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Some discussions about turn-to-turn protection configuration and setting of large hydraulic generator

机译:关于大型水轮发电机匝间保护配置及整定的一些讨论

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The consolidated differential protection could not be installed in generator in many old hydraulic power plants they are in running. Affected by various factors, the mal-operation of turn-to-turn protection based on other principles occurs easily. For a long time in operating the power plant, to prevent the mal-operation of turn-to-turn protection is a key point, so the turn-to-turn protection in actual operation is often ineffective. For large multi-polar hydraulic generator, if the turn-to-turn protection failed to operate, it will produce incalculable damage. It is so quite important to simulate before installing the main protection in new generating-sets. For the generators have not been simulated, this paper proposes a new simple setting method, which uses stator winding spreading figure to analyze the potential circle number of upper and lower stator bars in the same lot of same phase. It is of more practical value than both setting according to “Guideline” and setting blindly. From the analysis about the stator structure, turn-to-turn protection configuration, setting and operation history of 11 representative large hydraulic generators along the Qingjing River Valley, it can be drawn that turn-to-turn protection of old generating-sets is almost out of work which is installed before 2001 and the sensitivity of 17.5% new generating-sets put into operation by 2007 can''t be guaranteed. It also indicates that excitation system impact considerably on main protection of generator. This paper discusses the turn-to-turn protection of large hydraulic generator.
机译:在许多正在运行的旧水力发电厂中,无法在发电机中安装统一的差动保护。受各种因素的影响,基于其他原理的匝间保护误动作容易发生。在发电厂长期运行中,防止匝间保护误动作是关键,因此实际运行中的匝间保护往往无效。对于大型多极水力发电机,如果匝间保护功能失效,则会造成无法估量的损失。在新的发电机组中安装主保护装置之前进行仿真非常重要。针对尚未模拟的发电机,本文提出了一种新的简单设置方法,该方法使用定子绕组展布图来分析同一相相同批次中的上,下定子条的势圈数。它比根据“指南”进行设置和盲目设置都更具实用价值。从清京河流域的11座代表性大型水轮发电机的定子结构,匝间保护配置,设置和运行历史等分析,可以得出,旧发电机组的匝间保护几乎是不能保证2001年以前安装的设备停工,并且不能保证2007年之前投入运行的17.5%的新发电机组的灵敏度。这也表明励磁系统对发电机主保护的影响很大。本文讨论了大型水轮发电机的匝间保护。

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