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1 Early life and education  





2 Career  





3 Monographs  





4 References  





5 External links  














Albert C.J. Luo







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From Wikipedia, the free encyclopedia
 


Albert C.J. Luo
NationalityAmerican
Alma mater
  • Dalian University of Technology (MEng)
  • University of Manitoba (PhD)
  • Known forNonlinear dynamics
    Scientific career
    FieldsNonlinear dynamics
    Mechanics
    InstitutionsSouthern Illinois University, Edwardsville

    Albert C.J. Luo is a mechanical engineering researcher who has been serving as a distinguished research professor at Southern Illinois University Edwardsville in Illinois since 1998.

    Luo is an internationally recognized[citation needed] scientist in the field of nonlinear dynamics and mechanics. His principal research interests lie in the field of Hamiltonian chaos, nonlinear mechanics, and discontinuous dynamical systems.

    Early life and education

    [edit]

    Luo received a Bachelor of Engineeringinmechanical engineering from the Sichuan University of Science and Engineering in 1984, a Master of Engineeringinengineering mechanics from the Dalian University of Technology in 1990, and a Doctor of Philosophyinapplied mechanics from the University of Manitoba in Canada in 1996.[1]

    From 1996 to 1998, he was an NSERC (National Science and Engineering Research Council of Canada) postdoctoral fellow at the University of California, Berkeley.

    Career

    [edit]

    Since 1998, Luo has worked at Southern Illinois University Edwardsville as an assistant/associate/full/distinguished research professor.

    Dr Luo developed stability and bifurcation theory in nonlinear dynamical systems, and he also established the theoretical frames of discontinuous dynamical systems for many applications in science and engineering, and he developed analytical techniques that is very efficient to achieve periodic motions to chaos analytically. Since the 18th century, one has extensively used techniques such as perturbation methods to obtain approximate analytical solutions of periodic motions in nonlinear systems. Towards analytical chaos in nonlinear systems systematically presents an analytical approach to determine periodic flows to chaos or quasi-periodic flows in nonlinear dynamical systems with/without time-delay. The presented analytical techniques provide a better understanding of regularity and complexity of periodic motions to chaos in nonlinear dynamical systems. Dr Luo developed a dynamical system synchronization theory based on the local singularity theory of discontinuous dynamical systems. Dr. Luo developed the implicit mapping dynamics for semi-analytical solutions of periodic motions to chaos in nonlinear systems, which are from symbolic dynamics to mapping dynamics in nonlinear dynamical systems. Further, one can measure chaos determinatistically instead of stochastically. The quadratic dynamical systems presented by Dr. Luo provides a way to solve the Hilbert's 16th problems. Such a theory presents the bifurcations of the 1-dimensional flows in nonlinear dynamical systems. The infinite-equilibriums are the switching bifurcations of the two sets of equilibriums. Techniques can be implemented and applied to science and engineering.

    His major contributions on nonlinear dynamical systems are:

    In addition, Luo developed accurate theories for nonlinear deformable-body dynamics, machine tool dynamics and others:

    He has published over 400 peer-reviewed journal and conference papers. Luo was an editor for the Journal Communications in Nonlinear Science and Numerical simulation, and Luo is editors for the book series on Nonlinear Systems and Complexity (Springer), and Nonlinear Physical Science (Higher Education Press).

    Monographs

    [edit]

    References

    [edit]
    1. ^ "Dr. Albert Luo - Professor - Mechanical & Mechatronics Engineering -SIUE". www.siue.edu. Retrieved 2023-12-17.
  • ^ Luo, Albert C.J. (2023). Two-Dimensional Quadratic Nonlinear Systems Volume I: Univariate Vector Fields (Nonlinear Physical Science).
  • ^ Guo, Yu; Luo, Albert C. J. (2023). Periodic Motions to Chaos in a Spring-Pendulum System (Synthesis Lectures on Mechanical Engineering).
  • ^ Luo, Albert C.J.; Guo, Chuan (2022). Nonlinear Vibration Reduction:An Electromagnetically Tuned Mass Damper System (Synthesis Lectures on Mechanical Engineering).
  • ^ Luo, Albert C.J. (2021). Two-Dimensional Quadratic Nonlinear Systems Volume II: Bivariate Vector Fields (Nonlinear Physical Science).
  • ^ Luo, Albert C.J. (2021). Polynomial Functional Dynamical Systems (Synthesis Lectures on Mechanical Engineering).
  • ^ Luo, Albert C.J.; Guo, Siyu (2020). Towards Analytical Chaotic Evolutions in Brusselators (Synthesis Lectures on Mechanical Engineering).
  • ^ Luo, Albert C.J. (2020). Bifurcation Dynamics in Polynomial Discrete Systems (Nonlinear Physical Science).
  • ^ Luo, Albert C.J. (2020). Bifurcation and Stability in Nonlinear Discrete Systems (Nonlinear Physical Science).
  • ^ Xing, Siyuan; Luo, Albert C. J. (2020). Sequential Bifurcation Trees to Chaos in Nonlinear Time-Delay Systems (Synthesis Lectures on Mechanical Engineering).
  • ^ Guo, Yu; Luo, Albert C. J. (2020). Bifurcation Dynamics of a Damped Parametric Pendulum (Synthesis Lectures on Mechanical Engineering).
  • ^ Luo, Albert C.J. (2019). Bifurcation and Stability in Nonlinear Dynamical Systems.
  • ^ Luo, Albert C.J. (2017). Resonance and Bifurcation to Chaos in Pendulum (Nonlinear Physical Science). doi:10.1142/10752. ISBN 978-981-323-167-2.
  • ^ Luo, Albert C.J.; Yu, Bo (2017). Galloping Instability to Chaos of Cables (Nonlinear Physical Science).
  • ^ Luo, Albert C.J. (2016). Periodic Flows to Chaos in Time-delay Systems (Nonlinear Systems and Complexity). Nonlinear Systems and Complexity. Vol. 16. doi:10.1007/978-3-319-42664-8. ISBN 978-3-319-42663-1.
  • ^ Luo, Albert C.J. (2016). Memorized Discrete Systems and Time-delay.
  • ^ Luo, Albert C.J. (2015). Discretization and Implicit Mapping Dynamics.
  • ^ Luo, Albert; O'Connor, Dennis M. (2015). System dynamics with interaction discontinuity.
  • ^ Luo, Albert C.J. (2014). Toward Analytical Chaos in Nonlinear Systems.
  • ^ Luo, Albert C.J. (2014). Analytical Routes to Chaos in Nonlinear Engineering.
  • ^ Luo, Albert; Guo, Yu (2013). Vibro-impact Dynamics.
  • ^ Luo, Albert C.J. (2013). Dynamical System Synchronization (Nonlinear Systems and Complexity).
  • ^ Luo, Albert C.J. (2012). Regularity and Complexity in Dynamical Systems (Nonlinear Systems and Complexity).
  • ^ Luo, Albert C.J. (2012). Continuous Dynamical Systems (Mathematical Methods and Modeling).
  • ^ Luo, Albert C.J. (2012). Discrete and Switching Dynamical Systems (Mathematical Methods and Modeling).
  • ^ Luo, Albert C.J. (2012). Discontinuous Dynamical Systems.
  • ^ Luo, Albert C.J. (2011). Machine Tool Vibrations and Cutting Dynamics.
  • ^ Luo, Albert C.J. (2010). Nonlinear Deformable-body Dynamics (Nonlinear Physical Science).
  • ^ Luo, Albert C.J. (2009). Nonlinear Deformable-body Dynamics (Nonlinear Physical Science).
  • ^ Luo, Albert C.J. (2008). Global Transversality, Resonance and Chaotic Dynamics. Bibcode:2008gtrc.book.....L. doi:10.1142/6584. ISBN 978-981-277-111-7.
  • ^ Luo, Albert C.J. (2006). Singularity and Dynamics on Discontinuous Vector Fields.
  • [edit]
    Retrieved from "https://en.wikipedia.org/w/index.php?title=Albert_C.J._Luo&oldid=1213557065"

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    This page was last edited on 13 March 2024, at 19:22 (UTC).

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