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作 者:李志强 何凤军 郭强 蒋维勇[2] LI Zhiqiang;HE Fengjun;GUO Qiang;JIANG Weiyong(China Electric Power Research Institute,Haidian District,Beijing 100192,China;State Power Economic Research Institute,Changping District,Beijing 102209,China)
机构地区:[1]中国电力科学研究院有限公司,北京市海淀区100192 [2]国网北京经济技术研究院有限公司,北京市昌平区102209
出 处:《现代电力》2021年第1期87-93,共7页Modern Electric Power
基 金:国家电网公司科技项目(XT71-19-010)。
摘 要:为解决青南高比例新能源集中送出面临的暂态过电压等问题,提出了新型分布式调相机动态无功补偿方案。通过对比分析直流典型故障期间不同动态无功补偿设备及接入方式对新能源场站母线过电压抑制能力和低电压支撑能力,筛选出最好的动态无功补偿方案。研究表明,在新能源场站35 kV母线或110 kV汇集站通过三绕组变压器接入分布式调相机的方案具有更好的无功补偿效果,综合考虑升压变成本和调相机单位容量造价,后者更具经济优势。To solve the problem of transient overvoltage occurred in the centralized delivery of high proportion new energy in southern Qinghai,a new dynamic reactive power compensation scheme based on distributed synchronous condensers was proposed.By means of contrastive analysis on different dynamic reactive power compensation devices and connecting modes during typical DC faults,an optimal dynamic reactive power compensation scheme was filtrated for the over-voltage suppression and low-voltage support capability of buses in new energy station.Results of the research show that the scheme,in which the 35kV bus bar or the 110kV gathering station in new energy station are connected with distributed synchronous condenser via three-winding transformer,possesses a better effect of reactive power compensation.Overally considering the cost of the step-up transformer and that of unit capacity of the synchronous condenser,the proposed scheme is of economic advantages.
分 类 号:TM72[电气工程—电力系统及自动化]
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