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Sensitivity Analysis on Locations of Energy Storage in Power Systems With Wind Integration

机译:带风电的电力系统储能位置的灵敏度分析

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The penetration of renewable energy sources, particularly wind energy, into power systems has been rapidly increasing in recent years. However, the integration of wind power has posed many challenges for power system operation. For instance, this type of energy source is relatively variable and unpredictable. The installation of this renewable source might require the grid to transmit power at full capacity and some transmission lines could become congested. As a result, in some operating conditions, wind power could be curtailed, which will drive up costs for system operators. One of the actions that can be taken to support the integration of the wind is using energy storage systems. In this paper, a multiperiod ac optimal power flow problem with battery energy storages (BESs) is formulated and sets of candidate buses for BES installation are identified based on an economic criterion. Tests are carried out on IEEE 14-bus and IEEE 118-bus systems to assess the robustness of storage location on system operation.
机译:近年来,可再生能源,特别是风能在电力系统中的渗透已迅速增加。但是,风电的集成给电力系统的运行带来了许多挑战。例如,这种类型的能源是相对可变且不可预测的。安装此可再生能源可能需要电网以最大容量传输功率,并且某些传输线可能会变得拥挤。结果,在某些运行条件下,风能可能会减少,这将增加系统运营商的成本。支持风能整合可以采取的措施之一是使用储能系统。本文提出了一种带有电池储能器(BES)的多周期交流最优潮流问题,并根据经济标准确定了用于BES安装的候选总线组。在IEEE 14总线和IEEE 118总线系统上进行了测试,以评估系统运行中存储位置的健壮性。

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