Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion
This paper presents some preliminary studies on the frequency-up conversion method for low frequency application energy harvesting device, mainly from human body motion, by employing the translational-rotary mechanism. Vibration signals from different parts of the human body were first measured when...
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2014
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my.utem.eprints.107272015-05-28T04:13:00Z http://eprints.utem.edu.my/id/eprint/10727/ Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion Putra, Azma Ramlan, Roszaidi Suhaimi, Khalis TJ Mechanical engineering and machinery This paper presents some preliminary studies on the frequency-up conversion method for low frequency application energy harvesting device, mainly from human body motion, by employing the translational-rotary mechanism. Vibration signals from different parts of the human body were first measured when the human subject was walking at 5 km/h and jogging at 9 km/h. The signals obtain from the test was then reconstructed using Fourier Transform and it was found that frequency content of human body motion was in the range of 1 Hz – 25 Hz.. A preliminary experiment was conducted to check on the ability of the mechanism to amplify the excitation frequency. Although the experiment was not optimized, the device was able to amplify input frequency up to 3.6 times. Trans Tech Publications 2014 Article PeerReviewed application/pdf en http://eprints.utem.edu.my/id/eprint/10727/1/TRANSLATIONAL-ROTARY_FREQUENCY_UP_CONVERSION_VIBRATION_BASED_ENERGY_HARVESTING_DEVICE_FOR_HUMAN_BODY_MOTION.pdf Putra, Azma and Ramlan, Roszaidi and Suhaimi, Khalis (2014) Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion. Applied Mechanics and Materials, 471. pp. 349-354. ISSN 1660-9336 |
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TJ Mechanical engineering and machinery Putra, Azma Ramlan, Roszaidi Suhaimi, Khalis Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion |
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This paper presents some preliminary studies on the frequency-up conversion method for low frequency application energy harvesting device, mainly from human body motion, by employing the translational-rotary mechanism. Vibration signals from different parts of the human body were first measured when the human subject was walking at 5 km/h and jogging at 9 km/h. The signals obtain from the test was then reconstructed using Fourier Transform and it was found that frequency content of human body motion was in the range of 1 Hz – 25 Hz.. A preliminary
experiment was conducted to check on the ability of the mechanism to amplify the excitation frequency. Although the experiment was not optimized, the device was able to amplify input frequency up to 3.6 times. |
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Article |
author |
Putra, Azma Ramlan, Roszaidi Suhaimi, Khalis |
author_facet |
Putra, Azma Ramlan, Roszaidi Suhaimi, Khalis |
author_sort |
Putra, Azma |
title |
Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion |
title_short |
Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion |
title_full |
Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion |
title_fullStr |
Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion |
title_full_unstemmed |
Translational-rotary frequency up conversion vibration based energy harvesting device for human body motion |
title_sort |
translational-rotary frequency up conversion vibration based energy harvesting device for human body motion |
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Trans Tech Publications |
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2014 |
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http://eprints.utem.edu.my/id/eprint/10727/1/TRANSLATIONAL-ROTARY_FREQUENCY_UP_CONVERSION_VIBRATION_BASED_ENERGY_HARVESTING_DEVICE_FOR_HUMAN_BODY_MOTION.pdf http://eprints.utem.edu.my/id/eprint/10727/ |
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