Analysis 0f Capacitor Charging Controller By Average Current-Mode Technique
Abstract
This paper emphasizes the explanation and implication of DC to AC converter, which is proficient of extracting extra power from rectifier. The output of the MOSFET bridge rectifier is given as input to this DC to AC converter. The piezoelectric generator comprising of piezoelectric crystal and a rectifier is connected in series a & parallel schemes to increase voltage & current as done in solar PV systems. The inverter performance and control techniques were evaluated. Simple topology, reliable operation and low cost are some of the reasons that make the Hard- switched inverters very popular. This inverter is tested with time and the technology has reached a level of maturity. However, the hard switching emits Electromagnetic Interference (EMI) and increases loss in the system.
Keywords:- Piezo electricity, CCC
References
• Meng Di Yin, Jeonghun Cho & Daejin 2016, ‘Pulse based fast battery IOT charger using dynamic frequency and duty cycle control based on multi sensing of polarization curve’, Energies,vol. 9, pp. 208-228.
• Xuan-Dien Do, Seok-Kyun Han & Sang-Gug Lee 2014, ‘Optimization of Piezoelectric Energy Harvesting Systems by Using a MPPT Method’, Communication and electronics (ICEE),5th conference of IEEE , pp. 309-312.
• Szarka, GD, Stark, BH & Burrow, SG 2012, ‘Review of power conditioning for kinetic energy harvesting systems’, IEEE Trans. Power Electron. vol. 27, no. 2, pp. 803-815.
• Sriramdas& Pratap, R. (2017). scaling &performance analysis of MEMS piezoelectric energy harvesters. Journal of Microelectromechanical Systems, 690.
• Iqbal M, hybrid vibration &wind energy harvesting using combined piezoelectric &electromagnetic conversion for bridge health monitoring applications. 2018 Sep15; 172:611-8.
• Zhao, Dan, "Theoretical modeling and analysis of a 2-degree–of-freedom hybrid piezoelectric electromagnetic vibration energy harvester with a driven beam (2018): 2476.
• Foupouapouognigni, O., & Tchawoua, C., 2018. Hybrid electromagnetic and piezoelectric vibration energy harvester with Gaussian white noise excitation. Physica A: pp.346-360.
• Adu-Manu, (2018). energy-harvesting wireless sensor networks (EHWSNs): A review. ACM Transactions on Sensor Networks (TOSN), 10.
• Mahidur R. Sarker, Mohd Faizul MohdSabri et al (2019) "Review of piezoelectric energy harvesting system and application of optimization techniques to enhance the performance of the harvesting system". Sensors and Actuators A: Physical, Volume 300, 2019, 111634, ISSN 0924-4247, https://doi.org/10.1016/j.sna.2019.111634.
• Sarker, Mahidur R., et al. (2021) "Review of Power Converter Impact of Electromagnetic Energy Harvesting Circuits and Devices for Autonomous Sensor Applications" Electronics 10, no. 9: 1108. https://doi.org/10.3390/electronics10091108
Published
How to Cite
Issue
Section
Allows users to: distribute and copy the article; create extracts, abstracts, and other revised versions, adaptations or derivative works of or from an article (such as a translation); include in a collective work (such as an anthology); and text or data mine the article. These uses are permitted even for commercial purposes, provided the user: gives appropriate credit to the author(s) (with a link to the formal publication through the relevant URL ID); includes a link to the license; indicates if changes were made; and does not represent the author(s) as endorsing the adaptation of the article or modify the article in such a way as to damage the authors' honor or reputation. CC BY



