The satellite industry is observing a steady uptake of all-electric satellites as established operators prefer these platforms for their new and replacement missions. While it is not a complete migration, the rise in uptake of electric propulsion capabilities at the satellite platform level is resulting in a mix of conventional, hybrid, and all-electric satellites. All-electric satellites represent a new segment of satellites that offer extended mission times along with enhanced efficiencies. They also weigh less compared to conventional satellites; this results in reduced launch costs for the satellite operator.
The migration to all-electric platforms is clear but the market is evolving to include a mix of conventional, hybrid, and all-electric platforms. There are satellite platforms which offer the all-electric option to the customer; the market is observing the development of exclusive all-electric platforms. While the market has not reached the stage where the all-electric option is a strong component of the mainstream commercial satellites segment, developments in this direction are progressing steadily. With the option of low-weight and extended mission lives capturing operators’ attention, the market is set to observe more operators preferring all-electric options as part of their future and existing missions. It remains to be seen if the satellite market will collectively move towards an all-electric trend. However, the need for cost-effective and efficient missions is already driving customers and manufacturers towards all-electric options. This study aims to cover the all-electric trend and its impact on the future of the satellite industry.
This study covers the qualitative discussion of the key aspects of all-electric satellites, discussing the recent launches, advantages, disadvantages and opportunities evolving out of this Mega Trend. The study presents an overview of the all-electric satellite market while discussing the relevant factors for growth, opportunities, trend, and action points for relevant industry participants.
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Analyst: Arun Kumar Sampathkumar
Purpose of this Experiential Study
5 Step Process to Transformational Growth
Key Findings
Strategic Imperatives for Satellite Manufacturers
All-Electric Platforms—Advantages and Disadvantages
All-Electric Satellites—Historical Launches
All-Electric Satellites—Historical Launches (continued)
Historical Launches of All-Electric Satellites—Discussion
All-Electric Satellites—Challenges
All-Electric Satellites—The Future
Drivers and Restraints
Market Drivers Explained
Market Drivers Explained (continued)
Market Restraints Explained
Market Restraints Explained (continued)
Macro to Micro Visioning
Demand for Electric Propulsion in the All-Electric Satellites Market
Enhanced Satellite Platforms in the All-Electric Satellites Market
Enabling Next-Generation Satellite Technology in the All-Electric Satellites Market
Evolving Mission Requirements in the All-Electric Satellites Market
Enhanced Returns on Investment in the All-Electric Satellites Market
Top Predictions for the All-Electric Satellites Market
Levers for Growth
Growth Opportunity—All-Electric Satellites
Strategic Imperatives for Success and Growth
The Last Word
Legal Disclaimer
Abbreviations and Acronyms Used
List of Exhibits
The Frost & Sullivan Story
Value Proposition—Future of Your Company & Career
Global Perspective
Industry Convergence
360º Research Perspective
Implementation Excellence
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| Deliverable Type | Market Research |
|---|---|
| No Index | No |
| Podcast | No |
| Author | Arun Kumar Sampathkumar |
| Industries | Aerospace, Defence and Security |
| WIP Number | 9AB0-00-79-00-00 |
| Is Prebook | No |
| GPS Codes | 9000-A1,9831-A1 |
All-Electric Satellites Market, 2020
The Evolving All-Electric Satellite Segment Promises Extended and Enhanced Missions at Low Costs
22-Jan-2020
Global
Market Research
