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Soil-Monitoring Sensor Powered by Temperature Difference between Air and Shallow Underground Soil.

, , , and . Proc. ACM Interact. Mob. Wearable Ubiquitous Technol., 4 (1): 13:1-13:22 (2020)

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Low-Cost Soil Moisture Profile Probe Using Thin-Film Capacitors and a Capacitive Touch Sensor., , , , , , and . Sensors, 16 (8): 1292 (2016)Bilateration-based Position Estimation of Sensor Nodes for UAV-assisted Wireless Power Transfer Systems., , , and . MobiQuitous (Adjunct Proceedings), page 66-71. ACM, (2016)Soil-Monitoring Sensor Powered by Temperature Difference between Air and Shallow Underground Soil., , , and . Proc. ACM Interact. Mob. Wearable Ubiquitous Technol., 4 (1): 13:1-13:22 (2020)Capacitor leakage aware duty cycle control for energy harvesting wireless sensor networks., , and . SenSys, page 387-388. ACM, (2011)Energy Prediction for Energy Management Method of Sensor Node Powered by Temperature Difference Between Air and Shallow Underground Soil., , and . IEEE SENSORS, page 1-4. IEEE, (2019)Ground Temperature Difference Driven Sensor for Environmental Monitoring., , , and . UbiComp/ISWC Adjunct, page 353-356. ACM, (2018)Virtualizing power cords by wireless power transmission and energy harvesting., , , , , and . RWS, page 37-39. IEEE, (2013)Power harvesting from microwave oven electromagnetic leakage., , , , , and . UbiComp, page 373-382. ACM, (2013)Capacitive-Touch-Based Soil Monitoring Device with Exchangeable Sensor Probe., , , and . IEEE SENSORS, page 1-4. IEEE, (2018)