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Published byEgbert Norman Montgomery Modified over 6 years ago
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Robo-Rescue Manage and control various forces in a stressed and complicated situations Robo-Rescue
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The Situation Robocup Rescue Simulation is a Large Multi-Agent System which its aim is to manage the disaster when an earthquake happens. Its main purpose is to provide emergency decision support by integration of disaster information, prediction, planning, and human interface. Robo-Rescue
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The Simulator Robo-Rescue
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Main Target Create a solid ground with robust implementation for future investigation. Robo-Rescue
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Sub targets Make the Robo Rescue simulator run.
Create a clear framework for implementations of the algorithms. (random walk, shortest path, ect) Implementing the fisher algorithm among competitive algorithms (greedy and simulated annealing) Collect and analyze the results we achieved so far. Robo-Rescue
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Our Solution We apply Fisher Market Clearing to Rescue Applications
Robo-Rescue
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Fisher Market Clearing (FMC)
Market model: n buyers . e amount of money for each buyer. m divisible goods. U matrix of buyer preferences for goods. Viable FMC solution = price vector Pareto optimal. Envy free. Robo-Rescue
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Problem Transformation
Market Clearing Task allocation Our situation Buyers Agents Fire brigades Goods Tasks Missions of extinguishing buildings Preference value of a good to a buyer Utility of assigning an agent to a task of a fire brigade unit performing a mission Robo-Rescue
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Run example Robo-Rescue
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Competitive Solutions
Simulated Annealing Robo-Rescue
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Competitive Solutions
Greedy Algorithm Robo-Rescue
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The Results Robo-Rescue
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The Results Robo-Rescue
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The Results Robo-Rescue
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The Results Robo-Rescue
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Future work Optimizing the fisher algorithm Academic publishing
Using the algorithm for real situation Robo-Rescue
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Robo-Rescue
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