International Journal of Engineering Research in Electrical and Electronic Engineering(IJEREEE)

Monthly Journal for Electrical and Electronic Engineering

International Journal of Engineering Research in Electrical and Electronic Engineering

Volume3 ,January 2016.

Volume3,January 2016,

Topic : Design, Fabrication and Testing of Integrated Nano-Scale Vibration-Based Prototype Model of Electromagnetic Generator

Authors:Antonio Dias || Jeevesh Jadhav ,Rachana Chougule,Sangeeta M Raibagi

Abstract:This paper discusses the design, fabrication and testing of electromagnetic nanogenerators. Three different designs of power generators are partially nano-fabricated and assembled. PrototypeA having a wire-wound copper coil, Prototype B, an electrodeposited copper coil both on a deep reactive ion etched (DRIE) silicon beam and paddle. Prototype C uses moving NdFeB magnets in between two nano-fabricated coils. The integrated coil, paddle and beam were fabricated using standard Nano-electromechanical systems (NEMS) processing techniques. For Prototype A, the maximum measured power output was 148nW at 8.08 kHz resonant frequency and 6.8 m/s2 acceleration. For Prototype B, the nano generator gave a maximum load power of 23nW for an acceleration of 9.8 m/s2, at a resonant frequency of 18.83 kHz. This is a substantial improvement in power generated over other nano-fabricated silicon-based generators reported in literature. This generator has a volume of 0.1 cm3 which is lowest of all the silicon-based nano-fabricated electromagnetic power generators reported. To verify the potential of integrated coils in electromagnetic generators, Prototype C was assembled. This generated a maximum load power of 586nW across 110 load at 60 Hz for an acceleration of 8.829 m/s2..

Keywords: Energy harvesting from vibrations; Nano-fabricated electromagnetic power generator; NEMS fabrication techniques; Testing of power generator

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DOI: 01.1617/vol2iss1pid043


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Editor-in-Chief

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Editor-in-Chief
Dr.Krzysztof Chwastek
Associate Professor,
Czestochowa University of Technology, Polland.


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IMPACT FACTOR: 3.784

ISSN(Online): 2395-2717

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Thomson Reuters ID : q-6288-2016.
ORCiD Research ID : 0000-0001-9540-6799

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Journal Code : IJEREEE
Electronic ISSN : 2395-2717
Impact Factor : 3.784
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