Affiliation:
1. College of Mechanical and Power Engineering, Harbin University of Science and Technology, Harbin, 150080, China
Abstract
Abstract:
The electro-hydraulic load simulator can simulate any force (torque) load required by the
loaded object under test conditions, which greatly reduces the equipment development time and
cost. However, the process of force loading inevitably creates a surplus force (torque). The existence
of surplus force (torque) in the system will seriously interfere with the loading accuracy of the system
and even damage the equipment in serious cases. In this paper, based on the research status of
the suppression and compensation of the surplus force (torque) in the electro-hydraulic load simulator,
the effective control strategies and methods to overcome the surplus force (torque) in the system
are summarized. This paper analyzes the generation mechanism of the surplus force (torque), and
summarizes the effective strategies to overcome the surplus force (torque) of the system in structural
compensation and control compensation. Using the control method to compensate for the surplus
force (torque) has the advantages of simple structure, convenient debugging, and strong universality.
It is widely used in the electro-hydraulic load simulator to suppress the surplus force (torque). With
the development of control theory, more and more control strategies and methods are applied to restrain
and compensate for the surplus force (torque) in the electro-hydraulic load simulator, which
not only restrains the surplus force (torque) in the system but also improves the loading accuracy
and anti-interference.
Methods:
This paper analyzes the generation mechanism of the surplus force (torque), and summarizes the effective strategies to overcome the surplus force (torque) of the system in structural compensation and control compensation.
Results:
Using the control method to compensate for the surplus force (torque) has the advantages of simple structure, convenient debugging, and strong universality. It is widely used in the electro-hydraulic load simulator to suppress the surplus force (torque).
Conclusion:
With the development of control theory, more and more control strategies and methods are applied to restrain and compensate for the surplus force (torque) in the electro-hydraulic load simulator, which not only restrains the surplus force (torque) in the system but also improves the loading accuracy and anti-interference.
Funder
Natural Science Foundation of Heilongjiang Province of China
National Natural Science Foundation of China
Publisher
Bentham Science Publishers Ltd.
Subject
Electrical and Electronic Engineering,Electronic, Optical and Magnetic Materials
Reference96 articles.
1. Yalla S.K.; Kareem A.; Kabat S.; Haan F.L.; Dynamic load simulator: Development of a prototype. J Eng Mech 2001,127(12),1310-1315
2. Shao S.P.; Yang Q.S.; Yan B.W.; Cao S.Y.; Li K.; Physical simulation method and device for coupling wave and mobile downburst 2019
3. Zhou Z.M.; Qiu S.X.; Huang W.H.; Xie Q.T.; The earthquake simulator of horizontal vibration 2022
4. Nam Y.; Hong S.K.; Force control system design for aerodynamic load simulator. Control Eng Pract 2002,10(5),549-558
5. John S.F.; James D.E.; Gregory J.H.; Flight control test simulator system and method 2016