Ameco Research

Aviation IoT Market Size Is Anticipated to Around US$25,134.6 Million by 2023, This Market Is Expected to Develop with 16.34% CAGR During the Forecast Time Frame

Aviation IoT Market is expected to grow at 16.34% CAGR by reaching the valuation of USD 25,134.6 million by 2023.

 

London, UK -- (SBWIRE) -- 03/08/2019 -- The new research from Ameco Research on Aviation IoT Market Report for 2023 intends to offer target audience with the fresh outlook on market and fill in the knowledge gaps with the help of processed information and opinions from industry experts. The information in the research report is well-processed and a report is accumulated by industry professionals and seasoned experts in the field to ensure of the quality of research.

The research is backed by extensive and in-depth secondary research which involves reference to various statistical databases, national government documents, relevant patent and regulatory databases, news articles, press releases, company annual reports, webcasts, financial reports, and a number of internal and external proprietary databases. This estimated data is cross-checked with industry experts from various leading companies in the market. After the entire authentication process, these reports are shared with subject matter experts (SMEs) for adding further value and to gain their insightful opinion on the research. With such robust process of data extraction, verification, and finalization, we firmly endorse the quality of our research. With such extensive and in-depth research and comprehensive coverage of information, it is always a possibility of clients finding their desired information in the report with enclosure of key components and valuable statistics in all regards.

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Aviation IoT Market Report Information: By Application (Airline, Airport, Air traffic management), By Component (Communication services, Data center systems, Devices, IT Services, Software's), By End Users (Airline, Airport, Air traffic management), By Region (North America, Europe, APAC, MEA, Latin America) - Global Forecast to 2023

Market analysis

Through the Internet of things (IoT), users could now easily control physical items by interfacing them to the web. Different tasks in the aviation business require IoT so as to guarantee a predominant traveling experience by the passengers at lowest fare rates. Most would agree that the aviation IoT is a quickly developing because of the higher demand for IoT which is expanding in different ventures. A few organizations and brands offering services to the aeronautics business are revealing the IoT joining in their operations and administrations. Higher investments in terms of the research and development are the driving factors responsible for the growth of the global Aviation IoT Market. Regarding the cybersecurity, the IoT incorporation is vulnerable; still it is highly preferred in the aviation industry. The market is expected to grow at 16.34% CAGR by reaching the valuation of USD 25,134.6 million by 2023

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Market segmentation

The global Aviation IoT Market is segmented on the basis of its application, component, end-users and regional demand. Based on its application, the market is classified into Airport application, Airline application, Air traffic management application. On the basis of its component, the market is classified as devices, communication services, IT services, data center systems, software. Based on its end-user industry, the market is bifurcated into airport, airline and air traffic management.

Regional analysis

Geographically, the global Aviation IoT Market is divided into global regions like Europe, North America, Asia- Pacific, Middle East, LATAM, and Africa.

Major players

Huawei Technologies Co. Ltd., SAP SESITA, Amadeus IT Group SA, Cisco Systems Inc., among others are some of the major players in the global Aviation IoT Market.

Available customization:

With the given market information, Ameco research offers customization's in line with the company's specific wishes. The following customization choices unit of measurement accessible for the report:
Regional and country-level analysis of the Aviation IoT Market, by end-use.
Detailed analysis and profiles of additional market players.

Table of Contents
Aviation IoT Market- Global Forecast 2023

1 Executive Summary

2 Market Introduction
2.1 Definition
2.2 Scope of the Study
2.3 Market Structure
2.3.1 Airline IoT
2.3.2 Airport IoT
2.3.3 Air Traffic Management IoT

3 Research Methodology
3.1 Research Process
3.2 Data Collection
3.3 Primary Analysis & Hypothesis formulation
3.4 Information Validation & Hypothesis testing
3.5 Information Aggregation and Final Analysis
3.6 Market Data Representation & Key Insights
3.7 Assumptions
3.8 Market Size Estimation

4 Market Dynamics
4.1 Introduction
4.2 Drivers
Airline Oriented
4.2.1 Increase in Passenger Traffic and Subsequent Demand for New Aircraft
Airport Oriented
4.2.2 Rising Investments in Agile and Smart Airport Concepts
4.3 Restraints
4.3.1 IoT Systems Vulnerable to Cybersecurity Threats
4.3.2 Issues Associated with Data Management
4.4 Opportunities
Airport Oriented
4.4.1 Energy and Process Optimization
Airline Oriented
4.4.2 Rapid Adoption of IFEC Systems & Connected Aircraft Concept
In-flight Entertainment & Connectivity (IFEC)
Connected Aircraft

5 Market Factor Analysis
5.1 Porter's Five Forces Model
5.1.1 Threat of New Entrants
5.1.2 Bargaining Power of Suppliers
5.1.3 Bargaining Power of Buyers
5.1.4 Threat of Substitutes
5.1.5 Intensity of Rivalry
5.2 Supply Chain
5.3 Technological Trends
5.3.1 Cloud Computing
5.3.1.1 IoT & Cloud Computing
5.3.2 Big Data
5.3.2.1 IoT & Big Data
5.3.3 Augmented Reality/Virtual Reality
5.3.3.1 IoT & Augmented Reality/Virtual Reality
5.3.4 Artificial Intelligence
5.3.4.1 IoT & Artificial Intelligence

6 Global Aviation IoT Market, By Component
6.1 Overview
6.1.1 IT Services
6.1.2 Software
6.1.3 Data Center Systems
6.1.4 Communication Services
6.1.5 Devices

7 Global Aviation IoT Market, By End-User
7.1 Overview
7.1.1 Airline
7.1.2 Airport
7.1.3 Air Traffic Management

8 Global Aviation IoT Market, By Application
8.1 Overview
8.1.1 Airline Application
8.1.1.1 Fleet Management
8.1.1.1.1 Engine Performance Optimization
8.1.1.1.2 Predictive Maintenance and Vehicle Diagnostics
8.1.1.1.3 Fuel Management and Energy Savings
8.1.1.2 Passenger Experience Enhancement
8.1.1.2.1 In-Flight Entertainment and Connectivity Solutions
8.1.1.2.2 Hyper Personalization
8.1.1.2.3 Track and Trace
8.1.1.3 Other Processes
8.1.2 Airport Application
8.1.2.1 Passenger Processing
8.1.2.1.1 Baggage and Conveyor Handling
8.1.2.1.2 Location-Based Services
8.1.2.1.3 Passenger Monitoring
8.1.2.1.4 Automated Check-Ins and Checkouts
8.1.2.1.5 Virtual Signage
8.1.2.2 Security
8.1.2.2.1 Smart Screening
8.1.2.2.2 Smart Parking
8.1.2.2.3 Access Control
8.1.2.3 Operations
8.1.2.3.1 Energy Efficiency
8.1.2.3.2 Staff Management
8.1.2.3.3 Pollution Control
8.1.3 Air Traffic Management Application
8.1.3.1 Runway Management
8.1.3.1.1 Asset Tracking
8.1.3.1.2 Metrological Services
8.1.3.1.3 Runway Foreign Object Damage (FOD) Prevention
8.1.3.1.4 Smart Maintenance
8.1.3.2 Flight Turnaround Optimization
8.1.3.2.1 Aircraft Movement
8.1.3.2.2 Refueling and Quick Maintenance
8.1.3.3 Other Processes
8.1.3.3.1 Intrusion Prevention
8.1.3.3.2 Light Control
8.1.3.3.3 Digital Signage

9 Global Aviation IoT Market, By Region
9.1 Overview
9.2 North America
9.3 Europe
9.3.1 UK
9.3.1.1 UK by Component
9.3.1.2 UK by End-User
9.3.1.2.1 UK by Airline Application
9.3.1.2.2 UK by Airport Application
9.3.1.2.3 UK by Air Traffic Management Application
9.3.2 Germany
9.3.2.1 Germany by Component
9.3.2.2 Germany by End-User
9.3.2.2.1 Germany by Airline Application
9.3.2.2.2 Germany by Airport Application
9.3.2.2.3 Germany by Air Traffic Management Application
9.3.3 France
9.3.3.1 France by Component
9.3.3.2 France by End-User
9.3.3.2.1 France by Airline Application
9.3.3.2.2 France by Airport Application
9.3.3.2.3 France by Air Traffic Management Application
9.3.4 Italy
9.3.4.1 Italy by Component
9.3.4.2 Italy by End-User
9.3.4.2.1 Italy by Airline Application
9.3.4.2.2 Italy by Airport Application
9.3.4.2.3 Italy by Air Traffic Management Application
9.3.5 Netherlands
9.3.5.1 Netherlands by Component
9.3.5.2 Netherlands by End-User
9.3.5.2.1 Netherlands by Airline Application
9.3.5.2.2 Netherlands by Airport Application
9.3.5.2.3 Netherlands by Air Traffic Management Application
9.3.6 Rest of Europe
9.3.6.1 Rest of Europe by Component
9.3.6.2 Rest of Europe by End-User
9.3.6.2.1 Rest of Europe by Airline Application
9.3.6.2.2 Rest of Europe by Airport Application
9.3.6.2.3 Rest of Europe by Air Traffic Management Application
9.4 Asia-Pacific
9.4.1 China
9.4.1.1 China by Component
9.4.1.2 China by End-User
9.4.1.2.1 China by Airline Application
9.4.1.2.2 China by Airport Application
9.4.1.2.3 China by Air Traffic Management Application
9.4.2 India
9.4.2.1 India by Component
9.4.2.2 India by End-User
9.4.2.2.1 India by Airline Application
9.4.2.2.2 India by Airport Application
9.4.2.2.3 India by Air Traffic Management Application
9.4.3 Japan
9.4.3.1 Japan by Component
9.4.3.2 Japan by End-User
9.4.3.2.1 Japan by Airline Application
9.4.3.2.2 Japan by Airport Application
9.4.3.2.3 Japan by Air Traffic Management Application
9.4.4 South Korea
9.4.4.1 South Korea by Component
9.4.4.2 South Korea by End-User
9.4.4.2.1 South Korea by Airline Application
9.4.4.2.2 South Korea by Airport Application
9.4.4.2.3 South Korea by Air Traffic Management Application
9.4.5 Rest of Asia-Pacific
9.4.5.1 Rest of Asia-Pacific by Component
9.4.5.2 Rest of Asia-Pacific by End-User
9.4.5.2.1 Rest of Asia-Pacific by Airline Application
9.4.5.2.2 Rest of Asia-Pacific by Airport Application
9.4.5.2.3 Rest of Asia-Pacific by Air Traffic Management Application
9.5 Middle East & Africa
9.5.1 UAE
9.5.1.1 UAE by Component
9.5.1.2 UAE by End-User
9.5.1.2.1 UAE by Airline Application
9.5.1.2.2 UAE by Airport Application
9.5.1.2.3 UAE by Air Traffic Management Application
9.5.2 Saudi Arabia
9.5.2.1 Saudi Arabia by Component
9.5.2.2 Saudi Arabia by End-User
9.5.2.2.1 Saudi Arabia by Airline Application
9.5.2.2.2 Saudi Arabia by Airport Application
9.5.2.2.3 Saudi Arabia by Air Traffic Management Application
9.5.3 Rest of Middle East & Africa
9.5.3.1 Rest of Middle East & Africa by Component
9.5.3.2 Rest of Middle East & Africa by End-User
9.5.3.2.1 Rest of Middle East & Africa by Airline Application
9.5.3.2.2 Rest of Middle East & Africa by Airport Application
9.5.3.2.3 Rest of Middle East & Africa by Air Traffic Management Application
9.6 Latin America
9.6.1 Brazil
9.6.1.1 Brazil by Component
9.6.1.2 Brazil by End-User
9.6.1.2.1 Brazil by Airline Application
9.6.1.2.2 Brazil by Airport Application
9.6.1.2.3 Brazil by Air Traffic Management Application
9.6.2 Rest of Latin America
9.6.2.1 Rest of Latin America by Component
9.6.2.2 Rest of Latin America by End-User
9.6.2.2.1 Rest of Latin America by Airline Application
9.6.2.2.2 Rest of Latin America by Airport Application
9.6.2.2.3 Rest of Latin America by Air Traffic Management Application

10 Competitive Landscape
10.1 Competitive Scenario
10.2 Market Share Analysis
10.3 Competitor Benchmarking
10.4 Market Ranking

11 Company Profile
11.1 Amadeus IT Group SA
11.1.1 Company Overview
11.1.2 Financial Overview
11.1.3 Products/Services Offered
11.1.4 Key Developments
11.1.5 SWOT Analysis
11.1.6 Key Strategies
11.2 SAP SE
11.2.1 Company Overview
11.2.2 Financial Overview
11.2.3 Products/Services Offered
11.2.4 Key Developments
11.2.5 SWOT Analysis
11.2.6 Key Strategies
11.3 Cisco Systems, Inc.
11.3.1 Company Overview
11.3.2 Financial Overview
11.3.3 Products/Services Offered
11.3.4 Key Developments
11.3.5 SWOT Analysis
11.3.6 Key Strategies
11.4 Huawei Technologies Co., Ltd
11.4.1 Company Overview
11.4.2 Financial Overview
11.4.3 Products/Services Offered
11.4.4 Key Developments
11.4.5 SWOT Analysis
11.4.6 Key Strategies
11.5 SITA
11.5.1 Company Overview
11.5.2 Financial Overview
11.5.3 Products/Services Offered
11.5.4 Key Developments
11.5.5 SWOT Analysis
11.5.6 Key Strategies

12 Appendix
12.1 References

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