Cyber-Physical Systems

Book description

This book supplies comprehensive coverage of the principles and design of CPSs. It addresses the many challenges that must be overcome and outlines a roadmap of how to get there.

Table of contents

  1. Front Cover (1/2)
  2. Front Cover (2/2)
  3. Contents
  4. Preface
  5. Author
  6. Contributors (1/2)
  7. Contributors (2/2)
  8. Chapter 1: Cyber-Physical Systems Concepts (1/3)
  9. Chapter 1: Cyber-Physical Systems Concepts (2/3)
  10. Chapter 1: Cyber-Physical Systems Concepts (3/3)
  11. Chapter 2: Cyber-Physical Systems: Design Challenges (1/4)
  12. Chapter 2: Cyber-Physical Systems: Design Challenges (2/4)
  13. Chapter 2: Cyber-Physical Systems: Design Challenges (3/4)
  14. Chapter 2: Cyber-Physical Systems: Design Challenges (4/4)
  15. Chapter 3: Mobile Cyber-Physical Systems (1/3)
  16. Chapter 3: Mobile Cyber-Physical Systems (2/3)
  17. Chapter 3: Mobile Cyber-Physical Systems (3/3)
  18. Chapter 4: Cyber-Physical System Controls (1/3)
  19. Chapter 4: Cyber-Physical System Controls (2/3)
  20. Chapter 4: Cyber-Physical System Controls (3/3)
  21. Chapter 5: Apprenticeship Learning for Cyber-Physical System Intelligence (1/3)
  22. Chapter 5: Apprenticeship Learning for Cyber-Physical System Intelligence (2/3)
  23. Chapter 5: Apprenticeship Learning for Cyber-Physical System Intelligence (3/3)
  24. Chapter 6: Application of HDP-HMM in Recognition of Dynamic Hand Gestures (1/3)
  25. Chapter 6: Application of HDP-HMM in Recognition of Dynamic Hand Gestures (2/3)
  26. Chapter 6: Application of HDP-HMM in Recognition of Dynamic Hand Gestures (3/3)
  27. Chapter 7: On Modeling Issues in Cyber-Physical Systems (1/3)
  28. Chapter 7: On Modeling Issues in Cyber-Physical Systems (2/3)
  29. Chapter 7: On Modeling Issues in Cyber-Physical Systems (3/3)
  30. Chapter 8: Cyber-Physical System Modeling on Cognitive Unmanned Aerial Vehicle Communications (1/5)
  31. Chapter 8: Cyber-Physical System Modeling on Cognitive Unmanned Aerial Vehicle Communications (2/5)
  32. Chapter 8: Cyber-Physical System Modeling on Cognitive Unmanned Aerial Vehicle Communications (3/5)
  33. Chapter 8: Cyber-Physical System Modeling on Cognitive Unmanned Aerial Vehicle Communications (4/5)
  34. Chapter 8: Cyber-Physical System Modeling on Cognitive Unmanned Aerial Vehicle Communications (5/5)
  35. Chapter 9: Cyber-Physical System Security (1/2)
  36. Chapter 9: Cyber-Physical System Security (2/2)
  37. Chapter 10: Cyber-Physical System Security—Smart Grid Example (1/4)
  38. Chapter 10: Cyber-Physical System Security—Smart Grid Example (2/4)
  39. Chapter 10: Cyber-Physical System Security—Smart Grid Example (3/4)
  40. Chapter 10: Cyber-Physical System Security—Smart Grid Example (4/4)
  41. Chapter 11: Wireless Sensor and Actuator Networks for Cyber-Physical System Applications (1/3)
  42. Chapter 11: Wireless Sensor and Actuator Networks for Cyber-Physical System Applications (2/3)
  43. Chapter 11: Wireless Sensor and Actuator Networks for Cyber-Physical System Applications (3/3)
  44. Chapter 12: Community Sensing (1/4)
  45. Chapter 12: Community Sensing (2/4)
  46. Chapter 12: Community Sensing (3/4)
  47. Chapter 12: Community Sensing (4/4)
  48. Chapter 13: Wireless Embedded/Implanted Microsystems: Architecture and Security (1/3)
  49. Chapter 13: Wireless Embedded/Implanted Microsystems: Architecture and Security (2/3)
  50. Chapter 13: Wireless Embedded/Implanted Microsystems: Architecture and Security (3/3)
  51. Chapter 14: The Application of Machine Learning in Monitoring Physical Activity with Shoe Sensors (1/4)
  52. Chapter 14: The Application of Machine Learning in Monitoring Physical Activity with Shoe Sensors (2/4)
  53. Chapter 14: The Application of Machine Learning in Monitoring Physical Activity with Shoe Sensors (3/4)
  54. Chapter 14: The Application of Machine Learning in Monitoring Physical Activity with Shoe Sensors (4/4)
  55. Chapter 15: Energy Efficient Building (1/4)
  56. Chapter 15: Energy Efficient Building (2/4)
  57. Chapter 15: Energy Efficient Building (3/4)
  58. Chapter 15: Energy Efficient Building (4/4)
  59. Chapter 16: Cyber-Physical System for Smart Grid Applications (1/4)
  60. Chapter 16: Cyber-Physical System for Smart Grid Applications (2/4)
  61. Chapter 16: Cyber-Physical System for Smart Grid Applications (3/4)
  62. Chapter 16: Cyber-Physical System for Smart Grid Applications (4/4)
  63. Chapter 17: Cyber-Physical System for Transportation Applications (1/3)
  64. Chapter 17: Cyber-Physical System for Transportation Applications (2/3)
  65. Chapter 17: Cyber-Physical System for Transportation Applications (3/3)
  66. Chapter 18: Video Communications in Unmanned Aerial Vehicle-Based Cyber-Physical Systems (1/6)
  67. Chapter 18: Video Communications in Unmanned Aerial Vehicle-Based Cyber-Physical Systems (2/6)
  68. Chapter 18: Video Communications in Unmanned Aerial Vehicle-Based Cyber-Physical Systems (3/6)
  69. Chapter 18: Video Communications in Unmanned Aerial Vehicle-Based Cyber-Physical Systems (4/6)
  70. Chapter 18: Video Communications in Unmanned Aerial Vehicle-Based Cyber-Physical Systems (5/6)
  71. Chapter 18: Video Communications in Unmanned Aerial Vehicle-Based Cyber-Physical Systems (6/6)
  72. Chapter 19: Cyber-Physical Medication Systems and Devices to Improve Health Care (1/4)
  73. Chapter 19: Cyber-Physical Medication Systems and Devices to Improve Health Care (2/4)
  74. Chapter 19: Cyber-Physical Medication Systems and Devices to Improve Health Care (3/4)
  75. Chapter 19: Cyber-Physical Medication Systems and Devices to Improve Health Care (4/4)
  76. Chapter 20: Augmented Cognition for Intelligent Rehabilitation (1/6)
  77. Chapter 20: Augmented Cognition for Intelligent Rehabilitation (2/6)
  78. Chapter 20: Augmented Cognition for Intelligent Rehabilitation (3/6)
  79. Chapter 20: Augmented Cognition for Intelligent Rehabilitation (4/6)
  80. Chapter 20: Augmented Cognition for Intelligent Rehabilitation (5/6)
  81. Chapter 20: Augmented Cognition for Intelligent Rehabilitation (6/6)
  82. Chapter 21: Using Wiimote and Kinect for Cognitive Rehabilitation: Toward an Intelligent Sensor/Image Signal Processing (1/4)
  83. Chapter 21: Using Wiimote and Kinect for Cognitive Rehabilitation: Toward an Intelligent Sensor/Image Signal Processing (2/4)
  84. Chapter 21: Using Wiimote and Kinect for Cognitive Rehabilitation: Toward an Intelligent Sensor/Image Signal Processing (3/4)
  85. Chapter 21: Using Wiimote and Kinect for Cognitive Rehabilitation: Toward an Intelligent Sensor/Image Signal Processing (4/4)
  86. Chapter 22: Functional Near-Infrared Spectroscopy for Autorehabilitation Cyber-Physical Systems: Toward Intelligent Signal Processing for Rehab Progress Indication (1/3)
  87. Chapter 22: Functional Near-Infrared Spectroscopy for Autorehabilitation Cyber-Physical Systems: Toward Intelligent Signal Processing for Rehab Progress Indication (2/3)
  88. Chapter 22: Functional Near-Infrared Spectroscopy for Autorehabilitation Cyber-Physical Systems: Toward Intelligent Signal Processing for Rehab Progress Indication (3/3)
  89. Back Cover

Product information

  • Title: Cyber-Physical Systems
  • Author(s): Fei Hu
  • Release date: September 2013
  • Publisher(s): CRC Press
  • ISBN: 9781466577015