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PLL based on extended trigonometric function delayed signal cancellation under various adverse grid conditions

机译:基于扩展三角函数的PLL在各种不利电网条件下延迟信号消除

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摘要

Phase-locked loop (PLL) plays an important role in the grid-connected converters. PLL should have the ability of filtering the harmonics under the non-ideal grid voltage. Recently, the signal cancellation technique is one of the advanced methods for filtering the harmonics. However, the existing signal cancellation techniques are not able to filter all harmonics by finite operators. This study proposes an extended trigonometric function delay signal cancellation (ETFDSC) to filter all harmonics completely under the adverse grid conditions. Furthermore, the proposed ETFDSC can be flexibly applied to eliminate the harmonic series fast under the various grid conditions. Consequently, a novel PLL based on the ETFDSC (ETFDSC-PLL) is designed to track the grid phase very accurately and fast. It is noteworthy that the grid phase can be extremely fast detected by proposed ETFDSC-PLL under some adverse grid conditions, especially under unbalanced conditions. Furthermore, the ETFDSC-PLL is self-adjustable to the fundamental frequency deviations, and the excellent filtering capability and fast dynamic response can be achieved, even under large frequency variations. Finally, the simulation and experimental results are presented to validate the filtering capability and transient performances of the proposed PLL.
机译:锁相环(PLL)在并网转换器中起着重要作用。 PLL应具有在非理想电网电压下滤除谐波的能力。近来,信号消除技术是用于过滤谐波的高级方法之一。但是,现有的信号消除技术无法通过有限算符来过滤所有谐波。这项研究提出了扩展的三角函数延迟信号消除(ETFDSC),以在不利的电网条件下完全滤除所有谐波。此外,所提出的ETFDSC可以灵活地应用于消除各种电网条件下的谐波序列。因此,设计了一种基于ETFDSC的新型PLL(ETFDSC-PLL),可以非常准确,快速地跟踪电网相位。值得注意的是,在某些不利的电网条件下,特别是在不平衡条件下,建议的ETFDSC-PLL可以非常快地检测出电网相位。此外,ETFDSC-PLL可针对基本频率偏差进行自我调整,即使在较大的频率变化下,也可以实现出色的滤波能力和快速的动态响应。最后,通过仿真和实验结果验证了所提出的PLL的滤波能力和瞬态性能。

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