UHVDC闭锁引发风电场暂态过电压分析及HVRT协调控制
TM721.1%TM614; 针对特高压直流(UHVDC)闭锁引发送端风电场高电压穿越(HVRT)问题,建立了UHVDC输电送端风电系统数学模型,研究了UHVDC闭锁对送端风电场过电压的影响,分析了过电压对永磁直驱风电机组的影响及机组功率可控域.提出了基于机组可控域划分的风电机组和静止同步补偿器相协调的风电场HVRT控制策略,在机组可控域内,风电机组利用其动态无功补偿实现HVRT,当超出机组可控域时,风电场集中无功补偿装置与风电机组协调控制实现HVRT.最后,在PSCAD/EMTDC中建立系统仿真模型,验证了理论分析与控制策略的准确性与有效性,直流闭锁引发风电机组高电压脱网的风险得到降低....
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Published in | 电力自动化设备 Vol. 40; no. 6; pp. 63 - 69 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | Chinese |
Published |
中国电力科学研究院有限公司 新能源与储能运行控制国家重点实验室,北京,100192%华北电力大学 新能源电力系统国家重点实验室,北京,102206
10.06.2020
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Subjects | |
Online Access | Get full text |
ISSN | 1006-6047 |
DOI | 10.16081/j.epae.202005016 |
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Abstract | TM721.1%TM614; 针对特高压直流(UHVDC)闭锁引发送端风电场高电压穿越(HVRT)问题,建立了UHVDC输电送端风电系统数学模型,研究了UHVDC闭锁对送端风电场过电压的影响,分析了过电压对永磁直驱风电机组的影响及机组功率可控域.提出了基于机组可控域划分的风电机组和静止同步补偿器相协调的风电场HVRT控制策略,在机组可控域内,风电机组利用其动态无功补偿实现HVRT,当超出机组可控域时,风电场集中无功补偿装置与风电机组协调控制实现HVRT.最后,在PSCAD/EMTDC中建立系统仿真模型,验证了理论分析与控制策略的准确性与有效性,直流闭锁引发风电机组高电压脱网的风险得到降低. |
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AbstractList | TM721.1%TM614; 针对特高压直流(UHVDC)闭锁引发送端风电场高电压穿越(HVRT)问题,建立了UHVDC输电送端风电系统数学模型,研究了UHVDC闭锁对送端风电场过电压的影响,分析了过电压对永磁直驱风电机组的影响及机组功率可控域.提出了基于机组可控域划分的风电机组和静止同步补偿器相协调的风电场HVRT控制策略,在机组可控域内,风电机组利用其动态无功补偿实现HVRT,当超出机组可控域时,风电场集中无功补偿装置与风电机组协调控制实现HVRT.最后,在PSCAD/EMTDC中建立系统仿真模型,验证了理论分析与控制策略的准确性与有效性,直流闭锁引发风电机组高电压脱网的风险得到降低. |
Author | 刘晋 秦世耀 代林旺 李少林 姜蓉蓉 刘桥 |
AuthorAffiliation | 中国电力科学研究院有限公司 新能源与储能运行控制国家重点实验室,北京,100192%华北电力大学 新能源电力系统国家重点实验室,北京,102206 |
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Author_FL | JIANG Rongrong DAI Linwang LIU Qiao LI Shaolin QIN Shiyao LIU Jin |
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Title | UHVDC闭锁引发风电场暂态过电压分析及HVRT协调控制 |
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