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首页> 外文期刊>IFAC PapersOnLine >Distributed Sampled-data PID Control for Voltage Regulation in Inverter-Based Islanded Microgrids Using Artificial Delays
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Distributed Sampled-data PID Control for Voltage Regulation in Inverter-Based Islanded Microgrids Using Artificial Delays

机译:使用人工延迟的基于逆变器的岛状微电网电压调节的分布式采样数据PID控制

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This paper addresses and solves the secondary voltage regulation control problem in inverter-based islanded Microgrids (MGs) via a fully distributed delayed sampled-data PID controller, whose derivative action is approximated using finite difference. By choosing a small enough sampling period and leveraging artificial delays approach, the proposed strategy ensures the secondary voltage regulation with closed-loop performances similar to ones achievable via a continuous-time PID controller, but with a significant reduction of the communication burden, while improving the efficiency of the entire MG. Exponential stability of the closed-loop MG network is analytically proved via Lyapunov-Krasovskii theory and the derived sampling-dependent stability conditions are expressed as a set of LMIs, whose solution allows finding the weighted L2gain. Finally, a detailed simulation analysis confirms the effectiveness and the robustness of the proposed approach.
机译:本文通过完全分布的延迟采样数据PID控制器解决了基于逆变器的岛状微电网(MGS)的二次电压调节控制问题,其衍生动作使用有限差异来近似。 通过选择足够小的采样周期并利用人工延迟方法,所提出的策略确保了与通过连续时间PID控制器可实现的闭环性能的二次电压调节,但是在改善时显着降低了通信负担 整个mg的效率。 通过Lyapunov-Krasovskii理论分析闭环MG网络的指数稳定性,并且衍生的采样相关稳定性条件表示为一组LMI,其解决方案允许找到加权L2Gain。 最后,详细的仿真分析证实了所提出的方法的有效性和鲁棒性。

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