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Multiscale Modeling of Pedestrian Dynamics (Paperback, Softcover reprint of the original 1st ed. 2014): Emiliano Cristiani,... Multiscale Modeling of Pedestrian Dynamics (Paperback, Softcover reprint of the original 1st ed. 2014)
Emiliano Cristiani, Benedetto Piccoli, Andrea Tosin
R2,368 Discovery Miles 23 680 Ships in 10 - 15 working days

This book presents mathematical models and numerical simulations of crowd dynamics. The core topic is the development of a new multiscale paradigm, which bridges the microscopic and macroscopic scales taking the most from each of them for capturing the relevant clues of complexity of crowds. The background idea is indeed that most of the complex trends exhibited by crowds are due to an intrinsic interplay between individual and collective behaviors. The modeling approach promoted in this book pursues actively this intuition and profits from it for designing general mathematical structures susceptible of application also in fields different from the inspiring original one. The book considers also the two most traditional points of view: the microscopic one, in which pedestrians are tracked individually and the macroscopic one, in which pedestrians are assimilated to a continuum. Selected existing models are critically analyzed. The work is addressed to researchers and graduate students.

Optimal Syntheses for Control Systems on 2-D Manifolds (Paperback, 2004 ed.): Ugo Boscain, Benedetto Piccoli Optimal Syntheses for Control Systems on 2-D Manifolds (Paperback, 2004 ed.)
Ugo Boscain, Benedetto Piccoli
R1,903 Discovery Miles 19 030 Ships in 10 - 15 working days

This monograph is the first devoted to optimal syntheses in control theory and focuses on minimum time on 2-D manifolds. The first chapter outlines book results and examples of applicability. Then a quick introduction to geometric methods in control theory is provided. The following chapters contain a deep analysis of single input systems on 2-D manifolds including classifications of optimal syntheses and feedbacks, their singularities, extremals projection and minimum time singularities. Various extensions and applications are also illustrated. The volume is suitable for a graduate level one-semester course on optimal syntheses theory for mathematicians or engineers with a solid mathematical background.

Multiscale Modeling of Pedestrian Dynamics (Hardcover, 2014 ed.): Emiliano Cristiani, Benedetto Piccoli, Andrea Tosin Multiscale Modeling of Pedestrian Dynamics (Hardcover, 2014 ed.)
Emiliano Cristiani, Benedetto Piccoli, Andrea Tosin
R3,364 R1,741 Discovery Miles 17 410 Save R1,623 (48%) Ships in 12 - 17 working days

This book presents mathematical models and numerical simulations of crowd dynamics. The core topic is the development of a new multiscale paradigm, which bridges the microscopic and macroscopic scales taking the most from each of them for capturing the relevant clues of complexity of crowds. The background idea is indeed that most of the complex trends exhibited by crowds are due to an intrinsic interplay between individual and collective behaviors. The modeling approach promoted in this book pursues actively this intuition and profits from it for designing general mathematical structures susceptible of application also in fields different from the inspiring original one. The book considers also the two most traditional points of view: the microscopic one, in which pedestrians are tracked individually and the macroscopic one, in which pedestrians are assimilated to a continuum. Selected existing models are critically analyzed. The work is addressed to researchers and graduate students.

Control Problems for Conservation Laws with Traffic Applications - Modeling, Analysis, and Numerical Methods (Paperback, 1st... Control Problems for Conservation Laws with Traffic Applications - Modeling, Analysis, and Numerical Methods (Paperback, 1st ed. 2022)
Alexandre Bayen, Maria Laura Delle Monache, Mauro Garavello, Paola Goatin, Benedetto Piccoli
R1,014 Discovery Miles 10 140 Ships in 9 - 15 working days

Conservation and balance laws on networks have been the subject of much research interest given their wide range of applications to real-world processes, particularly traffic flow. This open access monograph is the first to investigate different types of control problems for conservation laws that arise in the modeling of vehicular traffic. Four types of control problems are discussed - boundary, decentralized, distributed, and Lagrangian control - corresponding to, respectively, entrance points and tolls, traffic signals at junctions, variable speed limits, and the use of autonomy and communication. Because conservation laws are strictly connected to Hamilton-Jacobi equations, control of the latter is also considered. An appendix reviewing the general theory of initial-boundary value problems for balance laws is included, as well as an appendix illustrating the main concepts in the theory of conservation laws on networks.

Control Problems for Conservation Laws with Traffic Applications - Modeling, Analysis, and Numerical Methods (Hardcover, 1st... Control Problems for Conservation Laws with Traffic Applications - Modeling, Analysis, and Numerical Methods (Hardcover, 1st ed. 2022)
Alexandre Bayen, Maria Laura Delle Monache, Mauro Garavello, Paola Goatin, Benedetto Piccoli
R1,703 Discovery Miles 17 030 Ships in 10 - 15 working days

Conservation and balance laws on networks have been the subject of much research interest given their wide range of applications to real-world processes, particularly traffic flow. This open access monograph is the first to investigate different types of control problems for conservation laws that arise in the modeling of vehicular traffic. Four types of control problems are discussed - boundary, decentralized, distributed, and Lagrangian control - corresponding to, respectively, entrance points and tolls, traffic signals at junctions, variable speed limits, and the use of autonomy and communication. Because conservation laws are strictly connected to Hamilton-Jacobi equations, control of the latter is also considered. An appendix reviewing the general theory of initial-boundary value problems for balance laws is included, as well as an appendix illustrating the main concepts in the theory of conservation laws on networks.

Modeling, Simulation, and Optimization of Supply Chains - A Continuous Approach (Paperback): Ciro D'Apice, Simone... Modeling, Simulation, and Optimization of Supply Chains - A Continuous Approach (Paperback)
Ciro D'Apice, Simone Gottlich, Michael Herty, Benedetto Piccoli
R2,425 Discovery Miles 24 250 Ships in 12 - 17 working days

Modeling, Simulation, and Optimization of Supply Chains is an up-to-date introduction to the mathematical theory of supply chains, which focuses on those supply chain networks which are described by partial differential equations. The book discusses modeling of complex supply networks as well as their mathematical theory. In addition, the authors investigate the optimization of some of the discussed models and present the analytical and numerical results on optimization problems. Practical examples demonstrate the applicability of the presented approaches. The book provides an introduction to the topic and also explores the more advanced theoretical and numerical background. Graduate students and researchers, who wish to stay abreast of the latest developments in this field, will be interested in this book; it may be used to teach advanced courses on modeling of physical phenomena as well as introductory courses on supply chain theory.

Modelling and Optimisation of Flows on Networks - Cetraro, Italy 2009, Editors: Benedetto Piccoli, Michel Rascle (Paperback,... Modelling and Optimisation of Flows on Networks - Cetraro, Italy 2009, Editors: Benedetto Piccoli, Michel Rascle (Paperback, 2013 ed.)
Luigi Ambrosio, Alberto Bressan, Dirk Helbing, Axel Klar, Enrique Zuazua; Adapted by …
R5,009 Discovery Miles 50 090 Ships in 10 - 15 working days

In recent years flows in networks have attracted the interest of many researchers from different areas, e.g. applied mathematicians, engineers, physicists, economists. The main reason for this ubiquity is the wide and diverse range of applications, such as vehicular traffic, supply chains, blood flow, irrigation channels, data networks and others. This book presents an extensive set of notes by world leaders on the main mathematical techniques used to address such problems, together with investigations into specific applications. The main focus is on partial differential equations in networks, but ordinary differential equations and optimal transport are also included. Moreover, the modeling is completed by analysis, numerics, control and optimization of flows in networks. The book will be a valuable resource for every researcher or student interested in the subject.

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