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- W2339655136 abstract "This paper develops an energy-aware ultrasonic sensor network architecture using a Pulse Switching approach for lightweight,through-substrate operation in Structural Health Monitoring applications. Pulse Switching protocols employsingle pulses instead of multi-bit packets for information delivery with maximal lightness in event monitoring withbinary sensing requirements i.e. where event information transmitted is only a single bit (YES / NO) based on evaluationof structural characteristics. The paper presents a simulation study of the Energy-Aware Through-Substrate PulseSwitching protocol performance for structural monitoring when operated using energy harvested from intermittentvibrations in the structure itself. The paper incorporates an energy harvesting model for simulating memory-lessvibration patterns using exponentially distributed random processes at different networked nodes. These nodes areplaced inside a rectangular plate structure and the corresponding harvested energy profiles are simulated. The vibrationprofiles are a function of the position of the node on the plate as well as time. Such spatio-temporal variation leads tointeresting dynamics in the energy-aware protocol operation which have been explored in the current paper setting.Through the simulations, it is shown that the proposed Energy-Aware Pulse Switching protocol mechanisms can offer arobust through-substrate network that can be reliably used for Structural Health Monitoring using vibration-harvestedenergy." @default.
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- W2339655136 date "2016-04-20" @default.
- W2339655136 modified "2023-09-22" @default.
- W2339655136 title "Impacts of structural vibration on the performance of ultrasound sensor networks powered by vibration-harvested energy" @default.
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- W2339655136 doi "https://doi.org/10.1117/12.2219445" @default.
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