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Modeling and Control of Grid-Connected Voltage-Sourced Converters Under Generalized Unbalanced Operation Conditions

机译:广义不平衡工况下并网电压源变换器的建模与控制

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This paper proposes a unified mathematical model of a voltage-sourced converter (VSC) based on positive and negative synchronously rotating frames under both unbalanced grid supply and imbalanced input impedances. Based on the developed model, a new definition of instantaneous reactive power is introduced, and an accurate mathematical model of the instantaneous active and reactive powers at different locations of the VSC is derived. To avoid the use of band-trap filter for decomposing the positive- and negative-sequence dq components of current and voltage, a new control scheme with multifrequency proportional-resonant controller in the stationary $alphabeta$ frame is employed to improve the steady state and dynamic response under generalized unbalanced operation conditions. Simulation and experimental studies with various factors were conducted and compared under different types of unbalanced conditions. The simulated and experimental results demonstrate that the proposed control scheme in the stationary $alphabeta$ frame provides sufficiently steady-state tracking capability for ac input current, and a better transient response in compensation for wide-range generalized unbalanced operation conditions.
机译:本文提出了一个基于电压源转换器(VSC)的统一数学模型,该模型基于不平衡电网供电和不平衡输入阻抗下的正负同步旋转框架。基于已开发的模型,引入了瞬时无功功率的新定义,并得出了VSC不同位置的瞬时有功功率和无功功率的精确数学模型。为避免使用带陷滤器分解电流和电压的正序和负序dq分量,在固定的alphabeta $帧中采用了一种具有多频比例谐振控制器的新控制方案,以改善稳态和广义不平衡运行条件下的动态响应在不同类型的不平衡条件下进行了各种因素的仿真和实验研究,并进行了比较。仿真和实验结果表明,所提出的控制方案在固定的alphabeta $框架下可为交流输入电流提供足够的稳态跟踪能力,并在补偿宽范围的广义不平衡操作条件时提供更好的瞬态响应。

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