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Design of a Priority-Based Load Shed Scheme and Operation Tests

机译:基于优先级的减载方案设计和运行测试

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Many large industrials operate internal cogeneration systems to provide a substantial portion of their own power and to use the resulting output heat as part of their industrial process. Depending on the amount of cogeneration, on loss of connection to the main grid or instability of the grid, these industrials may have the option of supplying all internal electrical loads from the cogeneration or rather shedding a portion of the load in order to maintain plant stability. In order to maintain and maximize plant operations during either an islanded condition, a severe (and dropping) underfrequency condition, or a prolonged undervoltage condition, a load shed scheme needs to dynamically monitor the load-generation unbalance in the plant and, upon detecting or determining any of the above conditions, needs to quickly initiate shedding of the optimal amount of load based on a user-determined priority schedule. Examples of an actual load shed test are shown and analyzed.
机译:许多大型工业企业使用内部热电联产系统来提供自己的大部分电力,并将产生的热量用作工业过程的一部分。根据热电联产的数量,与主电网的连接断开或电网的不稳定,这些工业企业可以选择从热电联产中提供所有内部电力负荷,或者减少一部分负荷以保持工厂的稳定性。 。为了在孤岛状态,严重的(和下降的)欠频状态或长时间的欠压状态下维持并最大化工厂的运行,甩负荷方案需要动态监控工厂中的负荷产生不平衡,并在检测到或确定以上条件中的任何一个,需要基于用户确定的优先级时间表快速启动最佳负载量的减少。显示并分析了实际的负载脱落测试的示例。

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