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The load-shedding scheme design for an integrated steelmaking cogeneration facility

机译:炼钢热电联产设备的减负荷方案设计

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This paper develops the coordination of a load-shedding scheme for a large industrial customer with several cogenerator units. A detailed description of each design procedure is included. The loads are tripped by the underfrequency relays, to prevent the power system from collapse when the plant becomes isolated, due to a utility service outage. Different system fault cases have been selected to derive the proper formulation of a load-shedding scheme, according to the historical operation records. The key factors, such as frequency settings, number of load-shedding steps, size and location of the loads to be tripped, relay time delay, and the coordination with the generator protection scheme, were examined through the simulation of the transient stability program. The proper load-shedding scheme has been designed, and the related hardware has been installed in the plant, to keep the system from blackout when the disturbance occurs.
机译:本文为具有多个热电联产单元的大型工业客户开发了一种减负荷方案。包括每个设计过程的详细说明。负载由低频继电器跳闸,以防止由于公用事业服务中断而使电厂隔离时电源系统崩溃。根据历史操作记录,已选择了不同的系统故障案例,以得出减负荷方案的正确公式。通过暂态稳定程序的仿真,研究了关键因素,例如频率设置,甩负荷步骤的数量,要跳闸的负荷的大小和位置,继电器延时以及与发电机保护方案的协调性。已经设计了适当的减载方案,并且已在工厂中安装了相关的硬件,以防止系统在发生干扰时停电。

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