On Realistic Target Coverage by Autonomous Drones
Author:
Affiliation:
1. Georgia Institute of Technology
2. University of Maryland, College Park, MD, USA
3. Carnegie Mellon University, Pittsburgh, USA
4. Qatar University, Doha, Qatar
Abstract
Publisher
Association for Computing Machinery (ACM)
Subject
Computer Networks and Communications
Link
https://dl.acm.org/doi/pdf/10.1145/3325512
Reference115 articles.
1. Fog Computing Architecture, Evaluation, and Future Research Directions
2. Offloading in fog computing for IoT: Review, enabling technologies, and research opportunities
3. Ahmed Abdelkader Moamen Mokhtar and Hazem El-Alfy. 2012. Angular heuristics for coverage maximization in multi-camera surveillance. In AVSS’12. Ahmed Abdelkader Moamen Mokhtar and Hazem El-Alfy. 2012. Angular heuristics for coverage maximization in multi-camera surveillance. In AVSS’12.
4. Ahmed Abdelkader Ahmed Saeed Khaled Harras and Amr Mohamed. 2015. The inapproximability of illuminating polygons by α-floodlights. In CCCG’15. Ahmed Abdelkader Ahmed Saeed Khaled Harras and Amr Mohamed. 2015. The inapproximability of illuminating polygons by α-floodlights. In CCCG’15.
5. UbiBreathe
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