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Design of robust intelligent protection technique for large-scale grid-connected wind farm

机译:大型网格连接风电场鲁棒智能防护技术设计

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This paper presents a design of robust intelligent protection technique using adaptive neuro-fuzzy inference system (ANFIS) approach to detect and classify the fault types during various faults occurrence in large-scale grid-connected wind farm. Also, it is designed to determine the fault location and isolate the wind turbine generators located in the faulted zone during fault occurrence and reconnect them after fault clearance. The studied wind farm has a total rating capacity of 120 MW, where it consists of 60 doubly fed induction generator (DFIG) wind turbines each has a capacity of 2 MW. Moreover, the wind farm generators are positioned in 6 rows, where each row consists of 10 generators. The impacts of fault type, fault location, fault duration, cascaded faults, permanent fault and external grid fault on the behaviours of the generated active and reactive power are investigated. Also, the impacts of internal and external faults in cases of different transition resistances are investigated. The simulation results indicate that, the proposed ANFIS protection technique has the ability to detect, classify and determine the fault location, then isolate the faulted zones during fault occurrence and reconnect them after fault clearance. Furthermore, the wind turbines generators which are located in un-faulted zones can stay to deliver their generated active power to the grid during fault period.
机译:本文介绍了使用自适应神经模糊推理系统(ANFIS)方法来检测和分类大型网格连接风电场的各种故障发生方法的鲁棒智能保护技术设计。此外,它旨在确定故障位置,并在故障发生期间确定位于故障区域中的风力涡轮发电机,并在故障间隙后重新连接它们。研究的风电场具有120 mW的总额定值容量,其中由60个双馈电流发电机(DFIG)风力涡轮机组成,每个都具有2 MW的容量。此外,风电场发生器位于6行中,每行由10个发电机组成。研究了故障类型,故障定位,故障持续时间,级联故障,永久性故障和外部电网故障对所产生的主动和无功功率的行为的影响。此外,研究了内部和外部故障在不同过渡电阻情况下的影响。仿真结果表明,所提出的ANFIS保护技术具有检测,分类和确定故障位置的能力,然后在故障发生期间隔离故障区域并在故障间隙后重新连接。此外,位于未断层区域的风力涡轮机发生器可以在故障时段期间停留将它们产生的有效电力传送到电网。

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