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Adaptive back stepping observer design for direct current link capacitor voltages of multi port high power converter

机译:多端口高功率转换器直流链路电容器电压的自适应返回步进观测器设计

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This paper presents an adaptive nonlinear observer design to investigate and fix precise estimation issues of dc link capacitor voltages in a powerful three-phase multi-level two ports converter. An Adaptive Back Stepping approach using the phase currents as observer inputs was applied to estimate the capacitor voltages in two ports multilevel cascaded H-Bridge converter. Capacitance of dc link capacitor was used as uncertain parameters to prove the robustness and sustainability of the proposed estimator against uncertainty. Evaluating the results represented possibility of reducing the number of sensors for fault detection purposes, precise tracking and exact estimation of unmeasurable variables. Nonlinear proposed control design based on the Lyapunov theory guarantees the stability and convergence of variables. Evaluation of the proposed solution results have been done in Matlab / Simulink.
机译:本文提出了一种自适应非线性观察者设计,用于研究强大的三相多级两个端口转换器中直流链路电容电压的精确估计问题。应用了使用相电流作为观察者输入的自适应反向踩踏方法,以估计两个端口多级级联H桥转换器中的电容电压。 DC Link电容的电容被用作不确定参数,以证明建议估计者免受不确定性的鲁棒性和可持续性。评估结果表示可能降低故障检测目的的传感器数量,精确跟踪和精确估计未估量的变量。基于Lyapunov理论的非线性提出控制设计保证了变量的稳定性和收敛性。在Matlab / Simulink中已经完成了所提出的解决方案结果的评估。

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