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Cost-effective communication network planning considering performance of pinning-based secondary control in microgrids

机译:经济高效的通信网络规划,考虑在微电网中的葛根型二次控制性能

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Driven by the fact that the structural topology of the communication network has a significant effect on the dynamical performance of the related physical network, this paper addresses the communication network planning problem for islanded microgrids (MGs). The optimal communication topology with the lowest communication cost, which supports the desired performance of pinning-based distributed control is designed in the MG planning stage. To achieve that, firstly, pinning synchronization control (PSC) is developed to regulate the voltage and frequency at each distributed generator (DG) to the reference state. Then criteria of the algebraic connectivity of communication network to fulfill the convergence requirement of PSC protocols are derived analytically using spectral graph properties and Lyapunov theory. A communication network planning model is formulated as Mixed Integer Semidefinite Program (MISDP) by using Linear Matrix Inequalities (LMI) techniques. The convergence speed requirement of PSC, communication time delay and the importance of connections between DGs are considered as constraints. The optimal communication network with the lowest communication cost can be acquired and meanwhile the satisfactory dynamical performance of PSC protocols can be guaranteed. The case studies are designed to evaluate how the planning model can practically facilitate the pinning-based control in the islanded MG. The simulation results effectively verify that the dynamical control convergence can be improved under the properly designed communication network. The control performance of the proposed protocol is validated experimentally based on a two-DG MG prototype.
机译:通信网络的结构拓扑对相关物理网络的动态性能具有显着影响的事实,该论文解决了岛状微普林(MGS)的通信网络规划问题。使用最低通信成本的最佳通信拓扑,其支持基于钉扎的分布式控制的所需性能,在MG计划阶段设计。为实现这一目标,首先开发了固定同步控制(PSC)以将每个分布式发电机(DG)的电压和频率调节到参考状态。然后,通过光谱图属性和Lyapunov理论,通过分析地推导出满足PSC协议的收敛要求的代数连接的标准。通过使用线性矩阵不等式(LMI)技术,将通信网络规划模型配制为混合整数半纤维程序(MISDP)。 PSC,通信时间延迟和DGS之间连接的重要性的收敛速度要求被视为约束。可以获得具有最低通信成本的最佳通信网络,并且同时可以保证PSC协议的令人满意的动态性能。案例研究旨在评估规划模型如何实际上可以促进岛状MG中的基于循环的控制。仿真结果有效地验证了在适当设计的通信网络下可以改进动态控制收敛。基于双DG MG原型进行实验验证所提出的协议的控制性能。

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