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Generalized ABC frame differential current control ensuring constant DC power for modular multilevel converters under unbalanced operation

机译:通用ABC框架差分电流控制可确保在不平衡操作下为模块化多电平转换器提供恒定的直流电源

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This work presents a generalized and versatile approach for controlling Modular Multilevel Converters (MMC), with three or more phases, by means of Lagrange Multipliers in the ABC frame. The resulting control method is suitable for operation of HVDC converters under both balanced and unbalanced AC grid voltages, since it is designed for eliminating oscillations in the DC power flow independently of the AC grid voltage conditions. This is achieved by the analytical resolution of a mathematical optimization problem using Lagrange multipliers in order to calculate the differential current references for the converter directly in the ABC frame. The resulting equation for current reference calculation is generalized by a weighting factor introduced in the objective function for the optimization problem, and this allows to select between the following two operating conditions or any intermediate point between them: I) minimum differential current oscillations (Δidiffk), or II) minimum capacitive phase energy oscillations (ΔwΣk). Furthermore, the constraints defined in the optimization regulate the average energy distribution inside the MMC; i.e., the capacitive phase average energy sum (wΣk) and difference (wΔk) whilst ensuring non-oscillatory power output (PDC) on the DC terminals of the MMC.
机译:这项工作提出了一种通用且通用的方法,通过ABC帧中的拉格朗日乘法器来控制具有三个或更多相位的模块化多电平转换器(MMC)。最终的控制方法适用于HVDC转换器在平衡和不平衡AC电网电压下的运行,因为它旨在消除与AC电网电压条件无关的DC功率流中的振荡。这是通过使用拉格朗日乘法器对数学优化问题的解析解决方案来实现的,以便直接在ABC框架中计算转换器的差分电流基准。针对优化问题,目标函数中引入的加权因子可以概括得出用于电流参考计算的方程式,从而可以在以下两个工作条件或它们之间的任何中间点之间进行选择:I)最小差分电流振荡(Δi< inf> diffk )或II)最小电容性相位能量振荡(ΔwΣk)。此外,优化中定义的约束条件可调节MMC内部的平均能量分布;即,电容相位平均能量总和(w Σk)和差(w Δk),同时确保非振荡功率输出(P DC )在MMC的DC端子上。

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