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Mobility Impact on the Performance of Electric Vehicle-to-Grid Communications in Smart Grid Environment

机译:移动性对智能电网环境中电网通信性能的影响

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Plug-in Electric Vehicles (PEVs) are expected to be widely utilized in the near future if issues related to the availability of charging infrastructure are resolved and if PEVs are efficiently integrated with the smart grid. The Vehicle-to-Grid (V2G) system is an emerging technology that enables the communication and control between PEVs and the smart grid. This promising concept is designed to provide the vehicles with information about where and when to charge their batteries, and allows the smart grid to acquire power from a PEV. An essential element to the success of V2G systems is reliable and secure communication system. Wireless communications in highly mobile V2G environment introduce serious challenges, such as reliability and real-time communication. In this paper, we present a comprehensive analysis of the impact of speed on the end-to-end delay and throughput in V2G communication scenarios. We focus on situations where authentication is performed when essential information such as payment data is exchanged between PEVs and its charging infrastructure. Furthermore, we present realistic delay analysis of the proposed communication infrastructure. Our simulation results show the impact of traffic density and speed on both the end-to-end delay and the throughput. We draw recommendations based on our test scenarios and simulation results.
机译:如果解决与收费基础设施的可用性有关的问题,则预计将在不久的将来广泛使用插入电动车(PEV),如果PEV与智能电网有效地集成了PEV。车辆到网格(V2G)系统是一种新兴技术,可实现PEV和智能电网之间的通信和控制。这一承诺的概念旨在为车辆提供有关地点和何时对电池充电的信息,并且允许智能电网从PEV获取电力。 V2G系统成功的基本要素是可靠和安全的通信系统。高度移动V2G环境中的无线通信引入了严重的挑战,例如可靠性和实时通信。在本文中,我们对V2G通信场景中的速度对端到端延迟和吞吐量的影响进行了全面分析。我们专注于当在PEV和其充电基础设施之间交换诸如支付数据等基本信息时执行认证的情况。此外,我们呈现了拟议的通信基础设施的现实延迟分析。我们的仿真结果显示了交通密度和速度对端到端延迟和吞吐量的影响。我们根据我们的测试场景和仿真结果绘制建议。

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