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Research on the Integration of System Design and Life Safety Education of Multi-functional Water Rescue Equipment

Pan Zhou, Jiayao Li, Miao Ye, Yingyue Cao, Shuhao Dong

Abstract


Drowning remains a major global public safety issue, especially affecting children and youth. In response to the limitations of traditional rescue tools, this paper presents the design of the Ocean Wing Survival multifunctional water rescue device. The system integrates
autonomous navigation, remote control, GPS positioning, and visual-audio alert functions to ensure rapid and reliable water rescue across
diverse environments. In addition to its technical functionality, the device is also positioned as an educational tool to enhance water safety
awareness among students. Through integration into school training, simulations, and safety education curricula, it provides learners with
hands-on experience in rescue technologies and emergency response, bridging the gap between theoretical knowledge and real-life application. This research highlights the dual role of intelligent equipment in improving rescue operations and promoting life safety education. It offers a model for combining technology with experiential learning to build a safer and more resilient society.

Keywords


Water rescue device; Autonomous navigation; Life safety education; Emergency response training; Educational technology

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References


[1] Liu Chuanpu. Research on the Design of Water Rescue Devices Based on Machine Vision [J]. Water Safety, 2023(7):4-6.

[2] Zhao Zexin, Ding Chang, Gao Xingyu, et al. Design of Water Rescue Devices Based on Machine Vision [J]. Equipment Manufacturing

Technology, 2022(9):29-33. DOI:10.3969/j.issn.1672-545X.2022.09.007.

[3] Cao Zhenxin, Jiang Yidong, Lin Zhuliang. Design and Experimental Study of a Wireless Remote-Controlled Water Rescue Robot [J].

New Technologies and New Processes, 2023(12):18-24.




DOI: http://dx.doi.org/10.70711/neet.v3i7.7228

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