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Published byLynn Barrett Modified over 9 years ago
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Socio-environmental Agents Thomas E Downing SEI Oxford
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Choosing methodology Attributes of multi-agent modelling A water example Challenges
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Modelling approaches Frameworks and observation: –Descriptive: Good as sources & validation, but difficult to generalise from –Sociological Theory: rich, difficult to unambiguously relate to any specific case –Statistical and experimental: Valid but impossible to extend to future Disciplinary(?): –Micro-economic: Puts techniques above problem –Game theory: Only solvable with a small number of discrete choices –Population dynamics: Does not (really) relate to micro behaviour –Physics-derived models: Can be useful for post hoc encapsulation –Descriptive computational simulation: difficult to get enough observations Multi-agent –Robotic experiments: costly and unreliable, experiments take a lot of time and effort –Artificial life computational models: Good on process, can be disconnected –Artificial Intelligence/Machine Learning: Useful techniques but strongly a priori –Agent-based social simulation: emerging integration? From Bruce Edmunds: www.cpm.mmu.ac.uk
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Choosing meta-methodology Individuals Groups Societies Representing society Integrating nature & society Quantitative Qualitative
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Attributes of multi-agent systems Software agents… Correspond to real-world actors –sample diversity of populations Embed behaviour –beliefs, norms, goals, plans Interact –environment –each other Environment Internal process ActionPerception
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Demand for water in southern England EA EA1 WATER WC WC1 WC2 WC3 NEG1 NEG2 NEG3
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Water demand ABSS Historical climate Individual (30% N) Group (55% N) MH climate CCDeW Project: Edmunds, Moss et al.
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Challenges Validation: what is modelling for anyway? Scale: what grain of analysis is best? Complexity: simple may not be better? Computational speed: slow! Stakeholder interface: distributed games?
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