Robust Stability Assessment in the Presence of Load Dynamics Uncertainty
Hung D. Nguyen, Konstantin Turitsyn

TL;DR
This paper introduces a mathematical robust stability criterion that guarantees small-signal stability of power system operating points despite load dynamic uncertainties, enhancing security assessment methods.
Contribution
The paper presents a novel robust stability criterion for small-signal stability assessment that accounts for load dynamic uncertainties, enabling more reliable security evaluations.
Findings
The criterion guarantees stability under load response variability.
It can identify operating regions safe from Hopf bifurcation.
Potential integration into security assessment tools.
Abstract
Dynamic response of loads has a significant effect on system stability and directly determines the stability margin of the operating point. Inherent uncertainty and natural variability of load models make the stability assessment especially difficult and may compromise the security of the system. We propose a novel mathematical "robust stability" criterion for the assessment of small-signal stability of operating points. Whenever the criterion is satisfied for a given operating point, it provides mathematical guarantees that the operating point will be stable with respect to small disturbances for any dynamic response of the loads. The criterion can be naturally used for identification of operating regions secure from the occurrence of Hopf bifurcation. Several possible applications of the criterion are discussed, most importantly the concept of Robust Stability Assessment (RSA) that…
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Taxonomy
TopicsPower System Optimization and Stability · Smart Grid Security and Resilience · Power System Reliability and Maintenance
