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Economic-environmental hierarchical frequency management of a droop-controlled islanded microgrid

机译:下垂控制的孤岛微电网的经济-环境分层频率管理

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摘要

This paper presents a novel energy management system (EMS) for a microgrid to enhance the power system security in a cost-effective manner. Small size of the islanded microgrids, high levels of intermittency and energy fluctuations, lower inertia potential of inverter-interfaced distributed energy resources (DERs) makes the frequency a vital factor in the microgrid energy management system that should be managed subject to the economic-environmental policies of the microgrid EMS. The proposed model is based on precise energy and reserve scheduling of the DERs in a droop-controlled islanded microgrid to manage the possible microgrid frequency excursions. The expected value of the microgrid frequency excursions stem from system power deviations is employed as a new objective function in this study, which is aimed to be minimized using a two stage stochastic mixed-integer linear programming method. In order to model the hierarchical control structure of the islanded microgrid, the frequency dependent behavior of the droop-controlled inverter-interfaced DERs is formulated thoroughly. The proposed model is applied to a typical microgrid test system. The primary and secondary frequency control reserves are appropriately scheduled over a 24 h period. A methodology based on the Monte-Carlo simulation strategy is adapted to generate some random scenarios corresponding to renewable generation variations, load consumption deviations and contingencies of line/unit outages. The generated scenarios are reduced and applied to the optimization approach. Moreover, using the proposed hierarchical control structure, the microgrid frequency excursions are managed aptly in predefined acceptable ranges by readjusting the reference power set-points of dispatchable DERs. Numerical results and detailed analyses effectively verify the great importance of the frequency control modeling in the energy and reserve management problem of the microgrids.
机译:本文提出了一种用于微电网的新型能源管理系统(EMS),以经济高效的方式增强了电力系统的安全性。孤岛微电网的尺寸小,间歇性和能量波动高,逆变器接口的分布式能源(DER)的惯性潜力低,使得频率成为微电网能源管理系统中至关重要的因素,应根据经济环境对其进行管理微电网EMS的政策。所提出的模型基于下垂控制的岛状微电网中DER的精确能量和储备调度,以管理可能的微电网频率偏移。由电网功率偏差引起的微电网频率偏移的期望值被用作本研究的新目标函数,旨在使用两阶段随机混合整数线性规划方法将其最小化。为了对孤岛微电网的分层控制结构进行建模,充分阐述了下垂控制的逆变器接口DERs的频率相关行为。所提出的模型被应用于典型的微电网测试系统。一次和二次频率控制储备已适当安排在24小时内。基于蒙特卡洛模拟策略的方法适用于生成一些随机情景,这些情景对应于可再生发电量变化,负荷消耗偏差和线路/单元停机的突发事件。减少了生成的方案并将其应用于优化方法。此外,使用提出的分层控制结构,通过重新调整可调度DER的参考功率设定点,可以在预定义的可接受范围内适当地管理微电网频率偏移。数值结果和详细的分析有效地证明了频率控制模型在微电网的能量和储备管理问题中的重要性。

著录项

  • 来源
    《Energy Conversion & Management》 |2014年第12期|498-515|共18页
  • 作者

    Navid Rezaei; Mohsen Kalantar;

  • 作者单位

    Center of Excellence for Power Systems Automation and Operation, Electrical Engineering Department, Iran University of Science and Technology (IUST), Tehran, Iran;

    Center of Excellence for Power Systems Automation and Operation, Electrical Engineering Department, Iran University of Science and Technology (IUST), Tehran, Iran,Narmak, Tehran, Postal code: 1684613114, Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microgrid energy management system; Frequency control; Droop method; Reserve scheduling; Hierarchical control;

    机译:微电网能源管理系统;频率控制;下垂法;储备计划;分层控制;

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