Power quality transient disturbances detection system based on db5 wavelet

Author:

Liu Dongmei,Zhu Weiyuan,Wang Yanhui,Chang Ziyi,Xie Kaikai,Wang Shun

Abstract

Abstract To improve the real-time and accuracy of transient disturbance localization in the power grid, this paper designs an FPGA-based transient disturbance detection system based on the good time-frequency local analysis capability, multi-resolution analysis characteristics of wavelet decomposition, and the selection of db5 (Daubechies 5) wavelets. The system acquires the original disturbance signal through an external high-speed AD/DA board, implements the wavelet transform algorithm by the EP4CE10F17C8 FPGA, and then feeds back to the high-speed AD/DA board to output the location of the singularities in the high-frequency detail signal that corresponds to the start and end moments of the disturbance. Simulation and actual test results together show that the system can accurately and quickly locate the start and end moments of typical single disturbances such as voltage sag and short interruption, with a measurement deviation of within 3ms, meeting the real-time requirements.

Publisher

IOP Publishing

Subject

Computer Science Applications,History,Education

Reference14 articles.

1. A review of research on power quality disturbance detection;Wang;Power System Protection and Control,2021

2. Voltage transient drop detection based on improved dual wavelet transform;Huang;Mechatronics Information,2020

3. A review of power quality disturbance detection and identification methods;Wang;Chinese Journal of Electrical Engineering,2021

4. An improved HHT-based power quality disturbance detection method;Hu;Electrical Measurement and Instrumentation,2018

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The Development of a Novel Transient Signal Analysis: A Wavelet Transform Approach;Computation;2024-09-03

2. Detection of Power Quality Disturbances in Real Time Based on FPGA;2023 IEEE International Autumn Meeting on Power, Electronics and Computing (ROPEC);2023-10-18

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