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Hierarchical droop controlled frequency optimization and energy management of a grid-connected microgrid

机译:并网微电网的分级下垂控制频率优化和能量管理

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This paper proposes a frequency security based Energy Management System (EMS) for a hierarchically controlled grid-connected microgrid. The centralized hierarchical EMS is based on precise energy scheduling of droop controlled inverter interfaced Distributed Energy Resources (DERs). A Latin Hypercube Sampling based methodology is applied to model the uncertainties caused by Renewable Energy Sources (RESs), load deviations, and DERs. Simulations are performed on a microgrid in a grid-connected mode. The results verify the effectiveness of considering droop controlled inverter interfaced DERs in preserving the frequency in a hierarchical energy management system. Using this approach, unpredicted changes in the power output of RESs are controlled and microgrid frequency security is satisfied.
机译:本文提出了一种基于频率安全的能源管理系统(EMS),用于分层控制的并网微电网。集中式分层EMS基于下垂控制的逆变器接口分布式能源(DER)的精确能源调度。应用基于拉丁文超立方体采样的方法对可再生能源(RES),负载偏差和DER引起的不确定性进行建模。在并网模式下对微电网进行仿真。结果证实了在分级能量管理系统中考虑下垂控制的逆变器接口的DER在保持频率方面的有效性。使用此方法,可控制RES的功率输出中的意外变化,并满足微电网频率的安全性。

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