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Advanced Protection Technique for Wind Farm Collector Feeder Divided into Multi Zones

机译:风电场收集器馈线的先进保护技术分为多区

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Wind farm protection system is usually divided into different protection zones including the wind farm area, wind farm collection system, wind farm interconnection system and the utility area. The medium voltage collector feeder in a wind farm is usually protected by conventional protection strategy. The main drawback of this protection that it can't discriminate between faults occurred in the wind turbine generator (WTG) and cable feeder faults. Moreover, the protection relay did not isolate the faulted cable feeder from the side of WTG. Therefore, the fault is still fed from the WTG. A new digital protection algorithm is proposed in this paper based on the discrete wavelet transform (DWT). The DWT is utilized to obtain accurate polarity signal and not affected by the high impedance. The protection zones are identified where each WTG has its own zone and one zone for the collection cable feeder. The algorithm discriminates between internal faults in the protected collection feeder and external faults in the power grid or any other parallel feeders. The proposed protection algorithm performance is verified using various fault scenarios using MATLAB package. The simulated scenarios involved different fault types and locations. The proposed algorithm is applied on a part of Zafarana wind farm which connected to 220 kV network of the unified Egyptian network.
机译:风电场保护系统通常分为不同的保护区,包括风电场区域,风电场收集系统,风电场互连系统和公用设施。风电场中的中压收集器进料器通常由传统保护策略保护。这种保护的主要缺点是,它无法区分风力涡轮发电机(WTG)和电缆进料器故障发生在故障之间。此外,保护继电器并未将断层电缆馈线与WTG侧面隔离。因此,故障仍然来自WTG。基于离散小波变换(DWT),本文提出了一种新的数字保护算法。 DWT用于获得精确的极性信号并且不受高阻抗的影响。保护区域被识别,其中每个WTG都有其自己的区域和集合电缆馈线的一个区域。该算法在电网或任何其他并行进料器中的受保护收集馈线和外部故障中的内部故障区分。建议的保护算法性能使用MATLAB包使用各种故障场景来验证。模拟场景涉及不同的故障类型和位置。所提出的算法应用于Zafarana风电场的一部分,其连接到统一埃及网络的220 kV网络。

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