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An Adaptive Prefiltering Method to Improve the Speed/Accuracy Tradeoff of Voltage Sequence Detection Methods Under Adverse Grid Conditions

机译:逆向电网条件下提高电压顺序检测方法速度/精度折衷的自适应预滤波方法

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摘要

This paper deals with the improvement of the transient response and harmonic, subharmonic, and dc-offset voltage rejection capability of a grid voltage sequence detection scheme based on a second-order generalized integrator (SOGI). To perform that, the SOGI structure is first analyzed in deep, emphasizing both its tradeoff limits between settling time and harmonic attenuation and the sensitivity to grid subharmonics and dc-offset voltage. Then, a study of the effect of grid voltage harmonics and subharmonics in SOGI and in the SOGI-FLL and MSOGI-FLL structures is introduced. Hence, to overcome these problems, a new structure based on the use of the SOGI filter as prefilter for the previous structures is proposed to achieve a faster time response and higher harmonic rejection. This structure is used in a sequence detection scheme for the detection of the grid voltage components in the $alphabeta$-frame and it is applied in a three-phase PV system. Experimental and comparative results are shown to validate this proposal.
机译:本文针对基于二阶广义积分器(SOGI)的电网电压序列检测方案的瞬态响应以及谐波,次谐波和直流偏移电压抑制能力的改进进行了研究。为此,首先要对SOGI结构进行深入分析,强调其建立时间和谐波衰减之间的权衡极限,以及对电网次谐波和直流偏置电压的敏感性。然后,介绍了电网电压谐波和次谐波在SOGI中以及在SOGI-FLL和MSOGI-FLL结构中的影响的研究。因此,为了克服这些问题,提出了一种基于SOGI滤波器作为用于先前结构的预滤波器的新结构,以实现更快的时间响应和更高的谐波抑制。此结构用于序列检测方案中,用于检测$ alphabeta $帧中的电网电压分量,并将其应用于三相PV系统。实验和比较结果表明,可以验证该建议。

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