Constrained Majorization: Applications in Mechanism Design

Afshin Nikzad
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引用次数: 5

Abstract

Classical frameworks in mechanism design often specify an objective function and maximize it by choosing allocation. We extend these frameworks by allowing maximizing an objective function (such as expected revenue in an auction) subject to additional constraints (such as lower bounds on efficiency or welfare). The additional complexity arising due to each additional constraint manifests in the reduced form of the optimal mechanism as at most one jump discontinuity in an "ironed" interval. We apply our results to demonstrate the simplicity of optimal mechanisms despite the presence of a side constraint in common economic applications such as contract and auction design. We also introduce a regularity condition under which the general structure of optimal mechanisms bears no additional complexity due to the presence of a side constraint. The analysis builds on the findings of Kleiner et al. (2021) by considering optimal mechanisms as extreme points of function spaces.
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约束最大化:在机构设计中的应用
经典的机制设计框架通常指定一个目标函数,并通过选择分配来实现目标函数的最大化。我们通过允许在附加约束(如效率或福利的下限)下最大化目标函数(如拍卖中的预期收入)来扩展这些框架。由于每个附加约束而产生的额外复杂性以最优机制的简化形式表现为在“熨平”区间内最多有一个跳跃不连续。我们应用我们的结果来证明最优机制的简单性,尽管在常见的经济应用(如合同和拍卖设计)中存在侧约束。我们还引入了一个正则性条件,在该条件下,由于存在侧约束,最优机构的一般结构不会产生额外的复杂性。该分析基于Kleiner等人(2021)的研究结果,将最优机制视为函数空间的极值点。
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