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Enhancing generator differential performance for black-start conditions

机译:在黑启动条件下增强发电机的差分性能

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The power system is designed to operate over long periods of time without an interruption in service. However, it is inevitable that at some point, some portion of the system will be shut down, whether for maintenance or because of a disturbance. In the second case, it is essential that the system be restored quickly and orderly. This may require one or more generators with black-start capability. During a black start, the generator is brought up to nominal speed and voltage. If the step-up transformer is directly connected to the generator (unit connection), there will not be appreciable inrush current circulating through the generator windings due to the gradual increase of the generator terminal voltage. In the case where a circuit breaker is located between the generator and the step-up transformer, voltage is suddenly applied to the transformer and inrush current circulates through the generator windings. The resulting transformer inrush current can often cause the generator differential relay to misoperate because of poor or uneven current transformer performance caused by the dc component found in the transformer inrush current. It is critical that these misoperations be prevented to ensure the reliability of the system. This paper includes an overview of differential protection and its application to synchronous generators. Focus is given to black-start conditions and their effect on generator differential protection performance. Real-world event data are used to analyze the effectiveness of various methods in detecting black-start conditions and preventing differential element misoperation. This paper discusses limitations and considerations for each method and an improvement to an existing differential element.
机译:该电源系统设计为可以长时间运行而不会中断服务。但是,不可避免地,无论是出于维护还是出于干扰,系统的某些部分都将被关闭。在第二种情况下,必须快速有序地恢复系统。这可能需要一台或多台具有黑启动功能的发电机。在黑启动期间,发电机将升至标称速度和电压。如果将升压变压器直接连接到发电机(单元连接),则由于发电机端子电压的逐渐升高,将不会在发电机绕组中流通大量涌入电流。如果断路器位于发电机和升压变压器之间,则电压会突然施加到变压器上,并且涌入电流会通过发电机绕组循环。由于变压器浪涌电流中存在的直流分量导致电流互感器性能较差或不均匀,因此产生的变压器浪涌电流通常会导致发电机差动继电器失灵。防止这些误操作对于确保系统的可靠性至关重要。本文概述了差动保护及其在同步发电机中的应用。着重于黑启动条件及其对发电机差动保护性能的影响。实际事件数据用于分析各种方法在检测黑启动条件和防止微分元件误操作方面的有效性。本文讨论了每种方法的局限性和考虑因素,以及对现有差分元件的改进。

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