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全桥MMC柔性直流输电系统冗余度优化方法 被引量:3

Method of optimizing redundancy of converter in MMC based flexible DC transmission system
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摘要 柔性直流输电系统中,模块化多电平(MMC)换流阀冗余度与阀损耗、可靠性有着密切的联系。本文分析了MMC换流阀的工作原理,推导出全桥MMC换流阀损耗率、供电可靠性关于冗余度的解析表达式。分析表明,随着换流阀冗余度的提高,可靠性逐渐升高,但损耗也会加大。为了兼顾MMC换流阀的经济性和供电可靠性,本文采用遗传算法对换流阀的冗余度进行优化,通过线性加权和法得到综合目标函数,根据工程经验赋取权值。采用直流母线电压±800k V、额定容量5000MV·A进行计算,得到最佳冗余度为0.055。 The redundancy of MMC converter is closely related to the loss and the reliability in flexible HVDC system.In this paper,the working principle of the MMC converter is analyzed.And based on the working principle of the MMC,the analytical formulas of the loss rate and the reliability of the supply of power are deduced.The analysis shows that with the improvement of the redundancy of the converter,the reliability increases gradually,but the loss will increase.In order to improve the economic performance and the reliability of MMC converter,the genetic algorithm is used to optimize the loss and reliability,and the comprehensive objective function is obtained by linear weighted sum method,and the weight value is obtained according to engineering practice.When the DC bus voltage is±800kV and the rated capacity is 500MV·A,the optimal redundancy is 0.055.
作者 荣飞 李文君 饶宏 周保荣 黄守道 田新华 RONG Fei;LI Wenjun;RAO Hong;ZHOU Baorong;HUANG Shoudao;TIAN Xinhua(College of Electrical and Information Engineering,Hunan University,Changsha 410082,Chin;State Key Laboratory of HVDC,Electric Power Research Institute,China Southern Power Grid, Guangzhou 510620,China)
出处 《电工电能新技术》 CSCD 北大核心 2018年第3期26-32,共7页 Advanced Technology of Electrical Engineering and Energy
基金 国家重点研发计划项目(2016YFB0901001)
关键词 模块化多电平换流阀 损耗分析 可靠性分析 线性加权和法 遗传算法 modular multi level converter analysis of loss analysis of reliability linear weighted sum approach genetic algorithm
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  • 1郭焕,温家良,汤广福,郑健超.直流输电换流阀主电路的可靠性分析与优化设计[J].中国电机工程学报,2009,29(S1):39-43. 被引量:24
  • 2Dorn J, Huang H, Retzmann D. Novel voltage sourced convert ers for HVDC and FACTS applications[C]//CIGRE Symposia. Osaka, Japan: C1GRE, 2007.
  • 3Dorn J, Huang H, Retzmann D. A new multilevel voltage- sourced converter topology for H VDC applieations [C] ff Pro- ceedings of C1GRE Con{erence. Paris, France: CIGRE, 2008.
  • 4Marquardt R. Stromrichterschahungen mit verteilten energies-.peichern: Germany, DE10103031Al[P]. 2001 01-24.
  • 5Hagiwara M, Akagi H. Control and experiment of pulsewidth- modulated modular multilevel converters[J]. IEEE Transactions on Power Electronics, 2009, 24 (7): 1737-1746.
  • 6Bjorn Jacobson, Patrik Karlsson, Gunnar Asplund, et al, VSC-HVDC transmission with cascaded two-level converters [C]//Proceedings of CIGRE Conference. Paris, France: CI- GRE, 2010.
  • 7Marquardt R. Modular multilevel converter: an universal con- cept for HVDC-networks and extended DC-bus applications[C]//IEEE International Power Electronics Conference (IPEC). Sapporo, Japan: IEEE, 2010:502 507.
  • 8Rohner S, Bernet S, Hiller M, et al. Modulation, losses, and semiconductor requirements of modular multilevel converters [J]. IEEE Transactions on Industrial Electronics, 2010, 57 (8) : 2633-2642.
  • 9Pang Hui, Tang Guangfu, He Zhiyuan. Evaluation of losses in VSC-HVDC transmission system[C]//Proceedings of IEEE Power Engineering Society General Meeting. [S. l] : IEEE, 2008~ 1 6.
  • 10魏晓光.电压源换流器高压直流输电控制策略及其在风电场并网中的应用研究[D].北京:中国电力科学研究院,2007.

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