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Hardware-in-the-loop testing of impedance protection with compensation of fault impedance and DG infeed current

机译:补偿故障阻抗和DG馈入电流的阻抗保护的硬件在环测试

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The standard impedance protection deployed in distribution networks can malfunction due to underreach errors caused by fault impedances and remote infeed currents from embedded generators (becoming more and more widespread). This paper introduces a compensation method aiming at elimination of these issues and enhancement of relay dependability. As an advantageous outcome, compensated measurements can be utilised for accurate fault location. The method is verified on ABB RED 670 relay in the loop with an OPAL-RT real-time simulator. As the method is based on multi-point measurements, the test setup also contains a communication network emulator for modelling network delays and imperfections. The laboratory tests verify applicability of the method with proper appearance of the tripping signals from the relay. The fault location results based on synchronised data show overreaching inaccuracy rising with fault resistance. Though communication network delays and imperfection of the channels lead to underreaching, it has been revealed that not strict requirements for data synchronisation can be applied to specific measurements.
机译:配电网络中部署的标准阻抗保护功能可能会由于故障阻抗和嵌入式发电机的远程馈电电流(越来越广泛)而引起的欠定位误差而导致误动作。本文介绍了一种旨在消除这些问题并增强继电器可靠性的补偿方法。作为有利的结果,可以将补偿的测量结果用于准确的故障定位。该方法已通过OPAL-RT实时模拟器在回路中的ABB RED 670继电器上进行了验证。由于该方法基于多点测量,因此测试设置还包含用于对网络延迟和瑕疵进行建模的通信网络仿真器。实验室测试通过正确显示继电器的跳闸信号,验证了该方法的适用性。基于同步数据的故障定位结果表明,随着抗故障能力的提高,超标误差会越来越大。尽管通信网络的延迟和信道的不完善会导致无法到达,但已经发现,对数据同步没有严格的要求可以应用于特定的测量。

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