Osman, K. and Faudzi, A. A. M. and Rahmat, M. F. and Suzumori, K. (2015) Intelligent pneumatic assisted therapy on ankle rehabilitation. In: 14th IEEE/RAS-EMBS International Conference on Rehabilitation Robotics, ICORR 2015, 11-14 Aug 2015, Singapore.
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Official URL: http://dx.doi.org/10.1109/ICORR.2015.7281184
Abstract
This research presents the design and development of a new strategy for an ankle rehabilitation system. The developed ankle rehabilitation system can be used as Continuous Passive Motion (CPM) device and strength endurance training device for early stage functional rehabilitation. The designed mechanism can allow desired maximum and minimum Range of Motion (ROM) for dorsiflexion and plantar flexion (upwards and downwards stretching). This device consists of new moveable mechanism design prototype using a new double acting Intelligent Pneumatic Actuator (IPA), embedded Predictive Functional Control with Observer (PFC-O) algorithm and MODBUS communication protocol. The drive system consists of nonlinear moving pneumatic actuator that controls the angle position, force and compliance for stiffness characteristic of the ankle-foot orthosis platform. In addition, the device can be configured through Graphical User Interface (GUI) via personal computer where user can adjust the required ROM and resistance for the user in real-Time. Analysis carried out during the system validation and testing through selected subjects are presented and discussed. This ankle rehabilitation system is expected to substitute the traditional therapy and motorized rehabilitation device to increase the heal time of the patient specifically.
Item Type: | Conference or Workshop Item (Paper) |
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Uncontrolled Keywords: | ankle rehabilitation, Intelligent pneumatic actuator (IPA), predictive functional control (PFC) |
Subjects: | T Technology > TJ Mechanical engineering and machinery |
Divisions: | Mechanical Engineering |
ID Code: | 59329 |
Deposited By: | Haliza Zainal |
Deposited On: | 18 Jan 2017 01:50 |
Last Modified: | 07 Dec 2021 03:38 |
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