Determining The Optimum Parameters Of An Energy Harvesting System Using Simulation

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Ethiopia has a small percentage of its population accessing electricity with some energy utilized rnby the transportation sector, also there are frequent power outages at the Addis Ababa Light Rail rnTransit Services which takes a long while to return. From this former statement, it is clear that rndemand for energy is high and there is too much dependability on the current energy source. The rnaim of this study is to simulate an energy harvesting system using vibration from the track using a rntwo degree of freedom oscillator. Secondary data was collected, then a damped Mass-spring-two rndegree of freedom oscillator was modeled and the energy harvested from the system simulated. rnThis oscillator produces mechanical energy to power signaling and communication equipment of rnthe railway line. The optimum parameters of the energy harvester were determined; the mass of 1 rnkg, a spring stiffness of 0.12 N/m and a damping coefficient of 5.5Ns/m. The cumulative rnmechanical power harvested by Addis Ababa Light Rail Transit’s lowest speed was calculated to rnbe 8.06 ��. The damped two-degree-of-freedom oscillator produces higher mechanical energy, rntherefore meeting the energy demand of the signaling and communication equipment.

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Determining The Optimum Parameters Of An  Energy Harvesting System Using Simulation

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