2009Unpublished venueRequires access

Motion visualisation and control of a driving simulator motion platform

ChiewYeong Shiong, Mohamad Kasim Abdul Jalil, Mohamed Hussein

Open publisher page 6 citations

Abstract

This paper describes the conceptual development of a motion base for a driving simulator at Universiti Teknologi Malaysia (UTM). The motion platform is designed based on 6 DOF Stewart platform design configuration. An inverse kinematics model for determination of Stewart Platform leg length is developed using MATLAB Simulink. A visualisation tool (SimMechanics) is used to validate the motion platform motions cues and investigate the performance of the inverse kinematic model. The SimMechanics model is capable of displaying visual and numerical result of the developed inverse kinematics model. The motion platform operation algorithm in UTM is also presented in this paper.

About this research paper

What this paper is about

This paper describes the conceptual development of a motion base for a driving simulator at Universiti Teknologi Malaysia (UTM). The motion platform is designed based on 6 DOF Stewart platform design configuration. An inverse kinematics model for determination of Stewart Platform leg length is developed using MATLAB Simulink. A visualisation tool (SimMechanics) is used to validate the motion platform motions cues and investigate the performance of the inverse kinematic model. The SimMechanics model is capable of displaying visual and numerical result of the developed inverse kinematics model. The motion platform operation algorithm in UTM is also presented in this paper.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper describes the conceptual development of a motion base for a driving simulator at Universiti Teknologi Malaysia (UTM). The motion platform is designed based on 6 DOF Stewart platform design configuration. An inverse kinematics model for determination of Stewart Platform leg length is developed using MATLAB Simulink. A visualisation tool (SimMechanics) is used to validate the motion platform motions cues and investigate the performance of the inverse kinematic model. The SimMechanics model is capable of displaying visual and numerical result of the developed inverse kinematics model. The motion platform operation algorithm in UTM is also presented in this paper.

Key concepts: Computer science, Motion (physics), Motion simulator, Visualization, Motion control, Simulation, Computer graphics (images), Human–computer interaction

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