Please use this identifier to cite or link to this item: http://hdl.handle.net/123456789/21175
Title: Development of Footstep Power Generator as Storage Backup Power
Authors: MUHAMMAD HAIQAL HAZMAN BIN NORIDAM; Bachelor of Engineering Technology (Hons.) in Electrical
Issue Date: 26-Feb-2019
Abstract: Power energy are always be a part for human daily job mostly everything need a power or electricity in order to make a human life more simply and able reduce time usage to make some product or service in human daily life. Electricity is the flow of electrical power or charge. As alternative way to make some power generator by using footstep force, Aside from sun based and wind vitality frameworks which depend on outer variables like rain and sun, stride control generator does not depend on any such factors and is a wellspring of sustainable power source free of cost and created through human movement. This work can demonstrate exceptionally viable in swarmed open spots like railroad stations or shopping complex as a source to create inexhaustible power free of cost. Different stride control generators at such places can be utilized to build the yield of energy produced. It utilizes rack and pinion arrangement alongside apparatuses and spring based course of action to create control from strides. The system takes into efficient a productive power generator medium produce voltage or current generate was measured by using multimeter and display through LCD display. Thus that power was storage at battery as power backup for emergency. This project is to develop a power generator as storage backup power that was used during an emergency in order the storage batteries stay charge when blackout happened or suddenly electricity was cut off. “Development of Footstep Power Generation System as Backup Storage” is an alternative way to harvest renewable energy to produce electricity thus can power-up battery storage by applied at public or indoor environment. Result shows that the voltage produced by the Piezoelectricity Transducer when force can be applied in industry without provide high cost involved.
Description: Top 20
URI: http://ir.unikl.edu.my/jspui/handle/123456789/21175
Appears in Collections:Final Year Project - UniKL BMI



Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.