy and dynamic pressure feedback (DPF) control strategy are useful for the system with the torque mode, but practical and effective methods are still needed.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference21 articles.

1. Thermodynamic Optimization of a Geothermal Power Plant with a Genetic Algorithm in Two Stages

2. CFD design and simulation of ethylene dichloride (EDC) thermal cracking reactor

3. Comparison of Exergy and Advanced Exergy Analysis in Three Different Organic Rankine Cycles;Yousefifard;Processes,2020

4. Static and dynamic characteristics of soft unit based on hydraulic straight drive;Chen;J. ZheJiang Univ. (Eng. Sci.),2019

5. Characteristics of Power Mechanism for Ultra-high-pressure Hydraulic System with Direct Electric Drive;Xu;Zhongguo Jixie Gongcheng,2017

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