首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Electrical Engineering >Coordinated Protection and Control Scheme for Smooth Transition from Grid-Connected to Islanded Mode of Microgrids
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Coordinated Protection and Control Scheme for Smooth Transition from Grid-Connected to Islanded Mode of Microgrids

机译:微电网并网到孤岛平稳过渡的协调保护控制方案

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摘要

Microgrid (MG) architecture enables integration of different kinds of distributed energy resources (DERs) into existing electricity grid operation. The MG normally operates within the main utility grid and during grid outages is able to become isolated and sustain its local loads. The successful transfer and operation of MG in islanded mode is strongly influenced by the robust protection arrangement at the point of common coupling, which helps initiate islanding along with the associated MG control actions to counteract insecure and volatile dynamics arising after islanding. Therefore, the protection and control schemes should be coordinated with each other and also be compatible with dynamics of the DER; otherwise, the stability of the MG will be impacted during its autonomous islanded operation. In this paper, a new combined protection-control scheme is devised for a low-voltage MG through which the stability of the islanded MG is continuously ensured. Furthermore, structure of an intelligent electronic device (IED) which enables the proposed protection scheme is presented. The IED directly communicates to an intelligent central controller system for the purpose of triggering the associated control scheme. The performance of the proposed coordinated scheme is successfully validated through both numerical simulations in MATLAB/Simulink environment and experimental test bed. The obtained results show that the idea can confidently meet smooth transient from on grid to off grid and vice versa in MGs.
机译:微电网(MG)体系结构可将各种分布式能源(DER)集成到现有的电网运营中。 MG通常在主公用电网内运行,并且在电网中断期间能够隔离并维持其本地负载。 MG在孤岛模式下的成功传输和操作受到公共耦合点上稳健保护装置的强烈影响,这有助于启动孤岛以及相关的MG控制动作,以抵消孤岛后出现的不安全和不稳定的动态。因此,保护​​和控制方案应相互协调,并与DER的动态特性兼容。否则,MG的稳定性将在其孤岛操作期间受到影响。在本文中,针对低压MG设计了一种新的组合保护控制方案,通过该方案可以连续确保孤岛MG的稳定性。此外,提出了实现所提出的保护方案的智能电子设备(IED)的结构。继电器直接与智能中央控制器系统通信,以触发相关的控制方案。通过在MATLAB / Simulink环境和实验测试台上进行数值模拟,成功验证了所提出的协调方案的性能。获得的结果表明,该思想可以可靠地满足MG中从并网到离网的平稳过渡,反之亦然。

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