A Paradoxical Approach to Enhance the Output Power of Vibrational Energy Harvester Beyond the Impedance Matching Conditions
Hiroaki Honma, Yukiya Tohyama, Hiroshi Toshiyoshi
Abstract
Hiroaki Honma, Yukiya Tohyama, Hiroshi Toshiyoshi
Abstract
The classical circuit theory tells us that the output from a power generator is maximized when a load resistance is set to match with the internal impedance of the power source. It is also believed that there exists one and only one impedance matching condition for a given power source system. In this paper, however, we discover another optimal condition that arises particularly when the mechano-electric conversion efficiency is enhanced in the electret based vibrational energy harvesting device. Such a condition is found to deliver more power than the conventional matching conditions do. In other words, the impedance matching condition is not a unique solution for the system but it changes with the excitation amplitude to the energy harvester.
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The classical circuit theory tells us that the output from a power generator is maximized when a load resistance is set to match with the internal impedance of the power source. It is also believed that there exists one and only one impedance matching condition for a given power source system. In this paper, however, we discover another optimal condition that arises particularly when the mechano-electric conversion efficiency is enhanced in the electret based vibrational energy harvesting device. Such a condition is found to deliver more power than the conventional matching conditions do. In other words, the impedance matching condition is not a unique solution for the system but it changes with the excitation amplitude to the energy harvester.
Key concepts: Impedance matching, Output impedance, Electret, Electrical impedance, Generator (circuit theory), Power (physics), Matching (statistics), Energy harvesting