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Titlebook: Real-World Wireless Sensor Networks; Proceedings of the 5 Koen Langendoen,Wen Hu,Luca Mottola Conference proceedings 2014 Springer Internat

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楼主: NO610
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Node Identification Using Clock Skewristics. Clock skew can be used as unique node identifier which is, among other applications, useful for node authentication. We describe how clock skew of a node’s clock can be measured directly on a node by utilising the available high precision radio transceiver clock. We detail an implementation
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MIMOSA, a Highly Sensitive and Accurate Power Measurement Technique for Low-Power Systemsystem’s power consumption, as the usability of such a system is tightly coupled to the duration of a battery cycle. A basic task for reducing energy consumption is the creation of hardware and software energy models to find and understand existing power saving potentials. This often requires a most
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Snowcloud: A Complete Data Gathering System for Snow Hydrology Researchnter deployments in settings ranging from high desert to arctic, resulting in over a dozen node-years of practical experience. In this chapter, we discuss both the system design and deployment experiences.
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Real-Life Deployment of Bluetooth Scatternets for Wireless Sensor Networkstrees for a laboratory network of 24 nodes and for deployment in a photovoltaic power plant with 39 nodes. The results demonstrate the effectiveness of the SFX algorithm, which is evidently the only actually implemented scatternet contruction procedure which is distributed and does not assume full node-to-node visibility.
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Demo Abstract: Cross Layer Design for Low Power, Low Delay, High Reliability Radio Duty-Cycled Multihrough direct comparison using real traces obtained from a 52 node deployment. We demonstrate reliability in excess of 99.9 % in all cases, improved energy efficiency over the state of the art, with minimal trade-offs in terms of end to end latency.
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Poster Abstract: Velux-Lab—Monitoring a Nearly Zero Energy Buildingncy. It constitutes an experimental module conceived as a laboratory to test new technologies and materials for energy efficiency in construction building. A Wireless Sensor Network collects data from several sensors monitoring the building and the HVAC system, and these data have been used to validate some properties of the building itself.
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