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Security constrained unit commitment-based power system dispatching with plug-in hybrid electric vehicles

机译:插电式混合动力汽车基于安全约束单元承诺的电力系统调度

摘要

As plug-in hybrid electric vehicles (PHEVs) are expected to be widely used in the near future, a mathematical model is developed based on the traditional security constrained unit commitment (SCUC) formulation to address the power system dispatching problem with PHEVs taken into account. With the premise of power system secure operation, both the economic benefit for PHEV users and the carbon-emission costs are taken into account. Then, the features of PHEVs as mobile energy storage units are exploited to decouple the developed model into two sub-models, involving the unit commitment model and the charging and discharging scheduling model that includes AC power flow constraints. The optimal plug-in capacities for PHEVs and the schemes, including when and where charging and discharging occur, are obtained through a mixed integer programming algorithm and the Newton-Raphson load flow algorithm in addition to the optimal day-ahead unit commitment scheme. Finally, the feasibility and efficiency of the proposed model are verified with a 6-bus test system.
机译:随着插电式混合动力汽车(PHEV)有望在不久的将来得到广泛使用,基于传统的安全约束单位承诺(SCUC)公式开发了数学模型,以解决考虑了PHEV的电力系统调度问题。在电力系统安全运行的前提下,要同时考虑PHEV用户的经济利益和碳排放成本。然后,利用PHEV作为移动储能单元的功能将开发的模型解耦为两个子模型,包括单元承诺模型和包含交流潮流约束的充放电调度模型。除了最佳的提前预定单元承诺方案之外,还可以通过混合整数规划算法和Newton-Raphson潮流算法,获得用于PHEV的最佳插入容量和方案,包括何时何地发生充电和放电。最后,通过6总线测试系统验证了所提模型的可行性和有效性。

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