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Reassessment of Permissible Negative Sequence Current for Power Plant Operation of Taipower

机译:台电电厂运行中允许的负序电流的重新评估

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The N3 power plant of Taipower is located in the southern tip of Taiwan and connected to the power pool by four out-linking 345-kV overhead transmission circuits. There are two 951-MW generators. Each generator occupied 11% of the system peak load in 1985 when the generator was in commercial operation. Since Taipower is an isolated system, at the N-2 conditions, those generators were reduced to 75% loading to protect the power system. By the way, to avoid damage of negative sequence current (NSC), the limits of the N3 power plant are stricter than those in the IEEE Standard. However, in 2010, the capacity ratio of each generator in the plant to the system peak load has been reduced to 3% only. To increase the economic benefit of those generators, it is required to reassess the operation limits of NSC. EMTP was used to calculate the levels of NSC from the out-linking transmission circuits. From the results of this study, the effects of NSC could be ignored when the four out-linking circuits are in N-0, N-1, and N-2 conditions. The generators can be operated in full loading under these conditions. The modifications to the NSC limits of the N3 power plant are also suggested.
机译:台电的N3电厂位于台湾的最南端,并通过四个向外连接的345 kV架空输电线路连接到电力池。有两台951兆瓦发电机。 1985年商用时,每台发电机都占系统峰值负荷的11%。由于台电是一个隔离的系统,因此在N-2条件下,这些发电机的负荷降至75%,以保护电力系统。顺便说一句,为避免损坏负序电流(NSC),N3发电厂的限制比IEEE标准中的限制更为严格。但是,在2010年,工厂中每个发电机的容量与系统峰值负载的容量比率仅降低到3%。为了增加这些发电机的经济利益,需要重新评估NSC的运行极限。 EMTP用于计算出站传输电路的NSC级别。从这项研究的结果来看,当四个外联电路处于N-0,N-1和N-2条件时,可以忽略NSC的影响。在这些条件下,发电机可以满负荷运行。还建议对N3电厂的NSC限制进行修改。

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