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Sweet: Secure Wireless Energy Transfer with Electric Vehicles in Vehicular Energy Networks

机译:甜言蜜语:车载能源网络中电动汽车的安全无线能量传输

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Wireless power transfer (WPT) has offered a revolutionized solution to overcome the driving range anxieties for electric vehicles (EVs) on remote highways by wirelessly delivering energy to EVs while driving. By deploying energy nodes with WPT facilities, vehicular energy networks (VENs) have been constructed upon highways to facilitate EVs’ charging and discharging operations. However, owing to the security and privacy vulnerabilities arising from the untrusted environment, it becomes very challenging to securely and optimally schedule the charging and discharging behaviors of EVs in VENs in a cooperative manner. In this paper, we propose Sweet, a secure wireless energy transfer scheme for EVs in VENs. Firstly, we present a collaborative framework of EV charging and discharging management in VENs through cooperative wireless energy transfer. Secondly, based on local differential privacy mechanism, a personalized privacy-preserving reputation model is developed to deliver secure WPT services in VENs while offering rigorous privacy guarantees for EV users. Furthermore, based on joint matching-auction game, a distributed energy scheduling mechanism is devised to derive the optimal strategies of cooperative EVs and energy nodes. Finally, simulation results validate the effectiveness of the proposed scheme in terms of improved user utility and privacy protection, compared with existing approaches.
机译:无线功率传输(WPT)提供了一种革命性的解决方案,通过在行驶过程中向电动汽车无线传递能量来克服偏远高速公路上电动汽车(EV)的行驶里程焦虑。通过使用WPT设施部署能源节点,在高速公路上建立了汽车能源网络(VEN),以方便电动汽车的充电和放电操作。然而,由于不受信任的环境引起的安全和隐私漏洞,以协作的方式安全和最佳地调度EV中EV的充电和放电行为变得非常具有挑战性。在本文中,我们提出了Sweet,一种在VEN中用于EV的安全无线能量传输方案。首先,我们通过协作的无线能量传输提出了VENs中的EV充电和放电管理的协作框架。其次,基于本地差异隐私机制,开发了个性化的隐私保留信誉模型,以在VEN中提供安全的WPT服务,同时为EV用户提供严格的隐私保证。此外,基于联合竞价博弈,设计了一种分布式能源调度机制,以推导协同电动汽车和能源节点的最优策略。最后,与现有方法相比,仿真结果验证了所提方案在改善用户效用和隐私保护方面的有效性。

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