TY - GEN
T1 - Concept and realization of unmanned aerial system with different modes of operation
AU - Czyba, Roman
AU - Szafrański, Grzegorz
AU - Janusz, Wojciech
AU - Niezabitowski, Michał
AU - Czornik, Adam
AU - Błachuta, Marian
N1 - Publisher Copyright:
© 2014 AIP Publishing LLC.
PY - 2014/12/10
Y1 - 2014/12/10
N2 - In this paper we describe the development process of unmanned aerial system, its mechanical components, electronics and software solutions. During the stage of design, we have formulated some necessary requirements for the multirotor vehicle and ground control station in order to build an optimal system which can be used for the reconnaissance missions. Platform is controlled by use of the ground control station (GCS) and has possibility of accomplishing video based observation tasks. In order to fulfill this requirement the on-board payload consists of mechanically stabilized camera augmented with machine vision algorithms to enable object tracking tasks. Novelty of the system are four modes of flight, which give full functionality of the developed UAV system. Designed ground control station is consisted not only of the application itself, but also a built-in dedicated components located inside the chassis, which together creates an advanced UAV system supporting the control and management of the flight. Mechanical part of quadrotor is designed to ensure its robustness while meeting objectives of minimizing weight of the platform. Finally the designed electronics allows for implementation of control and estimation algorithms without the needs for their excessive computational optimization.
AB - In this paper we describe the development process of unmanned aerial system, its mechanical components, electronics and software solutions. During the stage of design, we have formulated some necessary requirements for the multirotor vehicle and ground control station in order to build an optimal system which can be used for the reconnaissance missions. Platform is controlled by use of the ground control station (GCS) and has possibility of accomplishing video based observation tasks. In order to fulfill this requirement the on-board payload consists of mechanically stabilized camera augmented with machine vision algorithms to enable object tracking tasks. Novelty of the system are four modes of flight, which give full functionality of the developed UAV system. Designed ground control station is consisted not only of the application itself, but also a built-in dedicated components located inside the chassis, which together creates an advanced UAV system supporting the control and management of the flight. Mechanical part of quadrotor is designed to ensure its robustness while meeting objectives of minimizing weight of the platform. Finally the designed electronics allows for implementation of control and estimation algorithms without the needs for their excessive computational optimization.
KW - Human Machine Interface
KW - Unmanned Aerial Vehicles
UR - https://www.scopus.com/pages/publications/85010898418
U2 - 10.1063/1.4904587
DO - 10.1063/1.4904587
M3 - Conference contribution
AN - SCOPUS:85010898418
T3 - AIP Conference Proceedings
SP - 261
EP - 270
BT - 10th International Conference on Mathematical Problems in Engineering, Aerospace and Sciences, ICNPAA 2014
A2 - Sivasundaram, Seenith
PB - American Institute of Physics Inc.
T2 - 10th International Conference on Mathematical Problems in Engineering, Aerospace and Sciences, ICNPAA 2014
Y2 - 15 July 2014 through 18 July 2014
ER -