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A Strong Adaptive, Strategic Double-Spending Attack on Blockchains

机译:强大的自适应,战略性的双重支出攻击陷入困境

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In this paper, we first propose an adaptive strategy for double-spending attack on blockchains. The attacker in our strategy observes the length of the honest branch when a submitted transaction becomes available in the blockchain, and then updates the attack strategy accordingly. This provides a stronger strategy than conventional double-spending attack. We then derive closed-form expressions for the probability of a successful attack and the expected reward of attacker miners. Our analysis shows that the probability of a successful attack by convincing the network nodes to follow the counterfeit branch under the proposed attack strategy is 60% higher than what is expected from the conventional attack strategy when the attackers acquire 40% of the total network processing power. To counter this increase in the probability of attack, the network nodes are required to use a bigger number of confirmation blocks for validating any transaction in the blockchain. We computed the. expected reward of an attacker for mining a counterfeit branch on a blockchain and observed that the expected reward drops to zero after a few number of block confirmations.
机译:在本文中,我们首先提出了一种适应性策略,用于对块线进行双重支出攻击。我们的策略中的攻击者在区块链中提供提交的交易时,诚实分支的长度,然后相应地更新攻击策略。这提供了比传统的双重支出攻击更强的策略。然后,我们获得了封闭式表达,以实现成功攻击的概率和攻击者矿工的预期奖励。我们的分析表明,通过说服网络节点在拟议的攻击战略下遵循伪造的分支机构的概率比传统攻击战略从总网络处理能力的40%获得的预期更高的预期。为了对此增加攻击概率,网络节点需要使用更大数量的确认块来验证区块链中的任何事务。我们计算了。攻击者在区块链中挖掘攻击者的预期奖励,并观察到预期的奖励在几次块确认后跌至零。

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