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Original Articles

Task-oriented configuration design for reconfigurable parallel manipulator systems

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Pages 615-634 | Published online: 19 Feb 2007

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Dan Zhang, Zhen Gao, Xiaoping Su & Jian Li. (2012) A comparison study of three degree-of-freedom parallel robotic machine tools with/without actuation redundancy. International Journal of Computer Integrated Manufacturing 25:3, pages 230-247.
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Articles from other publishers (32)

Jaime Gallardo-Alvarado. (2023) Kinematics of a Novel Nine-Degree-of-Freedom Configurable Gough–Stewart Platform. Iranian Journal of Science and Technology, Transactions of Mechanical Engineering 47:4, pages 2101-2119.
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Nan Ma, Xin Dong, Josue Camacho Arreguin, Christopher Bishop & Dragos Axinte. (2022) A class of novel underactuated positioning systems for actuating/configuring the parallel manipulators. Robotica 40:10, pages 3631-3650.
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Nikolaos Stravopodis, Charalampos Valsamos & Vassilis C. Moulianitis. (2022) Experimental Verification of Optimized Anatomies on a Serial Metamorphic Manipulator. Sensors 22:3, pages 918.
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Jaime Gallardo-Alvarado & José Gallardo-Razo. 2022. Mechanisms. Mechanisms 421 488 .
Enrico Donato, Giacomo Picardi & Marcello Calisti. 2021. Towards Autonomous Robotic Systems. Towards Autonomous Robotic Systems 370 380 .
Josue Camacho-Arreguin, Mingfeng Wang, Xin Dong & Dragos Axinte. (2020) A novel class of reconfigurable parallel kinematic manipulators: Concepts and Fourier-based singularity analysis. Mechanism and Machine Theory 153, pages 103993.
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Jaime Gallardo-Alvarado & Jesus H. Tinajero-Campos. (2019) A Parallel Manipulator with Planar Configurable Platform and Three End-Effectors. Mathematical Problems in Engineering 2019, pages 1-12.
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Jaime Gallardo-Alvarado & Ramon Rodriguez-Castro. (2018) A New Parallel Manipulator With Multiple Operation Modes. Journal of Mechanisms and Robotics 10:5.
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Keonwoo Kim, Jehyeok Kim, Jihoon Kim, Hwa Soo Kim & Jongwon Kim. (2018) Multidisciplinary methodology to predict the performance of modular actuator-based manipulator. Robotics and Computer-Integrated Manufacturing 52, pages 46-64.
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Jan Brinker, Dominic Ring, Burkhard Corves, Marco Lubbecke & Yukio Takeda. (2018) Optimization of the Reconfiguration Planning of Cyber-Physical Production Systems with Delta-Like Architecture. Optimization of the Reconfiguration Planning of Cyber-Physical Production Systems with Delta-Like Architecture.
Amr Abo Salem, Tarek Y. Khedr, Gamal El Ghazaly & M. I. Mahmoud. 2018. Proceedings of the International Conference on Advanced Intelligent Systems and Informatics 2017. Proceedings of the International Conference on Advanced Intelligent Systems and Informatics 2017 13 23 .
J. Sandoval, L. Nouaille, G. Poisson & Y. Parmantier. 2018. Computational Kinematics. Computational Kinematics 44 52 .
Jan Brinker, Marco Lubbecke, Yukio Takeda & Burkhard Corves. (2017) Optimization of the Reconfiguration Planning of Handling Systems Based on Parallel Manipulators With Delta-Like Architecture. IEEE Robotics and Automation Letters 2:3, pages 1802-1808.
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Gokhan Gungor, Baris Fidan & William W. Melek. 2017. Advanced Mechatronics and MEMS Devices II. Advanced Mechatronics and MEMS Devices II 169 194 .
George Michalos, Platon Sipsas, Sotiris Makris & George Chryssolouris. (2016) Decision making logic for flexible assembly lines reconfiguration. Robotics and Computer-Integrated Manufacturing 37, pages 233-250.
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Sarosh H. Patel & Tarek M. Sobh. (2015) Using task descriptions for designing optimal task specific manipulators. Using task descriptions for designing optimal task specific manipulators.
Sarosh Patel & Tarek Sobh. (2015) Task based synthesis of serial manipulators. Journal of Advanced Research 6:3, pages 479-492.
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K. V. Varalakshmi & J. Srinivas. (2015) Design, kinematic and dynamic studies of a reconfigurable parallel manipulator. Design, kinematic and dynamic studies of a reconfigurable parallel manipulator.
Sarosh Patel, Tarek Sobh & Ausif Mahmood. 2015. Chaos Modeling and Control Systems Design. Chaos Modeling and Control Systems Design 319 350 .
L. Carbonari, M. Callegari, G. Palmieri & M.-C. Palpacelli. (2014) A new class of reconfigurable parallel kinematic machines. Mechanism and Machine Theory 79, pages 173-183.
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Hay Azulay, James K. Mills & Beno Benhabib. (2014) A Multi-Tier Design Methodology for Reconfigurable Milling Machines. Journal of Manufacturing Science and Engineering 136:4.
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Sarosh Patel & Tarek Sobh. (2014) Goal directed design of serial robotic manipulators. Goal directed design of serial robotic manipulators.
Allan Daniel Finistauri & Fengfeng (Jeff) Xi. (2013) Reconfiguration Analysis of a Fully Reconfigurable Parallel Robot. Journal of Mechanisms and Robotics 5:4.
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Tadeusz Mikolajczyk, Dariusz Dorsz & Łukasz Romanowski. (2013) Design and Control System of Parallel Kinematic Manipulator. Applied Mechanics and Materials 436, pages 390-397.
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Nicolae Plitea, Dorin Lese, Doina Pisla & Calin Vaida. (2013) Structural design and kinematics of a new parallel reconfigurable robot. Robotics and Computer-Integrated Manufacturing 29:1, pages 219-235.
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Calin Vaida, Nicolae Plitea, Dorin Lese & Doina Liana Pisla. (2012) A Parallel Reconfigurable Robot with Six Degrees of Freedom. Applied Mechanics and Materials 162, pages 204-213.
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Allan Daniel Finistauri & Fengfeng Xi. 2012. Advances in Reconfigurable Mechanisms and Robots I. Advances in Reconfigurable Mechanisms and Robots I 295 307 .
Dan Zhang & Qi Shi. 2012. Practical Applications of Intelligent Systems. Practical Applications of Intelligent Systems 447 457 .
N. Plitea, D. Pisla, A. Vidrean, C. Vaida & B. Gyurka. 2009. SYROM 2009. SYROM 2009 563 576 .
M. Kannan & J. Saha. (2008) A feature-based generic setup planning for configuration synthesis of reconfigurable machine tools. The International Journal of Advanced Manufacturing Technology 43:9-10, pages 994-1009.
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Hui-Jun Tang. (2009) Extension adaptive method: An approach to support the configurable layout design. Extension adaptive method: An approach to support the configurable layout design.
Aykut Cihan Satici, Ahmetcan Erdogan & Volkan Patoglu. (2009) Design of a reconfigurable ankle rehabilitation robot and its use for the estimation of the ankle impedance. Design of a reconfigurable ankle rehabilitation robot and its use for the estimation of the ankle impedance.

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