基于改进变化检测滤波的光伏直流微电网实时故障诊断

K. Anjaiah, P. K. Dash, Lsm Ieee, Snehamoy Dhar, R. Bisoi
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引用次数: 0

摘要

在直流微电网中,快速故障检测和隔离仍然是微电网保护的关键挑战。本文提出了一种利用改进变化检测滤波器(M-CDF)检测和隔离多个光伏直流微电网故障的新方法。所提出的微电网会遇到各种故障,并从直流母线收集相应的数据。然后通过M-CDF对电压信号进行处理,M-CDF使用一个参考窗口与其他窗口以滑动模式进行比较,根据检测阈值检测突然变化或故障。同时,它还通过向断路器发送跳闸信号来隔离故障段和健康段。为了在低震级和高震级故障检测方面都取得显著的效果,M-CDF进一步进行了Teager能量(TE)处理,命名为TE- cdf。因此,即使发生低震级的故障,它也能通过显示大震级来准确地检测故障。此外,为了证明该方法(即TE-CDF)的优越性、适用性和简单性,通过dSPACE DS 1104嵌入式处理器在硬件测试台上进行了验证,并与基准测试技术进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-Time Fault Diagnosis in Photovoltaic Based DC Microgrids Using Modified Change Detection Filter
In DC microgrids, quick fault detection and isolation is still a key challenge in microgrid protection. This paper proposes a new approach using a modified change detection filter (M-CDF) to detect and isolate faults in multiple photovoltaic-based DC microgrids. The proposed microgrid is subjected to various faults, and corresponding data is collected from the DC bus. The voltage signal is then processed through the M-CDF, which uses a reference window to compare with other windows in a sliding pattern to detect sudden changes or faults based on the detection threshold. Simultaneously, it also isolates the fault section from the healthy section by sending a trip signal to the circuit breaker. To obtain remarkable results in terms of detection for both low and high-magnitude faults, M-CDF is further subjected to Teager energy (TE) and it is named TE-CDF. As a result, it accurately detects the faults even when low-magnitude faults occur by exhibiting large magnitudes. Further, to evidence the superiority, applicability, and simplicity of the proposed approach (i.e., TE-CDF) is validated on a hardware test bench through dSPACE DS 1104 embedded processor, and obtained results are compared over benchmark techniques.
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