Agriculture robot has emerged as a transformation field, promising to revolutionize traditional farming practices by enhancing efficiency, productivity, and sustainability. Weed free condition during the critical period of crop is absolute important for getting maximum yield. Weeds can be effectively managed by physical, chemical, and biological method. Among all those methods, hand weeding is an effective method of weed management. At the same time, increased labor wages and unavailability of agriculture labor during peak time of farm operations creates a major problem. This problem can be resolved by introducing an autonomous weed removing agriculture robot. This study comes with an innovative product design strategy for developing an automated weeding robotic system. The chassis design of agriculture robots plays a critical role in enabling seamless operation across diverse terrains and tasks. This research paper explores the latest advancements in chassis design for agricultural robots, focusing on enhancing mobility, weed removing process through 3-axis manipulator.

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An Innovative Product Design Solution Toward the Development of a Weeding Robotic System in Dry Farm Lands

  • B. B. V. L. Deepak,
  • Sreeja Manickam Babuprakash,
  • Sarthak Jain,
  • Bogom Anjali

摘要

Agriculture robot has emerged as a transformation field, promising to revolutionize traditional farming practices by enhancing efficiency, productivity, and sustainability. Weed free condition during the critical period of crop is absolute important for getting maximum yield. Weeds can be effectively managed by physical, chemical, and biological method. Among all those methods, hand weeding is an effective method of weed management. At the same time, increased labor wages and unavailability of agriculture labor during peak time of farm operations creates a major problem. This problem can be resolved by introducing an autonomous weed removing agriculture robot. This study comes with an innovative product design strategy for developing an automated weeding robotic system. The chassis design of agriculture robots plays a critical role in enabling seamless operation across diverse terrains and tasks. This research paper explores the latest advancements in chassis design for agricultural robots, focusing on enhancing mobility, weed removing process through 3-axis manipulator.