Control of thin McKibben muscles in an antagonistic pair configuration
This paper proposes an antagonistic proportional integral (API) control strategy for thin McKibben muscles (TMM) in an antagonistic pair configuration. The study intends to explore a model independent control strategy for TMMs in an antagonistic pair assembly on a TMM platform which mimics the human...
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my.utm.986042023-01-21T01:21:35Z http://eprints.utm.my/id/eprint/98604/ Control of thin McKibben muscles in an antagonistic pair configuration Abdul Hafidz, Muhamad Hazwan Norsahperi, Nor Mohd. Haziq Hong, Win Soon Jamaludin, Mohd. Najeb Mohd. Faudzi, Ahmad Athif TK Electrical engineering. Electronics Nuclear engineering This paper proposes an antagonistic proportional integral (API) control strategy for thin McKibben muscles (TMM) in an antagonistic pair configuration. The study intends to explore a model independent control strategy for TMMs in an antagonistic pair assembly on a TMM platform which mimics the human finger at metacarpophalangeal (MCP) joint. Set-point tracking is achieved by eliminating dead zones due to muscle–tendon slack and using a mode selector for switching of flexion and extension muscles to provide smooth tracking. To test the effectiveness of the proposed method, experiments are carried out on a TMM platform and injected with step and sinusoidal input signals. Experiments conducted showed the TMM platform able to produce high accuracy and fast rise time by implementing the API control scheme. The control method can be very useful in other TMM applications requiring antagonistic muscle actuation. 2022 Conference or Workshop Item PeerReviewed Abdul Hafidz, Muhamad Hazwan and Norsahperi, Nor Mohd. Haziq and Hong, Win Soon and Jamaludin, Mohd. Najeb and Mohd. Faudzi, Ahmad Athif (2022) Control of thin McKibben muscles in an antagonistic pair configuration. In: International Conference on Computational Intelligence in Machine Learning ICCIML 2021, 1 - 2nd June 2021, Virtual, Online. http://dx.doi.org/10.1007/978-981-16-8484-5_13 |
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TK Electrical engineering. Electronics Nuclear engineering Abdul Hafidz, Muhamad Hazwan Norsahperi, Nor Mohd. Haziq Hong, Win Soon Jamaludin, Mohd. Najeb Mohd. Faudzi, Ahmad Athif Control of thin McKibben muscles in an antagonistic pair configuration |
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This paper proposes an antagonistic proportional integral (API) control strategy for thin McKibben muscles (TMM) in an antagonistic pair configuration. The study intends to explore a model independent control strategy for TMMs in an antagonistic pair assembly on a TMM platform which mimics the human finger at metacarpophalangeal (MCP) joint. Set-point tracking is achieved by eliminating dead zones due to muscle–tendon slack and using a mode selector for switching of flexion and extension muscles to provide smooth tracking. To test the effectiveness of the proposed method, experiments are carried out on a TMM platform and injected with step and sinusoidal input signals. Experiments conducted showed the TMM platform able to produce high accuracy and fast rise time by implementing the API control scheme. The control method can be very useful in other TMM applications requiring antagonistic muscle actuation. |
format |
Conference or Workshop Item |
author |
Abdul Hafidz, Muhamad Hazwan Norsahperi, Nor Mohd. Haziq Hong, Win Soon Jamaludin, Mohd. Najeb Mohd. Faudzi, Ahmad Athif |
author_facet |
Abdul Hafidz, Muhamad Hazwan Norsahperi, Nor Mohd. Haziq Hong, Win Soon Jamaludin, Mohd. Najeb Mohd. Faudzi, Ahmad Athif |
author_sort |
Abdul Hafidz, Muhamad Hazwan |
title |
Control of thin McKibben muscles in an antagonistic pair configuration |
title_short |
Control of thin McKibben muscles in an antagonistic pair configuration |
title_full |
Control of thin McKibben muscles in an antagonistic pair configuration |
title_fullStr |
Control of thin McKibben muscles in an antagonistic pair configuration |
title_full_unstemmed |
Control of thin McKibben muscles in an antagonistic pair configuration |
title_sort |
control of thin mckibben muscles in an antagonistic pair configuration |
publishDate |
2022 |
url |
http://eprints.utm.my/id/eprint/98604/ http://dx.doi.org/10.1007/978-981-16-8484-5_13 |
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1755872332179570688 |