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논문검색

Environmental Information Technology (EIT)

A Study on the Performance Analysis of Photovoltaic System with Digital Surge Detection device

초록

영어

This paper examines the performance improvement of a photovoltaic power generation system with a surge protection function by applying a digital surge detection device for surge suppression in a direct current distribution panel applied to a photovoltaic power generation system. The main components used for surge protection are mainly SAD, MOV, and GTA components, and a digital surge detection device was additionally applied to this. Each component has advantages and disadvantages in terms of performance and functionality for surge protection, so a surge protection device with meaningful performance and functionality must be designed in a complex device structure that harmonizes the advantages and disadvantages of each component in order to construct a surge protection device with meaningful performance and function. Through empirical experiments, a performance analysis of a complex surge detection device to which a digital surge detection device is applied was conducted. As a result of the experiment, through absorption and blocking of surges detected through a digital surge detection device, it has both absorption and blocking performance for surges and exhibits surge absorption characteristics for hundreds of voltages in micro second. This performance showed a relatively stable state against surge noise compared to conventional devices, which produced an output waveform of stable quality in the inverter output waveform.

목차

Abstract
1. Introduction
2. Connection Panel Design of Grid-Connected Photovoltaic System
2.1 KS C 8567 for junction box integrated inverter
2.2 Multistage Surge Protection Circuit
2.3 Digital Surge Detection Device
3. Performance Experiment Results
3.1 Configuration of the System
3.2 Experimental Results
4. Conclusion
Acknowledgement
References

저자정보

  • Byeong-Ho Jeong Associate professor, Dept. of Electrical Engineering, Nambu University
  • Ju-Hoon Park Associate professor, Dept. of Electrical Engineering, Nambu University

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