デジタルMROの世界市場予測(~2030年)...市場調査レポートについてご紹介

【英文タイトル】Digital MRO Market by Technology (Predictive Maintenance, AR/VR, 3D Printing, Blockchain, Artificial Intelligence, Robotics, Big Data Analytics, Digital Twin, IOT), End User (MROs, Airlines, OEMs), Application, Region - Global Forecast to 2030

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【レポートの概要(一部)】

1 Introduction (Page No. – 19)
1.1 Objectives of the Study
1.2 Market Definition
1.3 Study Scope
1.3.1 Regional Scope
1.3.2 Years Considered for the Study
1.4 Currency & Pricing
1.5 Limitations
1.6 Stakeholders
2 Research Methodology (Page No. – 23)
2.1 Research Data
2.1.1 Secondary Data
2.1.1.1 Key Data From Secondary Sources
2.1.2 Primary Data
2.1.2.1 Key Data From Primary Sources
2.1.2.2 Breakdown of Primaries
2.1.3 Market Definition & Scope
2.1.3.1 Exclusions
2.2 Research Approach & Methodology
2.2.1 Bottom-Up Approach
2.2.2 Top-Down Approach
2.3 Market Breakdown and Data Triangulation
2.4 Research Assumptions
2.5 Limitations
3 Executive Summary (Page No. – 32)
4 Premium Insights (Page No. – 35)
4.1 Attractive Opportunities in the Digital MRO Market
4.2 North America Digital MRO Market, By Technology
4.3 Asia Pacific Digital MRO Market, By End User and Country
4.4 Europe Digital MRO Market, By Application
4.5 Digital MRO Market, By Country
5 Market Overview (Page No. – 38)
5.1 Introduction
5.2 Market Dynamics
5.2.1 Drivers
5.2.1.1 Increasing Demand for Predictive, Prescriptive, and Condition-Based Maintenance Through Data Shared By Connected Aircraft
5.2.1.2 Growing Adoption of Software-As-A-Service (SaaS)
5.2.1.3 Rising Need for Replacing Legacy Aviation Management Information Systems
5.2.2 Restraints
5.2.2.1 High Cost of Acquisition of Integrated MRO Software Suite
5.2.2.2 Lack of A Common Data Standard
5.2.3 Opportunities
5.2.3.1 Increasing Adoption of Internet of Things (IoT), Artificial Intelligence (AI), Blockchain, Augmented Reality (AR), and Big Data Analytics By MROs
5.2.3.2 Growing Demand for 3D-Printed Parts and Robotic Inspection
5.2.4 Challenges
5.2.4.1 Compliance With Stringent Aviation Regulations
5.2.4.2 Increasing Digitalization Will Require Investments in Cybersecurity
5.3 Case Studies
5.3.1 Wearables
5.3.1.1 Klm Engineering & Maintenance and Royal Netherlands Aerospace Centre (Nlr) have Created A Joint Venture Called Nuveon for Developing AR/VR Based Solutions
5.3.2 Robotics
5.3.2.1 Air New Zealand has Teamed Up With MRO Provider St Engineering for Trial Testing of Droscan, A Drone-Based Aircraft Inspection Solution
5.3.3 Digital Twin
5.3.3.1 Ge Aviation is Producing A Digital Twin for Each Engine Being Manufactured
5.3.4 3D Printing
5.3.4.1 Eos has Tied Up With Etihad Airways Engineering for MRO
5.3.4.2 Royal Netherlands Air Force to 3D Print Tools That Fit Into the Custom-Made Parts of Aircraft
5.3.5 Predictive Analysis
5.3.5.1 Delta Ops Enters Into A Contract With Airbus for Predictive Maintenance Technology
5.3.5.2 Thai Airways Partnered With Airbus for Developing Robotics for Predictive MRO
6 Industry Trends (Page No. – 45)
6.1 Introduction
6.2 Technological Advancements in the Aviation Industry
6.2.1 Internet of Things (IoT)
6.2.2 Prescriptive Maintenance
6.2.3 Augmented Reality
6.2.4 Blockchain Application in MRO
6.3 Transformation of Aviation Industry Through Data Science Revolution
6.3.1 Optimization of Operations
6.4 Emerging Trends
6.4.1 Maintenance On-The-Go
6.4.2 Increased Mobility
6.4.3 3D Printing
6.4.4 Big Data
6.5 Application Areas for New Technologies in Digital MRO Market
6.5.1 Introduction
6.5.2 Cloud Technology
6.5.3 Advanced Analytics and Digital Transformation
6.5.4 Data Routing
6.5.5 Artificial Intelligence
6.5.6 Internet of Things
6.6 Parameters for the Selection of an MRO Software
6.7 Innovations and Patent Registrations
7 Digital MRO Market, By Technology (Page No. – 51)
7.1 Introduction
7.2 Predictive Maintenance
7.2.1 Predictive Analysis Reduces Downtime and Increases Operational Efficiency for Airlines
7.3 AR/VR
7.3.1 MROs are Exploring the AR/VR Technology for Maintenance and Repair, the Demand for AR/VR is Expected to Increase in Future
7.4 3D Printing
7.4.1 3D Printing in MRO is Expected to Help Reduce the Time Required to Source Parts During Maintenance
7.5 Blockchain
7.5.1 Blockchain is Useful in the Complex Supply Chain of MROs, Wherein Failure, the Risk of Cyberattacks, and High Cost are Involved
7.6 Artificial Intelligence
7.6.1 Artificial Intelligence is Helpful in Predictive Maintenance and Turning an Unscheduled Maintenance Into A Scheduled Maintenance By Predicting Failures
7.7 Robotics
7.7.1 Drones
7.7.2 Robots
7.8 Big Data Analytics
7.8.1 MROs have Not Taken Advantage of Big Data for Maintenance Management to Help Reap Benefits, Such as Faster Turnaround Times, Increased Aircraft Availability, Cost Savings, and Fewer Maintenance Delays
7.9 Digital Twin
7.9.1 Ge Utilizes Its Digital Twin Technology for Continuously Monitoring Aircraft Engines Produced Till Date for Performance Monitoring Using Its IoT Sensors
7.10 Internet of Things
7.10.1 Internet of Things is Expected to Help Reduce Unscheduled Maintenance, as All Connected Devices Continuously Feed Data Into A Centralized System
8 Digital MRO Market, By Application (Page No. – 60)
8.1 Introduction
8.2 Inspection
8.2.1 Advancements in the Robotics Technology are Expected to Lead to an Increase in the Demand for Robot-Based Inspection
8.3 Performance Monitoring
8.3.1 IoT Sensors Provide Real-Time Information About Aircraft Engine Components, Which Helps in the Improvement of Engines, and Predictive Analysis
8.4 Predictive Analysis
8.4.1 Increasing Next-Generation Aircraft Fleet is Expected to Drive the Demand for Predictive Analytics
8.5 Part Replacement
8.5.1 Increasing Demand for 3D Printed Parts is Expected to Drive the Demand for Part Replacement
8.6 Mobility & Functionality
8.6.1 Mobility & Functionality Includes Advanced Software Which is Used to Integrate Data and Connect With Other Parties
9 Digital MRO Market, By End User (Page No. – 67)
9.1 Introduction
9.2 Airlines
9.2.1 Small Airlines
9.2.1.1 Small Airlines Outsource Most of Their Aircraft MRO Operations to Save Costs on Capital Investment and Human Resources
9.2.2 Medium Airlines
9.2.2.1 Medium Airlines have Dedicated MRO Hangars and Use Sophisticated Software to Undertake Core Operations
9.2.3 Large Airlines
9.2.3.1 Most Large Airlines Completely Digitalize Activities By Sharing Real-Time Data With OEMs and Third-Party MROs
9.3 MROs
9.3.1 Small MROs
9.3.1.1 Limited Budgets have Restrained the Adoption of Digital MRO By Small MRO Service Providers, as Most of Their Capital Investment is Required for Other Core Functions
9.3.2 Medium MROs
9.3.2.1 Most Medium MRO Service Providers are in A Transitory Stage; They are Focused on Enhancing Their It Capabilities By Shifting From the Erp Module to the Digitalization of the Entire Ecosystem
9.3.3 Large MROs
9.3.3.1 Large MRO Service Providers are Focused on the Acquisition of Health Monitoring Software, Asset Management Software, and Resource Planning Software to Enhance Operational Efficiency
9.4 OEMs
9.4.1 Aircraft OEMs
9.4.1.1 Aircraft Manufacturers Use Advanced Software Suites to Facilitate Real-Time Data Sharing With Airlines and MROs
9.4.2 Engine OEMs
9.4.2.1 Engine Manufacturers and System Manufacturers Share Data Generated From Sensors Installed on Different Systems in Aircraft
10 Regional Analysis (Page No. – 73)
10.1 Introduction
10.2 North America
10.2.1 US
10.2.1.1 Increasing Procurement and Upgradation of Existing Aircraft has Led to the Modernization of Aircraft Fleet
10.2.2 Canada
10.2.2.1 Modernization Plans to Enhance Narrow-Body Aircraft Fleet is Expected to Drive the Market for Digital MRO in Canada
10.3 Europe
10.3.1 Germany
10.3.1.1 Presence of OEM Facilities for Aircraft Maintenance and Focus on Digitalization of Entire It Infrastructure is Expected to Drive Digital MRO Market in Germany
10.3.2 UK
10.3.2.1 Presence of Major Aircraft OEM Subsidiaries is Contributing to the Demand for MRO Services in the UK
10.3.3 France
10.3.3.1 Presence of Major Aircraft OEMs, Such as Airbus, is Projected to Drive the Growth of the Digital MRO Market in France
10.3.4 Spain
10.3.4.1 High Demand for Digital MRO From Small Airlines and OEM Facilities to Carry Out Retrofitting of Aircraft is Expected to Drive the Market in Spain
10.3.5 Sweden
10.3.5.1 Increase in Fleet Size of Leading Airlines is Expected to Drive the Demand for MRO Services in Sweden
10.3.6 Russia
10.3.6.1 Need to Upgrade Existing Aircraft Components and Procurement of New Aircraft is Contributing to the Growth of the Digital MRO Market in Russia
10.3.7 Netherlands
10.3.7.1 Need for Digitalization of MRO Services and Expansion of Medium MROs and Airlines is Driving the Demand for Advanced Aviation Software
10.4 Asia Pacific
10.4.1 China
10.4.1.1 High Demand for Narrow-Body Aircraft and Wide-Body Aircraft is Contributing to the Growth of Digital MRO in China
10.4.2 Japan
10.4.2.1 Increasing Aircraft Deliveries and the Need to Upgrade Existing Aircraft Systems are Driving Japan’s Digital MRO Market
10.4.3 India
10.4.3.1 High Demand for MRO Services From Airlines and the Increase in Aircraft Deliveries are Driving Digital MRO Market in India
10.4.4 Singapore
10.4.4.1 Increasing Adoption of MRO Services in the Country is Expected to Drive the Market for Digital MRO in Singapore
10.5 Rest of the World (RoW)
10.5.1 Latin America
10.5.1.1 Expansion of the Airline Industry in Latin America Presents Growth Opportunities to Developers of Digital MRO
10.5.2 Middle East
10.5.2.1 Increased Investments in Airspace Infrastructure, High Demand for MRO Services, and Successful Implementation of the Low-Cost Carrier Business Model are Driving the Market for Digital MRO in the Middle East
10.5.3 Africa
10.5.3.1 Increase in Aircraft Deliveries and Demand for MRO Services is Expected to Drive the Market for Digital MRO in Africa
11 Competitive Landscape (Page No. – 102)
11.1 Introduction
11.2 Competitive Leadership Mapping
11.2.1 Visionary Leaders
11.2.2 Innovators
11.2.3 Dynamic Differentiators
11.2.4 Emerging Companies
11.3 Major Players in Digital MRO Market
11.4 Competitive Situation and Trends
11.4.1 New Product Launches
11.4.2 Agreements, Partnerships, and Collaborations
11.4.3 Contracts
12 Company Profiles (Page No. – 111)
(Business Overview, Products/Services/Solutions Offered, Recent Developments, SWOT Analysis, and MnM View)*
12.1 Ansys
12.2 Boeing
12.3 Capgemini
12.4 SAP
12.5 General Electric (GE)
12.6 Hexaware
12.7 Honeywell
12.8 IFS
12.9 International Business Machines (IBM)
12.10 Lufthansa Technik
12.11 Ramco Systems
12.12 Rusada
12.13 Swiss Aviationsoftware
12.14 Winair
12.15 Traxxall
* Business Overview, Products/Services/Solutions Offered, Recent Developments, SWOT Analysis, and MnM View Might Not Be Captured in Case of Unlisted Companies.
13 Appendix (Page No. – 146)
13.1 Discussion Guide
13.2 Knowledge Store: Marketsandmarkets™ Subscription Portal
13.3 Available Customizations
13.4 Related Reports
13.5 Author Details


【レポート販売概要】

■ タイトル:デジタルMROの世界市場予測(~2030年)
■ 英文:Digital MRO Market by Technology (Predictive Maintenance, AR/VR, 3D Printing, Blockchain, Artificial Intelligence, Robotics, Big Data Analytics, Digital Twin, IOT), End User (MROs, Airlines, OEMs), Application, Region - Global Forecast to 2030
■ 発行日:2019年9月10日
■ 調査会社:MarketsandMarkets
■ 商品コード:AS 7330
■ 調査対象地域:グローバル
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