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Analysis of the dynamics of dc voltage droop controller of dc-dc converters in multi-terminal dc grids

机译:多端子直流电网中DC-DC转换器的DC电压下降控制器的动力学分析

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This paper aims at thoroughly analysing the dynamic behaviour of a droop-controlled dc-dc converter system. An insight into the constraints of the dynamics of the dc voltage droop controller imposed by the converter-level control loop is provided. The sensitivity of the eigenvalues to varying parameters of these control loops is analysed. The range of the control parameters is determined according to the converter model (plant transfer function) and the specifications of the target dynamic performance. To consider the interactions between the controllers of multiple converters in a dc microgrid, modal analysis is applied to a multi-terminal dc (MTdc) system. The participation factors for the dynamic modes of the system are derived and used to indicate the influence of the states on the modes. Influencing states are further investigated through parametric sensitivity analysis. Two cases of dc voltage droop control structures are investigated, namely proportional and proportional-derivative controllers. The analysis is supported by the simulation results of disturbance scenarios in the MTdc grid.
机译:本文旨在彻底分析下垂控制的DC-DC转换器系统的动态行为。提供了对由转换器级控制环路施加的直流电压下降控制器的动态约束的见解。分析了特征值对这些控制回路的变化参数的敏感性。控制参数的范围根据转换器模型(设备传递函数)和目标动态性能的规格确定。为了考虑直流微电网中多个转换器的控制器之间的交互作用,将模态分析应用于多端子直流(MTdc)系统。推导了系统动态模式的参与因子,并将其用于指示状态对模式的影响。通过参数敏感性分析进一步研究影响状态。研究了两种直流电压下降控制结构,即比例控制器和比例微分控制器。 MTdc电网中干扰情景的仿真结果为该分析提供了支持。

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