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A Hybrid EV Authentication Approach in Smart Grid Based Distributed Network

机译:基于智能电网的分布式网络中的混合EV认证方法

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摘要

Smart grid and Electric Vehicles (EVs) network is one of the typical distributed network with heterogeneous systems and they demand very robust and secure method of communication. Provision of such efficient scheme in this network is a very difficult task. From time to time EVs need to coordinate with smart grid and other entities specially Aggregators, in network for charging/Discharging purposes. For the security and integrity of this communication, a reliable and efficient authentication scheme is essential. Main problems for application of authentication schemes in such a distributed network is that if number of EVs is high, then the authentication delay becomes unbearable for customers. Also communication traffic and computational delay become large in case of peak traffic time. In order to reduce these service degrading factors, we have proposed a hybrid authentication scheme for any number of EVs based on distributed power control network. This authentication schemes constitutes the use of digital signature algorithm and batch authentication scheme. The combination of these schemes makes the aggregators in distribute network to work in different modes based on amount of traffic in the network and the application of different modes in aggregator allows lesser authentication delay and communication traffic as compared to when these two authentication schemes were used separately. In this way we achieve a novel and better strategy for secure and efficient authentication and communication in distributed power control network.
机译:智能电网和电动汽车(EV)网络是具有异构系统的典型分布式网络之一,它们需要非常健壮和安全的通信方法。在该网络中提供这样的有效方案是非常困难的任务。电动汽车有时需要在网络中与智能电网和其他实体(特别是聚合器)进行协调,以实现充电/放电目的。为了这种通信的安全性和完整性,可靠而有效的身份验证方案至关重要。在这样的分布式网络中应用认证方案的主要问题是,如果EV的数量很大,那么认证延迟对客户来说就难以承受。在高峰时间的情况下,通信流量和计算延迟也会变大。为了减少这些服务降级因素,我们提出了一种基于分布式电源控制网络的任意数量的电动汽车的混合认证方案。这种认证方案构成了使用数字签名算法和批处理认证方案。这些方案的组合使分布式网络中的聚合器可以根据网络中的通信量以不同的模式工作,并且与分别使用这两种认证方案时相比,在聚合器中应用不同的模式可以减少认证延迟和通信流量。通过这种方式,我们实现了一种新颖且更好的策略,用于在分布式电源控制网络中进行安全有效的身份验证和通信。

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