A High-Frequency Link Multilevel Cascaded Medium-Voltage Converter for Direct Grid Integration of Renewable Energy Systems

被引:224
作者
Islam, Md. Rabiul [1 ]
Guo, Youguang [1 ]
Zhu, Jianguo [1 ]
机构
[1] Univ Technol Sydney, Ctr Elect Machines & Power Elect, Sydney, NSW 2007, Australia
关键词
Direct grid integration; high-frequency link; medium-voltage converters; modular multilevel cascaded (MMC) converters; renewable energy systems; SOURCE INVERTER; SCHEME;
D O I
10.1109/TPEL.2013.2290313
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Recent advances in solid-state semiconductors have led to the development of medium-voltage power converters (e. g., 6-36 kV) which could obviate the need for the step-up transformers of renewable power generation systems. The modular multilevel cascaded converters have been deemed as strong contenders for the development of medium-voltage converters, but the converters require multiple isolated and balanced dc supplies. In this paper, a high-frequency link multilevel cascaded medium-voltage converter is proposed. The common high-frequency link generates multiple isolated and balanced dc supplies for the converter, which inherently minimizes the voltage imbalance and common mode issues. An 11-kV system is designed and analyzed taking into account the specified system performance, control complexity, cost, and market availability of the power semiconductors. To verify the feasibility of the proposed system, a scaled down 1.73-kVA laboratory prototype test platform with a modular five-level cascaded converter is developed and explored in this paper, which converts a 210 V dc (rectified generator voltage) into three-phase 1 kV rms 50 Hz ac. The experimental results are analyzed and discussed. It is expected that the proposed new technology will have great potential for future renewable generation systems and smart grid applications.
引用
收藏
页码:4167 / 4182
页数:16
相关论文
共 44 条
  • [1] Agheb E., 2012, J RENEWABLE SUSTAINA, V4
  • [2] Classification, Terminology, and Application of the Modular Multilevel Cascade Converter (MMCC)
    Akagi, Hirofumi
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2011, 26 (11) : 3119 - 3130
  • [3] [Anonymous], 2009, 2009 INT C MANAGEMEN, DOI DOI 10.1109/ICMSS.2009.5304217
  • [4] [Anonymous], 2012, POWER ENERGY SOC GEN
  • [5] A High-Frequency Link Single-Stage PWM Inverter With Common-Mode Voltage Suppression and Source-Based Commutation of Leakage Energy
    Basu, Kaushik
    Mohan, Ned
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2014, 29 (08) : 3907 - 3918
  • [6] Evaluation of nanocrystalline materials, amorphous metal alloys, and ferrites for magnetic pulse compression applications
    Burdt, Russell
    Curry, Randy D.
    McDonald, Kenneth F.
    Melcher, Paul
    Ness, Richard
    Huang, Chaofeng
    [J]. JOURNAL OF APPLIED PHYSICS, 2006, 99 (08)
  • [7] Actively clamped bidirectional flyback converter
    Chen, G
    Lee, YS
    Hui, SYR
    Xu, DH
    Wang, YS
    [J]. IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2000, 47 (04) : 770 - 779
  • [8] Minimum Current Operation of Bidirectional Dual-Bridge Series Resonant DC/DC Converters
    Corradini, Luca
    Seltzer, Daniel
    Bloomquist, Douglas
    Zane, Regan
    Maksimovic, Dragan
    Jacobson, Boris
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2012, 27 (07) : 3266 - 3276
  • [9] A Control Method for Voltage Balancing in Modular Multilevel Converters
    Deng, Fujin
    Chen, Zhe
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2014, 29 (01) : 66 - 76
  • [10] Power Electronic Traction Transformer-Low Voltage Prototype
    Dujic, Drazen
    Zhao, Chuanhong
    Mester, Akos
    Steinke, Juergen K.
    Weiss, Michael
    Lewdeni-Schmid, Silvia
    Chaudhuri, Toufann
    Stefanutti, Philippe
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2013, 28 (12) : 5522 - 5534