Soil-Monitoring Sensor Powered by Temperature Difference between Air and Shallow Underground Soil
Natsuki Ikeda, Ryo Shigeta, Junichiro Shiomi, Yoshihiro Kawahara
摘要
Energy harvesting (EH) technologies are useful for the semi-permanent operation of wireless sensor networks, especially, for agricultural monitoring as the networks need to be installed in large areas where power supply is unavailable. In this paper, we propose a battery-free soil-monitoring sensor for agriculture, which leverages the temperature difference between near-surface air and shallow underground soil using a thermoelectric generator (TEG). The performance of systems driven by the TEG mainly depends on the average temperature between the hot and cold sides of the TEG (T) and the temperature difference across the TEG (ΔT). If T is low and ΔT is small, it is challenging to earn enough power to drive wireless microcontroller unit; however, with our dedicated electric circuit, and thermal designs including impedance matching of thermal circuit and suppression of heat loss, the sensor can harvest more than a hundred microwatt on average from the temperature difference between the air and underground soil at a depth of 30 cm. The performance of the energy harvester is evaluated both by numerical analysis using temperature data collected from various farm fields and by a prototype implementation. Moreover, the prototype was deployed to farm fields in Japan and India. Our field experiment results revealed that the prototype could harvest 100 μW-370 μW on average, and drive a wireless microcontroller unit to perform soil monitoring.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
引用它的顶会 Paper3
- E-seed: Shape-Changing Interfaces that Self DrillDanli Luo, Jianzhe Gu, Fang Qin, Guanyun Wang 等UIST 2020 · 被引用 29 次
- Adaptable Runtime Monitoring for Intermittent SystemsEren Yildiz, Khakim Akhunov, Lorenzo Antonio Riva, Arda Goknil 等EuroSys 2024 · 被引用 7 次
- VeriMask: Facilitating Decontamination of N95 Masks in the COVID-19 Pandemic: Challenges, Lessons Learned, and Safeguarding the FutureYan Long, Alexander Curtiss, Sara Rampazzi, Josiah D. Hester 等UbiComp 2021
相关 Paper
- EC-Sense: Radio Energy Capture for Ultra-Low-Power Wireless Soil Moisture SensingYoganand Biradavolu, Jian Ding, Bhuvana Krishnaswamy, Leandros Tassiulas 等UbiComp 2026 · 被引用 1 次
- Demeter: Reliable Cross-soil LPWAN with Low-cost Signal Polarization AlignmentYidong Ren, Wei Sun, Jialuo Du, Huaili Zeng 等MobiCom 2024 · 被引用 27 次
- Sensor-free Soil Moisture Sensing Using LoRa SignalsZhaoxin Chang, Fusang Zhang, Jie Xiong, Junqi Ma 等UbiComp 2022 · 被引用 76 次
- Deep-Soil Acoustic Backscatter Networking for Electrical Substation Grounding AssessmentFengrui Zhang, Shanyue Wang, Bowen Xue, Lei YangSIGCOMM 2026
- Learning to Communicate Effectively Between Battery-free DevicesKai Geissdoerfer, Marco ZimmerlingNSDI 2022
