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A field programmable gate array-based location factor to improve the under-frequency load shedding

机译:基于领域可编程栅极阵列的位置因子,以提高频率欠频负载脱落

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Automatic load shedding schemes can increase system reliability by preventing total system collapse during emergency operating situations when load exceeds generation. Large decreases in frequency can only occur when an area is separated from the interconnected system and is left with a generation-load imbalance. This may result from a major system disturbance that creates large power swings, causing protective equipment operation and system islanding. If the generation does not match the load in the isolated area, an automatic load shedding scheme based on system frequency can be used to maintain system stability and provide additional protection for remaining loads and other equipment. Underfrequency load shedding (UFLS) tripping frequency settings are selected for some specific emergency situation, which are considered more probable for a specific power system. It is not possible to predict all situations that can happen in the power system. The amount of the load value to be shed is the main issue. Redundant tripped load can create an over frequency situation, which is more dangerous than underfrequency problem. Therefore, a field programmable gate array-based location factor is proposed to determine where and how much load should be shed.
机译:自动载荷脱落方案可以通过防止在负载超过一代时通过防止应急操作情况的总系统折叠来提高系统可靠性。只有在与互连系统中分离的区域并且留有产生负载不平衡时,才能发生大的频率减小。这可能是由于产生大功率波动的主要系统干扰,导致保护设备运行和系统岛屿。如果生成与隔离区域中的负载不匹配,基于系统频率的自动负载脱落方案可用于维护系统稳定性,并为剩余负载和其他设备提供额外的保护。对于某些特定的紧急情况,选择了欠频负载脱落(UFL)跳闸频率设置,这些紧急情况被认为是特定电力系统的更可能性。无法预测电力系统中可能发生的所有情况。要脱落的负载值的数量是主要问题。冗余跳闸负载可以创造出频率的频率,这比不再频繁的问题更危险。因此,提出了一种基于领域可编程栅极阵列的位置因子,以确定应该脱落的何处以及多少负载。

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