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Experimental and Simulation Validation of Piezoelectric Road Energy Harvesting
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作者 Andrew Sherren Kyle Fink +7 位作者 Joshua Eshelman Luay Yassin Taha Sohail Anwar craig brennecke Hussein M. Abdeltawab Shihui Shen Faeze Ghofrani Cheng Zhang 《Open Journal of Energy Efficiency》 2022年第3期122-141,共20页
This project strived to develop a prototype road piezoelectric energy harvester RPEH system using five Lead Zirconate Titanate (PZT) PZT 5H modules (stacks) that are embedded in the road by means of a housing unit to ... This project strived to develop a prototype road piezoelectric energy harvester RPEH system using five Lead Zirconate Titanate (PZT) PZT 5H modules (stacks) that are embedded in the road by means of a housing unit to harvest energy from vehicles stressing the modules. The work is an extension of our previous published work in the same journal. The design considered many factors to optimize the harvested energy. The proposed system first captures mechanical energy using a designed module that transfers the energy to the piezoelectric stacks. Then the captured energy will be converted into electrical energy by the piezoelectric phenomenon. The harvested energy is stored in a storage device, then analyzed by an oscilloscope through the acquisition of the harvested voltage, current, power, and energy. When testing the RPEH with the wheel tracking machine, varying resistor loads where connected to the output of the RPEH to address the optimum power delivered to the load. The optimum load was found to be 950 kΩ, and the optimal harvested energy was recorded as 45 uJ. 展开更多
关键词 Energy Harvesting Piezoelectric Harvesters Road Pavement Device Modelling
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Design and Modelling of Piezoelectric Road Energy Harvesting 被引量:2
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作者 Andrew Sherren Kyle Fink +3 位作者 Joshua Eshelman Luay Yassin Taha Sohail Anwar craig brennecke 《Open Journal of Energy Efficiency》 2022年第2期24-36,共13页
In recent years, road piezoelectric energy harvesting (RPEH) has attracted great attention from industry and academia, as it can provide power to traffic ancillary facilities and low-power wireless sensor devices to s... In recent years, road piezoelectric energy harvesting (RPEH) has attracted great attention from industry and academia, as it can provide power to traffic ancillary facilities and low-power wireless sensor devices to support car networking and intelligent transportation. The output power of RPEH in a recent research project demonstrated a watt level RPEH. In this proposal, we propose to harvest energy from piezoelectric modules (also called stacks) to power selected highways, tolls, and bridges in Pennsylvania. The project incorporates electrical, mechanical, and civil engineering works. The proposed smart highway RPEH will be conducted using optimization parameters to evaluate the system performance and trade-offs. MATLAB will be used with other optimization solvers in problem modeling and optimization. During this project, an RPEH hardware system will be constructed. The system will include a piezoelectric module, rectifier (AC-DC), Storage battery, data acquisition system (DAQ), and computer. The captured data will be analyzed using MATLAB/Simulink. The results show that optimum harvested parameters were addressed when the thickness is selected as 2 mm. 展开更多
关键词 Energy Harvesting Piezoelectric Harvesters Road Pavement Device Modelling
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