Dock Scheduling Software Industry is Expected to Reach $8 Billion by 2028 -Open Systems (ProcessPro), Manhattan
, /PRNewswire/ -- The "Global Vessel Traffic Management Market by Cease-user (Commercial, Defence force), Component (Equipment, Solution, Service), Investment (Brownfield, Greenfield), System, Onboard Components (Equipment, Solution), and Region (2022-2027)" report has been added to ResearchAndMarkets.com's offering.
The Global Vessel Traffic Direction Market is projected to grow from USD five.viii billion in 2022 to USD 8.7 billion by 2027, at a CAGR of 8.4% during the forecast flow.
The COVID-19 outbreak has led to several challenges for various industries such as aviation and consumer electronics. These industries faced many economic problems post the COVID-19 outbreak. Since the kickoff of the outbreak, the transportation industry has been amongst the most severely hit sectors globally. Due to most countries imposing nationwide lockdowns and travel and transportation restrictions, the shipping manufacture was afflicted extremely. This outbreak has also put the shipping and marine industries in worse position since their workforces accept been shut downwardly for the sake of safety and preventing the spread of COVID-19.
With the support of the Maritime and Port Authority of Singapore, Fujitsu Limited, Singapore Direction University (SMU), and A*STAR'southward Institute of High-Operation Calculating (IHPC) announced their collaboration to develop innovative new technologies for vessel traffic direction in the Port of Singapore (MPA). These predictive technologies volition use artificial intelligence (AI) and big information analytics to help manage Singapore'due south port and surrounding seas, which run across a lot of seaborne trade and traffic.
The technologies will also be evaluated using real-world information in society to enhance congestion predictions and the detection of probable accidents and other danger hotspots before they happen at sea. The Urban Computing and Engineering Centre of Excellence (UCE CoE), a public-private collaboration comprising of the Agency for Science, Engineering science and Enquiry (A*STAR), SMU, and Fujitsu, was founded in 2014 to perform research and evolution for these new marine technologies.
Based on component, service segment is expected to have the largest marketplace share in 2022 every bit well every bit witness the highest CAGR growth across the forecast period. Many ports are equipping VTMS systems to make their ports more efficient and reliable. With new systems require functioning and maintenance services. These factors drive the market growth.
Based on system, Port management information system is expected to grow with largest CAGR. Nearly ports across the globe accept adopted some course port direction information system for the efficient and reliable working of their ports.
Fundamental Topics Covered:
one Introduction
2 Research Methodology
three Executive Summary
iv Premium Insights
4.1 Bonny Growth Opportunities in Vessel Traffic Management Market
four.ii Vessel Traffic Management Market, by End-user
4.iii Vessel Traffic Direction Market End-user, by Commercial Sector
4.4 Vessel Traffic Direction Market, by Investment
four.5 Vessel Traffic Management Market, past Country
5 Market Overview
5.1 Introduction
5.two Market Dynamics
5.2.i Drivers
5.ii.1.1 Increased Vessel Congestion at Ports
5.2.ane.2 Need for Automation
5.2.2 Restraints
5.2.2.1 Effect of Natural Disasters on Ports
five.2.three Opportunities
v.ii.3.ane Next-Generation Vessel Traffic Management Systems
five.2.3.2 Technological Advances in Maritime Traffic Management
v.2.4 Challenges
five.2.4.1 VTMS Facility Location
5.2.4.two Automated Identification Organization (AIS) Disadvantages
5.3 COVID-19 Bear on Scenarios
5.4 COVID-19 Impact on Vessel Traffic Management Market
5.5 Technology Analysis
v.5.1 AI in VTS
5.v.two e-Navigation in Vessel Traffic Management
5.5.three Global Navigation Satellite Organisation (GNSS)
five.6 Trends/Disruptions Impacting Customers' Business
5.7 Pricing Analysis
5.8 Market Ecosystem
5.eight.1 Prominent Companies
5.8.2 Individual and Small Enterprises
5.8.iii Stop-users
5.nine Value Chain Analysis of Vessel Traffic Management System Market place
5.10 Merchandise Information
5.10.1 Merchandise Analysis
5.11 Porter's Five Forces Model
five.12 Key Stakeholders & Buying Criteria
5.12.one Key Stakeholders in Buying Procedure
5.12.2 Buying Criteria
5.13 Key Conferences & Events in 2022-2023
v.14 Tariff Regulatory Mural for Shipping Industry
vi Industry Trends
6.1 Introduction
six.2 Emerging Industry Trends
6.2.ane AI and Car Learning
half dozen.2.2 Marine IoT
half-dozen.ii.iii Blockchain and Large Data Analytics
six.2.4 Cybersecurity
six.iii Innovations and Patents Registrations, 2018-2021
6.iv Impact of Megatrends
7 Vessel Traffic Management Market, by Component
seven.1 Introduction
7.2 Equipment
vii.ii.ane Communication
seven.2.one.one VHF Communication Systems
7.2.i.1.ane Increasing Usage in Brusque-Range Communication to Drive the Segment
vii.2.1.2 RF Communications
7.2.1.2.1 Increasing Usage for Wireless Data Transfer and Vocalisation Transfer Applications to Drive the Segment
7.ii.1.3 Microwave and Network
vii.2.1.3.i Increasing Usage for Satellite Communications, Radar Signals, Smartphones, and Navigational Applications to Drive the Segment
7.2.1.4 Human Auto Interface (HMI)
7.two.1.4.ane Increasing Usage of HMI on Ports and Harbors to Drive the Segment
7.two.1.5 Servers
7.2.1.5.1 New Technological Trends to Drive the Segment
7.2.2 Navigation
seven.2.2.1 Automatic Identification System (AIS) Receivers and Base Stations
7.two.2.1.1 Increasing Usage of AIS Receivers and Base Stations Creates Efficient Link Between the Bounding main and Monitoring Middle
7.two.2.2 Direction Finders
7.ii.2.2.1 Increasing Usage by Ports to Provide Navigational Aid for Ships
7.2.ii.3 Radar
7.2.2.3.1 Increasing Usage to Detect Illegal Activities Beyond Shore and Coastline to Bulldoze the Segment
vii.2.3 Surveillance & Monitoring
7.2.three.1 Unmanned Aerial Vehicles
seven.ii.3.1.1 Increasing Usage of UAVs at Ports to Make Security More Efficient and Reactive
7.ii.3.2 CCTV Surveillance Photographic camera
7.2.3.2.ane Demand for Latest Applied science CCTV Cameras to Provide Optimum Security
7.two.3.3 Sensors
vii.ii.iii.iii.1 Advanced Sensor Technologies Used to Prevent Port Accidents
vii.3 Solution
vii.3.one Sensor Integrator
7.3.1.1 Sensor Integrator Key to Providing Efficient Navigation and Decision-Making Capabilities
7.three.two Electronic Navigation Chart (ENC)
7.3.2.one ENCs Provide an Assortment of Advantages for Planning, Monitoring, and Executing Voyages
7.3.3 Multi-Sensor Tracker
7.three.3.1 Ensures Flexible Sensor Input Filtering to Provide Efficient Data to Create Traffic Maps
seven.3.4 Routing Monitor
7.iii.4.i Increasing Usage to Reduce Gamble and Minimize Transit Time
7.three.v Others
7.4 Service
7.4.1 Maintenance Service
7.iv.1.1 Periodic Budget of Equipment Vital for Offering Decision Making Support to Operators
7.4.2 Operation Service
seven.4.ii.one Provides Critical Support for Decision Making to Operators Through Various Information Points
viii Vessel Traffic Management Arrangement Market place, past End-user
eight.i Introduction
8.two Commercial Sector
8.2.1 Ports and Harbor
eight.2.1.1 Ports Serve every bit Commerce Transfer Centers and are Typically Located Near Natural Harbors
eight.2.2 Inland Port
8.2.two.ane Increasing Usage for Leisure Purposes and Ferries and Fishing Operations to Drive the Segment
viii.ii.three Angling Port
8.2.iii.ane Fishing Ports are Frequently Marketed every bit Ports That are Primarily Utilized for Recreational or Aesthetic Purposes
eight.2.4 Offshore
eight.2.4.ane Increasing Adoption of Advanced Technologies in Offshore Ports to Ensure Rubber Operations
viii.iii Defence Sector
8.3.1 Need to Forbid Piracy and Other Illegal Activities to Drive the Segment
ix Vessel Traffic Management Market place, past Organization
nine.1 Introduction
9.two Port Management Information System
ix.2.1 PMI is Single Source of Adequate and Accurate Information
nine.three Global Maritime Distress Safety System (GMDSS)
ix.3.i Ships Fitted with GMDSS Equipment are Safer at Bounding main and More Probable to Receive Assistance in Upshot of Distress
9.4 River Data Organisation
9.4.1 RIS Combines Equipment and Related Hardware and Software Designed to Optimize Traffic and Transport Processes
ix.five Aton Management & Health Monitoring System
9.5.1 Goal of Aton Systems is to Promote Safe Navigation on Waterways
9.6 Others
10 Vessel Traffic Management System Marketplace, past Investment
10.one Introduction
x.two Greenfield
10.2.one Major Businesses Adopt Greenfield Investment Strategy to Breakdown Archway Barriers
10.3 Brownfield
ten.3.1 Brownfield Investment Used to Join a New Foreign Market Through Companies That Already Have a Presence There
11 Vessel Traffic Management Marketplace, by Onboard Component
xi.ane Introduction
xi.2 Equipment
11.2.i Communication
11.two.1.1 VHF Communication Systems
eleven.ii.i.1.1 Increasing Usage in Short-Range Communication to Drive the Segment
11.2.1.2 RF Communications
xi.2.1.ii.one Increasing Usage for Wireless Data Transfer and Voice Transfer Applications to Drive the Segment
xi.2.1.3 Microwave and Network
11.two.1.3.i Increasing Usage for Satellite Communications, Radar Signals, Smartphones, and Navigational Applications to Drive the Segment
11.ii.one.4 Homo Machine Interface (HMI)
11.2.i.four.i Increasing Need for Advanced and Reliable HMI Systems on Ship Bridges to Drive the Segment
11.2.2 Navigation
xi.2.2.one Automatic Identification System (AIS) Receivers
11.two.2.i.one Increasing Usage of AIS Receivers to Create Efficient Link Between Sea and Monitoring Center
11.2.two.two Management Finders
xi.two.ii.2.1 Increasing Usage by Ships to Establish Efficient Navigation Paths
11.2.2.3 Radar
eleven.2.2.3.1 Increasing Usage to Observe Illegal Activities Around the Vicinity of the Send
11.two.iii Surveillance & Monitoring
11.two.iii.1 CCTV Surveillance Camera
eleven.2.iii.1.1 Demand for Latest Technology CCTV Cameras to Provide Optimum Security Onboard Ships
11.ii.3.two Sensors
11.two.three.two.1 Avant-garde Sensor Technologies Used for Navigation and Ship Stability
11.3 Solution
xi.3.one Sensor Integrator
eleven.three.i.1 Sensor Integrator Key to Providing Efficient Navigation and Conclusion-Making Capabilities
11.3.2 Electronic Navigation Chart (ENC)
11.3.2.1 ENCs Provide an Assortment of Advantages for Planning, Monitoring, and Executing Voyages
eleven.3.iii Multi-Sensor Tracker
xi.3.3.i Ensures Flexible Sensor Input Filtering to Provide Efficient Data to Create Traffic Maps
xi.3.4 Routing Monitor
eleven.3.4.1 Increasing Usage to Reduce Hazard and Minimize Transit Time
12 Regional Assay
xiii Competitive Mural
13.i Introduction
13.2 Market place Share Assay, 2021
13.3 Revenue Analysis of Top 5 Market Players, 2020
xiii.four Company Evaluation Quadrant
xiii.4.1 Stars
13.four.two Emerging Leaders
thirteen.4.3 Pervasive Players
13.4.four Participants
xiii.5 Startups Evaluation Quadrant
13.5.1 Progressive Companies
13.v.2 Responsive Companies
13.5.three Dynamic Companies
13.5.four Starting Blocks
13.6 Competitive Benchmarking
thirteen.7 Competitive Scenario
xiii.7.1 Deals
13.7.2 Product Launches
14 Visitor Profiles
14.1 Key Companies
14.1.one Kongsberg Gruppen
14.one.2 Wartsila
fourteen.1.3 Thales Group
fourteen.1.4 Leonardo Southward.P.A.
14.1.five Saab
fourteen.1.half dozen Indra Sistemas
14.1.7 Tokyo Keiki
fourteen.i.8 Hensoldt
14.ane.9 Frequentis
14.1.10 Furuno
14.1.xi Nihon Radio Co. Ltd.
xiv.1.12 Terma
14.1.13 Vissim
14.i.xiv Elcome International LLC
14.one.15 ST Engineering science
fourteen.1.16 Marlan Maritime Technologies
xiv.i.17 Xanatos Marine Ltd.
14.ane.18 Sea Surveillance Every bit
14.1.19 M-Nav Solutions
fourteen.one.20 A.St.I.M. S.R.L.
14.2 Other Players
xiv.2.one Marico Marine
14.2.2 Gem Elettronica
14.2.3 Horizonte As
14.2.four Scortel
14.2.v Elman S.R.50.
15 Appendix
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