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Data-Driven Control for Interlinked AC/DC Microgrids Via Model-Free Adaptive Control and Dual-Droop Control

机译:通过无模型自适应控制和双下垂控制,对互连的AC / DC微电网进行数据驱动控制

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摘要

This paper investigates the coordinated power sharing issues of interlinked ac/dc microgrids. An appropriate control strategy is developed to control the interlinking converter (IC) to realize proportional power sharing between ac and dc microgrids. The proposed strategy mainly includes two parts: 1) the primary outer-loop dual-droop control method along with secondary control; and 2) the inner-loop data-driven model-free adaptive voltage control. Using the proposed scheme, the IC, just like the hierarchical controlled distributed generator units, will have the ability to regulate and restore the dc terminal voltage and ac frequency. Moreover, the design of the controller is only based on input/output measurement data, but not the model any more, and the system stability can be guaranteed by the Lyapunov method. The detailed system architecture and proposed control strategies are presented in this paper. Simulation and experimental results are given to verify the proposed power sharing strategy.
机译:本文研究了互连的交流/直流微电网的协调功率共享问题。开发了一种合适的控制策略来控制互连转换器(IC),以实现ac和dc微电网之间的比例功率共享。所提出的策略主要包括两个部分:1)主要的外环双下降控制方法以及辅助控制。 2)内环数据驱动的无模型自适应电压控制。使用提议的方案,IC就像分层控制的分布式发电机单元一样,将具有调节和恢复直流端子电压和交流频率的能力。此外,控制器的设计仅基于输入/输出测量数据,而不再基于模型,并且可以通过Lyapunov方法保证系统稳定性。本文介绍了详细的系统架构和建议的控制策略。仿真和实验结果证明了所提出的功率共享策略。

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