Development of Footstep Electricity Energy Generating Machine using Dual Generator

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Date

2019-05-15

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Alex Ekwueme Federal University, Ndufu-Alike Ikwo, Ebonyi State, Nigeria

Abstract

Footstep electricity energy generation machine have been seen in most populated country and the different existing machines have various capacity of generated electricity power. The concept and the technology is simply the production of electrical energy by weight which acts on the footsteps. Footstep electrical energy generation is of three types namely; rack and pinion, piezoelectric method, fuel and piston method. It was comparatively discovered that the rack and pinion mechanism is more effective, efficient with less cost of operation and maintenance. In the existing rack and pinion method, energy was not adequately harvested from footsteps as a result of many gears, shafts and incorporation of a single generator. This takes time to generate electricity and the output capacity is low in watt. With this motivation, a prototype footstep electricity energy generating machine using dual generators, chains and sprockets was developed. This was designed by considering parameters such as human weights, speed and low cost. The prototype was designed to be a value for money production in the power generation sectors. For designing the work rack and pinion, human weight were studies to understand the operation. At the end, the machine was fabricated using local material. The machine upon fabrication was evaluated at ten (10) different human weights of 40, 50, 53, 56, 60, 70, 85, 101, 105, 108 kgs and power of 6.69, 6.949, 3.92, 10.848, 8.29, 8.339, 12. 064, 11.349, 11. 359 and 11.359 watts, with angular speeds of 5.08, 5.28, 2.98, 8.24, 6.30, 6.33, 9.16, 8.62, 8.63, 9.35 rpm were obtained respectively. The result showed that weight is directly proportional to both power and angular speed. The result showed that optimism occurred at 85kg. Using a dual generators increase higher electricity energy generation, effective and efficient harvesting of footstep energy.

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Keywords

Energy, Electricity, Generator, Rack, Pinion, Weight, Foot Step and Power

Citation

1st Biennial International Engineering Conference, Alex Ekwueme Federal University, Ndufu-Alike Ikwo, Ebonyi State, Nigeria, 15-18 May, 2019. Pp. 163 – 166.

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