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Coordinated operation in a multi-inverter based microgrid for both grid-connected and islanded modes using conservative power theory

机译:基于保守功率理论的基于多逆变器的微电网并网和孤岛模式下的协调运行

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In order to address the power quality enhancement in a given microgrid, independent control of reactive, unbalanced and distorted load current components, in a multi-inverter-based approach may be required. Therefore, this paper proposes a coordinated control strategy using the Conservative Power Theory (CPT) and assuming the contribution of all grid connected interfaces, especially those related to Distributed Generators (DG). For grid-connected operation, a coordinated current-controlled operation is proposed for supplying different load current components, improving power quality and consequently, minimizing the PCC voltage disturbances. In case of islanding operation, the microgrid may suffer from serious power quality problems due to the presence of nonlinear and/or unbalanced loads. To mitigate such current disturbances, a master-slave-based cooperative operation for DGs is presented. Since each primary source has its own constraints and topology, a supervisory control is considered to determine sharing factors for each current component. The microgrid system is controlled in abc-frame, offering a very flexible, selective and powerful load current sharing scheme, as demonstrated through digital simulations. The principles supporting the proposed control schemes are also discussed.
机译:为了在给定的微电网中提高功率质量增强,可能需要在基于多逆变器的方法中独立控制反应性,不平衡和扭曲的负载电流分量。因此,本文提出了使用保守权力理论(CPT)的协调控制策略,并假设所有网格连接的接口的贡献,尤其是与分布式发电机(DG)相关的贡献。对于电网连接操作,提出了一种用于提供不同负载电流分量,提高电功率质量的协调电流控制操作,从而最小化PCC电压干扰。在岛屿操作的情况下,由于非线性和/或不平衡负载的存在,微电网可能存在严重的电力质量问题。为了减轻这种目前的干扰,提出了一种用于DGS的基于主从基的协作操作。由于每个主要源都有自己的约束和拓扑,因此考虑了监控控制以确定每个当前组件的共享因素。微电网系统由ABC框架控制,提供非常灵活,选择性和强大的负载电流共享方案,如通过数字仿真所证明的。还讨论了支持拟议控制计划的原则。

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