UAV-enabled edge computing and blockchain based secure charging station selection for energy trading in V2G environment

Arzoo Miglani, Neeraj Kumar, Avadh Kishore, Nazeeruddin Mohammad
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Abstract

Vehicle-to-Grid (V2G) networks have emerged as a promising solution in the modern electric power transmission network. By leveraging the bidirectional energy trading capabilities of V2G, demand-supply mismatch is managed in wide range of applications. However, performing energy trading decisions at cloud centers leads to increased delay and overhead. The demand to process the 3V's (variety, volume, and velocity) of data generated by V2G with low latency necessitates the usage of edge computing services. Although with the growth of edge computing resources, the trust issue of collaboration also grows among different stakeholders and service providers. Therefore, to deal with the aforementioned issues, this paper presents blockchain and UAV-enabled edge computing based energy trading services for the V2G environment. The decision of selecting a charging station (CS) by an electric vehicle (EV) is processed close to the EV movement via edge nodes. To secure and validate energy trading transactions and automation of the whole system, the blockchain technology is used in the proposal. The result section depicts that the proposed scheme has minimal computational and communicational overhead along with reduced latency in comparison to the existing schemes.
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支持无人机的边缘计算和基于区块链的安全充电站选择,用于V2G环境中的能源交易
车辆到电网(V2G)网络已成为现代电力传输网络中一个很有前途的解决方案。通过利用V2G的双向能源交易功能,可以在广泛的应用中管理供需不匹配。然而,在云中心执行能源交易决策会增加延迟和开销。以低延迟处理V2G生成的3V(种类、数量和速度)数据的需求需要使用边缘计算服务。尽管随着边缘计算资源的增长,不同利益相关者和服务提供商之间的协作信任问题也在增长。因此,为了解决上述问题,本文提出了基于V2G环境的区块链和无人机边缘计算的能源交易服务。电动汽车选择充电站的决策通过边缘节点在靠近电动汽车运动的地方进行处理。为了确保和验证能源交易交易以及整个系统的自动化,提案中使用了区块链技术。结果部分描述了与现有方案相比,所提议的方案具有最小的计算和通信开销以及减少的延迟。
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