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Nonlinear dynamical systems are widely observed in many branches of physics ranging from Celestial Mechanics to Chemistry. In this book, we propose the method of Time-Frequency analysis based on wavelets to study the phase space structure of different nonlinear dynamical systems. We have investigated nonlinear dynamical systems from space dynamics and celestial mechanics. Also, the comparison with other methods such as Lyapunov Characteristic Exponents, Fourier Transform etc. is an important aspect. Different aspects of phase space structure such as resonance transition, stickiness, resonance…mehr

Produktbeschreibung
Nonlinear dynamical systems are widely observed in many branches of physics ranging from Celestial Mechanics to Chemistry. In this book, we propose the method of Time-Frequency analysis based on wavelets to study the phase space structure of different nonlinear dynamical systems. We have investigated nonlinear dynamical systems from space dynamics and celestial mechanics. Also, the comparison with other methods such as Lyapunov Characteristic Exponents, Fourier Transform etc. is an important aspect. Different aspects of phase space structure such as resonance transition, stickiness, resonance trapping are explained using wavelet transform. The algorithm for the computation of Time-Frequency analysis based on wavelets is also explained in detail.
Autorenporträt
M. Vinay Kumar est professeur adjoint à l'Institut de recherche et d'ingénierie énergétique du Gujarat, à Mehsana, en Inde. Ses recherches portent sur les carburants et la combustion, l'énergie solaire et le transfert de chaleur. Il a publié des articles dans des revues indexées par Scopus et lors de conférences internationales sur la combustion et les échangeurs de chaleur. Il est réviseur pour Biofuels, T&F.