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Distributed smart decision-making for a multimicrogrid system based on a hierarchical interactive architecture

机译:基于分层交互架构的多微格系统的分布式智能决策

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摘要

In this paper, a comprehensive real-time interactive energy management system (EMS) framework for the utility and multiple electrically coupled MGs is proposed. A hierarchical bi-level control scheme (BLCS) with primary and secondary level controllers is applied in this regard. The proposed hierarchical architecture consists of sub-components of load demand prediction, renewable generation resource integration, electrical power-load balancing, and responsive load demand. In the primary level, EMSs are operating separately for each microgrid (MG) by considering the problem constraints, power set-points of generation resources, and possible shortage or surplus of power generation in the MGs. In the proposed framework, minimum information exchange is required among MGs and the distribution system operator. It is a highly desirable feature in future distributed EMS. Various parameters such as load demand and renewable power generation are treated as uncertainties in the proposed structure. In order to handle the uncertainties, Taguchi's orthogonal array testing approach is utilized. Then, the shortage or surplus of the MGs power should be submitted to a central EMS in the secondary level. In order to validate the proposed control structure, a test system is simulated and optimized based on multiperiod imperialist competition algorithm. The obtained results clearly show that the proposed BLCS is effective in achieving optimal dispatch of generation resources in systems with multiple MGs.
机译:本文提出了一种针对公用事业和多个电耦合MG的全面实时交互式能源管理系统(EMS)框架。在这方面,采用了具有一级和二级控制器的分级双层控制方案(BLCS)。提出的分层体系结构由负荷需求预测,可再生能源资源整合,电力负荷平衡和响应负荷需求的子组件组成。在初级级别,通过考虑问题约束,发电资源的功率设定点以及MG中可能的发电不足或过剩,EMS针对每个微电网(MG)分别运行。在提出的框架中,MG和配电系统运营商之间需要最少的信息交换。这是将来的分布式EMS中非常需要的功能。各种参数(例如负荷需求和可再生能源发电)被视为拟议结构中的不确定因素。为了处理不确定性,使用了Taguchi的正交阵列测试方法。然后,MG的权力的短缺或过剩应提交给二级的中央EMS。为了验证所提出的控制结构,基于多周期帝国竞争算法对测试系统进行了仿真和优化。所获得的结果清楚地表明,所提出的BLCS在实现具有多个MG的系统中的发电资源的最优分配方面是有效的。

著录项

  • 作者

    Marzband, Mousa;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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