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Complex Phase Analysis of Power Grid Dynamics
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Complex Phase Analysis of Power Grid Dynamics
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With an increasing share of renewable energy sources, accurate and efficient modeling of grid-forming inverters is becoming crucial for system stability. Linear methods are a powerful tool for understanding dynamics close to an operating point, but usually depend on the reference trajectory. Thus, small deviations can render linear models invalid over time, posing a significant challenge in practice, and complicating theoretical analysis. As a solution, we show that the complex phase offers a robust formulation independent of reference phases and frequencies, thus preserving invariance properties under linearization. This enables robust system identification during realistic conditions and opens the road to powerful stability analysis of inverter-based grids.
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Cited by 1 Pith paper
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A Unified Theory of Edge Weights: Stability of General Laplacian Networks from Matrix Phases and Asymmetry Rayleigh Ratios
A unified theory of edge weights for general Laplacian networks uses matrix phases and the Asymmetry Rayleigh Ratio to obtain less conservative stability conditions for AC power grids, directed diffusion, and the Kura...
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