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Asynchronous motor protection against dynamic instabilities

机译:异步电机防止动态稳定性

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This paper deals with the dynamic behavior of the electric power system of a Venezuelan Oil Refinery (El Palito Refinery), which includes a 6000 HP asynchronous motor (M/G) coupled to the Power Recovery Unit (PRU) shaft at the Fluidized CatalyticCracking plant (FCC). Problems associated with inappropriate maintenance at the external power utility, whose system is linked with the national interconnected grid (NIG), have decreased the electric power system reliability at the Refinery. Criticalfailure events, up to third order contingency events, have been occurring at the Refinery frequently over the past few years. Once these kind of events take place, the 6000 HP motor tends to balance the system generating or consuming electric power, butdue to the large equivalent inertia in the external utility, the 6000 HP motor trips before the Refinery normal operating conditions have been restored. Then, both FCC and PRU shutdowns, being the FCC Plant a vital process unit within an Oil Refinery.This work involves a dynamic study of those critical failure events in order to properly set protective relaying schemes and thus ensuring a safe and reliable operation of the Refinery electric power system, while establishing dynamic stability limits for the M/G.
机译:本文涉及委内瑞拉炼油厂(EL PALITO炼油厂)电力系统的动态行为,包括6000 HP异步电动机(M / G),耦合到流化催化包装厂的电力回收单元(PRU)轴(FCC)。与外部电力实用程序的不当维护相关的问题,其系统与国家相互连接的网格(NIG)相关联,在炼油厂的电力系统可靠性下降。在过去的几年里,炼油厂往往在炼油厂发生了明显的事件。一旦这些事件发生,6000个HP电机往往会平衡系统产生或消耗电力,而是在外部实用程序中的大量等效惯性,在炼油厂正常操作条件之前6000 HP电机推行已经恢复。然后,FCC和PRU关闭,是FCC工厂在炼油厂内的重要过程单元。这项工作涉及对这些关键失败事件的动态研究,以便适当地设置保护性的中继方案,从而确保安全可靠的操作炼油厂电力系统,同时为M / g建立动态稳定性限制。

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