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BEST: Blockchain-based secure energy trading in SDN-enabled intelligent transportation system

机译:最佳:基于区块链的安全能源交易,支持SDN的智能运输系统

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摘要

Tactile Internet is a fairly recent technological trend associated with the Internet-of-Things (IoT) era, with potential applications in a broad range of industrial, societal and business use cases. The real-time machine-to-machine and human-to-machine interactions (e.g., in unmanned vehicles and the underpinning infrastructure within the smart city ecosystem) in the intelligent transportation sector, for example, contribute to the potential utility of Tactile Internet in this particular sector (and the broader smart city). In the context of unmanned vehicles, such as unmanned aerial vehicles and electric (ground) vehicles, one of several key challenges to its broader utility is how to design a secure energy trading ecosystem that can be used for purposes such as charging and discharging from the supporting smart grids. Most existing approaches in the literature focused on conventional and centralized security mechanisms, which may not be applicable for energy trading in a smart city environment. Moreover, the need for real-time processing for energy trading computation is one of the essential requirements of Tactile Internet. Therefore, to address these challenges, BEST: a Blockchain-based secure energy trading scheme for electric vehicles (EVs) is proposed in this paper. Specifically, in BEST, blockchain is used to validate EVs' requests in a distributed manner; thus, ensuring resilience against the single point of failure. The miner nodes are selected to validate the requests on the basis of energy requirements, time of stay, dynamic pricing, and connectivity record, as well as other factors that are crucial for the operator at the time of operation. Moreover, to provide low latency and real-time services, software-defined networking is used as the network's backbone to transfer EVs' requests to a global software defined network controller. Finally, BEST is evaluated on the basis of the communication and computation costs incurred during various transactions between the EVs and the smart grid. A case study is also provided to demonstrate the potential deployment of BEST in energy trading. (C) 2019 Elsevier Ltd. All rights reserved.
机译:触觉互联网是最近与互联网(物联网)时代相关的技术趋势,具有广泛的工业,社会和商业用例中的潜在应用。例如,在智能交通部门中的实时机器和人机交互(例如,在无人驾驶车辆中,在智能城市生态系统内的内宁基础设施)有助于触觉互联网的潜在效用这个特定的部门(和更广泛的智能城市)。在无人驾驶车辆的背景下,例如无人驾驶飞行器和电动(地面)车辆,其更广泛的实用程序的几个关键挑战之一是如何设计安全的能源交易生态系统,这些生态系统可用于从中充电和放电等目的支持智能电网。文献中最现有的方法专注于传统和集中的安全机制,这可能不适用于智能城市环境中的能源交易。此外,对能源交易计算的实时处理的需求是触觉互联网的基本要求之一。因此,为了解决这些挑战,最佳:本文提出了一种基于板块的安全能源交易方案(EVS)。具体地,最好的,区块链用于以分布式方式验证EVS的请求;因此,确保抵御单点故障的抵御能力。选择矿工节点以基于能量需求,停留时间,动态定价和连接记录以及在操作时对操作员至关重要的其他因素来验证请求。此外,为了提供低延迟和实时服务,软件定义的网络被用作网络的骨干,以将EVS的请求传输到全局软件定义的网络控制器。最后,最佳是基于在EVS和智能电网之间的各种交易中产生的通信和计算成本的基础评估。还提供了案例研究以展示最佳能源交易的潜在部署。 (c)2019 Elsevier Ltd.保留所有权利。

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