2005•Unpublished venueRequires access

A study of stewart platform specifications for motion cueing systems

Kuo‐Yang Tu, Tung-Chung Wu, Tsu‐Tian Lee

Open publisher page 8 citations

Abstract

Stewart platforms are always designed to produce force for simulating the behavior of a plant such as aircraft, vehicle, etc. The planning of trajectories that consider position, velocity and acceleration is required for a Stewart platform resulting in suitable force. In this paper, Stewart platform specifications are studied to figure out its maximum acceleration that is the most important characteristic of a simulator for motion cueing systems. In addition, based on this quantity, the actuators' power of the Stewart platform is derived to provide a practical idea for constructing a Stewart platform simulator. A procedure is proposed to solve specifications of a Stewart platform used as a simulator. A driving simulator to demonstrate the procedure is also included.

About this research paper

What this paper is about

Stewart platforms are always designed to produce force for simulating the behavior of a plant such as aircraft, vehicle, etc. The planning of trajectories that consider position, velocity and acceleration is required for a Stewart platform resulting in suitable force. In this paper, Stewart platform specifications are studied to figure out its maximum acceleration that is the most important characteristic of a simulator for motion cueing systems. In addition, based on this quantity, the actuators' power of the Stewart platform is derived to provide a practical idea for constructing a Stewart platform simulator. A procedure is proposed to solve specifications of a Stewart platform used as a simulator. A driving simulator to demonstrate the procedure is also included.

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OpenAlex reports 8 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Stewart platforms are always designed to produce force for simulating the behavior of a plant such as aircraft, vehicle, etc. The planning of trajectories that consider position, velocity and acceleration is required for a Stewart platform resulting in suitable force. In this paper, Stewart platform specifications are studied to figure out its maximum acceleration that is the most important characteristic of a simulator for motion cueing systems. In addition, based on this quantity, the actuators' power of the Stewart platform is derived to provide a practical idea for constructing a Stewart platform simulator. A procedure is proposed to solve specifications of a Stewart platform used as a simulator. A driving simulator to demonstrate the procedure is also included.

Key concepts: Stewart platform, Acceleration, Simulation, Actuator, Computer science, Motion (physics), Parallel manipulator, Position (finance)

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