The purpose of this study is to successfully rescue the kids from dangerous places like exposed borewells. The kid retrieval mechanism for borewell dimensions that we employed in this work has a gripper-based gripping system and a camera positioned beneath the bottom plate that is powered by a winch that is connected to the top motor shaft. A processing unit with an 89c52 controller chip H Bridge IC is used to govern the mechanism, which is powered by two DC motors and controlled by an RF remote unit for effective kid rescue and surveillance. The wired camera enables live video transmission. For further safety, the youngster is also given oxygen, and a motion sensor sounds an alert for the presence of a borehole. An open bore well will be simulated using a 2-foot plastic pipe (8 inches in diameter) for practical validation.

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Cutting Edge Mechanism for Child Retrieval from Risky Pits

  • B. Venkateshulu,
  • K. Varsha,
  • Ch. Nainitha,
  • M. Nikitha,
  • G. Bhanusri

摘要

The purpose of this study is to successfully rescue the kids from dangerous places like exposed borewells. The kid retrieval mechanism for borewell dimensions that we employed in this work has a gripper-based gripping system and a camera positioned beneath the bottom plate that is powered by a winch that is connected to the top motor shaft. A processing unit with an 89c52 controller chip H Bridge IC is used to govern the mechanism, which is powered by two DC motors and controlled by an RF remote unit for effective kid rescue and surveillance. The wired camera enables live video transmission. For further safety, the youngster is also given oxygen, and a motion sensor sounds an alert for the presence of a borehole. An open bore well will be simulated using a 2-foot plastic pipe (8 inches in diameter) for practical validation.