采用移动平均平滑器,提高基于阻抗的保护精度

David F. Celeita, M. Petit, T. Le, Amine Hmaidouch
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引用次数: 0

摘要

几十年前,传统的继电保护是基于频域工作的。在过去的几十年里,离散傅立叶变换(DFT)的基本原理在进入保护算法之前计算信号时表现出了良好的性能。然而,现代电力系统集成了复杂的元素,这些元素可能会影响特定故障下跳闸的响应。本研究解决了传统继电器相量计算的问题。针对基于阻抗保护的区域检测的选择性和准确性问题进行了具体的分析。提出了一种新的移动平均模块,并通过重放仿真进行了评估,并在数字信号处理器(DSP)中进一步开发了原型,用于继电器的工业发展。贡献集中在更好的区域检测精度上,包括更高的选择性和对保护速度的低影响。
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A moving average smoother to improve the accuracy of impedance based protection
Traditional protective relays work based on a frequency domain since many decades ago. Over the last decades, the fundamentals of a Discrete Fourier Transform (DFT) have shown fair performance when computing the signals before entering a protection algorithm. However, modern power systems integrate complex elements that may affect the response of a trip under particular faults. This research addresses the problem of the phasor computing of a traditional relay. The problem is identified specifically with the selectivity and the accuracy of zone detection for an impedance based protection. A novel moving average module is proposed and assessed with playback simulation and further development of a prototype in a Digital Signal Processor (DSP) for the industrial development of relays. The contribution is focused on the better accuracy of zone detection, including higher selectivity with a low impact on the protection speed.
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