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Global airport autonomous tractor market expected to grow at 15.7% CAGR between 2018 and 2026: Market insights, analysis, trends and forecast | Sheer Analytics and Insights

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02/12/2019 | 10:55 am

The global airport autonomous tractor market is estimated to grow at a CAGR of 15.7% during the forecast period 2018-2026. Read more about the market here. Download latest market research report.

Sheer Analytics and Insights Pvt. Ltd. have published a report on the global airport autonomous tractor market titled Global Airport Autonomous Tractor Market (By Component: Ultrasonic Sensors, LIDAR, Camera, GPS, and Others, By Type - Push Back Tractor, Baggage Handling Tractors and Tow Tractors, By Application - Luggage and Freight and By Regions) - Global Industry Analysis, Size, Share, Growth, Trends and Forecast, 2018 - 2026. The market is estimated to grow at a CAGR of 15.7% during the forecast period 2018-2026. The report covers the forecast and analysis of the airport autonomous tractor on both regional as well as global level.

Download complete report here: https://www.sheeranalyticsandinsights.com/market-report-research/global-airport-autonomous-tractor-market-21

The decrease in the fares of airlines has created massive demand for airways towards travelers. Increasing disposable income and reduction in the trade barriers across borders are further driving the airline industry at present. Hence, with the increase in demand for air transportation, airlines authorities are investing massively towards bringing automation and advanced infrastructure at the airports. As a result, the demand for tractors for baggage and goods handling are expected to rise during the forecast period. In addition, the rapid adoption of technology such as automation in the airport support vehicles industry is anticipated to drive the global airport autonomous tractor market during the forecast period. Furthermore, increasing competition in the airline industry towards offering money-worthy services to passengers is estimated to create ample demand for the airport autonomous tractors during the forecast period. Growing numbers of passengers for tours and travel is expected to create demand for airport autonomous tractor by the airport authorities. Baggage segment is further expected to propel at a significant CAGR owing to the increasing numbers of domestic flights flying each day coupled with the construction of new airports across the developing nations. In addition, increasing volumes of baggage permit by international airport authorities is expected to create demand for time-saving and hassle-free luggage handling automotive.

Geographically, the global airport autonomous tractor market is divided into global regions like Europe, North America, Asia- Pacific, Middle East, LATAM, and Africa. North America region holds the largest market share. The reasons are attributed to the presence of established airlines company coupled with greater numbers of airports and flights. High adoption rates of technology, greater exports and stringent government regulations regarding passenger safety and amenity across the USA are the other factors owing to which the North America region holds the largest market share. However, increasing numbers of passengers and logistics coupled with massive investment by the developing nations across Asia-Pacific regions such as China, India, Vietnam, UAE, and others are expected to create significant demand for airport autonomous tractors during the forecast period.

Download report sample here: https://www.sheeranalyticsandinsights.com/request-sample/2/1/212/5

In the recent market research report published by Sheer Analytics and Insights Pvt. Ltd., airport autonomous tractor market is segmented based on component, which is further divided into ultrasonic Sensors, LIDAR, camera, GPS and others. Based on type, the market has been segmented as push back tractor, baggage handling tractors and tow tractors. And based on application, the market is segmented into luggage and freight.

GSE manufacturer TLD entered into a partnership with EasyMile to develop automated airport vehicles to solve several functions in an airport. As a result of the partnership, TractEasy, an autonomous baggage and cargo tractor has been launched. The battery-driven vehicle is featured with a top speed of 25 KMPH and can carry loads up to 25 tonnes. Furthermore, it can be connected with the flight management system on an aircraft. Navigation and obstacle detection is enabled by fusing data from a number of sensors, including lasers, cameras, odometers, and GPS sensors. Industrial-grade safety features include a fail-safe parking brake.

According to Antoine Maguin, CEO, TLD., "Many companies around the world are developing driverless vehicles - for example, Tesla and Google. It's a very clear trend in the automotive business, but we see a very clear opportunity to develop a solution for use at airports, with a field-proven partner in EasyMile."

Some of the key industry players in the global airport autonomous tractor market include Daimler Ag, Israel Aerospace Industries Ltd., Linde Material Handling, NAVYA and TLD.

Major segmentation of the airport autonomous tractor market:

Global Airport Autonomous Tractor Market: By Component*Ultrasonic Sensors *LIDAR *Camera *GPS *Others

Global Airport Autonomous Tractor Market: By Type*Push Back Tractors *Baggage Handling Tractors *Tow Tractors

Global Airport Autonomous Tractor Market: By Application*Luggage *Freight

Global Airport Autonomous Tractor Market: By Geography*North America*The U.S. *Canada *Mexico*Europe*U.K. *France *Germany *Italy *Rest of Europe*Asia Pacific*India *China *Japan *Rest of Asia Pacific*The Middle East and Africa*South Africa *Rest of the Middle East and Africa*Latin America*Brazil *Rest of Latin America

TABLE OF CONTENTS

1. Research Methodology, Assumptions, and Acronyms

2. Executive Summary and Market Overview

2.1. Global IoT in Medical Devices Market Snapshot

2.2. Vehicle Specifications

2.2.1. Pushback Tractors

2.2.1.1. Engine

2.2.1.2. Transmission

2.2.1.3. Drive

2.2.1.4. Steering

2.2.1.5. Weights

2.2.1.6. Tractive Efforts

2.2.1.7. Applications

2.2.2. Baggage Handling Tractors

2.2.2.1. Engine

2.2.2.2. Transmission

2.2.2.3. Drive

2.2.2.4. Steering

2.2.2.5. Weights

2.2.2.6. Tractive Efforts

2.2.2.7. Applications

2.2.3. Tow Tractors

2.2.3.1. Engine

2.2.3.2. Transmission

2.2.3.3. Drive

2.2.3.4. Steering

2.2.3.5. Weights

2.2.3.6. Tractive Efforts

2.2.3.7. Applications

3. Global IoT in Medical Devices Market Overview

3.1. Introduction

3.1.1. Global IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market

3.1.2. Global IoT in Medical Devices Market Snapshot

4. Global IoT in Medical Devices Market, by Component

4.1. Introduction

4.1.1. Global IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market- By Component

4.1.1.1. Ultrasonic Sensors

4.1.1.2. LIDAR

4.1.1.3. Camera

4.1.1.4. GPS

4.1.1.5. Others

5. Global IoT in Medical Devices Market, by Type

5.1. Introduction

5.1.1. Global IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market- by Type

5.1.1.1. Push Back Tractors

5.1.1.2. Baggage Handling Tractors

5.1.1.3. Tow Tractors

6. Global IoT in Medical Devices Market, by Application

6.1. Introduction

6.1.1. Global IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market- by Application

6.1.1.1. Luggage

6.1.1.2. Freight

7. Global IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market, by Region

7.1. Introduction

7.2. Key Takeaways

8. North America IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market

8.1. Market Dynamics

8.1.1. Drivers

8.1.2. Restraints

8.1.3. Opportunities

8.1.4. Decision Support Matrix

8.2. North America IoT in Medical Devices Market Analysis- by Component

8.3. North America IoT in Medical Devices Market Analysis- by Type

8.4. North America IoT in Medical Devices Market Analysis- by Application

8.5. U.S.

8.6. Canada

8.7. Mexico

9. Europe IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market

9.1. Market Dynamics

9.1.1. Drivers

9.1.2. Restraints

9.1.3. Opportunities

9.1.4. Decision Support Matrix

9.2. Europe IoT in Medical Devices Market Analysis- by Component

9.3. Europe IoT in Medical Devices Market Analysis- by Type

9.4. Europe IoT in Medical Devices Market Analysis- by Application

9.5. U.K.

9.6. France

9.7. Germany

9.8. Italy

9.9. Spain

9.10. Rest of Europe

10. Asia Pacific IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market

10.1. Market Dynamics

10.1.1. Drivers

10.1.2. Restraints

10.1.3. Opportunities

10.1.4. Decision Support Matrix

10.2. Asia Pacific IoT in Medical Devices Market Analysis- by Component

10.3. Asia Pacific IoT in Medical Devices Market Analysis- by Type

10.4. Asia-Pacific IoT in Medical Devices Market Analysis- by Application

10.5. India

10.6. China

10.7. Japan

10.8. Rest of Asia Pacific

11. Middle East and Africa (MEA) IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market

11.1. Market Dynamics

11.1.1. Drivers

11.1.2. Restraints

11.1.3. Opportunities

11.1.4. Decision Support Matrix

11.2. MEA IoT in Medical Devices Market Analysis- by Component

11.3. MEA IoT in Medical Devices Market Analysis- by Type

11.4. MEA IoT in Medical Devices Market Analysis- by Application

11.5. South Africa

11.6. Rest of Middle East and Africa

12. Latin America IoT in Medical Devices Market Revenue Forecast and Potential Addressable Market

12.1. Market Dynamics

12.1.1. Drivers

12.1.2. Restraints

12.1.3. Opportunities

12.1.4. Decision Support Matrix

12.2. Latin America IoT in Medical Devices Market Analysis- by Component

12.3. Latin America IoT in Medical Devices Market Analysis- by Type

12.4. Latin America IoT in Medical Devices Market Analysis- by Application

12.5. Brazil

12.6. Rest of Latin America

13. Competitive Landscape

13.1. Global IoT in Medical Devices Market-Company Market Share Analysis

14. Company Profiles: (Revenue, Product /Brand Offerings, Company Highlights)

14.1. Daimler Ag

14.2. Israel Aerospace Industries Ltd.

14.3. Linde Material Handling

14.4. NAVYA

14.5. TLD

Note: Similar segmentation will be provided for all companies, and data will be available as per best efforts.

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