NONLINEAR PHOTONIC CRYSTALS<SV>2003 3-540-43900-5
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Linear and Nonlinear Optimization using Spreadsheets (1版)
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【簡介】
The use of spreadsheets to obtain solutions to a diverse array of examples offers a reader-friendly way of addressing a topic (optimization) that can sometimes be viewed as intimidating. Many people are readily familiar with spreadsheets and how they work, yet are apt to be unaware of the incredible power of Excel for solving some rather complex optimization problems. A major goal of the book is to sell readers on why it is so important to understand optimization, and a large collection of examples for a wide range of business decision making areas (e.g., production planning and scheduling, workforce planning and scheduling, location and supply chain distribution, location of emergency services, assembly line balancing, vehicle routing, project scheduling, revenue management, advertising, product design, payout schedules, productivity measurement, investment portfolio management, sports league scheduling, ranking models, etc.) affords a practical mechanism for achieving that goal. Another important contribution of the book is that it provides coverage of the mechanics of some common yet sophisticated statistical methods (regression, logistic regression, discriminant analysis, factor analysis, and cluster analysis), which are often opaque to many users of such methods.
【目錄】
Introduction
Optimization Examples in Prescriptive Analytics:
Production Planning
Workforce Planning
Continuous Facility Location
Discrete Facility Location
Routing Problems
Facility Layout
Project Scheduling
Marketing
Finance
Sports
Optimization Examples for Multivariate Statistical Methods Used in Predictive and Descriptive Analytics:
Regression
Logistic Regression
Linear Discriminant Analysis
Factor Analysis
Cluster Analysis
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Nonlinear Fokker-Planck Flows and their Probabilistic Counterparts
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Introduction to Nonlinear Control: Stability, Control Design, and Estimation 2023
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An introductory text on the analysis, control, and estimation of nonlinear systems, appropriate for advanced undergraduate and graduate students
This self-contained and accessible introduction to the concepts and techniques used for nonlinear feedback systems offers a holistic treatment suitable for use in both advanced undergraduate and graduate courses; students need only some familiarity with differential equations and linear algebra to understand the material presented. The text begins with an overview of stability and Lyapunov methods for nonlinear systems, with Lyapunov’s second method revisited throughout the book as a connective thread. Other introductory chapters cover linear systems, frequency domain methods, and discrete-time systems. Building on this background material, the book provides a broad introduction to the basic ideas underpinning major themes of research in nonlinear control, including input-to-state stability, sliding mode control, adaptive control, feedback linearization, and robust output regulation. Chapters also cover observer design and estimation for nonlinear systems. The text is notable for its coverage of nonlinear model predictive control and its introduction to the use of linear matrix inequalities and semidefinite programming coupled with their use in modern antiwindup designs.
• First text on nonlinear control appropriate for undergraduates
• Suitable both for students preparing for rigorous graduate study and for those entering technical fields outside of academia
• Unique in its coverage of recent research topics
• Pedagogical features including extensive chapter summaries, examples, and appendixes with definitions, results, and MATLAB applications
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NONLINEAR WAVES AND INVERSE SCATTERING TRANSFORM
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"Nonlinear waves are essential phenomena in scientific and engineering disciplines. The features of nonlinear waves are usually described by solutions to nonlinear partial differential equations (NLPDEs). This book was prepared to familiarize students with nonlinear waves and methods of solving NLPDEs, which will enable them to expand their studies into related areas. The selection of topics and the focus given to each provide essential materials for a lecturer teaching a nonlinear wave course.
Chapter 1 introduces ""mode"" types in nonlinear systems as well as Bäcklund transform, an indispensable technique to solve generic NLPDEs for stationary solutions. Chapters 2 and 3 are devoted to the derivation and solution characterization of three generic nonlinear equations: nonlinear Schrödinger equation, Korteweg–de Vries (KdV) equation, and Burgers equation. Chapter 4 is devoted to the inverse scattering transform (IST), addressing the initial value problems of a group of NLPDEs. In Chapter 5, derivations and proofs of the IST formulas are presented. Steps for applying IST to solve NLPDEs for solitary solutions are illustrated in Chapter 6.
Sample Chapter(s)
Preface
Contents:
Nonlinear Waves
Formulation of Nonlinear Wave Equations in Plasma
Characteristics of Nonlinear Waves
Inverse Scattering Transform (IST)
Basis of Inverse Scattering Transform
Solitary Waves
Readership: Graduate and senior graduate courses on nonlinear waves, also relevant as a reference book for researchers, research labs and academic institutes."
原價:
2512
售價:
2386
現省:
126元
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