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首页> 外文期刊>Power Systems, IEEE Transactions on >An Online Measurement Approach of Generators’ Torsional Mechanical Damping Coefficients for Subsynchronous Oscillation Analysis
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An Online Measurement Approach of Generators’ Torsional Mechanical Damping Coefficients for Subsynchronous Oscillation Analysis

机译:次同步振荡分析的发电机扭力机械阻尼系数在线测量方法

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摘要

The series compensation capacitor and HVDC are widely used in Chinese power grids to increase the transmission capability of long distance lines, which might cause subsynchronous oscillation (SSO) between the turbine generators and power systems. The torsional mechanical damping coefficient of a turbine generator reflects the inherent damping level of the shaft and, thus, is a critical factor in SSO analysis. However, the torsional mechanical damping coefficient under practical operating conditions is difficult to obtain from the design parameters. In this paper, a novel approach is developed for online torsional mechanical damping coefficient measurements. The torsional interaction mechanism of identical parallel connected turbine generators is investigated, and then the characteristics of in-phase mode (IPM) and anti-phase mode (APM) are described. From this analysis, an active stimulating method for APM is presented, and a practical scheme for online torsional mechanical damping coefficient measurement is designed. fThis approach takes advantage of the APM features and decouples the generators from the grid. Moreover, the proposed approach has been implemented in the Yimin power plant in Inner Mongolia to realize online measurement of the torsional mechanical damping coefficient. Field test results are presented to demonstrate the effectiveness of the proposed approach.
机译:串联补偿电容器和HVDC在中国电网中被广泛使用,以增加长距离线路的传输能力,这可能会导致涡轮发电机和电力系统之间的亚同步振荡(SSO)。涡轮发电机的扭转机械阻尼系数反映了轴的固有阻尼水平,因此是SSO分析中的关键因素。然而,在实际操作条件下的扭转机械阻尼系数很难从设计参数中获得。在本文中,开发了一种用于在线扭转机械阻尼系数测量的新颖方法。研究了相同并联涡轮发电机的扭转相互作用机理,然后描述了同相模式(IPM)和反相模式(APM)的特性。通过此分析,提出了一种主动激励的APM激励方法,并设计了一种在线扭转机械阻尼系数测量的实用方案。 f这种方法利用了APM功能,并使发电机与电网脱钩。此外,该方法已在内蒙古伊敏电厂实施,以实现扭力机械阻尼系数的在线测量。现场测试结果表明了该方法的有效性。

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