Simulation Engineering : Build Better Embedded Systems Faster /: Build Better Embedded Systems Faster. (2001)
- Record Type:
- Book
- Title:
- Simulation Engineering : Build Better Embedded Systems Faster /: Build Better Embedded Systems Faster. (2001)
- Main Title:
- Simulation Engineering : Build Better Embedded Systems Faster
- Further Information:
- Note: Jim Ledin.
- Authors:
- Ledin, Jim
- Contents:
- Cover; Half Title; Title Page; Copyright Page; Dedication Page; Table of Contents; Preface; Chapter 1: Simulation Engineering; 1.1 Introduction; 1.2 Embedded Systems; 1.3 Simulation; 1.4 Complex Products; 1.5 Short Development Cycle; 1.6 Improved Quality; 1. 7 Lower Total Cost; 1.8 Resistance Against Simulation; 1.9 Simulation Planning; 1.9.1 The Waterfall Development Model; 1.9.2 The Iterative Development Model; 1.10 Source Code and Examples; 1.10.1 Dynamic System Simulation Library; 1.10.2 Simulink Examples; 1.11 Chapter Overview; Chapter 2: Modeling Dynamic Systems; 2.1 Introduction. 2.2 Dynamic Systems2.2.1 Continuous-Time Systems; 2.2.2 Discrete-Time Systems; 2.3 Mathematical Modeling; 2.3.1 Level of Model Complexity; 2.4 Modeling Methods; 2.4.1 Physics-Based Modeling: A Simple Pendulum Example; 2.4.2 Linearization of Nonlinear Models; 2.4.3 Empirical Modeling; 2.5 Rigid Body Motion in Three-Dimensional Space; 2.5.1 Two-Dimensional Motion; 2.5.2 Three-Dimensional Motion; 2.6 Stochastic Systems; Exercises; Chapter 3: Non-Real-Time Simulation; 3.1 Introduction; 3.2 The User Interface; 3.3 Model Issues; 3.4 Configuration Management; 3.5 Integration Algorithms. 3.5.1 Euler Integration Algorithms3.5.2 Higher Order Implicit Integration Algorithms; 3.5.3 Adams-Bashforth Integration Algorithms; 3.5.4 Runge-Kutta Integration Algorithms; 3.5.5 Variable Step Size Integration Algorithms; 3.5.6 Integration Errors; 3.5.7 Integration Algorithm Stability; 3.5.8 Stiff ystems; 3.5.9Cover; Half Title; Title Page; Copyright Page; Dedication Page; Table of Contents; Preface; Chapter 1: Simulation Engineering; 1.1 Introduction; 1.2 Embedded Systems; 1.3 Simulation; 1.4 Complex Products; 1.5 Short Development Cycle; 1.6 Improved Quality; 1. 7 Lower Total Cost; 1.8 Resistance Against Simulation; 1.9 Simulation Planning; 1.9.1 The Waterfall Development Model; 1.9.2 The Iterative Development Model; 1.10 Source Code and Examples; 1.10.1 Dynamic System Simulation Library; 1.10.2 Simulink Examples; 1.11 Chapter Overview; Chapter 2: Modeling Dynamic Systems; 2.1 Introduction. 2.2 Dynamic Systems2.2.1 Continuous-Time Systems; 2.2.2 Discrete-Time Systems; 2.3 Mathematical Modeling; 2.3.1 Level of Model Complexity; 2.4 Modeling Methods; 2.4.1 Physics-Based Modeling: A Simple Pendulum Example; 2.4.2 Linearization of Nonlinear Models; 2.4.3 Empirical Modeling; 2.5 Rigid Body Motion in Three-Dimensional Space; 2.5.1 Two-Dimensional Motion; 2.5.2 Three-Dimensional Motion; 2.6 Stochastic Systems; Exercises; Chapter 3: Non-Real-Time Simulation; 3.1 Introduction; 3.2 The User Interface; 3.3 Model Issues; 3.4 Configuration Management; 3.5 Integration Algorithms. 3.5.1 Euler Integration Algorithms3.5.2 Higher Order Implicit Integration Algorithms; 3.5.3 Adams-Bashforth Integration Algorithms; 3.5.4 Runge-Kutta Integration Algorithms; 3.5.5 Variable Step Size Integration Algorithms; 3.5.6 Integration Errors; 3.5.7 Integration Algorithm Stability; 3.5.8 Stiff ystems; 3.5.9 Combined Discrete-Continuous Systems; 3.6 Initial Conditions, Driving Signals, and Stopping Conditions; 3.7 Data Collection and Storage; Exercises; Chapter 4: HIL Simulation; 4.1 Introduction; 4.2 HIL Simulation Design; 4.3 Real-Time Simulation; 4.4 HIL Simulation Implementation. 4.4.1 Non-Real-Time Operations4.4.2 Short Integration Step Times; 4.4.3 Slow Model Algorithms; 4.4.4 Slow Simulation Processor; 4.5 Analog I/O Error Sources; 4.5.1 Aliasing; 4.5.2 DAC Zero-Order Hold; 4.6 Computing Hardware and I/O Devices; 4.7 HIL Simulation Software Structure; 4.8 Multiframing; 4.8.1 Multiframing in a Single Task with No Fast-Frame I/O; 4.8.2 Multiframing in a Single Task with Fast-Frame I/O; 4.8.3 Multiframing Using Multiple Tasks; 4.9 Integrating and Debugging HIL Simulations; 4.10 When to Use HIL Simulation; Exercises; Chapter 5: Distributed Simulation; 5.1 Introduction. 5.2 TCP/IP5.2.1 TCP/IP Transport Protocols; 5.3 Protocols for Distributed Simulation; 5.4 Communication Latency and Jitter; 5.5 The HLA Standard; 5.6 Internet Game Protocols; 5.7 Real-time Simulation Protocol; 5.7.1 RTSP Example Federation; Exercises; Chapter 6: Data Visualization and Analysis; 6.1 Introduction; 6.2 Immediate Displays; 6.3 Plotting Tools; 6.4 Animation; 6.5 Automated Analysis and Reporting; 6.6 Data Analysis Techniques; 6.6.1 Example Simulation; 6.6.2 Graphical Techniques; 6.6.3 Theil Inequality Coefficient; 6.6.4 Example Application of the Theil Inequality Coefficient. … (more)
- Publisher Details:
- Lawrence, KS : CMP Books
- Publication Date:
- 2001
- Extent:
- 1 online resource
- Subjects:
- 004.16
Embedded computer systems -- Simulation methods
Embedded computer systems -- Testing
COMPUTERS -- Computer Literacy
COMPUTERS -- Computer Science
COMPUTERS -- Data Processing
COMPUTERS -- Hardware -- General
COMPUTERS -- Information Technology
COMPUTERS -- Machine Theory
COMPUTERS -- Reference
Embedded computer systems -- Testing
Electronic books - Languages:
- English
- ISBNs:
- 9781482280722
1482280728 - Related ISBNs:
- 9781138436411
9781578200801 - Notes:
- Note: Includes bibliographical references and index.
Note: Online resource; title from PDF title page (EBSCO, viewed March 27, 2018). - Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.313815
- Ingest File:
- 01_244.xml