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March 7, 2026Chinese Journal of Mechanical Engineering0 citationsOpen Access

Advancements and Theoretical Foundations of Cable-Driven Parallel Robots: A Comprehensive Overview

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KJKamran JoyoKarachi Institute of Economics and TechnologyHYHan YuanShenzhen UniversityJWJun WuHarbin Institute of Technology

Key Points

  • The paper consolidates core theories and advancements of cable-driven parallel robots (CDPRs).
  • Overview of configuration design and cable-force distribution
  • Analysis of workspace and stiffness
  • Exploration of performance evaluation and optimisation techniques
  • Examination of kinematic modelling and dynamic modelling
  • Discussion on reliability concerns and control framework development
  • Detailed insights into the performance and practical deployment of CDPRs
  • Identification of critical areas for future research
  • Comprehensive understanding of the effects of stiffness and dynamics on CDPR performance

Abstract

Parallel robotic mechanisms using cables instead of rigid limbs are termed cable-driven parallel robots (CDPRs). Electric motors and pulley mechanisms actuate cables to provide motion for an end-effector in a cable robot. Consequently, CDPRs have emerged as indispensable tools across a spectrum of industrial and technological domains, including astronomy, aerospace, logistics, simulators, and rehabilitation. Their inherent compatibility with the evolving concept of rigid-flexible fusion places CDPRs at the forefront of cutting-edge robotics research. This comprehensive paper aims to consolidate the core theories and advancements underpinning CDPRs, encompassing key aspects such as configuration design, cable-force distribution, workspace and stiffness analysis, performance evaluation, optimisation techniques, and motion control. We provide in-depth insights into kinematic modelling, workspace exploration, and cable-force solutions. Furthermore, the paper delves into the intricacies of stiffness and dynamic modelling, presenting a range of analytical methods to elucidate their effects on CDPR performance. Addressing reliability concerns and developing a unified control framework are identified as essential in ensuring the practical deployment of CDPRs in real-world scenarios. This research paper offers a comprehensive overview of the theories and advancements in CDPRs, identifying critical areas for further research and development to unlock the full potential of these versatile and high-performance robotic systems.

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Cite This Study

Joyo et al. (2025) studied this question.

synapsesocial.com/papers/69abc1845af8044f7a4ea4e3https://doi.org/10.1016/j.cjme.2025.100136
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