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This authoritative treatment covers theory, optimal estimation and
a range of practical applications. The first book on the subject,
and written by leading researchers, this clear and rigorous work
presents a comprehensive theory for both the stability boundary and
the stability regions of a range of nonlinear dynamical systems
including continuous, discrete, complex, two-time-scale and
non-hyperbolic systems, illustrated with numerical examples. The
authors also propose new concepts of quasi-stability region and of
relevant stability regions and their complete characterisations.
Optimal schemes for estimating stability regions of general
nonlinear dynamical systems are also covered, and finally the
authors describe and explain how the theory is applied in
applications including direct methods for power system transient
stability analysis, nonlinear optimisation for finding a set of
high-quality optimal solutions, stabilisation of nonlinear systems,
ecosystem dynamics, and immunisation problems.
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