An Axiomatic Approach to Block Rewards

Xi Chen, C. Papadimitriou, T. Roughgarden
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引用次数: 47

Abstract

Proof-of-work blockchains reward each miner for one completed block by an amount that is, in expectation, proportional to the number of hashes the miner contributed to the mining of the block. Is this proportional allocation rule optimal? And in what sense? And what other rules are possible? In particular, what are the desirable properties that any "good" allocation rule should satisfy? To answer these questions, we embark on an axiomatic theory of incentives in proof-of-work blockchains at the time scale of a single block. We consider desirable properties of allocation rules including: symmetry; budget balance (weak or strong); sybil-proofness; and various grades of collusion-proofness. We show that Bitcoin's proportional allocation rule is the unique allocation rule satisfying a certain system of properties, but this does not hold for slightly weaker sets of properties, or when the miners are not risk-neutral. We also point out that a rich class of allocation rules can be approximately implemented in a proof-of-work blockchain.
块奖励的公理化方法
工作量证明区块链奖励每个矿工一个完成的区块,其金额预期与矿工为区块挖掘贡献的哈希数成正比。这个比例分配规则是最优的吗?在什么意义上?还有其他可能的规则吗?特别是,任何“好的”分配规则应该满足的理想属性是什么?为了回答这些问题,我们在单个区块的时间尺度上开始了工作量证明区块链激励的公理理论。我们考虑分配规则的理想性质包括:对称性;预算平衡(弱或强);sybil-proofness;以及各种等级的防合谋性。我们表明,比特币的比例分配规则是满足特定属性系统的唯一分配规则,但这并不适用于稍微较弱的属性集,或者当矿工不是风险中性时。我们还指出,丰富的分配规则类可以在工作量证明区块链中近似实现。
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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