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The case for open-source PEV charge management data framework

机译:开源PEV收费管理数据框架案例

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The future growth of electrified transportation could be enhanced through interaction with smart grid system architectures. This paper summarizes current literature regarding plug-in electric vehicle - renewables integration and highlights areas of need to implement such integration at a multi-utility scale. Future smart grid implementations hold the key to transferring information and control parameters between distributed and centralized decision agents. The discussion highlights the opportunity to leverage federal investments in grid renovation and electric vehicle introduction to create system-wide value from improved reliability and reduced fossil fuel consumption. An approach to scaling a previously defined “green signal” methodology for electric vehicles will be detailed across a utility grid balancing region. The research will include a synopsis of the communications opportunities and challenges of coordinating the responses of many resources. The results are expected to show that, with some variation in the charge profiles of individual vehicles, the aggregate set can interface with grid management methods to significantly influence the ability to integrate distributed and centralized renewables to improve environmental quality.
机译:电气化交通的未来增长可以通过与智能电网系统架构的交互来增强。本文总结了有关插电式电动汽车-可再生能源集成的最新文献,并重点介绍了需要在多用途规模上实现这种集成的领域。未来的智能电网实施将成为在分布式决策者和集中决策者之间传递信息和控制参数的关键。讨论着重指出了利用联邦政府在电网改造和电动汽车引进方面的投资来创造机会的机会,即通过提高可靠性和减少化石燃料消耗创造全系统价值。在公用事业电网平衡区域,将详细介绍一种扩展电动汽车先前定义的“绿色信号”方法的方法。该研究将包括交流机会和协调许多资源的应对挑战的概要。预期结果表明,由于单个车辆的充电曲线有一些变化,因此集合集可以与网格管理方法对接,从而显着影响集成分布式和集中式可再生能源以改善环境质量的能力。

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