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Mobile Nodes as a Dynamic Management Strategy to Improve Coverage in Wireless Sensor Networks.

, , and . SBESC, page 180-185. IEEE Computer Society, (2016)

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Efficiency Evaluation of Strategies for Dynamic Management of Wireless Sensor Networks., , and . Wirel. Commun. Mob. Comput., (2017)Mobile Nodes as a Dynamic Management Strategy to Improve Coverage in Wireless Sensor Networks., , and . SBESC, page 180-185. IEEE Computer Society, (2016)Optimizing Preferences within Groups: A Case Study on Travel Recommendation., , , and . SBIA, volume 5249 of Lecture Notes in Computer Science, page 103-112. Springer, (2008)Using Swarm-GAP for Distributed Task Allocation in Complex Scenarios., , and . MMAS/LSMAS/CCMMS, volume 5043 of Lecture Notes in Computer Science, page 107-121. Springer, (2006)Decentralised Load Balancing in Event-Triggered WSNs Based on Ant Colony Work Division., , and . EUROMICRO-SEAA, page 69-75. IEEE Computer Society, (2015)A Model for Pest Infestation Prediction in Crops Based on Local Meteorological Monitoring Stations., , , and . MICAI (Special Session), page 39-45. IEEE Computer Society, (2017)Impact of Temporal and Spatial Application Modeling on Event-Triggered Wireless Sensor Network Evaluation., , and . SBESC, page 30-35. IEEE Computer Society, (2015)Application-Level Load Balancing for Reactive Wireless Sensor Networks: An Approach Based on Constraint Optimization Problems., , and . BRACIS (2), volume 12320 of Lecture Notes in Computer Science, page 63-76. Springer, (2020)RoboCup Rescue as multiagent task allocation among teams: experiments with task interdependencies., , , , and . Auton. Agents Multi Agent Syst., 20 (3): 421-443 (2010)Framework for Biological Control with Unmanned Aerial Vehicles., , , , , , and . LARS/SBR/WRE, page 25-30. IEEE, (2022)