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Lightweight Privacy-Preserving Authentication Scheme for V2G Networks in the Smart Grid

机译:智能电网中V2G网络的轻量级隐私保护认证方案

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Vehicle-to-grid (V2G) is one of the future key technologies for the smart grid. Electric vehicles (EV) are potential power consumers that can play a crucial role by delivering the power back to the grid in order to meet the power demand. However, the V2G network has some crucial security and privacy challenges. Also the existing solutions generate a huge overhead cost and do not provide resistance against well known security attacks. In order to address the identified security and privacy challenges in the V2G smart grid network. We propose a scheme based on bilinear pairing technique with an accumulator that provides mutual authentication, and privacy preservation of EV's information such as identity, battery status, location, and charging/discharging selection and time duration. The proposed scheme defeats various security attacks, including man-in-the-middle attack, replay attack, impersonation attack, redirection attack, and repudiation attack while generating lower communication and computation overhead than existing privacy-preserving V2G mutual authentication schemes.
机译:车载电网(V2G)是智能电网的未来关键技术之一。电动汽车(EV)是潜在的用电者,可以通过将电力输送回电网以满足电力需求而发挥关键作用。但是,V2G网络面临一些关键的安全和隐私挑战。而且,现有的解决方案产生了巨大的开销成本,并且不能抵抗众所周知的安全攻击。为了解决已确定的V2G智能电网网络中的安全性和隐私挑战。我们提出了一种基于双线性配对技术的蓄能器方案,该蓄能器提供了相互身份验证以及对电动汽车信息(例如身份,电池状态,位置以及充电/放电选择和持续时间)的隐私保护。所提出的方案克服了各种安全攻击,包括中间人攻击,重播攻击,模拟攻击,重定向攻击和抵赖攻击,同时所产生的通信和计算开销比现有的保留隐私的V2G相互认证方案低。

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