TY - CHAP
T1 - Optimization of Energy Generator with the Advanced Design and Fabrication of Piezoelectric Harvester System
AU - Oblitas, Carlos
AU - Segura, Francisco
AU - Anton, Juan
AU - Ramirez, Manuel
AU - Palacios, Paul
AU - Cornejo, Jose
AU - Chavez, Juan C.
N1 - Publisher Copyright:
© 2022 IEEE.
PY - 2022
Y1 - 2022
N2 - The objective of this research was to create a prototype of an automatic control system for a piezoelectric generator to reduce the cost of energy consumption; its development involved the use of methodological aspects based on applied research under an experimental design where power prototypes of 20 and 30 piezoelectric transducers are built, respectively, as well as a mechanical step simulation system to perform the tests. To test the hypothesis, manufactured prototypes were used, the two 16-port analog acquisition cards, and the LABVIEW 2020; and digital multimeters as measuring instruments. The tests are carried out with footsteps and an automatic system, using transducers, energy collectors, capacitors, batteries, and LED lamps. In conclusion, that piezoelectric' application for clean energy generation is an adequate alternative and meets the objectives. Moreover, for next steps, there is a requirement to use more units in a serial-parallel configuration to get enough power.
AB - The objective of this research was to create a prototype of an automatic control system for a piezoelectric generator to reduce the cost of energy consumption; its development involved the use of methodological aspects based on applied research under an experimental design where power prototypes of 20 and 30 piezoelectric transducers are built, respectively, as well as a mechanical step simulation system to perform the tests. To test the hypothesis, manufactured prototypes were used, the two 16-port analog acquisition cards, and the LABVIEW 2020; and digital multimeters as measuring instruments. The tests are carried out with footsteps and an automatic system, using transducers, energy collectors, capacitors, batteries, and LED lamps. In conclusion, that piezoelectric' application for clean energy generation is an adequate alternative and meets the objectives. Moreover, for next steps, there is a requirement to use more units in a serial-parallel configuration to get enough power.
KW - Mechanical step
KW - Piezoelectric generator
KW - Piezoelectric transducers
KW - Serial-parallel configuration
UR - http://www.scopus.com/inward/record.url?scp=85142389984&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/5db27e1c-e27d-3d85-8fc1-a17f1216dd32/
U2 - 10.1109/ARGENCON55245.2022.9939754
DO - 10.1109/ARGENCON55245.2022.9939754
M3 - Capítulo
AN - SCOPUS:85142389984
SN - 9781665480147
T3 - 2022 IEEE Biennial Congress of Argentina, ARGENCON 2022
SP - 1
EP - 8
BT - 2022 IEEE Biennial Congress of Argentina, ARGENCON 2022
PB - Institute of Electrical and Electronics Engineers Inc.
Y2 - 7 September 2022 through 9 September 2022
ER -