Safe Reinforcement Learning-Based Balance Control for Multi-Cylinder Hydraulic Press

Author:

Jia Chao1,Song Zijian23ORCID,Du Lifeng4,Wang Hongkun5

Affiliation:

1. School of Electrical and Automation, Tianjin University of Technology , Tianjin 300382, China

2. School of Electrical and Automation, Tianjin University of Technology , Tianjin 071000, China

3. Tianjin University of Technology

4. Design Institute, Tianjin Tianduan, Press Co., Ltd. , Tianjin 300000, China

5. School of Electrical and Automation, Tianjin University of Technology , Tianjin 300384, China

Abstract

Abstract Considering the load uncertainty and unmodeled dynamics in multicylinder hydraulic systems, this paper proposes a balance control algorithm based on safe reinforcement learning to release the restrictions of classical model-based control methods that depend on fixed gain. In this paper, the hydraulic press is controlled by a trained agent that directly maps the system states to control commands in an end-to-end manner. By introducing an action modifier into the algorithm, the system states are kept within security constraints from the beginning of training, making safe exploration possible. Furthermore, a normalized exponential reward function has been proposed. Compared with a quadratic reward function, the precision is greatly improved under the same training steps. The experiment shows that our algorithm can achieve high precision and fast balance for multicylinder hydraulic presses while being highly robust. To the best of our knowledge, this research is the first to attempt the application of a reinforcement learning algorithm to multi-execution units of hydraulic systems.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Tianjin City

Publisher

ASME International

Reference29 articles.

1. System Decomposition-Based Multilevel Control for Hydraulic Press Machine;IEEE Trans. Ind. Electron.,2012

2. Zheng, A., 2012, “ Modeling and Control of 80 mn Titanium-Alloy Forging Hydraulic Press,” Ph.D. thesis, Tianjin University, Tianjin.

3. Novel Control Scheme for Multi Cylinder Hydraulic Press;J. Huazhong Univ. Sci. Technol.,2013

4. Dynamic Allocation of Sliding Mode Fault Tolerance of Hydraulic Press Based on Disturbance Observer;J. Huazhong Univ. Sci. Technol.,2021

5. Deterministic Policy Gradient With Integral Compensator for Robust Quadrotor Control;IEEE Trans. Syst., Man, Cybern.: Syst.,2020

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