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Impact of placement of inductive fault current limiters on synchronized operations of generators

机译:感应式故障限流器的位置对发电机同步运行的影响

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Judicious placement of inductive fault current limiters (IFCLs) in isolated power systems can increase the robustness of generator synchronization during and after short-circuit faults, while also improving continuity of power to the system loads. Our work defines optimal placements of IFCLs so as to protect the synchronization of multiple generators, and it defines the proper trip settings for the IFCLs so that they coordinate well with each other, and with the system's circuit breakers. Our work considers both radial and ring bus structures, but not mesh structures. The IFCL placement technique is demonstrated in a power network containing four buses in a ring arrangement. The system receives power from two main turbo-generators (36 MW each) and two auxiliary turbo-generators (4 MW each). In this system, the optimal locations for the IFCLs were found to be near the bus ties of the two larger generators. Further, the placement strategy for locating IFCLs in a power system with ring structure is developed. For this arrangement, fault currents were limited for all fault conditions while assuring maximum availability of power to the loads. Coordination between the IFCLs and the system circuit breakers is analyzed for IFCLs in these locations, and verified by simulation results.
机译:在隔离式电源系统中明智地放置电感性故障电流限制器(IFCL)可以提高短路故障期间和之后发电机同步的稳健性,同时还可以提高系统负载的电源连续性。我们的工作定义了IFCL的最佳位置,以保护多个发电机的同步,并且为IFCL定义了正确的跳闸设置,以使它们彼此之间以及与系统断路器之间的协调良好。我们的工作既考虑径向总线结构,也考虑环形总线结构,但不考虑网格结构。 IFCL放置技术在包含四个以环形排列的总线的电力网络中得到了演示。该系统从两个主涡轮发电机(每个36 MW)和两个辅助涡轮发电机(每个4 MW)接收功率。在该系统中,发现IFCL的最佳位置在两个较大发电机的母线附近。此外,开发了用于在具有环形结构的电力系统中定位IFCL的布置策略。对于这种布置,在确保所有负载的最大电源可用性的同时,针对所有故障条件限制故障电流。针对这些位置的IFCL,分析了IFCL和系统断路器之间的协调,并通过仿真结果进行了验证。

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