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- W3101582476 abstract "Security assessment of large-scale, strongly nonlinear power grids containing thousands to millions of interacting components is a computationally expensive task. Targeting at reducing the computational cost, this paper introduces a framework for constructing a robust assessment toolbox that can provide mathematically rigorous certificates for the grids' stability in the presence of variations in power injections, and for the grids' ability to withstand a bunch sources of faults. By this toolbox we can off-line screen a wide range of contingencies or power injection profiles, without reassessing the system stability on a regular basis. In particular, we formulate and solve two novel robust stability and resiliency assessment problems of power grids subject to the uncertainty in equilibrium points and uncertainty in fault-on dynamics. Furthermore, we bring in the quadratic Lyapunov functions approach to transient stability assessment, offering real-time construction of stability/resiliency certificates and real-time stability assessment. The effectiveness of the proposed techniques is numerically illustrated on a number of IEEE test cases." @default.
- W3101582476 created "2020-11-23" @default.
- W3101582476 creator A5018271635 @default.
- W3101582476 creator A5069161114 @default.
- W3101582476 date "2017-03-01" @default.
- W3101582476 modified "2023-10-16" @default.
- W3101582476 title "A Framework for Robust Assessment of Power Grid Stability and Resiliency" @default.
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- W3101582476 doi "https://doi.org/10.1109/tac.2016.2579743" @default.
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