RUS  ENG
Full version
JOURNALS // Computer Research and Modeling // Archive

Computer Research and Modeling, 2022 Volume 14, Issue 1, Pages 115–126 (Mi crm958)

This article is cited in 4 papers

MODELS IN PHYSICS AND TECHNOLOGY

The dynamic model of a high-rise firefighting drone

N. Anha, Ph. Haia, N. Hanha, N. Vinhbc

a The University of Fire prevention and Fighting, 234, Khuat Quy Tien, Thanh Xuan, Ha Noi, Viet Nam
b Automatic Control System Department, Bauman Moscow State Technical University, 5, 2-d Baumanskaya st., Moscow, 107005, Russia
c Department of Automatic control, Academy of Military Science and Technology, 17, Hoang Sam, Cau Giay, Ha Noi, Viet Nam

Abstract: The utilization of unmanned aerial vehicles (UAVs) in high-rise firefighting operations is the right solution for reaching the fire scene on high floors quickly and effectively. The article proposes a quadrotor-type firefighting UAV model carrying a launcher to launch a missile containing fire extinguishing powders into a fire. The kinematic model describing the flight kinematics of this UAV model is built based on the Newton–Euler method when the device is in normal motion and at the time of launching a firefighting missile. The results from the simulation testing the validity of the kinematic model and the simulation of the motion of the UAV show that the variation of Euler angles, flight angles, and aerodynamic angles during a flight are within an acceptable range and overload guarantee in flight. The UAV flew to the correct position to launch the required fire-extinguishing ammunition. The results of the research are the basis for building a control system of high-rise firefighting drones in Vietnam.

Keywords: firefighting, aerospace control, dynamical, simulation.

UDC: 355.469.34:004.94

Received: 29.10.2021
Revised: 19.01.2022
Accepted: 08.02.2022

Language: English

DOI: 10.20537/2076-7633-2022-14-1-115-126



© Steklov Math. Inst. of RAS, 2025