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Sensitivity Based Cooperative Operation for Grid Connected Converter and Distributed Generator Considering Losses in the Radial DC Distribution System : 방사형 직류 배전계통에서 손실을 고려한 계통 연계 컨버터와 분산전원의 민감도 기반 협조 운영 기법

DC Field Value Language
dc.contributor.advisor문승일-
dc.contributor.author정호용-
dc.date.accessioned2017-07-13T07:15:10Z-
dc.date.available2017-07-13T07:15:10Z-
dc.date.issued2016-02-
dc.identifier.other000000133461-
dc.identifier.urihttps://hdl.handle.net/10371/119188-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 전기·컴퓨터공학부, 2016. 2. 문승일.-
dc.description.abstractThis dissertation proposes a cooperative control scheme for grid connected converter (GCC) and distributed generator (DG) considering line and conversion losses in the radial DC distribution system and novel formulations of approximate expression for voltage sensitivity and line loss sensitivity.
Interesting and possibilities of the DC distribution system is increasing due to its advantages. In the DC distribution system, transmittable power can be increased and overall system loss is smaller comparing with the AC distribution system. The DC distribution system is also suitable for smart grid (SG) environment from the perspective of energy efficiency, sustainability, and flexibility and this is one of important technical issues in SG. Possibility and feasibility of the DC distribution system is studied in many researches. However, there are technical issues on the DC distribution system and these should be considered from the perspective of stable and economic operation. Loads in the DC distribution system are fed through DC/AC or DC/DC converter, which have constant-power load (CPL) behavior, and CPL behavior cause voltage instability due to negative incremental resistance characteristics of CPL. Voltage control methods have studied to prevent voltage instability. However, these studies have drawbacks of limit of voltage regulation capability and efficient voltage control. Especially, line and conversion loss is an important factor in the DC distribution system from view point of efficient operation because large power delivered by power converter. However, most of conventional researches do not focused on both line loss over the conductor and conversion loss.
The Purpose of research in this dissertation is to control voltage within suitable range considering total loss reduction in the radial DC distribution system. Before establishing control scheme, novel sensitivity expressions on voltage and line loss are formulated based on linear approximation and reasonable assumptions. Verification on proposed formulation is presented and it is indicated that an accuracy of proposed expression presents a good result. Analytic analysis of voltage sensitivity is presented and results are utilized to construct a voltage control strategy. In addition, these formulations are useful for fast speed controller because the computation effort can be reduced.
Based on approximate sensitivity expression and analysis result, cooperative voltage control scheme considering total losses in the radial DC distribution system is proposed. The structure of the overall control scheme is illustrated and roles and interaction of voltage control equipment are explained. A model for an optimal scheduling is presented and objective function and constraints are formulated. The Control strategies for loss reduction and voltage regulation are established and control modules are designed to realize proposed strategy. In addition, the loss sensitivity on total with regard to voltage control equipment is formulated and it represents the actual loss sensitivity due to changes in electrical quantities of the voltage control equipment.
The proposed method applied to the test system to verify effectiveness and tested under various conditions using MATLAB and PSCAD/EMTDC. The results have shown that the entire bus voltages are regulated and loss can be reduced under varying load and generation condition.
The cooperative voltage control scheme can be implemented within the radial DC distribution system and provide a useful control scheme from the perspective of stability and economic operation.
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dc.description.tableofcontentsChapter 1. Introduction 1
1.1. Motivation of This Dissertation 1
1.2. Highlights and Contributions 4
1.3. Dissertation Organization 5

Chapter 2. Technical Issues on Specific Topics in This Dissertation 7
2.1. Voltage Control 7
2.2. Loss Reduction in the DC Distribution System 14
2.3. Voltage Sensitivities Analysis 17
2.4. Loss Sensitivities Analysis 19

Chapter 3. Formulation for Approximated Expression for Sensitivities in the Radial DC Distribution System 21
3.1. Formulation for Approximated Voltage Sensitivity for a Radial DC Distribution System 21
Chapter 4. Cooperative Operation Scheme Considering Loss Reduction and Voltage Regulation in the Radial DC Distribution System 26
4.1. Structure of Proposed Cooperative Operation Scheme 26
4.2. Scheduler for the Voltage Control Equipment 29
4.3. Local Control in the Proposed Voltage Control Scheme 36
4.4. Local Controller: Preprocessing modules 43
4.5. Local Controller Module 7: Loss Reduction Module 56
4.6. Local Controller Module 8: Voltage Regulation Control 58

Chapter 5. Case Studies for Proposed Method 61
5.1. Test Model 61
5.2. Verification of Proposed Method 66
5.3. Comparison with Other Researches on Voltage Control Considering Loss Reduction 100

Chapter 6. Conclusions and Future Extensions 108
6.1. Conclusions 108
6.2. Future Extensions 110

Appendix A. Formulation and Analysis for Approximated Expression for Voltage Sensitivity in the Radial DC Distribution System 112
A.1 Approximate Expression for the Voltage Sensitivity in a Radial DC Distribution System 112
A.2 Verification of the Approximate Voltage Sensitivity Equation 119
A.3 Analysis of Voltage Sensitivity 125

Appendix B. Formulation for Approximated Expression for Loss Sensitivity in the Radial DC Distribution System 140
B.1 Approximate Expression for the Loss Sensitivity in a Radial DC Distribution System 140
B.2 Verification of the Approximate Loss Sensitivity Equation 145

Bibliography 151

국문 초록 158
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dc.formatapplication/pdf-
dc.format.extent4487550 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectDC distribution system-
dc.subjectCooperative voltage control-
dc.subjectLoss reduction-
dc.subjectVoltage sensitivity-
dc.subjectLoss sensitivity-
dc.subject.ddc621-
dc.titleSensitivity Based Cooperative Operation for Grid Connected Converter and Distributed Generator Considering Losses in the Radial DC Distribution System-
dc.title.alternative방사형 직류 배전계통에서 손실을 고려한 계통 연계 컨버터와 분산전원의 민감도 기반 협조 운영 기법-
dc.typeThesis-
dc.description.degreeDoctor-
dc.citation.pagesXVI, 160-
dc.contributor.affiliation공과대학 전기·컴퓨터공학부-
dc.date.awarded2016-02-
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