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A Secure Charging System for Electric Vehicles Based on Blockchain

机译:基于区块链的电动汽车安全充电系统

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Smart grids incorporating internet-of-things are emerging solutions to provide a reliable, sustainable and efficient electricity supply, and electric vehicle drivers can access efficient charging services in the smart grid. However, traditional electric vehicle charging systems are vulnerable to distributed denial of service and privileged insider attacks when the central charging server is attacked. The blockchain-based charging systems have been proposed to resolve these problems. In 2018, Huang et al. proposed the electric vehicle charging system using lightning network and smart contract. However, their system has an inefficient charging mechanism and does not guarantee security of key. We propose a secure charging system for electric vehicles based on blockchain to resolve these security flaws. Our charging system ensures the security of key, secure mutual authentication, anonymity, and perfect forward secrecy, and also provides efficient charging. We demonstrate that our proposed system provides secure mutual authentication using Burrows–Abadi–Needham logic and prevents replay and man-in-the-middle attacks using automated validation of internet security protocols and applications simulation tool. Furthermore, we compare computation and communication costs with previous schemes. Therefore, the proposed charging system efficiently applies to practical charging systems for electric vehicles.
机译:包含互联网的智能电网是新兴的解决方案,以提供可靠,可持续和高效的电力供应,电动车司机可以在智能电网中获得有效的充电服务。然而,当中央计费服务器受到攻击时,传统的电动车辆充电系统容易被分发拒绝服务和特权内部内幕攻击。已经提出了基于区块链的充电系统来解决这些问题。 2018年,黄等人。提出了使用雷电网络和智能合同的电动车充电系统。然而,它们的系统具有低效的充电机制,并不保证关键的安全性。我们为基于区块链的电动汽车提出了一种安全的充电系统来解决这些安全缺陷。我们的充电系统确保了关键,安全的相互认证,匿名和完善的前向保密的安全性,并提供有效的充电。我们展示我们所提出的系统使用Burrows-Abadi-Consum Logic提供安全的相互身份验证,并使用Internet安全协议和应用程序仿真工具的自动验证来防止重播和中间攻击。此外,我们将计算和通信成本与先前的方案进行比较。因此,所提出的充电系统有效地适用于电动车辆的实际充电系统。

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