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On-Line Fast Load Shedding to Maintain System Stability and Operation for Isolated Oil Field Power System

机译:在线快速负载脱落,以维持隔离油田电力系统的系统稳定性和操作

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This paper demonstrates the design and implementation of smart on-line fast load shedding to maintain system stability and operation when a major generating unit is suddenly tripped. The design stage included load flow and transient stability study cases to determine system stability limits, transient frequency variation curves and transient voltage profiles. Numerous outage scenarios that cover all possible operating conditions are simulated and key system stability parameters are identified. A fast load shedding priority list has been provided by system operations and has been included as needed into transient stability simulation cases to maintain system stability and generation/load balance. Fast load shedding logic diagrams are developed with triggering parameters including generating unit breaker status and on-line frequency measurements. On-line measurements of system generation, tie line flow and loads are continuously monitored and fed into a PLC system that processes information and issues load shedding trip signals to maintain balanced generation/load and stability. This fast load shedding scheme has been tested in real time outages several times, and proved to be accurate and in agreement with transient stability simulation results. Since its implementation, this load shedding scheme has successfully saved the oil field power system from total shutdown and maintained system operation after sudden tripping of major generating units
机译:本文展示了智能在线快速负载脱落的设计和实施,以保持系统稳定性和操作,当主要发电机突然跳闸时。设计阶段包括负载流量和瞬态稳定性研究案例,以确定系统稳定性限制,瞬态频率变化曲线和瞬态电压配置文件。涵盖所有可能的操作条件的许多中断场景是模拟的,并且识别了关键系统稳定性参数。系统操作提供了快速载荷脱落优先级列表,并根据需要将其包括在内,进入瞬态稳定性仿真情况,以维持系统稳定性和发电/负载平衡。快速负载脱落逻辑图是用触发参数开发的,包括产生单元断路器状态和在线频率测量。系统生成的在线测量,连续监测系列流量和负载,并进入处理信息和发出负载脱落跳闸信号以保持平衡的产生/负载和稳定性的PLC系统。这种快速的载荷脱落方案已经在几次实时停电测试,并证明是准确的,并与瞬态稳定性仿真结果一致。自实施以来,此负载脱落方案已成功地保存油田电力系统从总关断和突然跳闸突然跳闸后的系统操作

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