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- W2155142008 abstract "In this paper we focus on the design of H∞ observers, using Linear Matrix Inequalities (LMIs), to estimate the dynamic state of a power system over a wide-area by using a limited set of sensors. We confine our attention to the electromechanical (or swing) dynamics of a power system, but our approach can be extended to also monitor the voltage dynamics in the system. A Differential Algebraic Equation (DAE) model is used to describe the swing models that we consider in this paper. At first, we focus on the design of a singular observer using the mixed design approach for a DAE-swing model in a setting where unknown inputs and noisy measurements are present. A design for a 9-bus power system is discussed. Lastly, we investigate the design of singular H∞ estimators that are robust to parametric model uncertainties associated with the parameters featured in DAE-swing models (e.g., transmission line impedances, generator inertias, and the damping coefficients of the generator shafts). We illustrate the result of this latter investigation on a 3-bus power system." @default.
- W2155142008 created "2016-06-24" @default.
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- W2155142008 date "2006-12-01" @default.
- W2155142008 modified "2023-10-14" @default.
- W2155142008 title "Design of H<sub>∞</sub> Observers for Singular Electromechanical Dynamics in Power Networks using LMIs" @default.
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- W2155142008 doi "https://doi.org/10.1109/cdc.2006.377609" @default.
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