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Automatic dust removal system for solar panel powered by high-voltage wind-driven triboelectric nanogenerator

Title
Automatic dust removal system for solar panel powered by high-voltage wind-driven triboelectric nanogenerator
Alternative Title
고출력 풍력 마찰대전 소자 구동 태양전지판 자동 먼지 제거 시스템
Author(s)
Minsu Heo
DGIST Authors
Minsu HeoJu-Hyuck LeeJongmin Choi
Advisor
이주혁
Co-Advisor(s)
Jongmin Choi
Issued Date
2023
Awarded Date
2023-02-01
Type
Thesis
Description
TENG,EDS,Solar panel
Table Of Contents
Ⅰ. Introduction 1
1.1 Soiling effects on solar panels 1
1.2 Electrodynamic screen (EDS) Technology 3
1.3 Energy harvesting techniques for self-powered device 6
1.3.1 Triboelectric nanogenerator (TENG) 6
1.3.2 Modes of TENG 8
1.3.3 Rotation triboelectric nanogenerator (RTENG) 10
1.4 Reference 12
Ⅱ. System optimization for dust removal system by EDS 16
2.1 Introduction 16
2.2 System configuration and structure 17
2.3 RTENG optimization 19
2.3.1 RTENG fabrication 19
2.3.2 RTENG output measurements 22
2.4 EDS plate optimization 25
2.4.1 EDS plate fabrication 25
2.4.2 Dust removal efficiency (DRE) evaluation method 27
2.4.3 Electrode space optimization 29
2.4.4 Dielectric material optimization 33
Ⅲ. Performance of wind-driven RTENG 37
3.1 Introduction 37
3.2 Wind-driven RTENG fabrication 38
3.3 Wind-driven RTENG outputs 40
3.3.1 Wind-driven RTENG outputs by wind speed 40
3.3.2 Wind-driven RTENG DREs by wind speed 42
Ⅳ. Evaluation of system capability by solar panel 43
4.1 Introduction 43
4.2 Solar panel Evaluation method 44
4.3 Solar panel output performance change by EDS system 45
Ⅴ. Conclusion 47
Ⅵ. Experimental section 48
6.1 Dust removal test 48
6.2 Measurement 48
Ⅶ. References 49
URI
http://hdl.handle.net/20.500.11750/45742

http://dgist.dcollection.net/common/orgView/200000656275
DOI
10.22677/THESIS.200000656275
Degree
Master
Department
Department of Energy Science and Engineering
Publisher
DGIST
Related Researcher
  • 이주혁 Lee, Ju-Hyuck
  • Research Interests Energy Harvesting; Synthesis of Various Nano/Microstructured Energy Materials; Piezoelectric Generator; Triboelectric Generator; Bio-Compatible Energy Materials and Generator; Biomimetic Biomolecule based Energy Materials and Devices
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Department of Energy Science and Engineering Theses Master

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