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Ultra Low Power Wake-Up Radios: A Hardware and Networking Survey.

, , , , and . IEEE Commun. Surv. Tutorials, 19 (4): 2117-2157 (2017)

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Towards Internet of Things (IOTS): Integration of Wireless Sensor Network to Cloud Services for Data Collection and Sharing., and . CoRR, (2013)On-Demand LoRa: Asynchronous TDMA for Energy Efficient and Low Latency Communication in IoT., , , and . Sensors, 18 (11): 3718 (2018)WURBench: Toward Benchmarking Wake-up Radio-based Systems., and . CoRR, (2018)TSCH for Long Range Low Data Rate Applications., , and . IEEE Access, (2020)Ultra Low Power Wake-Up Radios: A Hardware and Networking Survey., , , , and . IEEE Commun. Surv. Tutorials, 19 (4): 2117-2157 (2017)Integrating Wireless Sensor Network into Cloud services for real-time data collection., , , , , , , and . ICTC, page 752-756. IEEE, (2013)Wake-up Radio based Approach to Low-Power and Low-Latency Communication in the Internet of Things.. University of Trento, Italy, (2019)Plug into a Plant: Using a Plant Microbial Fuel Cell and a Wake-Up Radio for an Energy Neutral Sensing System., , , and . LCN Workshops, page 18-25. IEEE Computer Society, (2017)WaCo: A Wake-Up Radio COOJA Extension for Simulating Ultra Low Power Radios., , and . EWSN, page 48-53. Junction Publishing, Canada / ACM, (2017)On-Demand TDMA for Energy Efficient Data Collection with LoRa and Wake-up Receiver., , , and . WiMob, page 1-4. IEEE, (2018)