DOE OSTI · 2510866
Ensuring Solution Uniqueness in Three-Phase Power System State Estimation
Abstract
This paper is concerned with the issue of potential non-unique solutions in three-phase state estimation. Theory of observability analysis for positive sequence power system state estimation is based on certain assumptions that avoid possibility of multiple solutions. Also, it is shown that observability of a positive sequence network remains independent of the network parameters or the operating state. When extending single-phase observability analysis directly to the three-phase case, this paper considers the possibility of converging to multiple solutions, i.e. solution non-uniqueness, even for cases where state estimator successfully converges. The study illustrates via numerical examples the likelihood of converging to entirely different solutions for certain network parameters. It also examines how the operating state, particularly under unbalanced loading, leads to solution non-uniqueness. The paper then describes an alternative approach to ensure a unique solution in three-phase state estimation. This method aims to accurately and uniquely estimate the state of any unbalanced three-phase system, irrespective of load imbalance, network configuration, existence of synchronous generators or transformers.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Yilmaz, Ugur Can, Abur, ALI. 2024-10-14. Ensuring Solution Uniqueness in Three-Phase Power System State Estimation. https://doi.org/10.1109/naps61145.2024.10741772
Cite the original work for its findings. Save a collection to share your selection of sources.