Контроллер Akasa Vegas RGB PCI Slot Control Card AK-RLD-02

Контроллер Akasa Vegas RGB PCI Slot Control Card AK-RLD-02

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Li Han-Xiong System Design and Control Integration for Advanced Manufacturing

Li Han-Xiong System Design and Control Integration for Advanced Manufacturing

Most existing robust design books address design for static systems, or achieve robust design from experimental data via the Taguchi method. Little work considers model information for robust design particularly for the dynamic system. This book covers robust design for both static and dynamic systems using the nominal model information or the hybrid model/data information, and also integrates design with control under a large operating region. This design can handle strong nonlinearity and more uncertainties from model and parameters.

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В. М. Перельмутер Пакеты расширения Matlab. Control System Toolbox и Robust Control Toolbox

В. М. Перельмутер Пакеты расширения Matlab. Control System Toolbox и Robust Control Toolbox

В книге описаны пакеты расширения Control System Toolbox и Robust Control Toolbox системы MATLAB 7, предназначенные для анализа и синтеза систем управления. Коротко изложены основные теоретические положения, принятые при разработке указанных пакетов расширения. Приведены многочисленные примеры использования этих пакетов расширения для решения конкретных задач с подробным пояснением выполняемых операций. Показаны возможности совместного использования пакетов Control System Toolbox и Robust Control Toolbox с пакетом Simulink, что увеличивает возможности всех трех указанных пакетов расширения. Книга может быть использована студентами вузов соответствующих специальностей при курсовом и дипломном проектировании, инженерами и научными работниками при создании новых и исследованиях уже разработанных систем автоматического управления. Книга рассчитана как на начинающих, так и на достаточно опытных пользователей.

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Подвесная люстра Ideal Lux ENTRY SP3 SMALL

Подвесная люстра Ideal Lux ENTRY SP3 SMALL

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Ashish Tewari Advanced Control of Aircraft, Spacecraft and Rockets

Ashish Tewari Advanced Control of Aircraft, Spacecraft and Rockets

Advanced Control of Aircraft, Spacecraft and Rockets introduces the reader to the concepts of modern control theory applied to the design and analysis of general flight control systems in a concise and mathematically rigorous style. It presents a comprehensive treatment of both atmospheric and space flight control systems including aircraft, rockets (missiles and launch vehicles), entry vehicles and spacecraft (both orbital and attitude control). The broad coverage of topics emphasizes the synergies among the various flight control systems and attempts to show their evolution from the same set of physical principles as well as their design and analysis by similar mathematical tools. In addition, this book presents state-of-art control system design methods – including multivariable, optimal, robust, digital and nonlinear strategies – as applied to modern flight control systems. Advanced Control of Aircraft, Spacecraft and Rockets features worked examples and problems at the end of each chapter as well as a number of MATLAB / Simulink examples housed on an accompanying website at http://home.iitk.ac.in/~ashtew that are realistic and representative of the state-of-the-art in flight control.

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Guillaume Sandou Metaheuristic Optimization for the Design of Automatic Control Laws

Guillaume Sandou Metaheuristic Optimization for the Design of Automatic Control Laws

The classic approach in Automatic Control relies on the use of simplified models of the systems and reformulations of the specifications. In this framework, the control law can be computed using deterministic algorithms. However, this approach fails when the system is too complex for its model to be sufficiently simplified, when the designer has many constraints to take into account, or when the goal is not only to design a control but also to optimize it. This book presents a new trend in Automatic Control with the use of metaheuristic algorithms. These kinds of algorithm can optimize any criterion and constraint, and therefore do not need such simplifications and reformulations. The first chapter outlines the author’s main motivations for the approach which he proposes, and presents the advantages which it offers. In Chapter 2, he deals with the problem of system identification. The third and fourth chapters are the core of the book where the design and optimization of control law, using the metaheuristic method (particle swarm optimization), is given. The proposed approach is presented along with real-life experiments, proving the efficiency of the methodology. Finally, in Chapter 5, the author proposes solving the problem of predictive control of hybrid systems. Contents 1. Introduction and Motivations. 2. Symbolic Regression. 3. PID Design Using Particle Swarm Optimization. 4. Tuning and Optimization of H-infinity Control Laws. 5. Predictive Control of Hybrid Systems. About the Authors Guillaume Sandou is Professor in the Automatic Department of Supélec, in Gif Sur Yvette, France. He has had 12 books, 8 journal papers and 1 patent published, and has written papers for 32 international conferences.His main research interests include modeling, optimization and control of industrial systems; optimization and metaheuristics for Automatic Control; and constrained control.

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Gerald Cook Mobile Robots. Navigation, Control and Remote Sensing

Gerald Cook Mobile Robots. Navigation, Control and Remote Sensing

An important feature of this book is the particular combination of topics included. These are (1) control, (2) navigation and (3) remote sensing, all with application to mobile robots. Much of the material is readily extended to any type ground vehicle. In the controls area, robot steering is the issue. Both linear and nonlinear models are treated. Various control schemes are utilized, and through these applications the reader is introduced to methods such as: (1) Linearization and use of linear control design methods for control about a reference trajectory, (2) Use of Lyapunov stability theory for nonlinear control design, (3) Derivation of optimal control strategies via Pontryagin’s maximum principle, (4) Derivation of a local coordinate system which is fundamental for the steering of vehicles along a path never before traversed. This local coordinate system has application regardless of the control design methods utilized. In the navigation area, various coordinate systems are introduced, and the transformations among them are derived. (1) The Global Positioning System (GPS) is introduced and described in significant detail. (2) Also introduced and discussed are inertial navigation systems (INS). These two methods are treated in terms of their ability to provide vehicle position as well as attitude. A preceding chapter is devoted to coordinate rotations and transformations since they play an important role in the understanding of this body of theory.

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Джойстик Logitech G Saitek X52 Flight Control System 945-000006

Джойстик Logitech G Saitek X52 Flight Control System 945-000006

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Клавиатура Satechi Bluetooth Wireless Smart Keypad

Клавиатура Satechi Bluetooth Wireless Smart Keypad

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