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Open database analysis of scaling and spatio-temporal properties of power grid frequencies

Engineering and Technology

Open database analysis of scaling and spatio-temporal properties of power grid frequencies

L. R. Gorjão, R. Jumar, et al.

This groundbreaking study dives into an open database of power grid frequency measurements from 17 diverse locations across three continents, conducted by an expert team of researchers. They explore statistical properties of synchronous areas and validate a scaling law that links fluctuation amplitudes to system size, aiming to enhance collaboration in energy research.... show more
Abstract
The electrical energy system has attracted much attention from an increasingly diverse research community. Many theoretical predictions have been made, from scaling laws of fluctuations to propagation velocities of disturbances. However, to validate any theory, empirical data from large-scale power systems are necessary but are rarely shared openly. Here, we analyse an open database of measurements of electric power grid frequencies across 17 locations in 12 synchronous areas on three continents. The power grid frequency is of particular interest, as it indicates the balance of supply and demand and carries information on deterministic, stochastic, and control influences. We perform a broad analysis of the recorded data, compare different synchronous areas and validate a previously conjectured scaling law. Furthermore, we show how fluctuations change from local independent oscillations to a homogeneous bulk behaviour. Overall, the presented open database and analyses constitute a step towards more shared, collaborative energy research.
Publisher
Nature Communications
Published On
Dec 11, 2020
Authors
Leonardo Rydin Gorjão, Richard Jumar, Heiko Maass, Veit Hagenmeyer, G. Cigdem Yalcin, Johannes Kruse, Marc Timme, Christian Beck, Dirk Witthaut, Benjamin Schäfer
Tags
power grid
frequency measurements
synchronous areas
scaling law
energy research
fluctuation analysis
collaboration
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