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Current error space phasor based hysteresis controller for two-level and three-level converters used in Shunt Active Power Filters

机译:基于电流误差空间相量的迟滞控制器,用于并联有源功率滤波器中的两级和三级转换器

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Shunt Active Power Filters (SAPF) are commonly employed to reduce current harmonics, which are injected in the utility by nonlinear loads. This paper presents performance of current error space phasor based hysteresis controller for three-level Neutral Point Clamped (NPC) and Flying Capacitor (FC) converters used in SAPF. Operation of two-level converter based SAPF is also demonstrated in this paper with the proposed controller. The proposed controller is self-adaptive in nature and does not require any particular calculation of Point of Common Coupling (PCC) voltage vector (E) because of proper sector change detection logic used. The proposed current controller overcomes inherent problem of random voltage vector switching encountered in conventional hysteresis current controller based SAPFs. It allows switching of only adjacent voltage vectors for position of PCC voltage vector in a given sector of voltage space phasor of SAPF. Region detection logic causes switching of SAPF voltage vector which keeps the current error well within the prescribed hexagonal boundary. The SAPF based on the proposed controller provides adequate compensation for removal of harmonics produced by nonlinear loads. Detailed theoretical analysis and simulation studies are presented in the paper and the claimed performance of the proposed controller is evident from the simulation results provided in the paper. This paper addresses issues like dc-link capacitor voltage unbalance for NPC and clamping capacitor voltage unbalance for Flying Capacitor based SAPF and also provides solution. The proposed controller can be easily extended for any multi-level converter topology used for SAPFs.
机译:并联有源电力滤波器(SAPF)通常用于减少电流谐波,该电流谐波是由非线性负载注入电网的。本文介绍了用于SAPF中的三电平中性点钳位(NPC)和飞电容(FC)转换器的基于电流误差空间相量的磁滞控制器的性能。本文还使用所建议的控制器演示了基于两级转换器的SAPF的操作。所提出的控制器本质上是自适应的,并且由于使用了适当的扇区变化检测逻辑,因此不需要任何特定的公共耦合点(PCC)电压矢量(E)的计算。提出的电流控制器克服了传统的基于滞环电流控制器的SAPF中遇到的随机电压矢量切换的固有问题。它允许仅切换相邻电压矢量,以将PCC电压矢量定位在SAPF电压空间相量的给定扇区中。区域检测逻辑引起SAPF电压矢量的切换,从而将电流误差很好地保持在规定的六边形边界内。基于所提出的控制器的SAPF为消除非线性负载产生的谐波提供了足够的补偿。本文提供了详细的理论分析和仿真研究,从本文提供的仿真结果可以明显看出所提出的控制器所要求的性能。本文解决了诸如NPC的直流链路电容器电压不平衡和基于飞电容的SAPF钳位电容器电压不平衡的问题,并提供了解决方案。所提出的控制器可以轻松扩展为用于SAPF的任何多级转换器拓扑。

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