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Rational Delegation Computing Using Information Theory and Game Theory Approach

机译:利用信息论和博弈论方法进行理性委托计算

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Delegation computing is a calculation protocol between non-cooperative participants, and its results are influenced by the participant's choice of behavior. The goal of this paper is to solve the problem of high communication overhead in traditional delegation computing schemes. Combining the advantages of information theory and game theory, we propose a rational delegation computing scheme, which guarantees the correctness of the calculation results through the participant utility function. First, by analyzing the participant behavior strategy, we design the game model, which includes the participant set, information set, behavior strategy set and utility function. Second, according to the combination of Nash equilibrium and channel capacity limit in the game model, we construct a rational delegation computing scheme in this paper. Finally, we analyze and prove the scheme. When both the delegation party and computing party choose the honesty strategy, their utility reaches the maximum, that is, the global can reach the Nash equilibrium state, and the calculation efficiency has also been improved.
机译:委托计算是非合作参与者之间的一种计算协议,其结果受参与者的行为选择影响。本文的目的是解决传统委托计算方案中的高通信开销的问题。结合信息论和博弈论的优点,提出了一种合理的委托计算方案,通过参与者效用函数保证了计算结果的正确性。首先,通过分析参与者的行为策略,设计了包含参与者集,信息集,行为策略集和效用函数的博弈模型。其次,根据博弈模型中纳什均衡和通道容量极限的组合,构造了一种合理的委托计算方案。最后,我们分析并证明了该方案。当委托方和计算方都选择诚实策略时,它们的效用达到最大,即全局可以达到纳什均衡状态,计算效率也得到了提高。

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