基于实验室示波器和树莓派的同步相量记录器

Karla Natalli Vujević, M. Despalatović, A. Šunjerga, G. Petrovic
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引用次数: 0

摘要

同步相量测量对提高配电网的效率、可靠性和安全性起着至关重要的作用。同步相量的使用允许对配电网进行高级监测、控制和保护,为实时决策提供有价值的信息。在本文中,我们提出了一个基于开源代码的简单框架,可以用最小的投资将典型的实验室示波器转换为同步相量记录仪,并使用电气工程实验室中常用的设备。我们使用简单的算法提取感兴趣的电量并将其记录到高效的时间序列数据库中。后处理和数据分析可以对每个谐波的有功和无功功率进行,并且可以通过从连接到互联网的任何位置远程访问数据库来完成。
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Synchrophasor Logger Based on Laboratory Oscilloscope and Raspberry Pi
Synchrophasor measurement plays a critical role in improving the efficiency, reliability and security of distribution grids. The use of synchrophasors allows for advanced monitoring, control and protection of the distribution grid, providing valuable information for decision-making in real-time. In this paper, we present a simple framework based on open-source codes that can convert a typical laboratory oscilloscope to a synchrophasors logger with minimum investment and use devices commonly available in electrical engineering laboratories. We use simple algorithms to extract electrical quantities of interest and log them to a highly efficient time-series database. Post-processing and data analysis can be done for the active and reactive power of each individual harmonic and can be done by accessing the database remotely from any location connected to the internet.
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