Proceedings of the AAAI Conference on Artificial Intelligence · 2017 · 10 citations · 19 references
EngineeringRobustness (Computer Science)Structural OptimizationUncertainty QuantificationAlgorithmic Mechanism DesignSystems EngineeringAuction TheoryMechanism DesignerMechanism DesignRobust OptimizationDesignAutomated DesignControl DesignComputer ScienceRobust DesignFeedforward ControlIncentive MechanismAutomationMechanical SystemsBusinessIncentive-centered DesignRobotics
We introduce a new class of mechanisms, robust mechanisms, that is an intermediary between ex-post mechanisms and Bayesian mechanisms. This new class of mechanisms allows the mechanism designer to incorporate imprecise estimates of the distribution over bidder valuations in a way that provides strong guarantees that the mechanism will perform at least as well as ex-post mechanisms, while in many cases performing better. We further extend this class to mechanisms that are with high probability incentive compatible and individually rational, ε-robust mechanisms. Using techniques from automated mechanism design and robust optimization, we provide an algorithm polynomial in the number of bidder types to design robust and ε-robust mechanisms. We show experimentally that this new class of mechanisms can significantly outperform traditional mechanism design techniques when the mechanism designer has an estimate of the distribution and the bidder’s valuation is correlated with an externally verifiable signal.
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Roger B. Myerson · Mathematics of Operations Research · 1981 · 6K citations
Mathematical Programming, Electronic Auction, Engineering +17
Dimitris Bertsimas, Melvyn Sim · Operations Research · 2004 · 4.3K citations
Mathematical Programming, Engineering, Robustness Testing +22