中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2014年
34期
6042-6049
,共8页
柔性直流输电系统%并网运行%无源负荷供电%实验样机%解耦控制%运行特性
柔性直流輸電繫統%併網運行%無源負荷供電%實驗樣機%解耦控製%運行特性
유성직류수전계통%병망운행%무원부하공전%실험양궤%해우공제%운행특성
high voltage direct current transmission system based on voltage source converter (VSC-HVDC)%grid connected operation%supply power to passive load%prototype%decoupled control scheme%operation characteristics
柔性直流输电系统(high voltage direct current transmission system based on voltage source converter, VSC-HVDC)具有功率独立可控、可向无源负荷供电、能够抑制可再生能源并网发电功率波动等技术优势。该文研制了一套背靠背的VSC-HVDC实验样机,基于输电系统的工作机理设计了电压源换流器(voltage source converter,VSC)的电气参数及其控制策略,设计了输电系统控制功能协调的系统级控制与功率跟踪的换流器级控制结合的分层控制结构。在并网输电和向无源负荷供电工况下,对样机运行特性进行实验,结果表明,该样机并网输电时具备有功、无功功率独立可控,以及功率反转的能力,同时具有向无源负荷供电功能,且动态性能良好、运行稳定,验证了样机系统设计的正确性。
柔性直流輸電繫統(high voltage direct current transmission system based on voltage source converter, VSC-HVDC)具有功率獨立可控、可嚮無源負荷供電、能夠抑製可再生能源併網髮電功率波動等技術優勢。該文研製瞭一套揹靠揹的VSC-HVDC實驗樣機,基于輸電繫統的工作機理設計瞭電壓源換流器(voltage source converter,VSC)的電氣參數及其控製策略,設計瞭輸電繫統控製功能協調的繫統級控製與功率跟蹤的換流器級控製結閤的分層控製結構。在併網輸電和嚮無源負荷供電工況下,對樣機運行特性進行實驗,結果錶明,該樣機併網輸電時具備有功、無功功率獨立可控,以及功率反轉的能力,同時具有嚮無源負荷供電功能,且動態性能良好、運行穩定,驗證瞭樣機繫統設計的正確性。
유성직류수전계통(high voltage direct current transmission system based on voltage source converter, VSC-HVDC)구유공솔독립가공、가향무원부하공전、능구억제가재생능원병망발전공솔파동등기술우세。해문연제료일투배고배적VSC-HVDC실험양궤,기우수전계통적공작궤리설계료전압원환류기(voltage source converter,VSC)적전기삼수급기공제책략,설계료수전계통공제공능협조적계통급공제여공솔근종적환류기급공제결합적분층공제결구。재병망수전화향무원부하공전공황하,대양궤운행특성진행실험,결과표명,해양궤병망수전시구비유공、무공공솔독립가공,이급공솔반전적능력,동시구유향무원부하공전공능,차동태성능량호、운행은정,험증료양궤계통설계적정학성。
The high voltage direct current transmission system based on voltage source converter (VSC-HVDC) has advantages in that power can be controlled independently, power can be supplied to passive load and power fluctuations from the renewable energy field can be suppressed. This paper developed a prototype of VSC-HVDC system with back to back structure, in witch the parameters and control strategies of the voltage source converter (VSC) were designed based on the system’s principle, the hierarchical structure was designed with layers of control objectives and power control functions. The operation characteristics of the prototype were tested on the conditions of grid connection and power supply to passive load. The results show that the prototype has abilities of supplying power to passive load, and the power can be controlled independently and inversely when system is connected to grid, meanwhile, the correctness of the prototype designing is validated by dynamic performance and stable operation.