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The stability of systems with distributed parameters and lumped forces

✍ Scribed by F.D. Bairamov; M.Yu. Safronov


Publisher
Elsevier Science
Year
2002
Tongue
English
Weight
266 KB
Volume
66
Category
Article
ISSN
0021-8928

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✦ Synopsis


The Lyapunov-function method is used to investigate the stability of systems with distributed parameters and lumped forces described by linear partial differential equations (for example, elastic structures with lumped masses, dampers, elastic aircraft with rigid control rudders, etc.). By introducing additional variables, the initial equations of high order are represented by a system of evolution equations and constraint equations, which are first-order partial differential equations. At the points where the lumped forces are applied, certain phase functions experience a discontinuity of the first kind and matching conditions are satisfied. A method for stability investigation is developed for these systems. The change to first-order equations helps to construct the Lyapunov functionals. As an example, the stability of torsional vibrations of an elastic aerofoil with a suspended engine is considered.


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