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Advances in Global Optimization (Hardcover, 2015 ed.): David Gao, Ning Ruan, Wenxun Xing Advances in Global Optimization (Hardcover, 2015 ed.)
David Gao, Ning Ruan, Wenxun Xing
R2,764 Discovery Miles 27 640 Ships in 18 - 22 working days

This proceedings volume addresses advances in global optimization a multidisciplinary research field that deals with the analysis, characterization and computation of global minima and/or maxima of nonlinear, non-convex and nonsmooth functions in continuous or discrete forms. The volume contains selected papers from the third biannual World Congress on Global Optimization in Engineering & Science (WCGO), held in the Yellow Mountains, Anhui, China on July 8-12, 2013. The papers fall into eight topical sections: mathematical programming; combinatorial optimization; duality theory; topology optimization; variational inequalities and complementarity problems; numerical optimization; stochastic models and simulation and complex simulation and supply chain analysis."

Canonical Duality Theory - Unified Methodology for Multidisciplinary Study (Hardcover, 1st ed. 2017): David Yang Gao, Vittorio... Canonical Duality Theory - Unified Methodology for Multidisciplinary Study (Hardcover, 1st ed. 2017)
David Yang Gao, Vittorio Latorre, Ning Ruan
R3,496 Discovery Miles 34 960 Ships in 10 - 15 working days

This book on canonical duality theory provides a comprehensive review of its philosophical origin, physics foundation, and mathematical statements in both finite- and infinite-dimensional spaces. A ground-breaking methodological theory, canonical duality theory can be used for modeling complex systems within a unified framework and for solving a large class of challenging problems in multidisciplinary fields in engineering, mathematics, and the sciences. This volume places a particular emphasis on canonical duality theory's role in bridging the gap between non-convex analysis/mechanics and global optimization. With 18 total chapters written by experts in their fields, this volume provides a nonconventional theory for unified understanding of the fundamental difficulties in large deformation mechanics, bifurcation/chaos in nonlinear science, and the NP-hard problems in global optimization. Additionally, readers will find a unified methodology and powerful algorithms for solving challenging problems in complex systems with real-world applications in non-convex analysis, non-monotone variational inequalities, integer programming, topology optimization, post-buckling of large deformed structures, etc. Researchers and graduate students will find explanation and potential applications in multidisciplinary fields.

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