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Impact of Electric Vehicle Charging Infrastructure Expansion on Microgrid Economics: A Case Study

机译:电动汽车充电基础设施扩展对微电网经济学的影响:一个案例研究

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The operation of public and semi-public charging infrastructure is often not profitable yet. However, the integration of charging infrastructure in microgrids enables the introduction of innovative business models, e.g. by local renewable energy generation and storage units. Another driver to improve profitability is to adapt the charging infrastructure expansion according to its usage characteristics. This study presents a method to optimize the charging infrastructure expansion. Therefore, a mixed integer linear program with the aim to minimize costs is formulated and applied on real-world data. Via the optimization, different scenarios are developed and the microgrid integration is simulated in an operation optimization algorithm. Different business models such as PV and battery storage integration are computed and the economics of the business models in the different scenarios are evaluated. It can be concluded that microgrid integration can be a significant driver of charging infrastructure operation profitability. Integrating PV generation shortens the payback period in all scenarios. Also, PV generation and battery storage combined improve profitability, but not to the same extent than without storage unit. Furthermore, the optimization of the charging infrastructure expansion leads to a significant improvement of profitability. Combining both the microgrid integration, as well as the expansion optimization, the payback period can be decreased by up until 67 %.
机译:公共和半公共收费基础设施的运营通常尚未盈利。但是,将充电基础设施集成到微电网中可以引入创新的业务模型,例如由当地的可再生能源发电和存储单位。另一个提高盈利能力的驱动力是根据其使用特性来适应充电基础设施的扩展。这项研究提出了一种优化充电基础设施扩展的方法。因此,制定了以最小化成本为目标的混合整数线性程序,并将其应用于实际数据。通过优化,开发了不同的方案,并在操作优化算法中模拟了微电网集成。计算了不同的业务模型(例如光伏和电池存储集成),并评估了不同场景下的业务模型的经济性。可以得出结论,微电网集成可以成为充电基础设施运营盈利能力的重要驱动力。在所有情况下,集成光伏发电都可以缩短投资回收期。此外,光伏发电和电池存储相结合可以提高获利能力,但是与没有存储单元时相比提高的程度不同。此外,充电基础设施扩展的优化可显着提高盈利能力。结合微电网集成和扩展优化,投资回收期最多可减少67%。

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