基于区块链的分散式能源交换系统安全性分析

Muhammad H.D. Khan, U. Mujahid, M. Najam-ul-Islam, Hongsik Choi
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引用次数: 1

摘要

如今,使用分布式智能电网的能源交易越来越受欢迎。区块链与分布式智能电网的集成将提供更好的解决方案,具有复杂的消费监控和强大且可扩展的能源交易系统等功能。区块链以其安全记录、匿名、透明和分布式实现的特性,将进一步加强智能电网各主体之间能源交易的去中心化运作。然而,由于固有的安全和隐私问题,这种新网络的全部潜力无法实现。在本文中,作者在事务流实现中发现了一个安全漏洞。首先,对分散式能源交易网络进行了概述。然后对各个阶段的工艺流程进行了详细的讨论。最后,提出了两种情况,其中可以利用差的安全措施在块延迟技术的帮助下执行双支出攻击(DSA)。
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A Security Analysis of Blockchain Based Decentralized Energy Exchange System
Energy trading using distributed smart grids is gaining popularity these days. The integration of Blockchain with distributed smart grids will provide an even better solution with features like sophisticated consumption monitoring and a robust and scalable energy trading system. Blockchain with its properties of secure recording, anonymity, transparency and distributed implementation will further strengthen the decentralized operation of energy trading among various entities of the smart grid network. However, the full potential of this new network cannot be achieved due to the inherent security and privacy issues. In this research paper, the authors have identified a security vulnerability in the transaction flow implementation. First, an overview of a decentralized energy trading network has been given. Then the process flow has been discussed in detailed at every stage. Finally, two scenarios have been presented where the poor security measures can be exploited to perform a double spending attack (DSA) with a help of a Block Delay Technique.
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