Optimizing Communication and Computation for Multi-UAV Information Gathering Applications
October 13, 2016 ยท Declared Dead ยท ๐ IEEE Transactions on Aerospace and Electronic Systems
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Authors
Mason Thammawichai, Sujit P. Baliyarasimhuni, Eric C. Kerrigan, Joรฃo B. Sousa
arXiv ID
1610.04091
Category
eess.SY: Systems & Control (EE)
Cross-listed
cs.DC,
cs.RO,
math.OC
Citations
94
Venue
IEEE Transactions on Aerospace and Electronic Systems
Last Checked
2 months ago
Abstract
Mobile agent networks, such as multi-UAV systems, are constrained by limited resources. In particular, limited energy affects system performance directly, such as system lifetime. It has been demonstrated in the wireless sensor network literature that the communication energy consumption dominates the computational and the sensing energy consumption. Hence, the lifetime of the multi-UAV systems can be extended significantly by optimizing the amount of communication data, at the expense of increasing computational cost. In this work, we aim at attaining an optimal trade-off between the communication and the computational energy. Specifically, we propose a mixed-integer optimization formulation for a multi-hop hierarchical clustering-based self-organizing UAV network incorporating data aggregation, to obtain an energy-efficient information routing scheme. The proposed framework is tested on two applications, namely target tracking and area mapping. Based on simulation results, our method can significantly save energy compared to a baseline strategy, where there is no data aggregation and clustering scheme.
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