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Enhancement of microgrid operation by considering the cascaded impact of communication delay on system stability and power management

机译:考虑沟通延迟对系统稳定性和电源管理的级联影响,提高微电网操作

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Power management, system stability and communication structure are three key aspects of microgrids (MGs) that have been explored in many research studies. However, the cascaded effect of communication structure on system stability followed by the impact of stability on the power management has not been fully explored in the literature yet and needs more attention. This paper not only explores this cascaded impact, but also provides a comprehensive platform to optimally consider three layers of MG design and operation from this perspective. For generation cost minimization and stability assessment, the proposed platform uses an adaptive particle swarm optimization (PSO) while a new class of data exchange scheme based on IEC 61850 protocol is proposed to reduce the communication time delays among the inverters of distributed generations and the MG control center. This paper also considers the system stability using small-signal model of a MG in a real-time manner as an embedded function in the PSO. In this context investigations have been conducted by modeling an isolated MG with solar farm, fuel cell generator and micro-turbine in MATLAB Simulink. Detailed simulation results indicate the proposed power and stability management method effectively reduces the MG generation cost through maximizing the utilization of the available renewable generations while considering system stability.
机译:电力管理,系统稳定性和通信结构是在许多研究研究中探讨的微电网(MGS)的三个关键方面。然而,在文献中尚未完全探索通信结构对系统稳定性的级联效果,然后在电力管理对电源管理的影响并需要更多关注。本文不仅探讨了这种级联的影响,还提供了一个全面的平台,从而从这个角度最佳地考虑三层MG设计和操作。对于代代成本最小化和稳定性评估,所提出的平台使用自适应粒子群优化(PSO),而提出了一种基于IEC 61850协议的新类数据交换方案,以减少分布式代数和MG的逆变器之间的通信时间延迟控制中心。本文还认为使用MG的小信号模型以实时方式作为PSO中的嵌入式功能来实现系统稳定性。在这种情况下,通过使用Matlab Simulink中的太阳能电池,燃料电池发生器和微型涡轮机模拟分离的MG来进行调查。详细的仿真结果表明,所提出的功率和稳定性管理方法通过在考虑系统稳定性的同时最大限度地利用可用可再生代的利用率来有效降低MG生成成本。

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