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Titlebook: Energy Scavenging for Wireless Sensor Networks; with Special Focus o Shad Roundy,Paul Kenneth Wright,Jan M. Rabaey Book 2004 Springer Scien

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Capture-Recapture: Closed Populations, presents the results of a study undertaken to characterize many commonly occurring, low-level, vibrations. A general vibration to electricity model, provided by Williams and Yates (Williams and Yates 1995), is presented and discussed. The model is non-device specific, and therefore the conversion m
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Yury A. Budkov,Nikolai N. Kalikining, design, and optimization of piezoelectric converters. Basic design configurations will first be discussed and evaluated. Models are then developed and validated. These models are then used as a basis for optimization.
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Alison Burrell,Berkeley Hill,John Medlandpe to ensure its accuracy and suitability of for use as a basis for design optimization. Optimal designs were generated and discussed. Actual converters were designed and built based on these optimizations. This chapter will discuss.the implementation of these converters and present test results sho
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Joachim Kunert,R. J. Martin,Sabine Rothe of MEMS devices is closely tied to the target processing technology. Therefore, a very short discussion of the manufacturing process to be used has been given in chapter 6 in order to effectively produce a design. The processing that has been used will be covered in more depth in this chapter. A nu
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Correction to: Unsupervised Learning,s a power source that merited further research. The remainder of the book, then, has reported on research efforts to model, design, construct, and test vibration to electricity converters. This final chapter will review the justification for this work, its major findings and contributions, and recom
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Correction to: Unsupervised Learning,A sequence of prototype devices has been designed and fabricated. The previous chapter explained the essential elements of the fabrication processes used. This chapter is dedicated to reporting fabrication and testing results.
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