DUBLIN, Nov. 13, 2020 /PRNewswire/ — The “In-Space Manufacturing, Servicing, and Transportation Market – A Global Market and Regional Analysis: Focus on End User, Operation and Country Analysis – Analysis and Forecast, 2020-2030” report has been added to ResearchAndMarkets.com’s offering.
The in-space manufacturing, servicing, and transportation industry analysis projects the market to grow at a significant CAGR of 17.26% on the basis of value during the forecast period from 2020 to 2030. North America is expected to dominate the market in 2030 with a share of 45.57%. The North America region includes the U.S. and Canada. The U.S. is expected to acquire a major share in 2030 due to the increase in the investment and strategic developments of companies in the country.
The technological development and feasibility of on-orbit servicing, repair, inspection, and assembly have already been witnessed in the past decades. There are several factors that are contributing to the significant growth of in-orbit manufacturing, servicing, and transportation market. Some of these factors include focused efforts by emerging space companies to develop on-orbit space capabilities, increasing efforts toward space debris removal, and increasing satellite launches.
The in-space manufacturing, servicing, and transportation market research provides detailed market information for segmentation such as end-user, operation, and region. The purpose of this market analysis is to examine the in-space manufacturing, servicing, and transportation market outlook in terms of factors driving the market, trends, technological developments, and competitive benchmarking, among others.
The report further takes into consideration the market dynamics and the competitive landscape, along with the detailed financial and product contribution of the key players operating in the market.
While highlighting the key driving and restraining forces for this market, the report also provides a detailed study of the end-users, which include commercial and military & government. The report also analyzes different operations that include manufacturing, servicing, and transportation. Furthermore, the service sub-segment is further segmented into life extension, de-orbiting, satellite repair and inspection, and relocation.
The in-space manufacturing, servicing, and transportation market is segregated by region under four major regions, namely North America, Europe, Asia-Pacific, and Rest-of-the-World. Data for each of these regions (by country) has been provided in the market study.
Key Companies in the Global In-Space Manufacturing, Servicing, and Transportation Industry
The key market players in the global in-space manufacturing, servicing, and transportation market include Airbus S.A.S., Altius Space, Astrobotics, Astroscale, Momentus Space, Atomos Space, Chandah Space Technologies, D-Orbit SpA, Honeybee Robotics, Infinite Orbits, Orbit Fab, Northrop Grumman Corporation, SSL (a Maxar Company), Tethers Unlimited, Inc., and Made In Space, among others.
Key Questions Answered in this Report:
- What are the underlying structures resulting in the emerging trends within the in-space manufacturing, servicing, and transportation market?
- What is the scope in the market for new OEMs and other players to enter?
- What are the driving and challenging factors for the growth of the in-space manufacturing, servicing, and transportation market?
- Which operation type is expected to lead the in-space manufacturing, servicing, and transportation market by 2030?
- What was the market value of the regions in in-space manufacturing, servicing and transportation market in 2019, and how is the market estimated to grow during the forecast period 2020-2030?
- How is the industry expected to evolve during the forecast period 2020-2030?
- What are the key development strategies that are implemented by the key players to sustain the competitive market?
Key Topics Covered:
1.1 Industry Outlook
1.2 Business Dynamics
1.2.1 Business Drivers
220.127.116.11 Increasing Developments by Emerging Space Players on On-Orbit Space Capabilities
18.104.22.168 Focus on In-situ resource utilization (ISRU) for Sustainable Space Infrastructure
22.214.171.124 Increased Benefits for Space Missions Through the Adoption of On-Orbit Services
1.2.2 Business Challenges
126.96.36.199 Technical Challenges Hindering the Potential of On-Orbit Space Capabilities
188.8.131.52 Legal and Regulatory Issues
1.2.3 Business Strategies
184.108.40.206 New Product Development
220.127.116.11 Market Developments
1.2.4 Corporate Strategies
18.104.22.168 Contracts, Agreements, Partnerships, Collaborations, and Acquisitions
1.2.5 Business Opportunities
22.214.171.124 Increasing Efforts on Space Debris Removal
126.96.36.199 Increasing Number of Satellite Launches
2.1 Demand Analysis of In-Space Manufacturing, Servicing, and Transportation (by End User)
2.1.2 Military and Government
3.1 Global In-Space Manufacturing, Servicing, and Transportation Market (by Operation)
3.2 Demand Analysis of In-Space Manufacturing, Servicing, and Transportation Market (by Operation)
188.8.131.52 Life Extension
184.108.40.206.1 Life Extension, By Orbit
220.127.116.11.1 De-Orbiting, By Orbit
18.104.22.168 Satellite Inspection and Repair
22.214.171.124.1 Satellite Inspection and Repair, By Orbit
126.96.36.199.1 Relocation, By Orbit
4.1 North America
5 Markets – Competitive Benchmarking & Company Profiles
5.1 Competitive Benchmarking
5.2 Astrobotic Technology, Inc.
5.2.1 Company Overview
188.8.131.52 Role of Astrobotic Technology, Inc. in In-Space Manufacturing, Servicing, and Transportation Market
5.2.2 Corporate Strategies
184.108.40.206 Partnerships and Collaborations
220.127.116.11 Contracts and Agreements
5.2.3 Strength and Weakness of Astrobotic Technology, Inc.
5.3.1 Company Overview
18.104.22.168 Role of Airbus in In-Space Manufacturing, Servicing, and Transportation Market
22.214.171.124 Product Portfolio
126.96.36.199 Production Sites
5.3.2 Corporate Strategies
188.8.131.52 Partnerships and Collaborations
184.108.40.206 Contracts and Agreements
5.3.3 Strength and Weakness of Airbus
5.3.4 R&D Analysis
5.4 Altius Space Machines Inc.
5.4.1 Company Overview
220.127.116.11 Role of Altius Space Machines Inc. in In-Space Manufacturing, Servicing, and Transportation Market
18.104.22.168 Product Portfolio
5.4.2 Corporate Strategies
22.214.171.124 Contracts and Agreements
5.4.3 Strength and Weakness of Altius Space Machines Inc.
5.5.1 Company Overview
126.96.36.199 Role of Astroscale in In-Space Manufacturing, Servicing, and Transportation Market
188.8.131.52 Product Portfolio
184.108.40.206 Production Sites
5.5.2 Business Strategies
220.127.116.11 Market Developments
5.5.3 Corporate Strategies
18.104.22.168 Partnerships and Collaborations
22.214.171.124 Contract and Agreement
5.5.4 Strength and Weakness of Astroscale
5.6 Atomos Space
5.6.1 Company Overview
126.96.36.199 Role of Atomos Space in In-Space Manufacturing, Servicing, and Transportation Market
188.8.131.52 Product Portfolio
5.6.2 Strength and Weakness of Atomos Space
5.7 Chandah Space Technologies
5.7.1 Company Overview
184.108.40.206 Role of Chandah Space Technologies in In-Space Manufacturing, Servicing, and Transportation Market
5.7.2 Strength and Weakness of Chandah Space Technologies
5.8.1 Company Overview
220.127.116.11 Role of D-Orbit in In-Space Manufacturing, Servicing, and Transportation Market
18.104.22.168 Product Portfolio
5.8.2 Business Strategies
22.214.171.124 Product Developments
5.8.3 Strength and Weakness of D-Orbit
5.9 Honeybee Robotics
5.9.1 Company Overview
126.96.36.199 Role of Honeybee Robotics in In-Space Manufacturing, Servicing, and Transportation Market
188.8.131.52 Product Portfolio
184.108.40.206 Production Sites
5.9.2 Corporate Strategies
220.127.116.11 Contracts and Agreements
5.9.3 Strength and Weakness of Honeybee Robotics Corporation
5.1 Infinite Orbits
5.10.1 Company Overview
18.104.22.168 Role of Infinite Orbits in In-Space Manufacturing, Servicing, and Transportation Market
22.214.171.124 Product Portfolio
5.10.2 Strength and Weakness of Infinite Orbits
5.11 Orbit Fab
5.11.1 Company Overview
126.96.36.199 Role of Orbit Fab in In-Space Manufacturing, Servicing, and Transportation Market
188.8.131.52 Product Portfolio
5.11.2 Corporate Strategies
184.108.40.206 Contracts and Agreements
5.11.3 Strength and Weakness of Orbit Fab
5.12 Northrop Grumman Corporation
5.12.1 Company Overview
220.127.116.11 Role of Northrop Grumman Corporation in In-Space Manufacturing, Servicing, and Transportation Market
18.104.22.168 Product Portfolio
5.12.2 Corporate Strategies
22.214.171.124 Partnerships and Collaborations
126.96.36.199 Contracts and Agreements
5.12.3 Strength and Weakness of Northrop Grumman Corporation
5.12.4 R&D Analysis
5.13 Tethers Unlimited Inc.
5.13.1 Company Overview
188.8.131.52 Role of Tethers Unlimited Inc. in In-Space Manufacturing, Servicing, and Transportation Market
184.108.40.206 Product Portfolio
5.13.2 Business Strategies
220.127.116.11 Product Developments
5.13.3 Corporate Strategies
18.104.22.168 Contracts and Agreements
5.13.4 Strength and Weakness of Tethers Unlimited Inc.
5.14 SSL (Maxar Technologies Company)
5.14.1 Company Overview
22.214.171.124 Role of SSL (Maxar Technologies Company) in In-Space Manufacturing, Servicing, and Transportation Market
126.96.36.199 Product Portfolio
5.14.2 Strength and Weakness of SSL (Maxar Technologies Company)
5.15 Made In Space
5.15.1 Company Overview
188.8.131.52 Role of Made In Space in In-Space Manufacturing, Servicing, and Transportation Market
184.108.40.206 Product Portfolio
5.15.2 Business Strategies
220.127.116.11 Product Developments
5.15.3 Corporate Strategies
18.104.22.168 Contracts and Agreements
5.15.4 Strength and Weakness of Made In Space
5.16 Momentus Space
5.16.1 Company Overview
22.214.171.124 Role of Momentus Space in In-Space Manufacturing, Servicing, and Transportation Market
126.96.36.199 Product Portfolio
5.16.2 Corporate Strategies
188.8.131.52 Partnerships and Collaborations
184.108.40.206 Contracts and Agreements
5.16.3 Strength and Weakness of Momentus Space
6 Research Methodology
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