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Showing posts with label Security engineering. Show all posts
Showing posts with label Security engineering. Show all posts

Security Engineering : Electronic Security System

File Size:2.27 MB


Pages:150


Contents:-





  • CHAPT 1 INTRODUCTION


    1-1 PURPOSE


    1-2 SCOPE


    1-3 REFERENCES


    1-4 GLOSSARY


    1-5 SECURITY ENGINEERING UFC SERIES


    1-6 ORGANIZATION OF THIS UFC

  • CHAPT 2 ELECTRONIC SECURITY SYSTEM OVERVIEW


    2-1 OVERVIEW


    2-2 DETECT, DELAY, AND RESPOND


    2-3 ESTABLISH REQUIREMENTS


    2-4 SYSTEM COMPLEXITY


    2-5 MONITORING METHODS

  • CHAPT 3 ACCESS CONTROL SYSTEMS


    3-1 OVERVIEW


    3-2 ACS ENTRY-AUTHORIZATION IDENTIFIERS


    3-3 OTHER ACS IMPLEMENTATION CONSIDERATIONS


    3-4 ACS EQUIPMENT


    3-5 ACS DESIGN GUIDANCE

  • CHAPT 4 CLOSED CIRCUIT TELEVISION SYSTEMS


    4-1 OVERVIEW


    4-2 DIGITAL VIDEO RECORDER (DVR)


    4-3 SYSTEM DISPLAYS


    4-4 VIDEO MATRIX SWITCHERS


    4-5 KEYBOARDS


    4-6 CAMERAS


    4-7 INTERNET PROTOCOL (IP) ADDRESSABLE CAMERAS


    4-8 RECORDING


    4-9 ILLUMINATION


    4-10 VIEWING IN LOW-LIGHT CONDITIONS


    4-11 POWER


    4-12 CAMERA FIELDS-OF-VIEW


    4-13 RESOLUTION


    4-14 FRAMES PER SECOND (FPS)


    4-15 BANDWIDTH


    4-16 WHITE BALANCE


    4-17 CCTV CAMERA EMPLOYMENT FOR INTRUSION DETECTION


    4-18 CCTV EQUIPMENT CONSIDERATIONS


    4-19 CCTV SYSTEMS DESIGN GUIDANCE

  • CHAPT 5 INTRUSION DETECTION SYSTEM


    5-1 OVERVIEW


    5-2 CENTRAL PROCESSING UNIT (CPU)


    5-3 INTERIOR SENSORS


    5-4 EXTERIOR SENSORS


    5-5 SYSTEM CONFIGURATION


    5-6 IDS DESIGN GUIDANCE


    5-7 SUMMARY

  • CHAPT 6 DATA TRANSMISSION MEDIA (DTM)


    6-1 INTRODUCTION


    6-2 BANDWIDTH ANALYSIS


    6-3 SECURE COMMUNICATIONS


    6-4 NETWORK TOPOGRAPHY


    6-5 COMMUNICATION REDUNDANCY


    6-6 TRANSMISSION MODES/PROTOCOLS


    6-7 TRANSMISSION MEDIA


    6-8 TECHNOLOGY COMPARISION


    6-9 ENCRYPTION

  • CHAPT 7 DISPATCH CENTER


    7-1 INTRODUCTION


    7-2 SPACE


    7-3 LIGHTING


    7-4 CONSOLES


    7-5 MONITORS


    7-6 GROUNDING/POWER CONDITIONING


    7-7 HVAC


    7-8 SUPPORT ROOMS

  • CHAPT 8 ESS SUBSYSTEM INTEGRATION


    8-1 OVERVIEW


    8-2 COMMUNICATION FROM THE IDS TO THE ACS


    8-3 COMMUNICATION FROM THE IDS TO THE CCTV SYSTEM


    8-4 COMMUNICATION FROM THE CCTV SYSTEM TO THE ACS


    8-5 COMMUNICATION FROM THE ACS TO THE DISPATCH CENTER


    8-6 COMMUNICATION FROM THE DISPATCH CENTER TO THE ACS


    8-7 BANDWIDTH ANALYSIS

  • CHAPT 9 GENERAL REQUIREMENTS AND CROSS-DISCIPLINE COORDINATION


    9-1 GENERAL REQUIREMENTS


    9-2 GENERAL COORDINATION


    9-3 CIVIL COORDINATION


    9-4 ARCHITECTURAL COORDINATION


    9-5 LIFE SAFETY CODE CONSIDERATIONS


    9-6 ELECTRICAL COORDINATION


    9-7 MATERIAL ENTRY CONTROL

  • CHAPT 10 MODEL DESIGN APPROACH

  • 10-1 INTRODUCTION

  • 10-2 PROJECT PLANNING

  • 10-3 INITIAL DRAWING PREPARATION

  • 10-4 BASIS OF DESIGN

  • 10-5 SCHEMATIC DESIGN PHASE

  • 10-6 DESIGN DEVELOPMENT PHASE

  • 10-7 BIDDING

Personal Protective Grounding for Electric Power Facilities and Power Lines

File Size : 1.66 MB


Pages: 89




Contents:-





  • 1. Purpose and Scope


    1.1 Purpose


    1.2 Scope


    1.3 Responsibility


    1.4 Cancellation



  • 2. Definitions and Interpretations



  • 3. Determine Need for Personal Protective Grounding


    3.1 Uses Permitted


    3.1.1 Over 600 Volts (Required)


    3.1.2 Less Than 600 Volts (Optional)


    3.2 Uses Not Permitted


    3.2.1 Lightning


    3.2.2 Over 50,000 Amperes Available Fault Current


    3.2.3 Nontemporary Installations

  • 4. Basic Criteria for Safe Grounding Practices


    4.1 Electric Shock Hazard


    4.2 Protective Grounding Requirements



  • 5. Ground Cable Assemblies


    5.1 Grounding Cable


    5.1.1 Cable Ampacity


    5.1.2 Parallel Grounds


    5.2 Grounding Cable Jackets


    5.3 Grounding Clamps


    5.4 Ground Cable Ferrules



  • 6. Application of Protective Ground Cables


    6.1 Determine Maximum Available Fault Current at Worksite


    6.2 Size the Cables


    6.2.1 Cable Size


    6.2.2 Cable Length


    6.3 Inspect Ground Cable Assemblies


    6.4 Obtain a Clearance


    6.5 Confirm De-Energized Status (arc flash hazard analysis required)


    6.5.1 Hot Stick


    6.5.2 Noisy Tester


    6.5.3 Hot Horn or Noisy Tester


    6.5.4 Multiple Range Voltage Detector


    6.5.5 Neon-Type Indicator


    6.5.6 Direct-Reading Voltmeter


    6.6 Clean Connections (arc flash hazard analysis required)


    6.6.1 Wire Brushing


    6.6.2 Self-Cleaning Clamps


    6.7 Grounding Cable Installation


    6.7.1 Ground-End Clamps


    6.7.2 Circuit-End Clamps (arc flash hazard analysis required)


    6.7.3 Multiphase, Worksite Grounding Required


    6.7.4 Parallel Grounds


    6.7.5 Barricade


    6.7.6 Removal


    6.8 Arc Flash Hazard Analysis Required



  • 7. Power and Pumping Plant Protective Grounding


    7.1 Three-Phase Tee Grounding


    7.2 Double-Isolation Grounding



  • 8. Switchyard and Substation Protective Grounding


    8.1 General Considerations for Placement of Protective Grounds


    8.2 Power Circuit Breakers and Transformers


    8.3 Disconnect Switches and Bus


    8.4 Insulated High-Voltage Cable


    8.4.1 Cable Terminations


    8.4.2 Midsection and Splices


    8.4.3 Cable Testing


    8.5 Grounding Transformers and Phase Reactors


    8.6 Capacitor Banks


    8.7 Mobile Equipment



  • 9. Power Line Protective Grounding


    9.1 Grounding on Metal Transmission Structures


    9.2 Grounding on Wood Pole Transmission Structures


    9.3 Transmission Line Terminal Ground Switches


    9.4 Grounding on Distribution Lines


    9.5 Surface Equipment and Vehicle Grounding


    9.6 Opening or Splicing Aerial Conductors


    9.7 Grounding Insulated Power Cable



  • 10. Care, Inspection, and Testing Protective Grounding Equipment


    10.1 Care


    10.2 Inspection


    10.2.1 Ground Cable Assemblies


    10.2.2 Live-Line Tools


    10.3 Testing


    10.3.1 Ground Cable Assemblies


    10.3.2 Live-Line Tools


    10.4 Records


Aircraft Electrical System Safety : Congressional Hearing


Name of the EBook : Aircraft Electrical System Safety: Congressional Hearing

This Book is Edited by Mr. Tillie K. Fowler

Edition of the E-Book: illustrated

Publisher of the EBook: DIANE Publishing

Year of Publication: 2002

ISBN of the Book: 0756722519, 9780756722517

No of Pages in the Book: 91


About the Book:-

This a good book wich is available for free here, It includes the safty system of Aircrafts. Even this written abou 9 years back. this's much useful for all students. as a reference book.


to see the book or to download it click: Download-Google




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