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首页> 外文期刊>Electric power systems research >Communication-less protection scheme for AC microgrids using hybrid tripping characteristic
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Communication-less protection scheme for AC microgrids using hybrid tripping characteristic

机译:使用混合跳闸特性的AC微电网的通信保护方案

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摘要

Conventional protection schemes are not effective in microgrids due to the possibility of bi-directional current flow and fault level reduction in the islanded mode caused by converter interfaced Distributed Generations (DGs). This paper proposes a hybrid tripping characteristic based protection scheme for microgrids. The proposed characteristic uses both voltage and current measurements to decide the tripping time, thus it is called hybrid tripping characteristic. Same relay setting is used in both grid connected and islanded mode of operation of the microgrid. Therefore, communication facilities are not required in the proposed scheme unlike many existing communication-based solutions. Voltage measurement helps in differentiating low-fault-current situation from overloading condition. It also helps in the reduction of the operating time in islanded mode. Acceptable relay operating time is achieved in both grid connected and islanded mode. A coordination problem is formulated and solved with the proposed hybrid characteristic. The obtained protection coordination is independent of the operating mode of the microgrid. The performance of the scheme is evaluated using both PSCAD simulations and hardware experiments. It is found that the proposed protection scheme performs satisfactorily for various fault impedance values, fault locations, DG combinations, overload situations and measurement errors. The performance of the scheme has been compared with the existing schemes.
机译:由于由转换器接口分布代(DGS)引起的孤岛模式的双向电流流动和故障水平降低,传统的保护方案在微电网中无效。本文提出了一种用于微电网的混合跳闸特性的保护方案。所提出的特征使用电压和电流测量来决定跳闸时间,因此称为混合跳闸特性。相同的继电器设置用于微电网的网格连接和岛状操作模式。因此,拟议方案不需要通信设施,与许多现有的基于通信的解决方案不同。电压测量有助于将低故障电流情况与过载情况进行分化。它还有助于减少岛屿模式中的运行时间。在两个网格连接和岛状模式下实现了可接受的继电器操作时间。配方和解决了协调问题并用拟议的混合特性解决。所获得的保护协调独立于微电网的操作模式。使用PSCAD模拟和硬件实验评估该方案的性能。结果发现,所提出的保护方案对于各种故障阻抗值,故障位置,DG组合,过载情况和测量误差来表现令人满意。将该方案的性能与现有方案进行比较。

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