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适用高压大容量领域的MMC-UPFC应用可靠性分析
引用本文:韩平平,胡骞,张晓安,张征凯. 适用高压大容量领域的MMC-UPFC应用可靠性分析[J]. 电气传动, 2020, 0(1): 57-62
作者姓名:韩平平  胡骞  张晓安  张征凯
作者单位:合肥工业大学安徽省新能源利用与节能重点实验室;合肥工业大学智能制造技术研究院;国网安徽省电力有限公司
基金项目:国家电网公司科技项目(52110417000F)
摘    要:统一潮流控制器(UPFC)是一种高度可控的灵活交流输电装置。针对适用于高压大容量输电领域的双回基于模块化多电平换流器(MMC)的UPFC(简称MMC-UPFC),考虑其备用结构和运行保护原则,并将站外交流系统转化为MMC-UPFC子系统,以传统九状态UPFC可靠性模型为基础,建立改进的双回MMCUPFC七状态可靠性模型。建立MMC-UPFC的节点注入功率模型,并基于该模型将含UPFC的最优负荷削减模型应用到合肥南部电网实例中,验证了MMC-UPFC各运行状态对系统可靠性的改善能力,并进一步研究了MMC-UPFC安装位置对可靠性改善能力的影响。

关 键 词:统一潮流控制器  状态空间  可靠性  负荷削减  安装位置

Reliability Analysis of MMC-UPFC in High-voltage and Large-capacity Fields
HAN Pingping,HU Qian,ZHANG Xiaoan,ZHANG Zhengkai. Reliability Analysis of MMC-UPFC in High-voltage and Large-capacity Fields[J]. Electric Drive, 2020, 0(1): 57-62
Authors:HAN Pingping  HU Qian  ZHANG Xiaoan  ZHANG Zhengkai
Affiliation:(Anhui Key Laboratory of New Energy Utilization and Energy Saving,Hefei University and Technology,Hefei 230009,Anhui,China;Intelligent Manufacturing Institute,Hefei University and Technology,Hefei 230051,Anhui,China;State Grid Anhui Electric Power Company,Hefei 230061,Anhui,China)
Abstract:The unified power flow controller(UPFC)is a highly controllable flexible AC transmission(FACTS)device.It is necessary to consider the principle of operation protection and reserve structure of double-circuit MMCUPFC,which is suitable for high-voltage and large-capacity transmission field.And the seven state reliability model of MMC-UPFC based on traditional nine state UPFC reliability model was established by transforming the external communication system of the station into MMC-UPFC subsystem.Basing on the power injection model,the optimal load shedding model with UPFC was applied to the southern Hefei power grid.The ability of the MMC-UPFC's running state to improve the system reliability was verified,and the influence of the MMC-UPFC installation position on the reliability improvement ability was further studied.
Keywords:unified power flow controller(UPFC)  state space  reliability  load shedding  installation position
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