簡易檢索 / 詳目顯示

研究生: 陳聖文
Chen, Sheng-Wen
論文名稱: 串接型橋式轉換器直流鏈電壓平衡控制之功率潮流分析
Power Flow Analysis of DC Bus Voltage Balancing Control in Cascaded H-bridge Converters
指導教授: 鄭博泰
Cheng, Po-Tai
口試委員: 侯中權
Hou, Chung-Chuan
廖益弘
Liao, Yi-Hung
學位類別: 碩士
Master
系所名稱: 電機資訊學院 - 電機工程學系
Department of Electrical Engineering
論文出版年: 2012
畢業學年度: 100
語文別: 英文
論文頁數: 114
中文關鍵詞: 串接型橋式轉換器靜態虛工補償器直流鏈電壓平衡控制前簣平均潮流平衡控制陳聖文
外文關鍵詞: Cascaded H-bridge Converters, STATCOM, DC Bus Voltage Balancing Control, feed forward, APB Control, Sheng-Wen Chen
相關次數: 點閱:4下載:0
分享至:
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報
  • 本論文主要以發展串接型橋式轉換器直流鏈電壓平衡控制之前饋項為探索主題。在本篇文章中,我們使用原生電路模型(generic model)來發展控制演算法,並且進一步使用發展出的演算法對串接型橋式轉換器進行潮流分析。本篇發展出的前饋項電容電壓平衡控制是建構在以一種叫APB為核心技術的電容電壓平衡方法,有了這樣的控制核心,我們可以控制電容電壓在設定的時間點達到特定的電壓值。在本篇論文當中,我們會把我們的轉換器操作成靜態虛工補償器。實驗波形展示了,以星形方式並網的靜態虛工補償器原型(直流鏈電壓操作在70 v, 容量為1 kVA),確實有能力進行電容性和電感性操作。


    This thesis developed a feed forward voltage balancing control on controlling the DC bus voltages of a cascaded H-bridge multilevel converter. We use generic model to develop the control algorithm and use the developed algorithm to verify the power flow of H-bridge on cascaded H-bridge multilevel converter. The feed forward voltage balancing control is based on average power balancing (APB) and with proposed algorithm we can make all DC bus voltages on the converter reaching its target value as scheduled. In this thesis we will operate the cascaded H-bridge multilevel converter as a STATic synchronous COMpensator (STATCOM). Experimental waveforms show that the STATCOM prototype(DC bus voltage at 70-v, capacity is 1-kVA) with star configuration is having capability operated under inductive and capacitive mode.

    Abstract 2 Contents 4 List of Tables 7 List of Figures 10 Chapter 1 Introduction 15 1.1 Introduction 15 1.2 Organization of the thesis 16 Chapter 2 Literature Review 17 2.1 Background 17 2.2 Cascaded H-Bridge Multilevel Converter 18 2.2.1 Circuit Topology 18 2.2.2 Modulation Technique 19 2.3 DC buses Voltage Balancing Feedback Control and Its Reactive Power Control 20 2.3.1 Akagi’s Method 20 2.3.2 APB-Based Method 25 2.4 Current Magnitude for Each Phase 30 2.5 Different types of voltage sag 31 2.6 Summary 32 Chapter 3 Operation Principles 33 3.1 Concept 33 3.2 Generic Model of H-Bridge 37 3.3 DC buses Voltage Balancing Feed Forward Control 39 3.3.1 Cluster Feed Forward Voltage Balancing Control 39 3.3.2 Individual feed forward voltage balancing control 44 3.3.3 Zero Energy Exchange between Cluster and Individual Feed Forward Voltage Balancing Control 49 3.5 Feed Forward Energy Adjustment control + Feed Forward Loss Compensation control 53 Chapter 4 Concept Verification and Laboratory Test Results 54 4.1 Environment Set Up 54 4.1.1 Environment Set Up for Simulation 54 4.1.2 Environment Set Up for Laboratory Test 57 4.2 Preliminary Verification and Laboratory Test Results 59 4.2.1 Feed Forward Energy Adjustment Control 59 4.2.2 Feed Forward Energy Adjustment Control + Feed Forward Loss Compensation Control 70 4.3 Feed Forward Combine with Feedback Verification and Laboratory Test Results 81 4.3.1 Feedback + feed forward loss compensation control 81 4.3.2 Feedback + Feed Forward (Feed Forward Energy Adjustment Control + Feed Forward Loss Compensation Control) Voltage Balancing 84 4.3.3 DC bus Voltages Transient under Voltage Sag 93 4.4 Summary 109 Chapter 5 Conclusion and Future Work 111 5.1 Conclusion 111 5.2 Future work 112 Reference 113

    [1] L. Gyugyi, “Power electronic in electric utilities: static VAR compensators,”
    Proceedings of the IEEE, volume: 76, Issue: 4, pp:483~494, April 1988
    [2] L. Gyugyi, “Application characteristics of converter-based FACTS controllers,”
    Presented at the IEEE International Conference on Power System Technology
    2000. PowerCon 2000, volume: 1, pp : 391~396, Dec. 2000
    [3] C.Schauder et al., ”Development of a ±100 MVar static condenser for voltage control of transmission systems,” IEEE Trans. Power Delivery, pp.1486-1496 July 1995
    [4] J. Rodríguez, S. Bernet, B. Wu, J. O. Pontt, S. Kouro "Multilevel Voltage-Source-Converter Topologies for Industrial Medium-Voltage Drives" IEEE Transaction on Industrial Electronics, vol. 54, no. 6, pp. 2930-2945, December2007
    [5] J. Rodríguez, J. S. Lai, F. Z. Peng, "Multilevel Inverters: A survey of Topologies Controls, and Application" IEEE Transaction on Industrial
    Electronics, vol. 49, no. 4, pp. 724-738, August 2002.
    [6] Hirofumi Akagi, Fellow, IEEE, Shigenori Inoue, Member, IEEE, and Tsurugi
    Yoshii, “Control and Performance of a Transformerless Cascade PWM
    STATCOM With Star Configuration” IEEE Transaction on Industry
    Applications, VOL. 43, NO.4, JULY/AUGUST 2007
    [7] Hirofumi Akagi, Fellow, IEEE, Shigenori Inoue, Member, IEEE, and Tsurugi
    Yoshii, “The p-q Theory in Three Phase Systems Under Non-Sinusoidal
    Conditions”, ETEP, 1993, Vol.3, No.1, pp.27- 31

    [8] M. H. J. Bollen, Understanding power quality problems: voltage sags
    and interruptions. 3 Park Avenue, 17th floor, New York, NY 10016-5997: Institute of Electrical and Electronics Engineers, Inc., 2000.

    無法下載圖示 全文公開日期 本全文未授權公開 (校內網路)
    全文公開日期 本全文未授權公開 (校外網路)
    全文公開日期 本全文未授權公開 (國家圖書館:臺灣博碩士論文系統)
    QR CODE