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An Approach to Evaluate Stability for Cable-based Parallel Camera Robots with Hybrid Tension-stiffness Properties

Huiling Wei, Yuanying Qiu, Jian Yang

发表年份
2015
引用次数
23

摘要

This paper focuses on studying the effect of cable tensions and stiffness on the stability of cable-based parallel camera robots. For this purpose, the tension factor and the stiffness factor are defined, and the expression of stability is deduced. A new approach is proposed to calculate the hybrid-stability index with the minimum cable tension and the minimum singular value. Firstly, the kinematic model of a cable-based parallel camera robot is established. Based on the model, the tensions are solved and a tension factor is defined. In order to obtain the tension factor, an optimization of the cable tensions is carried out. Then, an expression of the system's stiffness is deduced and a stiffness factor is defined. Furthermore, an approach to evaluate the stability of the cable-based camera robots with hybrid tension-stiffness properties is presented. Finally, a typical three-degree-of-freedom cable-based parallel camera robot with four cables is studied as a numerical example. The simulation results show that the approach is both reasonable and effective.

关键词

StiffnessComputer scienceTension (geology)Parallel manipulatorRobotKinematicsStability (learning theory)Control theory (sociology)Structural engineeringArtificial intelligence

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