2022
DOI: 10.1108/sr-01-2022-0003
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Self-co-ordination algorithm (SCA) for multi-UAV systems using fair scheduling queue

Abstract: Purpose Data traffic through wireless communication is significantly increasing, resulting in the frequency of streaming applications as various formats and the evolution of the Internet of Things (IoT), such as virtual reality, edge device based transportation and surveillance systems. Growth in kind of applications resulted in increasing the scope of wireless communication and allocating a spectrum, as well as methods to decrease the intervention between nearby-located wireless links functioning on the same … Show more

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Cited by 1 publication
(1 citation statement)
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“…Similarly, a review of UAV swarm communication architectures [124] discusses the challenges and future directions for communication in UAV swarms. Examples of communication and control architectures that can be used in UAV swarms include the high-level control of UAV swarms with RSSI-based position estimation [125] and a self-coordination algorithm (SCA) for multi-UAV systems using a fair scheduling queue [126].…”
Section: Swarm Behaviormentioning
confidence: 99%
“…Similarly, a review of UAV swarm communication architectures [124] discusses the challenges and future directions for communication in UAV swarms. Examples of communication and control architectures that can be used in UAV swarms include the high-level control of UAV swarms with RSSI-based position estimation [125] and a self-coordination algorithm (SCA) for multi-UAV systems using a fair scheduling queue [126].…”
Section: Swarm Behaviormentioning
confidence: 99%