首页> 外文期刊>Journal of circuits, systems and computers >High Power Density Three-Phase Shunt Active Power Filter Design Based on Multiple Magnetic Integrations of LCL Filter
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High Power Density Three-Phase Shunt Active Power Filter Design Based on Multiple Magnetic Integrations of LCL Filter

机译:基于LCL滤波器多次磁集成的高功率密度三相并联有源电力滤波器设计

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摘要

The LCL filter has been widely used in inverter design due to its excellent attenuation capability for the switching harmonics. Nevertheless, the large cost associated with the conventional three-phase LCL filter has limited its usage. This paper proposes a multiple magnetic integration strategy of the LCL filter to reduce the cost while increasing power density. In the new design, an EIE-type magnetic core is put forward for the single-phase LCL filter, where the magnetic fluxes generated by the two discrete inductors cancel out mostly and the residual flux is mainly related to the small capacitor branch current. The magnetic integration is then extended to three-phase by adopting the three-phase three-limb core. Due to the coupling among phases, the equivalent inductance is much larger than the self-inductance such that the self-inductance can be reduced dramatically. An experimental prototype is developed which demonstrates the validity of the proposed method.
机译:由于LCL滤波器具有出色的开关谐波衰减能力,因此已广泛用于逆变器设计中。然而,与常规的三相LCL滤波器相关的高成本限制了它的使用。本文提出了一种LCL滤波器的多磁集成策略,以降低成本,同时提高功率密度。在新设计中,提出了一种用于单相LCL滤波器的EIE型磁芯,其中两个分立电感器产生的磁通量大部分抵消,剩余磁通量主要与较小的电容器支路电流有关。然后,采用三相三臂铁心将磁积分扩展到三相。由于各相之间的耦合,等效电感比自感大得多,因此自感可以大大降低。开发了一个实验原型,证明了该方法的有效性。

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