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Stochastic flexible transmission operation for coordinated integration of plug-in electric vehicles and renewable energy sources

机译:随机灵活的变速箱操作,可实现插电式电动汽车和可再生能源的协调集成

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摘要

In this paper, the large-scale integration of plug-in electric vehicles (PEVs) with Vehicle-to-Grid (V2G) technology is taken as a promising way to promote the integration of renewable energy sources (RESs). But, it is a challenging task for the independent system operator (ISO) to manage the power flows in its system, especially in the large-scale integration of PEVs and RESs into the transmission system. The coordination between PEV, as distributed storage devices, and variable RESs create variable power flows and loop flows and quests for utilization of controllable devices to manage these flows. The On-load tap changing (OLTC) transformers and phase shifting transformers (PSTs) are two flexible transmission technologies that can be solved this challenge through controlling the power flows. In this paper, a novel model is developed for optimal operation of flexible transmission technologies for coordinated integration of PEVs and RESs in power transmission networks. The proposed model has been implemented on the six-bus and the IEEE 118-bus test systems. The simulation results imply that: (i) The V2G technology of PEV battery can ease the impact of variability of RES on power system operations and reduce operation cost and wind power spillage; (ii) substantial economic savings can be achieved through utilization of both OLTC transformer and PSTs beyond the independent capabilities of each technology.
机译:本文将插电式电动汽车(PEV)与车辆对电网(V2G)技术的大规模集成作为促进可再生能源(RES)集成的一种有前途的方法。但是,对于独立系统运营商(ISO)而言,管理其系统中的功率流是一项艰巨的任务,尤其是在将PEV和RES大规模集成到传输系统中时。作为分布式存储设备的PEV与可变RES之间的协调会产生可变的功率流和环路流,并寻求利用可控设备来管理这些流。有载抽头变换(OLTC)变压器和移相变压器(PST)是两种灵活的传输技术,可以通过控制潮流来解决这一挑战。本文针对电力传输网络中PEV和RES的协调集成,为柔性传输技术的最佳运行开发了一种新型模型。所提议的模型已在六总线和IEEE 118总线测试系统上实现。仿真结果表明:(i)PEV电池的V2G技术可以减轻RES的可变性对电力系统运行的影响,并降低运行成本和风电泄漏。 (ii)通过使用OLTC变压器和PST来实现可观的经济节省,这超出了每种技术的独立能力。

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