Using a unique ionic wind electrode design, The purpose of this research is to increase the effectiveness of Ionic Wind Energy Harvesting in comparison to piezoelectric energy harvesters for Sustainable Microscale Devices based on Time. A total of 16 efficiency samples were obtained, each collected at unique time intervals. The data are separated into two groups, each consisting of 8 samples. The numerical values were computed to measure the efficiency of Ionic Wind Energy Harvesting using a new design of ionic wind electrode and piezoelectric energy harvester. The G power is assumed to be 0.8. The present study's findings show that, in contrast to the piezoelectric energy harvester, which had an efficiency of 28.25%, the new design of the ionic wind electrode had a 33.9% efficiency. It is not statistically significant, as shown by the estimated two-tail significance of 0.079 (p > 0.05). According to the investigation's findings, the piezoelectric energy harvester was less efficient in ionic wind energy harvesting than the novel ionic wind electrode design.

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Efficiency Improvement in Ionic Wind Energy Harvesting for Microscale Devices Using Novel Ionic Wind Electrode Design Compared with Piezoelectric Energy Harvester Based on Time

  • K. Navaneetha Krishnan,
  • B. T. Geetha

摘要

Using a unique ionic wind electrode design, The purpose of this research is to increase the effectiveness of Ionic Wind Energy Harvesting in comparison to piezoelectric energy harvesters for Sustainable Microscale Devices based on Time. A total of 16 efficiency samples were obtained, each collected at unique time intervals. The data are separated into two groups, each consisting of 8 samples. The numerical values were computed to measure the efficiency of Ionic Wind Energy Harvesting using a new design of ionic wind electrode and piezoelectric energy harvester. The G power is assumed to be 0.8. The present study's findings show that, in contrast to the piezoelectric energy harvester, which had an efficiency of 28.25%, the new design of the ionic wind electrode had a 33.9% efficiency. It is not statistically significant, as shown by the estimated two-tail significance of 0.079 (p > 0.05). According to the investigation's findings, the piezoelectric energy harvester was less efficient in ionic wind energy harvesting than the novel ionic wind electrode design.