1 |
European Explosives Trace Detection (ETD) Market – 2016-2022 |
1.1 |
European Explosives Trace Detection: Major Findings |
1.2 |
European Explosives Trace Detection: Major Conclusions |
1.3 |
ETD Technologies and Market Background |
1.3.1 |
ETD Background |
1.3.2 |
Ion Mobility Spectroscopy (IMS) |
1.3.3 |
Current Explosives & Narcotics Detection Technologies Map |
1.3.4 |
ETD vs. Bulk Explosives & Narcotics Detection: Pros & Cons |
1.3.5 |
Handheld and Desktop ETD |
1.3.6 |
Airport Boarding Gate Explosives Scanners |
1.3.7 |
Vehicle Screening ETD Systems |
1.4 |
Pipeline ETD Technologies |
1.4.1 |
Nanotechnology Explosives and Narcotics Trace Detection: Challenges |
1.4.2 |
Receptor-based ETD |
1.4.3 |
Molecularly Imprinted Polymers Based ETD |
1.4.4 |
Nano-mechanical Sensor Based ETD |
1.4.5 |
Electronic Nose Based ETD |
1.4.6 |
Silica Micro-cantilever Based ETD |
1.4.7 |
Surface Enhanced Raman Scattering Based ETD |
1.4.8 |
Hybrid Nano-sensor Based ETD |
1.4.9 |
Protein Coated Carbon Nanotubes, Nano Based ETD |
1.4.10 |
Piezo-resistive Polymer Cantilever Nano Based ETD |
1.4.11 |
Inkjet Based Wireless Sensor ETD Technology |
1.4.12 |
Amino-silane Coated Nanowires Arrays Based ETD |
1.4.13 |
Free-surface Microfluidic Control of Surface-Enhanced Raman Spectroscopy Based ETD |
1.4.14 |
Trace Chemical Vapor Detection Cartridge |
1.4.15 |
Free Surface Microfluidic Chip |
1.4.16 |
Continuous Pre-concentrator |
1.4.17 |
Raman Chemical Specific Signatures |
1.4.18 |
Molecularly Imprinted Polymers Explosives and Narcotics Detection Kit |
1.4.19 |
Quantum Sniffer™ Portable ETD |
1.4.20 |
Cantilever Nano-Mechanical Sensors |
1.4.21 |
Sensor Array and Neural Network Based ETD |
1.4.22 |
Temperature-stepped Desorption Based ETD |
1.4.23 |
Trace Detection of Nitrogen-Based Explosives with UV-PLF |
1.4.24 |
Non-Contact Explosives and Narcotics Harvesting ETD |
1.4.24.1 |
Non-Contact Harvesting |
1.4.24.2 |
ETD Transport |
1.4.24.3 |
ETD Analysis |
1.4.24.4 |
ETD Reporting |
1.4.25 |
Check Point Explosives and Narcotics Detection System |
1.4.26 |
Trace Detection of Small Molecules by Pulsed-Ultraviolet Laser Raman Spectroscopy |
1.4.27 |
Sensing Trace Amounts of Nitro-Aromatic Explosives and Narcotics Using Nanowire-Nanocluster Hybrids |
1.4.28 |
Detection of Explosives and Narcotics at Trace Levels by Laser-Induced Breakdown Spectroscopy (LIBS) |
1.4.29 |
Universal Explosive Detection System |
1.4.30 |
MEMS-Based Explosive Particle Detection and Remote Particle Stimulation |
1.4.31 |
Laser Vaporization of Trace Explosives and Narcotics for Enhanced Non-Contact Detection |
1.4.32 |
Advanced Materials and Sensor Platforms |
1.5 |
European Explosives Trace Detection (ETD) Market – 2015-2022 |
1.5.1 |
Market Forecast |
1.5.2 |
Market by Revenue Category |
1.5.3 |
Market Breakdown |
2 |
European Intrusion Detection Systems Market – 2016-2022 |
2.1 |
Intrusion Detection Systems: Technologies and Market Background |
2.1.1 |
Access Control Systems |
2.1.2 |
Video Surveillance Systems |
2.1.3 |
Passive Motion Detection |
2.1.4 |
Access Control Systems |
2.2 |
European Intrusion Detection Systems Market – 2015-2022 |
2.2.1 |
Market Forecast |
2.2.2 |
Market by Revenue Source |
2.2.3 |
Market Breakdown |
3 |
European Metal Detectors Market – 2016-2022 |
3.1 |
Metal Detectors Technologies and Market Background |
3.1.1 |
European Metal Detectors Market Background |
3.1.2 |
Hand-Held (HH) Metal Detectors |
3.1.3 |
Single Zone Metal Detection Portals |
3.1.4 |
Multi-Zone Metal Detection Portals |
3.1.5 |
Matrix Metal Detection Portals |
3.2 |
Major Metal Detector Vendors |
3.3 |
European Metal Detectors Market – 2015-2022 |
3.3.1 |
Market Forecast |
3.3.2 |
Market by Revenue Category |
3.3.3 |
Market Breakdown |
4 |
European Natural & Manmade Disaster Mitigation Technologies Market – 2016-2022 |
4.1 |
Market & Technology Background |
4.2 |
Training and Education Markets |
4.3 |
Emergency Medical Services (EMS) |
4.4 |
Emergency Management Software |
4.5 |
Mass Emergency Notification Technologies |
4.5.1 |
Introduction |
4.5.2 |
Text Alert Systems |
4.5.3 |
Voice Alert Systems |
4.5.4 |
Siren Systems |
4.5.5 |
Cell broadcast Mass Emergency Notification |
4.5.6 |
Mass Emergency Notification: Applications |
4.6 |
European Natural & Manmade Disaster Mitigation Market – 2015-2022 |
4.6.1 |
Market Forecast |
4.6.2 |
Market by Revenue Category |
4.6.3 |
Market Breakdown |
5 |
European Non-Lethal Weapons Market – 2016-2022 |
5.1 |
Major Findings |
5.2 |
Major Conclusions |
5.3 |
Non-Lethal Weapons Technology Background |
5.4 |
Non-Lethal Weapon Technologies |
5.4.1 |
Kinetic Non-Lethal Weapons |
5.4.2 |
Direct-Fired Non-Lethal Projectiles |
5.4.3 |
Concurrently Launched Multiple Kinetic Projectiles |
5.4.4 |
NLW “Sting-ball” Grenades |
5.4.5 |
Chemical Non-Lethal Systems |
5.4.6 |
Area Denial NLW Procedures: |
5.4.7 |
Optical NLW Incapacitation Devices |
5.4.8 |
Acoustical Non-Lethal Devices |
5.4.9 |
Electro-Muscular NLW |
5.5 |
Counter-Personnel NLW Technologies |
5.5.1 |
Overview |
5.5.2 |
Electromagnetic NLW Technologies |
5.5.2.1 |
Microwave NLW |
5.5.2.2 |
Electromagnetic Launcher |
5.5.2.3 |
Electromagnetic Mines |
5.5.2.4 |
Laser Based NLW |
5.5.2.5 |
Multi-Purpose Dazzling Laser |
5.5.2.6 |
Pain Generation Laser |
5.5.3 |
Active Denial Weapon Microwave Technology |
5.5.4 |
Chemical NLW Technologies |
5.5.5 |
Acoustic NLW Technologies |
5.5.5.1 |
Overview |
5.5.5.2 |
Directional Multi-Effects Acoustic System |
5.5.6 |
Mechanical NLW Technologies |
5.5.6.1 |
Non-lethal Barriers and Entanglements |
5.5.6.2 |
Rapid Barriers |
5.5.6.3 |
Nets & Entanglement Techniques |
5.5.7 |
Kinetic NLW Technologies |
5.5.7.1 |
Overview |
5.5.7.2 |
Stun Devices |
5.5.7.3 |
Stun Batons |
5.5.7.4 |
Vortex Generator |
5.5.7.5 |
Airbag Stoppers |
5.5.7.6 |
Paints and Dyes |
5.5.8 |
Water Cannons |
5.5.9 |
Area Denial and Barrier Technologies |
5.5.10 |
Combined Technologies |
5.6 |
Counter-Material NLW Technologies |
5.6.1 |
Overview |
5.6.2 |
Electromagnetic Technologies |
5.6.2.1 |
Radio Frequency (RF) NLW Devices |
5.6.2.2 |
Laser Based NLW |
5.6.3 |
Chemical Technologies |
5.6.3.1 |
Chemical Agents |
5.6.3.2 |
Slippery Foams |
5.6.3.3 |
Sticky Foams |
5.6.3.4 |
Super-Adhesive Substances |
5.6.3.5 |
Super-Caustic Substances/Liquid Metal Embrittlement |
5.6.3.6 |
Graphite Powders |
5.6.3.7 |
Biological Technologies |
5.6.4 |
Mechanical Technologies |
5.6.4.1 |
Rapid Barriers |
5.6.4.2 |
Nets & Entanglement Techniques |
5.6.4.3 |
Tire Puncturing Techniques |
5.7 |
NLW Technology Outlook-2016-2022 |
5.7.1 |
Counter-Personnel NLW Outlook |
5.7.2 |
Improved Flash Bang Grenade |
5.7.3 |
Airburst Non-Lethal Munitions |
5.7.4 |
Active Denial Tech System |
5.7.5 |
MK19 Non-Lethal Munitions |
5.7.6 |
Joint Non-Lethal Warning Munitions |
5.7.7 |
40 mm Human-Electro-Muscular Incapacitation Projectile |
5.7.8 |
Mission Payload Module |
5.7.9 |
Distributed Sound and Light Array |
5.8 |
Counter-Material Non-Lethal Technologies Outlook |
5.8.1 |
Vehicle Lightweight Arresting Device Single Net Solution and Remote Deployment Device |
5.8.2 |
Pre-emplaced Electric Vehicle Stopper |
5.8.3 |
Small Vessel Stopping Entanglement |
5.8.4 |
Multi-Frequency Radio-Frequency Vehicle Stopper |
5.8.5 |
High Power Microwave Vehicle Stopper |
5.9 |
Less-Lethal Weapons: Market Background |
5.1 |
European Non-Lethal Weapons Market – 2015-2022 |
5.10.1 |
Market Forecast |
5.10.2 |
Market by Revenue Category |
5.10.3 |
Market Breakdown |
6 |
European Personal (Ballistic & CBRNE) Protective Gear Market – 2016-2022 |
6.1 |
Scope |
6.2 |
Market & Technology Background |
6.2.1 |
Introduction |
6.2.2 |
Personal Body Armor |
6.2.3 |
CBRN Air-purifying Escape Respirators (CBRN APER) |
6.2.4 |
CBRN and Hazmat Personal Protective Gear |
6.2.5 |
Key Vendors |
6.2.6 |
Main Customers |
6.2.7 |
European Personal (Ballistic & CBRNE) Protective Gear Standards |
6.3 |
European Personal (Ballistic & CBRNE) Protective Gear Market – 2015-2022 |
6.3.1 |
Market Forecast |
6.3.2 |
Market by Revenue Category |
6.3.3 |
Market Breakdown |
7 |
European Standoff Explosives & Weapon Detection Market – 2016-2022 |
7.1 |
Market Background |
7.1.1 |
Comparison of Standoff IED, PBIED & VBIED Detection Technologies |
7.2 |
Standoff Walk-by & Pass-through Threat Detection Corridors Technologies |
7.2.1 |
Passive Electro Magnetic Signature Corridor |
7.2.2 |
Standoff Passive MMWave Doorways |
7.2.3 |
Focal Plane Array Passive MMWave |
7.2.4 |
Walk-by Passive MMWave Imaging System |
7.2.5 |
Walk-through Corridors: Fourier Transform Infrared (FTIR) Spectroscopy Systems |
7.2.6 |
Covert Walk-through Biometric Identification Corridors |
7.2.7 |
Fused Standoff PBIED Detection &Video-based Biometrics |
7.2.8 |
Walk-by Active Centimeter Range (Ku band) Microwave System |
7.3 |
Open Space Standoff Explosives & Weapon Detection Technologies |
7.3.1 |
Introduction |
7.3.2 |
Open Space Standoff Explosives & Weapon Detection Technologies Challenges |
7.3.3 |
Bi-Modal Standoff IED, PBIED & VBIED Explosives & Weapon Detection Systems |
7.3.3.1 |
Sample: Standoff Fused MMWave & Infrared System |
7.4 |
Standoff Vehicle-Borne Explosives Detection: Technologies |
7.4.1 |
Overview |
7.4.2 |
VBIED Detection: Challenges |
7.4.3 |
Example: Raman Spectroscopy Based Vehicle Standoff Detector – P. Eye |
7.5 |
Standoff IED, PVIED & VBIED UGV Detection Technologies |
7.5.1 |
UGV Expectation Management |
7.5.2 |
UGV Requirements Management |
7.5.3 |
UGV Mobility |
7.5.4 |
UGV Function |
7.5.5 |
The Human Operator |
7.5.6 |
Future IED, PBIED & VBIED Detection UGV |
7.5.7 |
Cobham Antenna Systems Standoff IED, PVIED & VBIED UGV IED Detection Technology |
7.5.8 |
Israel Aerospace Industries CIMS System |
7.5.9 |
Rafael – EZ-K9e Stand-off MMWave IED Detection System |
7.6 |
Multi-Modal Fused IED, PBIED and VBIED Detection Technologies |
7.6.1 |
Technology Review |
7.6.2 |
Example: The CounterBomber® System |
8 |
Standoff IED, PBIED & VBIED Detection Pipeline Technologies |
8.1 |
Introduction |
8.2 |
Standoff Active MMWave PBIED, VBIED & IED Detection |
8.2.1 |
Principle of Operation |
8.2.2 |
Active Standoff MMWave Imaging Systems |
8.2.3 |
Disadvantages of Standoff Active MMWave Technology |
8.3 |
Standoff Passive MMWave Imaging |
8.3.1 |
Principle of Operation |
8.3.2 |
Advantages of a Passive Millimeter Wave (PMMW) System: |
8.3.3 |
TREX Enterprises Standoff Passive MMWave Technology |
8.3.4 |
GEN2 Standoff Passive MMWave PBIED Detection Technology |
8.3.5 |
Standoff “Illuminators of Opportunity” Passive MMWave Imaging |
8.3.6 |
Mechanically Scanning Standoff MMWave PBIED, VBIED & IED Detection |
8.4 |
Standoff MMWave PBIED Gait Characteristics Detection |
8.4.1 |
Infra-red Standoff Detection Technologies |
8.4.2 |
Toyota Standoff IR Detection System |
8.5 |
Standoff Terahertz Explosives & Weapons Detection Technologies |
8.5.1 |
Overview |
8.5.2 |
Standoff Terahertz Contraband Detection Technology |
8.5.3 |
Terahertz Detection Advantages over Other Technologies |
8.5.4 |
Standoff Active Terahertz Heterodyne Concealed Explosives & Weapons Standoff Detection Imagers |
8.5.5 |
Standoff Active Terahertz Absorption Spectroscopy Using Principal Component Analysis |
8.5.5.1 |
Example: Active Terahertz Standoff Explosives Detection System of TeraView |
8.5.6 |
Passive Terahertz Standoff Weapons & Explosives Detection |
8.5.7 |
Passive Terahertz Detection System: ThruVision Systems |
8.6 |
Laser-Based Standoff Explosives Detection |
8.6.1 |
Introduction |
8.6.2 |
Standoff Laser-induced Breakdown Spectroscopy (LIBS) |
8.6.3 |
Next Generation Standoff LIBS Systems |
8.6.4 |
Laser-Based Molecular Signatures Technologies |
8.6.5 |
Laser-Based Stimulated Raman Adiabatic Passage (STIRAP) Technologies |
8.6.6 |
External Cavity Quantum Cascade Lasers Standoff IED Detection |
8.6.7 |
Standoff Laser Induced Fluorescence (PLP/LIF) Technology |
8.6.7.1 |
PLP/LIF Standoff Explosives Detection: Principle of Technology |
8.6.7.2 |
Next-Generation Standoff PLP/LIF Systems |
8.7 |
Standoff Raman Spectroscopy |
8.7.1 |
Introduction |
8.7.2 |
Standoff Coherent Anti-Stokes Raman Spectroscopy |
8.7.3 |
Standoff Resonant Raman Spectroscopy |
8.7.4 |
Next-Generation Standoff CARS Systems |
8.8 |
Standoff Non-linear Wave Mixing Detection Technology |
8.8.1 |
Principle of Operation |
8.8.2 |
Next-Generation Standoff Non-linear Wave Mixing PBIED, VBIED & IED Detection Technology |
8.9 |
Standoff Light Detection and Ranging (LIDAR) Explosives Detection |
8.9.1 |
Overview |
8.9.2 |
Next-Generation LIDAR Systems |
8.1 |
Triple Modality Standoff Detection Technology |
8.11 |
Differential Phase-Contrast X-ray Imaging |
8.12 |
The University of Puerto Rico Advanced Detection Techniques R&D |
8.13 |
European Standoff Explosives & Weapon Detection Market – 2015-2022 |
8.13.1 |
Market Forecast |
8.13.2 |
Market by Revenue Category |
8.13.3 |
Market Breakdown |
9 |
European Tomographic Explosive Detection Systems (EDS) & BHS Market – 2016-2022 |
9.1 |
Explosive Detection Systems: Technology Background |
9.1.1 |
Explosive Detection Systems: Throughput |
9.1.2 |
EDS Principle of Operation |
9.1.3 |
Hybrid Tomographic EDS & 2D X-Ray Screening |
9.1.4 |
EDS EU Standard-3 Certification |
9.1.5 |
EDS Throughput vs. Price |
9.1.6 |
Aviation Security: EDS Checked Luggage Screening |
9.2 |
Security-related Airport Baggage Handling Systems (BHS) |
9.3 |
EDS Market Background |
9.4 |
European Tomographic Explosive Detection Systems & BHS Market – 2015-2022 |
9.4.1 |
Market Forecast |
9.4.2 |
Market by Revenue Category |
9.4.3 |
Market Breakdown |
10 |
European Vehicle & Container Screening Systems Market – 2016-2022 |
10.1 |
Vehicle & Container Screening Portals Technologies |
10.1.1 |
Comparison of Container-Vehicle Screening Technologies |
10.1.2 |
X-Ray Container-Vehicle Screening Systems |
10.1.3 |
Dual Energy X-Ray Container-Vehicle Screening |
10.1.4 |
Dual-View X-Ray Container-Vehicle Screening |
10.1.5 |
Backscatter X-Ray Container-Vehicle Screening |
10.1.6 |
Gamma Ray Systems Container-Vehicle Screening |
10.1.7 |
Linac Based X-Ray Container-Vehicle Screening systems |
10.1.8 |
Neutron Activation Container-Vehicle Screening Systems |
10.2 |
Vehicle & Container Screening Portals: Market Background |
10.3 |
European Vehicle & Container Screening Systems Market – 2015-2022 |
10.3.1 |
Market Forecast |
10.3.2 |
Market by Revenue Category |
10.3.3 |
Market Breakdown |
11 |
European Video Surveillance (w/o Video Analytics) Market – 2016-2022 |
11.1 |
European Video Surveillance Technologies & Market Background |
11.1.1 |
European Video Surveillance: Crime Prevention |
11.1.2 |
Video Surveillance Technologies |
11.2 |
Video Surveillance Stakeholders |
11.3 |
European Video Surveillance Standards |
11.4 |
Video Surveillance Planning and Installation |
11.4.1 |
Planning |
11.4.2 |
Threat, Vulnerability, Risk Assessment |
11.4.3 |
Target Capture and Image Detail |
11.4.4 |
Video Surveillance Design |
11.4.5 |
Equipment Selection |
11.5 |
Video Surveillance: Applications |
11.6 |
European Homeland Security & Public Safety Video Surveillance (w/o Analytics) Market – 2015-2022 |
11.6.1 |
Market Forecast |
11.6.2 |
Market by Revenue Category |
11.6.3 |
Market Breakdown |
12 |
European (Security-related) Video Analytics Market – 2016-2022 |
12.1 |
Market Background |
12.2 |
Video Analytics: Applications |
12.3 |
Intelligent Video Surveillance: Tracking |
12.3.1 |
Overview |
12.3.2 |
IVS & VA based Behavioral Profiling |
12.3.3 |
Tag and Track – IVS |
12.3.4 |
Intelligent Video Surveillance: Behavior Profiling – Drivers |
12.3.5 |
Intelligent Video Surveillance: Behavior Profiling – Inhibitors |
12.4 |
Video Analytics-based Intelligent Transportation Systems |
12.5 |
Tele-Retail, Amazon Fire Phone FireFly Video Analytics Firmware |
12.6 |
Present and Pipeline Video Analytics (VA) & Video Content Analytics (VCA) Technologies |
12.6.1 |
Video Analytics |
12.6.1.1 |
Introduction |
12.6.1.2 |
Wireless Video Analytics |
12.6.1.3 |
Cloud-based Video Analytics |
12.6.1.4 |
Cloud Platforms |
12.6.1.5 |
Online Video Analytics |
12.6.1.6 |
Behavioral Analysis |
12.6.1.7 |
Video Analytic Applications |
12.6.1.8 |
Video Analytics Architecture |
12.6.2 |
Real Time Automatic Alerts Software |
12.6.3 |
Image Segmentation Software |
12.6.4 |
Item Tracking Intelligent CCTV Surveillance Software |
12.6.5 |
Object Sorting and ID |
12.6.6 |
Item Identification and Recognition |
12.6.7 |
VA Based Face Recognition |
12.6.8 |
License Plate Recognition (LPR) |
12.6.9 |
Sorting Actions and Behaviors |
12.6.10 |
Crowd Surveillance |
12.6.11 |
Multi-Camera Intelligent CCTV Surveillance Systems |
12.7 |
Video Content Analysis (VCA) |
12.7.1 |
Introduction |
12.7.2 |
VCA Systems |
12.7.3 |
Pipeline VCA Research |
12.7.4 |
Video Content Analysis Software |
12.7.5 |
Present Limitations of Video Analytics Software |
12.7.6 |
Automated Analysis of Video Surveillance Data |
12.7.7 |
Item Detection |
12.7.8 |
Background Subtraction: Gaussian Mixture Based Software |
12.7.9 |
Background Subtraction |
12.7.10 |
Item Detection Based on a Single-Image Algorithm |
12.7.11 |
Item Tracking Software |
12.7.12 |
Kalman Filtering Techniques, Region Segmentation |
12.7.13 |
Kalman Filters Application To Track Moving Items |
12.7.14 |
Partially Observable Markov Decision Process, IVS Systems |
12.7.15 |
“Splitting” Items Algorithms |
12.7.16 |
Dimension Based Items Classifiers |
12.7.17 |
Shape Based Item Classifiers |
12.7.18 |
Event Detection Methods |
12.7.19 |
Vision-Based Human Action Recognition |
12.7.20 |
3D Derived Egomotion |
12.7.21 |
Path Reconstruction Software |
12.7.22 |
Video Cameras Gap Mitigation Software |
12.7.23 |
Networked Cameras Tag and Track Software |
12.8 |
Visual Intelligence Technologies |
12.8.1 |
The Visual Intelligence Process |
12.8.2 |
Fusion Engine |
12.8.3 |
Event Description |
12.8.4 |
Reasoning |
12.8.5 |
Reporting |
12.9 |
Smart Cameras |
12.1 |
Pulse Video Analytics |
12.11 |
Underwater ISR |
12.12 |
ROSS Covert Multi-modal Ground ISR System |
12.13 |
Mini ISR Aerostats |
12.14 |
Pirsiavash and Ramanan’s, Activity-Recognition IVS Algorithm |
12.15 |
Camera & Video Analytics-based Advanced Driver Assistance Systems (ADAS) Technology and Market |
12.15.1 |
Camera & VA-based Advanced Driver Assistance Systems Market |
12.15.2 |
Camera & VA -based Advanced Driver Assistance Systems Technology |
12.16 |
IVS Products and Services |
12.16.1 |
Commercial Applications: Present and Pipeline Products |
12.16.2 |
Pipeline Software And Hardware Under Development |
12.17 |
IVS Based Intelligence, Surveillance and Reconnaissance (ISR) Systems |
12.17.1 |
Overview |
12.17.2 |
Portable ISR Video Surveillance Kits |
12.18 |
Video Information Management (PSIM) Systems |
12.19 |
Video Surveillance as a Service (VSaaS) |
12.19.1 |
The VSaaS Technology |
12.19.2 |
The VSaaS Market |
12.2 |
European Homeland Security & Public Safety Video Analytics Market – 2015-2022 |
12.20.1 |
Market Forecast |
12.20.2 |
Market by Revenue Category |
12.20.3 |
Market Breakdown |
13 |
European X-Ray Scanners Market – 2016-2022 |
13.1 |
X-Ray Screening Technology Background |
13.1.1 |
2D X-Ray, EDS & ETD Explosives Detection Technologies – Pros & Cons |
13.1.2 |
X-Ray Systems – Characteristics |
13.2 |
X-Ray Screening Technologies |
13.2.1 |
Luggage, Baggage & Other Items Screening Technologies |
13.2.2 |
People Screening X-Ray Backscatter (AIT) Technology |
13.2.3 |
Coherent Scatter 2D X-ray |
13.2.4 |
Cast and Artificial Limbs X-ray Backscatter Screening Technologies |
13.2.5 |
Transportable X-RAY Screening Checkpoints |
13.2.6 |
X-ray Technologies: Performance Comparison |
13.3 |
X-Ray Screening Market Background |
13.3.1 |
Airports and Secured Facilities |
13.3.2 |
Europe’s Rail Stations X-Ray Screening |
13.3.3 |
The European Air Cargo Explosive Screening |
13.3.3.1 |
ACES: The European Air Cargo Explosive Screening |
13.3.3.2 |
The European RA3 and ACC3 Regulations |
13.4 |
European X-Ray Scanners Market – 2015-2022 |
13.4.1 |
Market Forecast |
13.4.2 |
Market by Revenue Category |
13.4.3 |
Market Breakdown |
14 |
European Automatic Border Control (ABC) Systems Market – 2016-2022 |
14.1 |
Automatic Border Control (ABC) Technologies and Market Background |
14.1.1 |
The European Automatic Border Control Market Background |
14.2 |
The European Automated Border Control: ABC4EU Project |
14.2.1 |
ABC4EU Project: Scope |
14.2.2 |
ABC4EU Project Test & Validation: |
14.2.3 |
The ABC4EU Project Proposal |
14.2.4 |
ABC4EU Project Activities |
14.2.5 |
The 2015 European Project Status |
14.2.6 |
The ABC4EU Project Impacts |
14.2.7 |
Biometric Automatic Border Control (ABC) Advantages |
14.3 |
Automated Border Control Technologies |
14.3.1 |
Airport Automated Border Control Market Background |
14.3.2 |
Function of Automated Border Control |
14.4 |
European Automated Border Control Systems Standards |
14.5 |
European Automated Border Control Legislation |
14.6 |
European Automatic Border Control (ABC) Systems Market – 2015-2022 |
14.6.1 |
Market Forecast |
14.6.2 |
Market by Revenue Category |
14.6.3 |
Market Breakdown |
15 |
European Border & Perimeter Barriers Market – 2016-2022 |
15.1 |
European Border & Perimeter Barriers Technology and Market Background |
15.2 |
European Border Barriers |
15.2.1 |
Hungarian Border Barrier |
15.2.2 |
Greek Border Barrier |
15.2.3 |
Austria Border Barrier |
15.2.4 |
Bulgarian Border Barrier |
15.2.5 |
Macedonian Border Barrier |
15.2.6 |
Slovenian Border Barrier |
15.2.7 |
Northern Ireland Border Barrier |
15.2.8 |
Estonia Border Barrier |
15.2.9 |
Spain Border Barriers |
15.2.9.1 |
Ceuta Border Fence |
15.2.9.2 |
Melilla Border Fence |
15.2.10 |
Gibraltar Border Fence |
15.2.11 |
Russia-Ukraine Barrier |
15.3 |
European Border & Perimeter Barriers Market – 2015-2022 |
15.3.1 |
Market Forecast |
15.3.2 |
Market by Revenue Category |
15.3.3 |
Market Breakdown |
16 |
European Counter Terror & Public Safety Related Information Technologies (w/o Cyber & Intelligence IT) Market – 2016-2022 |
16.1 |
Scope |
16.2 |
Technology and Market Background |
16.2.1 |
Effects of IT on HLS and Public Safety Agencies Performance |
16.2.2 |
Counter Terror & Public Safety: Data Center Systems |
16.2.2.1 |
Overview |
16.2.2.2 |
Counter Terror and Public Safety: Data Center Services |
16.2.2.3 |
Counter Terror and Public Safety: Support Services |
16.2.2.4 |
Counter Terror and Public Safety: Technical Consulting Services |
16.2.2.5 |
Outsourcing Services |
16.2.2.6 |
Application Services |
16.2.3 |
Counter Terror and Public Safety: Enterprise Software |
16.2.4 |
Counter Terror and Public Safety: IT Services |
16.2.5 |
Counter Terror and Public Safety Agencies: Cloud Storage & Computing |
16.3 |
European Information Technologies (w/o Intel & Cyber) Market – 2015-2022 |
16.3.1 |
Market Forecast |
16.3.2 |
Market by Revenue Category |
16.3.3 |
Market Breakdown |
17 |
European Visa Issuance IT Market – 2016-2022 |
17.1 |
Scope |
17.2 |
European Visa Issuance IT Technology & Market Background |
17.2.1 |
The 2015 Asylum Database |
17.3 |
The European Visa Information (Technology) System (VIS) |
17.4 |
The Schengen Area Visa |
17.4.1 |
Schengen Area Visa States |
17.4.2 |
On the Road to EU Membership/Candidate Countries |
17.4.3 |
Potential candidates |
17.4.4 |
Visa Exemptions |
17.4.5 |
Who Needs a Schengen Visa? |
17.4.6 |
Schengen Visa Types |
17.4.6.1 |
Uniform Schengen Visas (USV) |
17.4.6.2 |
Limited Territorial Validity Visas (LTV) |
17.4.6.3 |
National Visas |
17.4.7 |
Schengen Visa Fee |
17.4.8 |
Schengen VISA Statistics 2014 |
17.5 |
Russian Federation Visa IT |
17.6 |
European Visa Issuance IT Market – 2015-2022 |
17.6.1 |
Market Forecast |
17.6.2 |
Market by Revenue Category |
17.6.3 |
Market Breakdown |
18 |
European Intelligence Services IT Market – 2016-2022 |
18.1 |
Scope |
18.2 |
Intelligence Services Information Technologies & Market Background |
18.2.1 |
The European Situation Centre |
18.2.2 |
Geospatial Intelligence (GEOINT) Information Technology |
18.2.3 |
Imagery intelligence (IMINT) Information Technology |
18.2.4 |
Measurement and Signature Intelligence (MASINT) Information Technology |
18.2.5 |
Open-source Intelligence (OSINT) Information Technology |
18.2.6 |
Signals Intelligence (SIGINT) Information Technology |
18.2.6.1 |
Communications Intelligence COMINT Information Technology |
18.2.6.2 |
ELINT Electronic Intelligence Information Technology |
18.2.7 |
Foreign Instrumentation Signals Intelligence (FISINT) Information Technology |
18.2.8 |
Financial Intelligence (FININT) Information Technology |
18.2.9 |
Cryptanalysis Information Technology |
18.2.10 |
Traffic Analysis |
18.3 |
European Counter-Terror & Counter-Crime Intelligence Services IT Market – 2015-2022 |
18.3.1 |
Market Forecast |
18.3.2 |
Market by Revenue Category |
18.3.3 |
Market Breakdown |
19 |
Scope, Methodology & Disclaimer |
19.1 |
Research Scope |
19.2 |
Research Methodology |
20 |
Disclaimer & Copyright |