General Reference Frame Identification and Transformation in Unbalanced Power Systems
Francisco G. Montoya, Santiago S\'anchez Acevedo

TL;DR
This paper presents a novel Geometric Algebra-based transformation for unbalanced power systems that simplifies analysis, enhances control, and is validated through experiments, offering a robust solution for multi-phase systems.
Contribution
A new transformation method using Geometric Algebra that directly identifies unbalanced planes and generalizes existing techniques for any degree of unbalance in multi-phase systems.
Findings
Effective in unbalanced power system analysis
Reduces oscillations in power electronics control
Validated through real-time simulation and lab tests
Abstract
Coordinate transformations provide dimensional reduction benefits across power system analysis, electric machine modeling, and power electronic converter control. This paper introduces a novel transformation based on Geometric Algebra that directly identifies the plane containing unbalanced quantity loci through bivector analysis. The method provides a direct transformation valid for any degree of unbalance in -phase, -wire sinusoidal systems, requiring only two voltage or current measurements at different time instants. Through pure geometric reasoning, we demonstrate that our approach generalizes existing techniques while extending naturally to multi-dimensional systems. Experimental validation using real-time digital simulation and physical laboratory testing confirms the method's effectiveness under realistic conditions. Power electronics converter control implementation…
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Taxonomy
TopicsPower System Optimization and Stability · Model Reduction and Neural Networks · Polynomial and algebraic computation
