Quantized VCG Mechanisms for Polymatroid Environments

Hao Ge, R. Berry
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引用次数: 2

Abstract

Many network resource allocation problems can be viewed as allocating a divisible resource, where the allocations are constrained to lie in a polymatroid. We consider market-based mechanisms for such problems. Though the Vickrey-Clarke-Groves (VCG) mechanism can provide the efficient allocation with strong incentive properties (namely dominant strategy incentive compatibility), its well-known high communication requirements can prevent it from being used. There have been a number of approaches for reducing the communication costs of VCG by weakening its incentive properties. Here, instead we take a different approach of reducing communication costs via quantization while maintaining VCG's dominant strategy incentive properties. The cost for this approach is a loss in efficiency which we characterize. We first consider quantizing the resource allocations so that agents need only submit a finite number of bids instead of full utility function. We subsequently consider quantizing the agent's bids.
多边形环境的量化VCG机制
许多网络资源分配问题都可以看作是一个可分资源的分配问题,其分配被限制在一个多边形中。我们考虑以市场机制解决这类问题。Vickrey-Clarke-Groves (VCG)机制虽然具有较强的激励特性(即优势策略激励兼容性),但其众所周知的高通信要求使其无法被使用。通过弱化VCG的激励特性来降低其传播成本的方法有很多。在这里,我们采取不同的方法,通过量化来降低通信成本,同时保持VCG的主导策略激励特性。这种方法的代价是效率上的损失,这是我们所描述的。我们首先考虑量化资源分配,使代理只需要提交有限数量的投标,而不是完整的效用函数。我们随后考虑量化代理的出价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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