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Titlebook: Design of Ultra-Low Power Impulse Radios; Alyssa Apsel,Xiao Wang,Rajeev Dokania Book 2014 Springer Science+Business Media New York 2014 An

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書目名稱Design of Ultra-Low Power Impulse Radios
編輯Alyssa Apsel,Xiao Wang,Rajeev Dokania
視頻videohttp://file.papertrans.cn/269/268780/268780.mp4
概述Enables detailed understanding of the design space for ultra-low power radio, Provides detailed discussion and examples of the design of a practical low power radio network.Compares a variety of low p
叢書名稱Analog Circuits and Signal Processing
圖書封面Titlebook: Design of Ultra-Low Power Impulse Radios;  Alyssa Apsel,Xiao Wang,Rajeev Dokania Book 2014 Springer Science+Business Media New York 2014 An
描述This book covers the fundamental principles behind the design of ultra-low power radios and how they can form networks to facilitate a variety of applications within healthcare and environmental monitoring, since they may operate for years off a small battery or even harvest energy from the environment. These radios are distinct from conventional radios in that they must operate with very constrained resources and low overhead. This book provides a thorough discussion of the challenges associated with designing radios with such constrained resources, as well as fundamental design concepts and practical approaches to implementing working designs.?Coverage includes integrated circuit design, timing and control considerations, fundamental theory behind low power and time domain operation, and network/communication protocol considerations.
出版日期Book 2014
關(guān)鍵詞Analog Circuits and Signal Processing; Communications for Biomedical monitoring; Communications for en
版次1
doihttps://doi.org/10.1007/978-1-4614-1845-0
isbn_softcover978-1-4939-4351-7
isbn_ebook978-1-4614-1845-0Series ISSN 1872-082X Series E-ISSN 2197-1854
issn_series 1872-082X
copyrightSpringer Science+Business Media New York 2014
The information of publication is updating

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Epilogue: Remembering David Marr substrate and then shrinking them down to microscopic scale has not only brought the size of our computers down to fit in our hands, but it has also had dramatic impact on power. If we look at trends in computing and energy efficiency, we find that with the progression of Moore’s law and the rough
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https://doi.org/10.1007/978-1-4684-6775-8w data rate communication, it might sound intuitively clear that they should also naturally be low power. After all, if a node does less work, it should also consume lesser power. But somehow this doesn’t seem to fit the behavior for low data rate communication, short range radios. If we look at exi
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Anna-Teresa Tymieniecka (President)it block that is responsible for extracting data bits from those physical signals. This involves two processes: bit-detection and synchronization. The architectures we detailed in Chap.?. (with the notable exception of (IEEE Trans. Circuits Syst.-I. 56(5):1041–1052 (2009, May), which we will separat
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Domenico A. Conci,Angela Ales Belloystems as a behavioral model for Southeast Asian Fireflies that has subsequently been extensively studied in the fields of mathematics, physics, and non-linear dynamics. The system assumes a network of. oscillators which interact through impulsive coupling, representing the “firing” of a firefly. Ea
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Telic Divinity and its Atelic Grounded and the periods are subdivided into time bins. We assume in this network that there are two major error mechanisms: the missed detection of the pulse due to inadequate signal energy, and a synchronization error, causing the RF-ON window to be turned on at the wrong time. We assume that these mech
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