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Development of an automatic monitoring system for rice light-trap pests based on machine vision

Qing Yao, Feng Jin, Jian Tang, Wei-gen XU, Xu-hua ZHU, Baojun Yang, Jun Lu, Yi-ze XIE, Bo Yao, Shuzhen Wu, Nai-yang KUAI, Lijun Wang

2020Journal of Integrative Agriculture73 citationsDOIOpen Access PDF

Abstract

Monitoring pest populations in paddy fields is important to effectively implement integrated pest management. Light traps are widely used to monitor field pests all over the world. Most conventional light traps still involve manual identification of target pests from lots of trapped insects, which is time-consuming, labor-intensive and error-prone, especially in pest peak periods. In this paper, we developed an automatic monitoring system for rice light-trap pests based on machine vision. This system is composed of an intelligent light trap, a computer or mobile phone client platform and a cloud server. The light trap firstly traps, kills and disperses insects, then collects images of trapped insects and sends each image to the cloud server. Five target pests in images are automatically identified and counted by pest identification models loaded in the server. To avoid light-trap insects piling up, a vibration plate and a moving rotation conveyor belt are adopted to disperse these trapped insects. There was a close correlation (r=0.92) between our automatic and manual identification methods based on the daily pest number of one-year images from one light trap. Field experiments demonstrated the effectiveness and accuracy of our automatic light trap monitoring system.

Topics & Concepts

Trap (plumbing)PEST analysisComputer scienceIdentification (biology)Cloud computingArtificial intelligenceComputer visionReal-time computingAgricultural engineeringEnvironmental scienceEngineeringBiologyEcologyEnvironmental engineeringBotanyOperating systemSmart Agriculture and AIDate Palm Research StudiesIdentification and Quantification in Food
Development of an automatic monitoring system for rice light-trap pests based on machine vision | Litcius