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富含小水电的山区10 kV配电网电压质量改进方法
引用本文:彭杰,曹良丰,周力行,赵啟旸,彭子扬,李建勇. 富含小水电的山区10 kV配电网电压质量改进方法[J]. 电力科学与技术学报, 2014, 0(1): 91-96
作者姓名:彭杰  曹良丰  周力行  赵啟旸  彭子扬  李建勇
作者单位:[1] 长沙理工大学 电气与信息工程学院,湖南 长沙410004 [2] 国网湖南省电力公司 常德供电分公司,湖南 常德415000
基金项目:湖南省电力公司常德市供电分公司合作项目(CD12P05013)
摘    要:在富含水资源的山区,小水电的开发和上网管理比较欠缺。小水电一般直接 T 接于10 kV 公用线路,丰水期水电站满发并集中向10 kV配网供电,导致配电网电压水平过高;枯水期径流型小水电不发电,由于山区供电半径大,导致线路末端电压水平过低。这2种情况都可能导致用户的用电安全得不到保障,甚至导致用户停产和电器设备烧毁的严重后果。以常德壶瓶山地区为例,通过综合比较各电能质量治理方案,得出该问题的最优解决方案;基于PSASP仿真平台对该地区进行仿真验算,仿真结果表明该最优方案能够达到预期目标。

关 键 词:电压质量  配电网  小水电

Research on improving voltage quality in 10 kV distribution network located in SHP-rich mountain area
PENG Jie,CAO Liang-feng,ZHOU Li-xing,ZHAO Qi-yang,PENG Zi-yang,LI Jian-yong. Research on improving voltage quality in 10 kV distribution network located in SHP-rich mountain area[J]. JOurnal of Electric Power Science And Technology, 2014, 0(1): 91-96
Authors:PENG Jie  CAO Liang-feng  ZHOU Li-xing  ZHAO Qi-yang  PENG Zi-yang  LI Jian-yong
Affiliation:PENG Jie, CAO Liang-feng, ZHOU Li-xing, ZHAO Qi-yang, PENG Zi-yang, LI Jian-yong
Abstract:In the SHP-rich mountain area,the exploitation and electricity interconnection manage-ment of small hydropowers are relatively deficiency.Small hydropowers were generally T-con-nected to the 10kV public power lines.In the wet season,hydropower stations work fully and the electricity are all suppled to the 10kV networks which leads to over-voltage.In the dry season, hydropower stations generally ran off.The long power supply radius in the mountainous area leads to low-voltage at the end of the power line.The above two kinds of circumstances cannot meet the requirement of electricity safety and may lead to serious consequences,such as user out-age and electrical equipment burnout.Huping mountain area of Changde,as a case,was analyzed in this paper,the optimal solution to the voltage control problem was gained by comprehensive comparison of power quality treatment schemes.PSASP simulation model was built and the sim-ulation results showed that the optimal scheme can achieve the anticipated target.
Keywords:PSASP  power quality  SHP  power distribution network  distributed generation  PSASP
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