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Titlebook: Energy Harvesting Technologies; Shashank Priya,Daniel J. Inman Book 2009 Springer-Verlag US 2009 Batterie.BioMEMS.Energy Harvesting.Genera

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发表于 2025-3-21 17:36:19 | 显示全部楼层 |阅读模式
书目名称Energy Harvesting Technologies
编辑Shashank Priya,Daniel J. Inman
视频video
概述The first book to synthesize the components of energy harvesting.Includes a diverse range of researchers from academics, industry, and national laboratories.Provides discussions of piezoelectric, indu
图书封面Titlebook: Energy Harvesting Technologies;  Shashank Priya,Daniel J. Inman Book 2009 Springer-Verlag US 2009 Batterie.BioMEMS.Energy Harvesting.Genera
描述.Energy Harvesting Technologies. provides a cohesive overview of the fundamentals and current developments in the field of energy harvesting. In a well-organized structure, this volume discusses basic principles for the design and fabrication of bulk and MEMS based vibration energy systems, theory and design rules required for fabrication of efficient electronics, in addition to recent findings in thermoelectric energy harvesting systems.. .Combining leading research from both academia and industry onto a single platform, .Energy Harvesting Technologies. serves as an important reference for researchers and engineers involved with power sources, sensor networks and smart materials..
出版日期Book 2009
关键词Batterie; BioMEMS; Energy Harvesting; Generator; Sensor; Smart Materials; electronic circuit; electronics; i
版次1
doihttps://doi.org/10.1007/978-0-387-76464-1
isbn_softcover978-1-4419-4552-5
isbn_ebook978-0-387-76464-1
copyrightSpringer-Verlag US 2009
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Entwürdigung in begrifflicher Perspektiveework is able to predict the electrical behavior of piezoelectric power harvesting systems using either the standard or the synchronized switch harvesting on inductor (SSHI) electronic interface. In addition, some opportunities for new devices and improvements in existing ones are also pointed here.
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Die Vogelsang-Schule in der Ersten Republikn that forces designers to move beyond batteries and into energy harvesting techniques. This chapter considers the average requirements of wireless sensor networks, and assesses the suitability of modern thermal, photonic, and vibration-harvesting methods to power such networks across various application spaces.
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Power Sources for Wireless Sensor Networksn that forces designers to move beyond batteries and into energy harvesting techniques. This chapter considers the average requirements of wireless sensor networks, and assesses the suitability of modern thermal, photonic, and vibration-harvesting methods to power such networks across various application spaces.
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,Führung in komplexen adaptiven Systemen,s, vibration harvesting device design using bulk and MEMS approach, and energy harvesting circuits. All these characteristics are illustrated through selective examples. A simple step-by-step procedure is presented to design the cantilever beam based energy harvester by incorporating piezoelectric m
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Werbung als Bedeutungsverleiher,approaches are divided here into two sections as lumped parameter modeling and distributed parameter modeling. The first section discusses the amplitude-wise correction of the existing lumped parameter piezoelectric energy harvester model for base excitation. For cantilevers operating in the transve
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