Embedded control for mobile robotic applications
Series: IEEE series in control systems theory and applications | / edited by Maria Domenica Di BenedettoPublication details: John Wiley 2022 HobokenDescription: xxi, 150pISBN:- 9781119812388
- 629.892 V136e
Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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PK Kelkar Library, IIT Kanpur | General Stacks | 629.892 V136e (Browse shelf(Opens below)) | Available | A186797 |
Browsing PK Kelkar Library, IIT Kanpur shelves, Shelving location: General Stacks, Collection: General Stacks Close shelf browser (Hides shelf browser)
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621.38152 K646f Fundamentals of semiconductor materials and devices | 628.1091732 K143w Water systems analysis, design, and planning urban infrastructure | 629.8 W184c Collaborative fleet maneuvering for multiple autonomous vehicle systems | 629.892 V136e Embedded control for mobile robotic applications | 629.8932 G959s Special robot technology |
An all-in-one resource for designing and implementing embedded control in mobile robotics
In Embedded Control for Mobile Robotic Applications, a distinguished trio of researchers delivers an authoritative and fulsome resource for understanding embedded control and robotics. The book includes coverage of a variety of embedded platforms, their use in controller implementation, stability analyses of designed controllers, and two new approaches for designing embedded controllers.
The authors offer a full chapter on Field-Programmable-Gate-Array (FPGA) architecture development for controller design that is perfect for both practitioners and students taking robotics courses and provide a companion website that includes MATLAB codes for simulation and embedded platform-specific code for mobile robotic applications (in Embedded C and Verilog).
The two approaches discussed by the authors―the top-down methodology and the bottom-up methodology―are of immediate practical utility to both practicing professionals in the field and students studying control applications and mobile robotics. The book also offers:
A thorough introduction to embedded control, including processor, IC, and design technology, as well as a discussion of limitations in embedded control design
Comprehensive explorations of the bottom-up and top-down methods, including computations using CORDIC, interval arithmetic, sliding surface design, and switched nonlinear systems
Practical discussions of generic FPGA architecture design, including Verilog, PID controllers, DC motors and Encoder, and a systematic approach for designing architecture using FSMD
In-depth examinations of discrete-time controller design, including the approximation to discrete-time transfer function and embedded implementation stability
Perfect for practitioners working in embedded control design and control applications in robotics, Embedded Control for Mobile Robotic Applications will also earn a place in the libraries of academicians, researchers, senior undergraduate students, and graduate students in these fields.
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