首页> 外文会议>IEEE Energy Conversion Congress and Exposition >A new second-order generalized integrator based quadrature signal generator with enhanced performance
【24h】

A new second-order generalized integrator based quadrature signal generator with enhanced performance

机译:具有增强性能的新型二阶通用积分器正交信号发生器

获取原文

摘要

Due to the simplicity and flexibility of the structure of the Second-Order Generalized Integrator based Quadrature Signal Generator (SOGI-QSG), it has been widely used over the past decade for many applications such as frequency estimation, grid synchronization, and harmonic extraction. However, the SOGI-QSG will produce errors when its input signal contains a dc component or harmonic components with unknown frequencies. The accuracy of the signal detection methods using it may hence be compromised. To overcome the drawback, the First-Order System (FOS) concept is first used to illustrate the principle of the SOGI-QSG, based on which, an improved Second-Order SOGI-QSG (SO-SOGI-QSG) is then proposed by referring the relationship of the standard FOS and the second-order system. The proposed SO-SOGI-QSG inherits the simplicity of the SOGI-QSG, while it has much stronger attenuation ability for both low- and high-frequency components. A detailed parameter design procedure for the SO-SOGI-QSG is provided in this paper as well. The effectiveness of the proposed SO-SOGI-QSG is finally validated by experimental results.
机译:由于基于二阶通用积分器的正交信号发生器(Sogi-QSG)的结构的简单性和灵活性,它已广泛使用过去十年,以获得诸如频率估计,电网同步和谐波提取的许多应用。然而,当其输入信号包含具有未知频率的DC分量或谐波分量时,Sogi-QSG将产生错误。因此,使用它可能需要损害信号检测方法的准确性。为了克服缺点,首先用于说明Sogi-QSG的原理,基于以下,提出了一种改进的二阶Sogi-QSG(So-Sogi-QSG)的原理来提出所在的一阶系统(FOS)概念参考标准FOS和二阶系统的关系。所提出的So-Sogi-QSG继承了Sogi-QSG的简单性,而对低频和高频分量的衰减能力具有更强的衰减能力。本文还提供了SO-Sogi-QSG的详细参数设计步骤。所提出的So-Sogi-QSG的有效性最终通过实验结果验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号