The precision beekeeping (PB) system is the milestone which paved the way for beekeeping by integrating real-time monitoring with advanced data analytics. In PB system, essential environmental data such as temperature, humidity, and sound levels within the beehive are collected for analysis. A NodeMCU microcontroller is used to process the collected data, facilitating efficient transfer to a central system. The Blynk platforms make people to understand and monitor hive conditions and visualize data in real-time through a user-friendly web interface. High-resolution cameras which capture detailed images of hive activity and analyzed to detect honeycomb wax and classify bees into worker and queen categories. The accuracy of the system is validated through comparisons with actual hive conditions, achieving a 92% accuracy in detecting bees, honeycomb wax, and abnormal hive states. This approach facilitates precision beekeeping, allowing beekeepers to make informed decisions and supporting agricultural biodiversity.

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Comprehensive Analysis of Environmental Impacts and Precision Beekeeping Using Real-Time Analytics

  • B. S. Vandana,
  • Sumathi Pawar,
  • A. P. Thinakaran Rajermani

摘要

The precision beekeeping (PB) system is the milestone which paved the way for beekeeping by integrating real-time monitoring with advanced data analytics. In PB system, essential environmental data such as temperature, humidity, and sound levels within the beehive are collected for analysis. A NodeMCU microcontroller is used to process the collected data, facilitating efficient transfer to a central system. The Blynk platforms make people to understand and monitor hive conditions and visualize data in real-time through a user-friendly web interface. High-resolution cameras which capture detailed images of hive activity and analyzed to detect honeycomb wax and classify bees into worker and queen categories. The accuracy of the system is validated through comparisons with actual hive conditions, achieving a 92% accuracy in detecting bees, honeycomb wax, and abnormal hive states. This approach facilitates precision beekeeping, allowing beekeepers to make informed decisions and supporting agricultural biodiversity.