4.4 Article

Swing up and stabilization control of rotary inverted pendulum based on energy balance, fuzzy logic, and LQR controllers

期刊

MEASUREMENT & CONTROL
卷 54, 期 9-10, 页码 1356-1370

出版社

SAGE PUBLICATIONS LTD
DOI: 10.1177/00202940211035406

关键词

Energy balance controller; fuzzy logic controller; hybrid control scheme; linear quadratic regulator; nonlinear dynamical system; rotary inverted pendulum

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The paper proposes a Hybrid Control Scheme based on energy balance and fuzzy logic controllers for implementing swing up and stabilization control of Rotary Inverted Pendulum (RIP). By dynamically tuning fuzzy logic-based state feedback gains in real-time, robust control performance is achieved. The proposed control scheme outperforms the conventional Linear Quadratic Controller (LQR) in terms of achieving satisfactory transient, steady-state, and robust responses at a lower computational cost.
Rotary Inverted Pendulum (RIP) mimics the behavior of many practical control systems like crane mechanism, segway, unicycle robot, traction control in vehicles, rocket stabilization, and launching. RIP is a fourth-order nonlinear open-loop unstable dynamical system and is widely used for testing the effectiveness of the newly developed control algorithms. In this paper, a Hybrid Control Scheme (HCS) based on energy balance and fuzzy logic controllers is proposed to implement the swing up and stabilization control of RIP. In the proposed control scheme, the fuzzy logic-based state feedback gains are dynamically tuned in real-time by minimizing the absolute error between the desired and actual states to get robust control performance. The proposed HCS is also compared with the conventional Linear Quadratic Controller (LQR) for this application. The comparative results show that the proposed fuzzy logic-based hybrid control scheme gives the optimal control performance in terms of achieving satisfactory transient, steady-state, and robust responses from a given RIP system, as compared to the conventional LQR based control scheme. The proposed control scheme is also relatively less complex with a low computational cost and provides desired response characteristics as compared to the existing ones in the literature.

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