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Stabilization Control of the Differential Mobile Robot Using Lyapunov Function and Extended Kalman Filter

T. T. Hoang, Phuc-Phan Duong, Nguyen Thị Thanh Van

Year
2017
Citations
6
Access
Open access

Abstract

This paper presents the design of a control model to navigate the differential mobile robot to reach the desired destination from an arbitrary initial pose. The designed model is divided into two stages: the state estimation and the stabilization control. In the state estimation, an extended Kalman filter is employed to optimally combine the information from the system dynamics and measurements. Two Lyapunov functions are constructed that allow a hybrid feedback control law to execute the robot movements. The asymptotical stability and robustness of the closed loop system are assured. Simulations and experiments are carried out to validate the effectiveness and applicability of the proposed approach.

Keywords

Lyapunov functionKalman filterControl theory (sociology)Mobile robotExtended Kalman filterComputer scienceAlpha beta filterFast Kalman filterMoving horizon estimationDifferential (mechanical device)

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