Modulating functions method plus SOGI scheme for signal tracking

L. Coluccio, A. Eisinberg, G. Fedele, C. Picardi, D. Sgro
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引用次数: 20

Abstract

The number of equipments based on static converters such as uninterrupted power systems, series or shunt compensators and distributed generations systems is increasing in the actual power distribution systems. For a correct operation in grid connected condition, these equipments need the information about amplitude, phase angle and frequency of the grid fundamental voltages and currents. Since noise as harmonic pollution and frequency variations are common problems in the utility grid, then it is necessary to have systems able to extract information about the fundamental values from highly distorted signals. For these reasons, robust and accurate estimation and synchronization methods are necessary to obtain the above information also in noise environmental. In this paper, a simple and robust method for frequency estimation based on modulating functions is presented; moreover it is used in addition to an orthogonal system generation method based on the second order generalized integrator (SOGI). The combined use of the two methods has the advantages of a fast and accurate signal tracking capabilities and a good rejection to noise due to the low-pass filter properties of the modulating functions. The effectiveness of the proposed method is validated through simulated experiments and comparisons.
调制函数法加SOGI方案进行信号跟踪
在实际的配电系统中,以静态变流器为基础的设备如不间断电源系统、串联或并联补偿器、分布式发电系统等越来越多。为了在并网条件下正常工作,这些设备需要电网基本电压和电流的幅值、相角和频率等信息。由于谐波污染和频率变化等噪声是公用电网中常见的问题,因此有必要使系统能够从高度失真的信号中提取有关基本值的信息。因此,在噪声环境下也需要稳健、准确的估计和同步方法来获取上述信息。本文提出了一种简单、鲁棒的基于调制函数的频率估计方法;并与基于二阶广义积分器(SOGI)的正交系统生成方法结合使用。两种方法的结合使用具有快速准确的信号跟踪能力和由于调制函数的低通滤波特性而具有良好的抑制噪声的优点。通过仿真实验和对比验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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