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An Iterative Control Method for Voltage Source Converters to Eliminate Uncharacteristic Harmonics Under Unbalanced Grid Voltages for High-Power Applications

机译:电压源转换器的迭代控制方法,以消除高功率应用不平衡电压电压下的无间隙谐波

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When voltage source converters (VSCs) are subjected to disturbances or faults, they may not be able to perform as per the desired control objective, which presents a significant challenge to system operations. One well-known situation is when the converter is subjected to an unbalanced ac voltage with a negative-sequence fundamental voltage injection. Under this condition, the VSC may generate undesired double-frequency ripples at the dc voltage and uncharacteristic harmonics at the ac current. This paper presents a new two-stage control method suitable for VSCs used in high-power applications. In the first stage, a simple proportional controller is used to suppress overshoots during the transients. Then, the iterative controller is activated to finely adjust the modulation indices and firing angles of the converter to compensate the uncharacteristic harmonics. To verify the performance of the proposed control method, the control algorithms are implemented in a 10 MVA VSC system and validated by means of PSCAD/EMTDC and hardware-in-the-loop simulations. The results show that the state variables converge within a few iterative steps, and the transient response is sufficiently fast. The proposed method is shown to perform better than conventional methods for attenuating and eliminating the uncharacteristic dc and ac harmonics caused by imbalances in the grid voltage.
机译:当电压源转换器(VSC)经受干扰或故障时,它们可能无法按照所需的控制目标执行,这对系统操作具有重大挑战。一个众所周知的情况是当转换器经受不平衡的交流电压时,具有负序电压注入。在这种情况下,VSC可以在DC电压和AC电流处产生不希望的双频率涟漪。本文介绍了一种适用于高功率应用中使用的VSC的新型两级控制方法。在第一阶段,使用简单的比例控制器来抑制瞬变期间的过冲。然后,激活迭代控制器以精细调整转换器的调制指数和触发角度以补偿无表谐波。为了验证所提出的控制方法的性能,控制算法在10 MVA VSC系统中实现,并通过PSCAD / EMTDC和环路仿真验证。结果表明,状态变量会聚在几个迭代步骤内,瞬态响应足够快。所提出的方法显示出比传统方法更好,用于衰减和消除由电网电压的不平衡引起的不可结构的DC和AC谐波。

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