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Smart grid fault detection and classification with multi-distributed generation based on current signals approach

机译:基于电流信号的多分布发电智能电网故障检测与分类

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摘要

Smart grid (SG) containing clean distributed generation (DG) has gained intensive research for reliable digital protection against fault conditions. The main objective of this study is to develop and validate a fast and efficient fault detection and classification algorithm taking into account the dynamic behaviour of DG units. The proposed algorithm does not require additional measurements as it based only on the synchronised measured three-phase currents through the communication facilities available in SG. The advanced communication technologies in SG are currently utilised for efficient and real-time data transfer from the protective relays to the monitoring and protection centre. The transferred data are processed for fault diagnosing before taking the necessary trip actions. In the proposed algorithm, the statistical cross-alienation coefficients are calculated for the measured current signals at sending and receiving ends of each feeder. Fault detection and classification process will be achieved taking into account the changes in the synchronised and discretised waveform of current signals within a movable window of (1/4 cycle). The proposed algorithm is tested on real system to detect and classify the different fault condition. The results indicated that the proposed technique is fast and reliable for SG digital protection schemes.
机译:包含清洁分布式发电(DG)的智能电网(SG)已获得广泛的研究,以针对故障情况提供可靠的数字保护。这项研究的主要目的是考虑到DG单元的动态行为,开发并验证一种快速有效的故障检测和分类算法。所提出的算法不需要额外的测量,因为它仅基于通过SG中可用通信设备的同步测量的三相电流。 SG中的先进通信技术目前用于从保护继电器到监视和保护中心的高效实时数据传输。在采取必要的跳闸措施之前,将对传输的数据进行处理以进行故障诊断。在提出的算法中,为每个馈线的发送和接收端处的测量电流信号计算统计交叉异化系数。考虑到(1/4周期)可移动窗口中电流信号的同步波形和离散波形的变化,将实现故障检测和分类过程。该算法在实际系统上进行了测试,以检测和分类不同的故障条件。结果表明,所提出的技术对于SG数字保护方案是快速可靠的。

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