稳健性(进化)
控制理论(社会学)
网格
计算机科学
试验台
多元微积分
鲁棒控制
控制工程
滤波器(信号处理)
控制系统
工程类
数学
控制(管理)
基因
几何学
生物化学
电气工程
嵌入式系统
人工智能
化学
计算机视觉
作者
Roberto Rosso,Jair Cassoli,Giampaolo Buticchi,Soenke Engelken,Marco Liserre
标识
DOI:10.1109/tpel.2018.2867040
摘要
Synchronverters have gained interest due to their capability of emulating synchronous machines, offering selfsynchronization to the grid. Despite the simplicity of the control structure, the adoption of an LCL filter makes the overall model complex again, posing questions regarding the tuning of the synchronverter and its robustness. The multi-inputs multi-outputs (MIMO) formulation of the problem requires multivariable analysis. In this paper, the effects of control parameter and grid conditions on the stability of the system are investigated by means of structured singular values (or μ-analysis). A step-by-step design procedure for the control is introduced based on a linearized small-signal model of the system. Then, the design repercussions on the stability performance are evaluated through the performed robustness analysis. The developed linearized model is validated against time-domain simulations and laboratory experiments. These have been carried out using a power hardware-in-the-loop test bench, which allows as to test the synchronverter under different grid conditions. As a conclusion, this paper offers a simple guide to tune synchronverters but also a theoretical solid framework to assess the robustness of the adopted design.
科研通智能强力驱动
Strongly Powered by AbleSci AI