基于格点的全通滤波器和二阶广义积分器作为PLL正交系统发生器的比较分析

IF 0.5 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Advances in Electrical and Electronic Engineering Pub Date : 2021-03-31 DOI:10.15598/AEEE.V19I1.4002
Luciano Emilio Belandria, Nancy Alejandra Agudelo, J. Bergas-Jané
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引用次数: 0

摘要

本文对产生单相锁相环(PLL)结构正交电压系统的两种方法进行了稳态比较:一种是广泛接受的基于二阶广义积分器(SOGI)的方法,另一种是基于格点结构全通滤波器(APF)的新方法。这两种方法都非常有吸引力,因为它们的数字实现简单,计算量低,在谐波失真的网格条件和可变频率下具有良好的性能,因此它们是其他已知方法的良好替代方案。本文推导并分析了这两种方法的全状态空间模型。结果表明,这两种方法在分布式能源最常见的运行条件下是等效的,尽管APF结构明显优于SOGI结构,因为它对任何较高的陷波频率和任何较低的采样频率都保持了正交生成能力。通过MATLAB/Simulink的仿真和定点DSP的实验结果验证了对比分析的有效性。
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Comparative Analysis of Lattice-based All-Pass Filter and Second Order Generalized Integrator as Orthogonal System Generator of a PLL
This paper presents a steady-state comparison of two methods that generate an orthogonal voltage system for a single-phase Phase-Locked Loop (PLL) structure: a widely accepted one based on a Second Order Generalized Integrator (SOGI) and a new one based on a All-Pass Filter (APF) with Lattice structure. Both methods are very attractive because of their simple digital implementation, low computational load and good performance under harmonically distorted grid conditions and variable frequency, so they are a good alternative to other known methods. The paper derives and analyzes the full state space models of the two methods. It is shown that these two methods are equivalent in the most common operation conditions of distributed energy resources, although the APF structure is clearly better than the SOGI one because it maintains its orthogonal generation ability for any higher notch frequencies and any lower sampling frequencies. The comparative analysis were validated by simulation using MATLAB/Simulink and experimental results using a fixed-point DSP.
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来源期刊
Advances in Electrical and Electronic Engineering
Advances in Electrical and Electronic Engineering ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
1.30
自引率
33.30%
发文量
30
审稿时长
25 weeks
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