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Design guide and cost estimation of micro Hydro-Solar-Wind Hybrid Renewable Energy System for off-grid villages : 독립형 전력망으로 구성된 지역을 위한 마이크로 스케일 수력-태양광-풍력 하이브리드 신재생 에너지 시스템의 설계 지침 및 비용 산정

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dc.contributor.advisor안성훈-
dc.contributor.author이경태-
dc.date.accessioned2017-07-13T06:14:20Z-
dc.date.available2017-07-13T06:14:20Z-
dc.date.issued2014-02-
dc.identifier.other000000018186-
dc.identifier.urihttps://hdl.handle.net/10371/118378-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 기계항공공학부, 2014. 2. 안성훈.-
dc.description.abstractAs increasing the effect on the environment from fossil fuel and its developing cost, many researches about power generation using renewable energy proceed as its alternative. By developing the technology of renewable energy, the price of renewable energy power generation system is getting lower. It is viable for developing countries to electrify certain sites where take much cost to connect main grid. To generate electricity efficiently, different power sources are utilized at the same time. In the case of micro power generation system, the cost structure and the ratio of power loss to generation is different from macro system. So the new point of view is needed.
In this thesis, design guide and cost estimation of micro hydro-solar-wind hybrid renewable energy system for off-grid village is provided. Sizing solar, wind hydro power generation and battery considering geographical and meteorological condition is applied to implement design guide. These conditions such as degradation of photovoltaic and battery, failure modes were simplified or ignored in existing researches. In the process of sizing each components, battery level includes charge/discharge of past and current states. To calculate this, continuous state of battery level is assumed as discrete system. Sizing power generation and battery of system is derived by using genetic algorithm. The general mathematical models with tuning parameter are used to apply different system generally but consider particular characteristics.
To derive design guide and cost estimation, actual micro hybrid renewable power generation system using hydro-solar-wind were installed in two different site of Korea and Nepal and operated. The data, such as Meteorological condition affecting power generation, amount of power generation and consumption were collected. The tuning parameters derived from actual system were used for mathematical model to set the value of mathematical model to amount mount of power generation from actual system. From actual cost from installation and statistics, installation cost function including economic of scale was derived and applied to cost estimation. Considering the characteristics of micro power generation system, failure mode and effect analysis was proceeded from observing actual system. Occurrence of failure modes and related cost and loss were estimated.
From derived design guide and cost estimation, installed systems were evaluated and compared with conventional software which is commonly used in designing hybrid power generation system.
In conclusion, design guide and cost estimation of off-grid hybrid renewable energy system with solar-wind-hydro is provided considering meteorological and geographical condition. This design guide and cost estimation consider the characteristics of micro system, such as cost, power loss, etc. To derive these characteristics, actual systems in two different site were installed and operated.
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dc.description.tableofcontentsI. Introduction 1
1.1 Overview 1
1.2 Hybrid Renewable Energy System (HRES) 6
1.2.1 Main Power generation system 9
1.2.2 Auxiliaries 11
1.3 Sizing of HRES 12
1.3.1 Sizing method 13
1.3.2 Management strategy 16
1.4 Cost of renewable energy 16
1.4.1 Price trend & Economic of scale 16
1.4.2 Cost composition 21
1.5 Summary 24
1.6 Objectives 24
II. Design & installation of system and its cost analysis 26
2.1 Overview 26
2.2 Component sizing 28
2.2.1 Weather condition of the site 28
2.2.2 Sizing process 31
2.3 System design 32
2.4 Power generation system 35
2.4.1 Photovoltaic & Wind turbine system 35
2.4.2 Hydro turbine system 37
2.5 Control, grid & storage system 38
2.5.1 Controller 38
2.5.2 Grid equipment 39
2.5.3 Battery 39
2.6 Installation 39
2.7 Summary of installation 44
2.7.1 System in Korea 44
2.7.2 System in Nepal 45
2.8 Cost analysis 46
III. System monitoring 48
3.1 Object Data 49
3.2 Hardware 51
3.2.1 Sensors 51
3.2.2 Programmable logic controller 54
3.3 Software 57
3.3.1 SCADA 57
IV. Mathematical Modeling of HRES 60
4.1 Overview 60
4.2 Mathematical modeling of energy balance 60
4.2.1 Photovoltaic system 60
4.2.2 Wind turbine system 63
4.2.3 Hydro turbine system 65
4.2.4 PV degradation model 66
4.2.5 Battery degradation model 67
4.3 Mathematical modeling of cost 68
V. Validation of Mathematical model 70
5.1 Overview 70
5.2 Data 71
5.2.1 Environmental data 71
5.2.2 Electricity data 77
5.3 Photovoltaic system 80
5.4 Wind system 81
5.5 Hydro system 82
VI. Design guide and cost estimation process 83
6.1 Overview 83
6.1.1 Inputs 85
6.2 Read data 86
6.3 Set function 88
6.3.1 Cost 88
6.3.2 Installation time 89
6.4 Set system model 90
6.5 Set 91
6.5.1 Variables 92
6.5.2 Objective function 94
6.5.3 Criterions 94
6.6 Load profile 95
6.6.1 Evaluation 95
6.6.2 Result 97
VII. Evaluation 97
7.1 Overview 97
7.2 Sizing 98
7.3 Total cost 101
7.4 Installation time 104
VIII. Conclusion 106
Appendix 108

IX. Bibliography 133
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dc.formatapplication/pdf-
dc.format.extent3490038 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectOff-grid-
dc.subjectmicro hydro-solar-wind hybrid renewable energy system-
dc.subjectdesign guide-
dc.subjectcost estimation-
dc.subjectfailure mode effect analysis-
dc.subject.ddc621-
dc.titleDesign guide and cost estimation of micro Hydro-Solar-Wind Hybrid Renewable Energy System for off-grid villages-
dc.title.alternative독립형 전력망으로 구성된 지역을 위한 마이크로 스케일 수력-태양광-풍력 하이브리드 신재생 에너지 시스템의 설계 지침 및 비용 산정-
dc.typeThesis-
dc.contributor.AlternativeAuthorKyung-Tae Lee-
dc.description.degreeDoctor-
dc.citation.pagesviii, 138-
dc.contributor.affiliation공과대학 기계항공공학부-
dc.date.awarded2014-02-
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