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Pyroelectric effect in PZT and PMN-0.25PT ceramics for hybrid energy harvesting in different interface circuits
ISSN: 2363 - 7862Publisher: author   
Pyroelectric effect in PZT and PMN-0.25PT ceramics for hybrid energy harvesting in different interface circuits
Indexed in
Technology and Engineering
ARTICLE-FACTOR
1.3
Article Basics Score: 2
Article Transparency Score: 3
Article Operation Score: 3
Article Articles Score: 2
Article Accessibility Score: 3
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International Category Code (ICC):
ICC-1802
Publisher: German Journal Of Renewable And Sustainable Energy Researc..
International Journal Address (IAA):
IAA.ZONE/236336287862
eISSN
:
2363 - 7862
VALID
ISSN Validator
Abstract
Energy harvesting is a process of receiving green energy sources (such as solar, thermal, wind, and kinetic energy), which are free and plentiful in ambient, and converting them into electrical power for electrical devices. Recent developments in microelectronic and energy harvesting technologies and also growing industrial demands in wireless devices, led to a technological break-through in terms of self-powered autonomous systems. Two of the most popular methods for harvesting energy consisted the application of piezoelectric and pyroelectric materials in scavenging energy from vibration and thermal gradients, respectively. This paper presents a hybrid harvesting technique by piezoelectric and pyroelectric effect, simultaneously. The concept of method and theoretical analysis is presented in details for standard, SECE (Synchronous electrical charge Extraction), parallel and series SSHI (synchronize switch harvesting on inductor). Nu...