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February 12, 2026Electronics0 citationsOpen Access

Design of a Passive Distributed RFID-Based Temperature Monitoring System for Grain Storage

QLQiuju LiangChina TobaccoYZYuanwei ZhouState Grid Corporation of China (China)GYGuilin YuUniversity of Electronic Science and Technology of China

Key Points

  • This research aims to develop an effective temperature monitoring solution for grain storage using RFID technology.
  • Proposed a passive distributed temperature monitoring system using RFID technology.
  • Integrated single-bus multi-point temperature sensor modules for distributed measurements.
  • Utilized RFID readers for energy harvesting to power the system.
  • Ensured stable data transmission with an external antenna.
  • Achieved a temperature collection success rate of 98%.
  • Maintained measurement accuracy of ±1 °C.
  • Implemented a polling cycle of less than 30 seconds.

Abstract

In grain storage and transportation, biological activity, including respiration and metabolism, generates heat, creating temperature gradients that can induce moisture migration and form high-humidity areas. This accelerates fungal and insect activity, leading to quality degradation. Long-term, distributed temperature monitoring inside grain piles is essential for ensuring safe storage and early risk warning. Radio Frequency Identification (RFID) technology has become widely adopted in storage temperature monitoring due to its low cost, maintenance-free operation, and high security. However, traditional RFID systems have limited communication ranges, and the large size of storage facilities necessitates the deployment of multiple readers, which increases costs. Additionally, the high density and fluctuating moisture content of bulk grain lead to significant RF signal absorption and scattering, weakening the accessibility of purely wireless systems to deeper parts of the grain pile. To address these issues, a passive distributed temperature monitoring system based on RFID technology is proposed. The system utilizes RFID readers to harvest RF energy for passive power supply, with an external antenna ensuring stable energy harvesting and data transmission. Single-bus multi-point temperature sensor modules are integrated into the system, enabling distributed temperature measurements across grain piles or warehouses. Experimental results show that the system achieves a temperature collection success rate of 98%, with an accuracy of ±1 °C and a polling cycle of less than 30 s, providing a low-cost, battery-free, and scalable solution for grain storage monitoring, significantly improving storage quality.

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Cite This Study

Liang et al. (2026) studied this question.

synapsesocial.com/papers/698d6ebb5be6419ac0d54748https://doi.org/10.3390/electronics15040752
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