电工技术学报  2021, Vol. 36 Issue (15): 3250-3263    DOI: 10.19595/j.cnki.1000-6753.tces.201328
电力系统与综合能源 |
LCC-HVDC送端电网等值方案研究
高本锋1, 王刚1, 刘毅1, 刘新元1,2, 胡永强1, 郝育黔1
1. 河北省分布式储能与微网重点实验室(华北电力大学) 保定 071003;
2. 国网山西省电力公司电力科学研究院 太原 030001
Study on Equivalence Method of AC System in Sending-End of LCC-HVDC
Gao Benfeng1, Wang Gang1, Liu Yi1, Liu Xinyuan1,2, Hu Yongqiang1, Hao Yuqian1
1. Hebei Key Laboratory of Distributed Energy Storage and Micro-grid North China Electric Power University Baoding 071003 China;
2. State Grid Shanxi Electric Power Research Institute Taiyuan 030001 China
全文: PDF (1385 KB)   HTML
输出: BibTeX | EndNote (RIS)      
摘要 大规模新能源经电网换相高压直流输电(LCC-HVDC)送出时,极易引发送端电网暂态过电压。通过建立LCC-HVDC及送端等值电网电磁暂态仿真模型,可以详细分析其暂态过电压特性,进而优化其控制策略。目前,针对LCC-HVDC送端电网等值的相关研究较少。结合工程需求,给出一种适用于LCC-HVDC送端电网的等值方案。首先,根据主干网各梯级断面点节点残压大小与LCC-HVDC电气耦合强弱的关系,提出一种基于节点残压的内部系统主干网确定方法。该方法在快速确定内部系统范围的同时,可有效避免等值过程中可能因人为因素而引起的等值误差;然后,以梯级断面点为依据划分拓扑区域,以等值前后各拓扑区域电气特性一致为原则,提出内部系统中包括新能源电源在内的等值电源、负荷及变压器等元件的详细参数确定方法;最后,给出LCC-HVDC送端电网多端口戴维南等值方法,简化了外部系统。基于国内某LCC-HVDC送端电网等值方案实际算例,验证了所提等值方案的有效性。
服务
把本文推荐给朋友
加入我的书架
加入引用管理器
E-mail Alert
RSS
作者相关文章
高本锋
王刚
刘毅
刘新元
胡永强
郝育黔
关键词 电网换相高压直流输电送端电网等值主干网节点残压    
Abstract:When the sending-end of line-commutated-converter based high voltage direct current (LCC-HVDC) contains large-scale new energy, the risk of overvoltage on the sending-end will aggravate. It is necessary to establish the electromagnetic transient model of LCC-HVDC and its equivalent AC system in sending-end. Then the control strategy of LCC-HVDC can be optimized by analyzing its overvoltage characteristics. At present, there are few researches on the equivalence of AC system in sending-end. According to the engineering requirements, an equivalent scheme suitable for LCC-HVDC is proposed. First, the residual voltage of each node in the main network can reflect the coupling between LCC-HVDC and the sending-end. A method for determining the internal system backbone network based on the residual voltage is proposed. The method can quickly determine the scope of the internal system and effectively avoid the human error during the equivalence. Then, based on the node of backbone network, the topology area is divided, and the detailed parameter determination method of equivalent sources, loads and transformers in the internal system are given based on the principle of consistent electrical characteristics of each topology area before and after equivalence. Finally, the multi-port thevenin equivalent suitable for the sending-end of LCC-HVDC is used to simplify the external system. Based on a domestic LCC-HVDC, the effectiveness of the proposed equivalent scheme is verified.
Key wordsLine-commutated-converter based high voltage direct current(LCC-HVDC)    AC system in sending-end    equivalence    backbone network    residual voltage of node   
收稿日期: 2020-10-09     
PACS: TM743  
基金资助:国家电网公司总部科技研究资助项目(SGZB0000TGJS1900747)
通讯作者: 王刚 男,1997年生,硕士,研究方向为电力系统分析与控制。E-mail:15996296521@163.com   
作者简介: 高本锋 男,1981年生,副教授,研究方向为高压直流输电和电力系统次同步振荡。E-mail:gaobenfeng@126.com
引用本文:   
高本锋, 王刚, 刘毅, 刘新元, 胡永强, 郝育黔. LCC-HVDC送端电网等值方案研究[J]. 电工技术学报, 2021, 36(15): 3250-3263. Gao Benfeng, Wang Gang, Liu Yi, Liu Xinyuan, Hu Yongqiang, Hao Yuqian. Study on Equivalence Method of AC System in Sending-End of LCC-HVDC. Transactions of China Electrotechnical Society, 2021, 36(15): 3250-3263.
链接本文:  
https://dgjsxb.ces-transaction.com/CN/10.19595/j.cnki.1000-6753.tces.201328          https://dgjsxb.ces-transaction.com/CN/Y2021/V36/I15/3250