2023
DOI: 10.3390/s23177359
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Designing UAV Swarm Experiments: A Simulator Selection and Experiment Design Process

Abhishek Phadke,
F. Antonio Medrano,
Chandra N. Sekharan
et al.

Abstract: The rapid advancement and increasing number of applications of Unmanned Aerial Vehicle (UAV) swarm systems have garnered significant attention in recent years. These systems offer a multitude of uses and demonstrate great potential in diverse fields, ranging from surveillance and reconnaissance to search and rescue operations. However, the deployment of UAV swarms in dynamic environments necessitates the development of robust experimental designs to ensure their reliability and effectiveness. This study descri… Show more

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Cited by 9 publications
(3 citation statements)
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“…Hardware and software tests were designed to test the proposed workflow under different conditions. Experiment range and series were selected considering the range and variability required to effectively demonstrate performance [53]. Table 3 summarizes the primary objectives of each test, the map used, and the number of experimental flights performed.…”
Section: Performance Testsmentioning
confidence: 99%
“…Hardware and software tests were designed to test the proposed workflow under different conditions. Experiment range and series were selected considering the range and variability required to effectively demonstrate performance [53]. Table 3 summarizes the primary objectives of each test, the map used, and the number of experimental flights performed.…”
Section: Performance Testsmentioning
confidence: 99%
“…Автори [7] обговорюють ключові компоненти та функції програмного забезпечення, необхідні для безпечного та ефективного керування БПЛА. Робота [8] пропонує структуру для планування ефективних експериментів з роями БПЛА на основі симулятору. Автори підкреслюють важливість вибору симулятору за такими параметрами, як масштабованість, достовірність та зручність використання.…”
Section: вступunclassified
“…Past developments in distributed system technology have encompassed research on synchronization techniques based on message dialogue [12], the implementation of flexible access technologies founded on active services [13], and the provision of reliable operational support guarantees [14]. These advancements have positioned distributed simulation as a viable approach to accurately simulate and verify collaborative task algorithms in robot clusters [15][16][17], facilitating effective evaluation and testing in environments closer to real-world conditions. Through distributed simulation, it becomes possible to validate the collaborative behavior and performance of robots in complex environments while also assessing the robustness and reliability of robot systems.…”
Section: Introductionmentioning
confidence: 99%