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Active disturbance rejection control for non-minimum phase systems under plant reconstruction
Ruijuan Liu1, Zhuo-Yun Nie2, Hui Shao2
1School of Mathematics and Statistics, Xiamen University of Technology, Xiamen, China.
This study introduces a new Active Disturbance Rejection Control (ADRC) method for non-minimum phase (NMP) systems. The approach enhances robustness by reconstructing plant dynamics and using cascade compensation to manage internal disturbances effectively.
Area of Science:
- Control Systems Engineering
- Non-linear Dynamics
- Robotics
Background:
- Active Disturbance Rejection Control (ADRC) is challenging for non-minimum phase (NMP) systems due to stability and tuning conflicts.
- Enhancing robustness in NMP systems typically requires extensive feedback tuning, which can be problematic.
Purpose of the Study:
- To develop a novel ADRC scheme for NMP systems that avoids heavy feedback tuning.
- To improve the robustness and stability of ADRC in NMP systems through plant reconstruction and cascade compensation.
Main Methods:
- Plant reconstruction to explicitly identify internal disturbances.
- Development of a new ADRC scheme integrating plant reconstruction and cascade compensation.
- Derivation of internal stability criteria for the proposed ADRC system.
Main Results:
- The proposed ADRC scheme effectively reduces internal disturbances via cascade compensation.
- Derived stability conditions offer design guidance for compensators and disturbance observers.
- Demonstrated that cascade compensation enhances the robust stability of NMP systems.
Conclusions:
- The novel ADRC scheme based on plant reconstruction is effective for NMP systems.
- The method provides a pathway to robust control without excessive feedback tuning.
- Experimental validation on a motion NMP system confirms the physical realizability and efficacy.
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