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SURVIVOR: A blockchain based edge-as-a-service framework for secure energy trading in SDN-enabled vehicle-to-grid environment

机译:幸存者:基于SDN的支持能源交易的基于区块链的边缘的AS-Service框架,可在支持SDN的车辆到网格环境中

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Electric vehicles (EVs) have transformed the smart transportation sector by providing diverse energy management solutions to the smart grid. Energy trading among EVs and charging stations (CS) in a vehicle-to-grid (V2G) environment is one of the popular verticals in smart grid. However, processing the energy trading decisions at remote control centers lead to an increase in delay and network overhead. Apart from these issues, the security concerns while trading the energy in such an environment remain persistent. Therefore, to handle the aforementioned issues, this paper presents SURVIVOR: A Blockchain based Edge-as-a-Service Framework for Secure Energy Trading in software defined networking (SDN)-enabled V2G Environment. In the proposed framework, the energy trading decisions are processed closer to the location of EVs through edge nodes. Moreover, for securing the energy trading transactions, blockchain is used wherein the approver nodes are selected amongst all the present nodes on the basis of a utility function and are made responsible for validating the transactions. Once such nodes are selected, a consensus based blockchain mechanism for secure energy trading in SDN-enabled V2G environment is presented. In this mechanism, edge nodes are responsible for generating proof-of-work puzzles. The proof-of-work is a unique hash value which is computed for each EV and the transactions for which the approver nodes compute the same proof-of-work for each EV are added in the blockchain. The complete scheme is backed by the SDN architecture to reduce the overall latency and increase the throughput of the smart transportation network. The results obtained prove that the proposed scheme is effective for trading the energy between EVs and CS while securing the underlying trading transactions using blockchain. Moreover, the communication and computation cost of the proposed scheme comes out to be small which proves that it can be used in real-world applications. The latency in the complete transportation sector is also greatly reduced by using the SDN-architecture. (C) 2019 Published by Elsevier B.V.
机译:电动车(EVS)通过向智能电网提供多样化的能源管理解决方案来改造智能运输部门。在车辆到网格(V2G)环境中的EVS和充电站(CS)之间的能源交易是智能电网中的流行垂直之一。但是,处理遥控中心的能量交易决策导致延迟和网络开销增加。除了这些问题之外,在这种环境中交易能量的安全问题仍然存在。因此,为了处理上述问题,本文介绍了Survivor:基于区块链的Edge-AS-Service框架,用于在软件定义的网络(SDN)的V2G环境中的安全交易。在拟议的框架中,通过边缘节点将能源交易决策更接近EVS的位置。此外,为了确保能量交易交易,使用区块链,其中基于实用程序函数在所有当前节点之间选择批准节点,并负责验证事务。一旦选择了这样的节点,呈现了一种基于SDN的V2G环境中的安全能量交易的基于截止的基于区块的机制。在这种机制中,边缘节点负责产生工作验证。工作验证是为每个EV计算的唯一哈希值,并且在区块链中添加了对每个eV的相同工作验证的交易。通过SDN架构支持完整的方案,以降低整体延迟并提高智能运输网络的吞吐量。获得的结果证明,拟议的计划对于在EVS和CS之间的能量交易,同时使用区块链保护底层交易交易。此外,所提出的方案的通信和计算成本出现为小,从而证明它可以在现实世界中使用。通过使用SDN-架构,整个交通扇区的延迟也大大减少了。 (c)2019年由elestvier b.v发布。

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