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State-space modelling with steady-state time invariant representation of energy based controllers for modular multilevel converters

机译:模块化多电平转换器基于能量的控制器的稳态时不变表示的状态空间建模

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The average value model of the Modular Multilevel Converter (MMC) is in general non-linear with time periodic variables. Recent developments demonstrated how the MMC model can be transformed into a a Steady-State Time Invariant (SSTI) representation allowing for linearization of the model. While previous modeling efforts for small-signal eigenvalue analysis considered mainly the classical Circulating Current Suppressing Controller (CCSC), this paper presents an approach for representing a complete energy-based control system in a set of Synchronously Rotating Frames (SRFs). This is obtained by separating the state variables according the their frequency components and applying corresponding Park transformations. The resulting model is based on existing controllers implemented in the stationary abc frame, and enables small-signal stability studies of MMCs with such control systems. Simulations results comparing an EMT type MMC model with the complete SSTI system validate the proposed approach.
机译:模块化多电平转换器(MMC)的平均值模型通常是非线性的,具有时间周期变量。最近的发展表明,如何将MMC模型转换为稳态时不变(SSTI)表示形式,以实现模型的线性化。虽然先前的小信号特征值分析建模工作主要考虑经典的循环电流抑制控制器(CCSC),但本文提出了一种在一组同步旋转框架(SRF)中表示完整的基于能量的控制系统的方法。这是通过根据状态变量的频率分量分离它们并应用相应的Park变换来实现的。生成的模型基于在固定abc框架中实现的现有控制器,并且可以使用此类控制系统对MMC进行小信号稳定性研究。将EMT型MMC模型与完整的SSTI系统进行比较的仿真结果验证了该方法的有效性。

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