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This book describes the fundamentals and principles of energy harvesting and provides the necessary theory and background to develop energy harvesting power supplies. It explains the overall system design and gives quantitative assumptions on environmental energy. It explains different system blocks for an energy harvesting power supply and the trade-offs. The text covers in detail different energy transducer technologies such as piezoelectric, electrodynamic, and thermoelectric generators and solar cells from the material to the component level and explains the appropriate power management circuits required in these systems. Furthermore, it describes and compares storage elements such as secondary batteries and supercapacitors to select the most appropriate one for the application. Besides power supplies that use ambient energy, the book presents systems that use electromagnetic fields in the radio frequency range. Finally, it discusses different application fields and presents examples of self-powered electronic systems to illustrate the content of the preceding chapters.
Typically architecture students are only introduced to energy modeling in elective graduate or advanced undergraduate seminars, and when they are introduced to the design of zero net energy, low carbon buildings it is only in upper division studios. Because these courses are typically not required, only a small fraction of architecture students in some universities are actually able to take them. This is not enough. To reduce our impact on climate change we must introduce these concepts to ALL architecture students. This book describes a project done in a required environmental controls course to introduce students to the design of zero net energy buildings using energy modeling. Students first analyzed selected mid century buildings as they were originally designed many years ago, comparing their performance with that of a California Energy Code compliant building (Title 24-2013), and then made all necessary modifications to improve building performance, beyond code, and achieve a net zero energy building.