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Technology research and application of outdoor installation protection factory test system |
Chen Zehua1, Chen Yong2, Luo Jianping2, Zhou Kun2, Wang Yibo2 |
1. State Grid Hubei Electric Power Co., Ltd, Yichang Power Supply Company, Yichang, Hubei 443000; 2. Wuhan Kemov Electric Co., Ltd, Wuhan 430223 |
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Abstract This article from the outdoor installation protection present situation, elaborated in outdoor installation protection test interface quantity insufficiency, the protection value cannot manage, low test efficiency problem, based on the modeling and communication methods of outdoor installation protection device menu, design a kind of in situ protection factory test system for the in outdoor installation protection of different types of different voltage grade, one-click automatic testing device of protection and examples of engineering application, verify the test system can effectively shorten the substation operational maintenance cycle, improve the work efficiency, guarantee the safe and stable operation of power grid.
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Received: 23 December 2019
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Cite this article: |
Chen Zehua,Chen Yong,Luo Jianping等. Technology research and application of outdoor installation protection factory test system[J]. Electrical Engineering, 2020, 21(8): 113-117.
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URL: |
http://dqjs.cesmedia.cn/EN/Y2020/V21/I8/113
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[1] 陈国平, 王德林, 裘愉涛, 等. 继电保护面临的挑战与展望[J]. 电力系统自动化, 2017, 41(16): 1-11, 26. [2] 邓勇, 黄烽, 陆榛, 等. 一起继电保护装置数据异常故障分析与对策[J]. 电气技术, 2017, 18(11): 138-141. [3] 徐祥海, 吴靖, 秦波, 等. 基于多源数据的保护就地化变电站智能感知与诊断技术研究[J]. 电气技术, 2019, 20(12): 60-68. [4] 徐玉韬, 吴恒, 谈竹奎, 等. 适用于微电网的变频式继电保护方案[J]. 电工技术学报, 2019, 34(增刊1): 360-367. [5] 宋爽, 乔星金, 卜强生, 等. 智能变电站就地化继电保护技术方案研究[J]. 电力工程技术, 2018, 37(2): 83-88. [6] 莫峻, 蔡义明. 计及瞬时通信故障的变压器保护可靠性评估[J]. 电工技术学报, 2019, 34(4): 807-816. [7] 李岩军, 艾淑云, 王兴国, 等. 继电保护就地化及测试研究[J]. 智能电网, 2014, 2(3): 16-21. [8] 马涛, 武万才, 冯毅. 智能变电站继电保护设备的运行和维护[J]. 电气技术, 2015, 16(6): 130-131, 134. [9] 金能, 梁宇, 邢家维, 等. 提升配电网线路保护可靠性的远方保护及其与就地保护优化配合方案研究[J]. 电工技术学报, 2019, 34(24): 5221-5233. [10] 杨生苹, 刘天祥, 程克杰, 等. 就地化保护互操作性测试研究[J]. 电气自动化, 2018, 40(1): 80-83. [11] 邓茂军, 樊占峰, 倪传坤, 等. 就地化分布式变压器保护方案研究[J]. 电力系统保护与控制, 2017, 45(9): 95-100. [12] 董贝, 薛钟, 张尧, 等. 基于IEC 61850逻辑设备管理层次结构的就地化保护装置建模研究与应用[J]. 电力系统保护与控制, 2018, 46(14): 165-170. [13] Q/GDW1161—2013. 就地化保护装置菜单建模规范[S]. [14] 宋述勇, 郝伟, 李瑞, 等. 《IEC 61850工程继电保护应用模型》在二次安全措施中的应用[J]. 电气技术, 2015, 16(10): 114-116. [15] 刘颖. 智能变电站全寿命周期“即插即用”技术体系的研究与应用[J]. 电力系统保护与控制, 2015, 43(22): 23-28. [16] 任雁铭, 操丰梅, 张军. IEC 61850 Ed 2.0技术分析[J]. 电力系统自动化, 2013, 37(3): 1-5, 53. |
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