Abstract

To solve the inspection problems in cotton storage, as well as the need for environmental monitoring in the process of modern cotton bale storage, an intelligent inspection and temperature and humidity intelligent monitoring system based on RFID cotton bale was developed by adopting RFID (Radio Frequency Identification) technology, wireless temperature and humidity real-time monitoring technology and handheld terminal intelligent inspection technology. The system was composed of RFID positioning inspection module and temperature and humidity real-time monitoring and transmission module. The artificial neural network (ANN) based on the particle swarm optimization (PSO) algorithm was used to process the monitoring data of the system by Gaussian filtering, and an accurate classification model of RSSI and label position was established. The test results showed that: Through the comparative analysis of the RFID indoor positioning algorithm, the positioning error of the PSO-ANN algorithm was small. In the actual cotton bale warehouse test, the relative error of positioning and monitoring for RFID cotton bale intelligent inspection and monitoring system was less than 6.7%, which effectively improved the working efficiency of inspection personnel and the security of cotton bale storage. The relative error of temperature and humidity was less than 8% and less than 7%, which could display the temperature and humidity information in real time and meet the real-time demand. This study improved the management personnel's effective positioning and inspection of the cotton bale, prevented the loss of cotton bale, reduced the deterioration probability of cotton bale, and effectively improved the storage management level of the cotton bale. It was of great practical significance to realize the networking, automation, and intelligence of cotton bale storage management.

Highlights

  • To solve the inspection problems in cotton storage, as well as the need for environmental monitoring in the process of modern cotton bale storage, an intelligent inspection and temperature and humidity intelligent monitoring system based on radio frequency identification (RFID) cotton bale was developed by adopting RFID (Radio Frequency Identification) technology, wireless temperature and humidity real-time monitoring technology and handheld terminal intelligent inspection technology

  • The test showed that the RFID cotton bale positioning monitoring system, based on the test data of the RFID tag positioning information, showed that the relative error of the system monitoring was less than 6.7%

  • A scheme based on RFID warehousing intelligent inspection system was proposed in this paper, and the overall scheme design of the system was carried out, mainly including hardware design and software design

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Summary

Temperature and humidity value in Cotton stack storage

Display each label positioning X, Y information et al.[28] developed a new procedure to estimate the indoor distance of passive UHF RFID tags, which effectively improved positioning monitoring accuracy. To improve the management of cotton warehouse, this research broke through key technologies of real-time monitoring of cotton bag storage environment and artificial inspection positioning. Aiming at Cotton stack positioning and storage environment temperature and humidity monitoring, an RFID intelligent inspection system for cotton bag storage was developed, which realized the informationization and intelligence of cotton bale inventory management, and integration of host computer service platform and handheld terminal information. RFID storage intelligent inspection and monitoring system is composed of location server, wireless card reader, network card reader, temperature and humidity sensor, handheld terminal, etc. RFID technology is used as the basis to realize real-time collection of the information of the cotton stacks in the warehouse. The wireless monitoring of temperature and humidity mainly collects the cotton stack warehouse in real-time and with high preci-

Temperature and humidity monitoring device
Ethernet Debug Size Power supply
Reader antenna interface Working temperature and humidity Power supply Size
The cotton stack positioning algorithm
Output layer
Bluetooth sending module
Software system design
Card reader
Number of location
Manually measure label position
Conclusion
Author contributions
Findings
Additional information
Full Text
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