Using a microcontroller unit with event-driven strategy, the wireless sensor nodes can send out a temperature signal every 14 seconds at a flow rate of about 18 ...
This process is very effective in smartphone and home applications, but it is not energy-efficient and does not allow always-on detections in long-life ...
TL;DR: This paper presents a hybrid-powered wireless sensor node using enhanced triboelectric nanogenerator (TENG) as both energy harvester and air-flow sensor ...
Using a microcontroller unit with event-driven strategy, the wireless sensor nodes can send out a temperature signal every 14 seconds at a flow rate of about 18 ...
This paper presents the implementation and test of a self-powered wireless sensor node using enhanced triboelectric nanogenerator (E-TriG) as both energy ...
Event-driven wireless temperature sensor networks powered by air-flow based nanogenerator. NEMS 2017: 410-413; 2016. [c2]. view. electronic edition via DOI ...
Event-driven wireless temperature sensor networks powered by air-flow based nanogenerator. Y Hu, Z Peng, Z Huang, Y Wu, M Wang, X Li, F Wang. 2017 IEEE 12th ...
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This paper presents a hybrid-powered wireless sensor node using enhanced triboelectric nanogenerator (TENG) as both energy harvester and air-flow sensor and ...
"Event-driven wireless temperature sensor networks powered by air-flow based nanogenerator." In. Nano/Micro Engineered and Molecular Systems (NEMS), 2017 IEEE.
Dec 10, 2023 · The primary design objective is to devise a wireless sensor node with miniaturization, integration, and high-accuracy recognition ability.
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