This article presents a comprehensive study of a unique unmanned aerial vehicle system (UAV) based on the Antalya region for forest fire management. The study delves into an in-depth analysis of geographical surface shapes, endemic vegetation patterns, and climate structures by focusing on high-risk ignition areas. The insights gained from the analysis were employed to develop a CAD design of an alternative system. The proposed design aims to enhance aerial fire extinguishing efforts by utilizing a more streamlined and cost-effective UAV model. Additionally, it is intended to promote firefighting operations by incorporating unmanned aerial vehicles. The research findings indicate that integrating new-generation UAV systems has improved and diversified aerial fire suppression capabilities by utilizing smaller aircraft.

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Design and Investigation of an Amphibious Unmanned Aerial Vehicle for Autonomous Firefighting Operations

  • Mehmet Gürsoylu,
  • David Sziroczak,
  • David Szilagyi

摘要

This article presents a comprehensive study of a unique unmanned aerial vehicle system (UAV) based on the Antalya region for forest fire management. The study delves into an in-depth analysis of geographical surface shapes, endemic vegetation patterns, and climate structures by focusing on high-risk ignition areas. The insights gained from the analysis were employed to develop a CAD design of an alternative system. The proposed design aims to enhance aerial fire extinguishing efforts by utilizing a more streamlined and cost-effective UAV model. Additionally, it is intended to promote firefighting operations by incorporating unmanned aerial vehicles. The research findings indicate that integrating new-generation UAV systems has improved and diversified aerial fire suppression capabilities by utilizing smaller aircraft.