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3篇 您的检索式:作者名="Timothy C.Green"
    题名 作者 年代 出处 被引量
1含风电孤立中压微电网暂态电压稳定协同控制策略显示文摘分析了孤立中压微电网中双馈异步风力发电机组(DFIG)与动态负荷的暂态运行特性。为改善含DFIG微电网的暂态电压稳定性,提出了基于就地层储能稳定控制、DFIG快速变桨控制和甩动态负荷的暂态电压稳定协同控制策略。基于PSCAD/EMTDC建立了东澳岛中压微电网系统和稳定控制策略模型,研究结果表明,微电网暂态电压稳定性与微电网中风电渗透率和负荷特性密切相关;在大扰动下,提出的暂态电压稳定协同控制策略能有效增强微电网的电压稳定性。赵卓立 杨苹 蔡泽祥 周少雄 Timothy C.Green 2015电力自动化设备2015,35,10:16
2含风电孤立中压微电网静态电压稳定性分析及改善策略显示文摘分析了孤立微电网中双馈异步风力发电机组(DFIG)的功率电压特性,针对微电网不同运行方式约束,为改善含DFIG微电网的静态电压稳定性,提出了基于就地层储能稳定控制、DFIG快速变桨控制的静态电压稳定增强控制策略。基于PSCAD/EMTDC建立了微电网系统和稳定控制策略模型,研究结果表明,在不同运行方式下风速扰动时,提出的增强控制策略能有效增强微电网的静态电压稳定性,确保微电网的安全稳定运行。赵卓立 杨苹 蔡泽祥 周少雄 Timothy C.Green 雷金勇 2015电力自动化设备2015,35,11:10
3Comparison of Cost-effective Distances for LFAC with HVAC and HVDC in Their Connections for Offshore and Remote Onshore Wind Energy显示文摘For a cost-effective connection of large-scale longdistance wind energy,a low frequency alternating current(LFAC)transmission scheme(16.7 Hz or 20 Hz)is proposed as an alternative to the conventional high voltage alternating current(HVAC)transmission scheme(50 Hz or 60 Hz)and the recently popular high voltage direct current(HVDC)transmission scheme(0 Hz).The technical feasibility of the LFAC system is demonstrated but the basis for identifying the distance ranges for which LFAC would be preferable to HVAC and HVDC are not established and the dependence of this range on factors,such as power transfer rating,voltage rating and cable/line type,is not investigated.This paper presents an in-depth analysis for the overall cost of LFAC system and then provides an extensive comparison with HVAC and HVDC,to explore the distance ranges over which LFAC is cost-effective over both HVAC and HVDC in connections of offshore and remote onshore wind energy.The results demonstrate that the LFAC system does possess ranges in the intermediate distance for which it is more cost-effective than both HVAC and HVDC,and its overall cost advantage is generally larger in the overhead line(OHL)connection of remote onshore wind energy than the cable connection of offshore wind energy.Xin Xiang Shiyuan Fan Yunjie Gu Wenlong Ming Jianzhong Wu Wuhua Li Xiangning He Timothy C.Green 2021CSEE Journal of Power and Energy Systems2021,7,5:1
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