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sumare 25(3):

Research Article

Stabilization of a Cart-Pendulum System Using the Pole Placement Technique

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  • @ARTICLE{10.4108/eetsmre.11143,
        author={Quan Bui Khanh Minh and Hung Nguyen Ngoc and Trung Duong Thanh},
        title={Stabilization of a Cart-Pendulum System Using the Pole Placement Technique},
        journal={EAI Endorsed Transactions on Sustainable Manufacturing and Renewable Energy},
        volume={2},
        number={3},
        publisher={EAI},
        journal_a={SUMARE},
        year={2026},
        month={1},
        keywords={Cart Inverted Pendulum, Pole Placement Control, State-Feedback Control, Linearization, Underactuated Systems, MATLAB Simulation},
        doi={10.4108/eetsmre.11143}
    }
    
  • Quan Bui Khanh Minh
    Hung Nguyen Ngoc
    Trung Duong Thanh
    Year: 2026
    Stabilization of a Cart-Pendulum System Using the Pole Placement Technique
    SUMARE
    EAI
    DOI: 10.4108/eetsmre.11143
Quan Bui Khanh Minh1, Hung Nguyen Ngoc1, Trung Duong Thanh1,*
  • 1: Ho Chi Minh City University of Technology
*Contact email: dttrung.sdh242@hcmut.edu.vn

Abstract

This study addresses the stabilization of the Cart Inverted Pendulum (CIP), a system widely recognized as a foundational challenge in control theory because of its unstable, nonlinear, and under controlled properties. Achieving stability in the CIP is essential for developing control methods for modern applications like robotics. This paper implements the Pole Placement method to ensure the system remains stable. The method begins by linearizing the nonlinear system dynamics about the unstable vertical configuration and expressing them in a state-variable form. After confirming the system's controllability, a state-feedback controller is designed by strategically assigning closed-loop pole locations. This placement dictates the system's performance, allowing for specific targets for damping and setting time. The controller's effectiveness is demonstrated through numerical simulations in MATLAB/Simulink, which confirm the system's successful transition from instability to stable, regulated control of both the angle of pendulum and the position of cart. This analysis also illuminates the essential trade-off between the system's response speed and the required energy control. The work ultimately affirms that Pole Placement is a highly effective, understandable, and computationally practical technique for stabilizing complex underactuated systems.

Keywords
Cart Inverted Pendulum, Pole Placement Control, State-Feedback Control, Linearization, Underactuated Systems, MATLAB Simulation
Received
2025-11-27
Accepted
2026-01-05
Published
2026-01-14
Publisher
EAI
http://dx.doi.org/10.4108/eetsmre.11143

Copyright © 2026 Q.K.M. Bui et al., licensed to EAI. This is an open access article distributed under the terms of the CC BY-NC-SA 4.0, which permits copying, redistributing, remixing, transformation, and building upon the material in any medium so long as the original work is properly cited.

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