Advancements and Opportunities in the On Orbit Satellite Servicing Market - PowerPoint PPT Presentation

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Advancements and Opportunities in the On Orbit Satellite Servicing Market

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The on-orbit satellite servicing market is estimated to be USD 2.4 billion in 2023 and is projected to reach USD 5.1 billion by 2030, at a CAGR of 11.5% from 2023 to 2030. – PowerPoint PPT presentation

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Title: Advancements and Opportunities in the On Orbit Satellite Servicing Market


1
(/) HOOMnE (-/)OArBbOUiTtUSS (/aABtOeUTlUlSiSt-e8
ea.HrcTShMLRe) erpLovErAtiDscERiSnHIgP
TEMAMa(/LrESkAigDenEIRnS(HhtIPtpTsE/A/wMw.AwS.mP)
arketsandmarkets.com/signin.asp) RESEARCH
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CONTACT US (/CONTACTUS.ASP) HOME (/) ? TOP
MARKET REPORTS (/TOP-MARKET-REPORTS.ASP) ?
ON-ORBIT SATELLITE SERVICING MARKET GLOBAL TOP
2000 STRATEGIST RELY ON US FOR THEIR GROWTH
STRATEGIES. KONnOW-OMrObREit S(/aKntoewllleidtgees
tSoree.arsvpicreqinuegst_Mfreea_trrikale) t by
Service (Active Debris Removal (ADR) and Orbit
Adjustment, Robotic Servicing, Refueling,
Assembly), End User (Military Government,
Commercial), Orbit, Type and Region - Global
Forecast to 2030 FREE BROCHURE (/pdfdownloadNew.as
p?id206789424) FREE SAMPLE REPORT
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Code AS 8657May, 2023, by marketsandmarkets.com D
ESCRIPTION TABLE OF CONTENTS METHODOLOGY DOWNL
OAD PDF (/PDFDOWNLOADNEW.ASP?ID206789424) 206
Pages Report The on-orbit satellite servicing
market is estimated to be USD 2.4 billion in 2023
and is projected to reach USD 5.1 billion by
2030, at a CAGR of 11.5 from 2023 to 2030. The
market is driven by factors such as different
value chain levels for vendors, increased use of
dedicated satellite servicing mission extension
vehicles, among others.
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On-Orbit Satellite Servicing Market Forecast to
2028 To know about the assumptions considered for
the study, Request for Free Sample
Report (https//www.marketsandmarkets.com/requests
ampleNew.asp?id206789424)
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ng Market Dynamics opulation
On-orbit satellite servici Drivers Aging
satellite p The aging satellite populat
ion is one of the key drivers of the on-orbit
satellite servicing market. Many satellites in
(/)
orbit are approaching the end of their
operational lives and require maintenance or
replacement to continue functioning. Satellites
are typically designed to operSaigten
Ifno(rhtatpsfi/x/wewdw.pmearrikoedts,aandftmearrk
weths.iccohmt/shigenyinm.asapy) experience
HOME (/) ABOUT US (/ABOUTUS-8.HTML)
LEADERSHIP TEAM (/LEADERSHIPTEAM.ASP) RteEScEhAnR
icCaH lEpXProEbRTleSm(/RsEoSErAdReCgHrLaEdAaDEtiRo
SnHIiPn.ApSeP)rfoBrRmIEaFnINcGeS.
(/ANALYSTBRIEFINGS.HTML) CAREERS (/CAREER.ASP)
CONTACT US (/CONTACTUS.ASP) The demand for
on-orbit satellite services such as life
extension, servicing, and repair is increasing as
a result of the aging satellite population. These
services can help extend the lifespan of existing
satellites, reducing the need for costly
launches of new satellites from Earth. For
example, satellites that are reaching the end of
their operational lives can be refueled or
repaired in orbit rather than being replaced with
a new satellite. On-orbit satellite servicing can
also help address technical issues that arise
during a satellite's operational life.
Satellites may experience failures or degradation
in performance due to exposure to harsh space
environments, and on-orbit servicing can help
identify and address these issues. This can help
ensure that satellite-based services such as
communication, navigation, and remote sensing
remain operational and reliable. As more
satellites approach the end of their operational
life, the demand for on-orbit satellite services
is expected to grow, driving innovation and
investment in this market. Restraints
Technological complexity The on-orbit satellite
(https//www.marketsandmarkets.com/Market-Reports/
small-satellite-market- 150947396.html)
servicing market, which includes life extension,
salvage operations, and satellite repair and
alteration, faces technological complexity as a
significant restraint. Providing on-orbit
satellite services requires advanced technology
and specialized expertise, which can be expensive
to develop and maintain. In many cases, these
services require highly skilled personnel,
specialized equipment, and software. For example,
repairing or altering a satellite in orbit
requires precise control of robotic
(https//www.marketsandmarkets.com/Market-
Reports/robotic-vision-market-196002505.html)arms,
specialized tools, and communication
systems. Moreover, the technology required to
provide on-orbit satellite services is constantly
evolving, and companies need to invest heavily
in RD to stay competitive. This can create a
high barrier for new companies looking to enter
the market. In addition, on-orbit satellite
services may be subject to unique technical
challenges, such as operating in a zero-gravity
environment, managing the effects of radiation
and temperature extremes, and managing the
logistics of servicing satellites that are often
in different orbits and locations. Companies need
to have the resources and expertise to develop
and maintain advanced technology, as well as the
ability to adapt to new technical challenges as
they arise. Opportunities More cost-effective
than new satellite launches On-orbit satellite
services can be more cost-effective than
launching new satellites. By extending the life
of existing satellites, companies can avoid the
costs of designing, building, and launching new
satellites, which can be significant. By
providing life extension services, companies can
help satellite operators avoid the costs
associated with designing, building, and
launching new satellites. This can be a
cost-effective way for operators to maintain
their existing satellite networks and avoid the
significant costs of replacing them. On-orbit
satellite services can also help reduce costs by
repairing or modifying satellites that are
experiencing technical issues or are no longer
functioning as intended. By repairing or
modifying these satellites, operators can avoid
the costs of launching new ones and maintain
their satellite networks with minimal disruption.
On-orbit satellite services can
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-c1i2e.hntmcile).s by reducing the need for
ground-based testing and reducing the time
4
mmission new satellites. This can help reduce
costs and improve the overall etworks. On-orbit
satellite service providers can offer customized
services that are ds of individual satellite
operators. This can help operators optimize their
satellite (/)etworks and reduce costs by avoiding
unnecessary services or maintenance. The on-orbit
satellite servicing market is becoming more
competitive, which can lead to cost savings for
satellite operators. As more companies HeOnMteE
r(/)theABmOUaTrkUeSt(,/AoBpOeUrTaUtSo-r8s.HmTMaLy)
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)r satellite networks
required to launch and co performance of
satellite n tailored to the specific nee
CONTACT US (/CONTACTUS.ASP) and improve their
operational efficiencies while minimizing costs.
Challenges Rapid advancement in satellite
technology to lead to obsolescence of on-orbit
satellite services Rapid advancements in
satellite technology can lead to the obsolescence
of on-orbit satellite services, particularly for
older satellites. Service providers may need to
adapt quickly to keep pace with changing
technologies. The pace of technological change
in the satellite industry can be rapid, with new
technologies emerging and existing technologies
becoming obsolete at a fast pace. This can make
it challenging for on-orbit satellite service
providers to keep up with the latest developments
and ensure that their services remain relevant
and effective. As technology changes, so do
regulatory requirements for satellite operators.
On-orbit satellite service providers may need to
stay up to date on these requirements and adapt
their services to ensure compliance with changing
regulations. Technological obsolescence can
impact the quality of on-orbit satellite
services, as older technologies may be less
reliable or less effective than newer
technologies. Service providers may need to
invest in new technologies to maintain the
quality of their services, which can be
costly. On-Orbit Satellite Servicing Market
Ecosystem Raw material suppliers, component
manufacturers, simulator manufacturers,
distributors, and end users such as satellite
manufacturers and government space agencies are
key stakeholders in the on-orbit satellite
servicing market ecosystem. Investors, funders,
academic researchers, integrators, service
providers, and licensing authorities serve as
major influencers in the market. The strategy of
securing contracts was widely adopted by leading
players, such as Maxar Technologies (US),
Astroscale Holdings Inc. (Japan), SpaceLogistics
LLC (US), Airbus SE (Netherlands), and Thales
Alenia Space (France) to enhance their presence
in the market.
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ctive Debris Removal (ADR) and Orbit Adjustment
segment is projected to lead vicing market
during the forecast period. DR) technologies are
designed to effectively capture and eliminate
space debris in orbit, e(/)ither by safely
deorbiting it back to Earth or relocating it to a
graveyard orbit where it poses no threat to other
spacecraft. Various approaches exist for ADR,
including the use of robotic arms, nets, tethers,
and harpoons to
Based on Service, the A the on-orbit satellite
ser Active Debris Removal (A
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CAODNTRACoTffUeSrs(/CnOuNmTAeCrToUuSs.ASbPe)nefits
, foremost among them being the reduction of
collisions between spacecraft and space debris.
By actively removing debris, ADR helps to
minimize the amount of hazardous material present
in orbit, thereby enhancing the safety and
sustainability of space operations. However, ADR
is a highly intricate and challenging task that
demands advanced technologies and substantial
resources. Additionally, it raises important
legal and ethical considerations, such as
establishing responsibility for debris cleanup
and implementing measures to prevent the
generation of new debris in the future.
Currently, multiple companies and organizations,
including Astroscale (Japan), ClearSpace (US),
and Northrop Grumman Corporation (US), are
actively engaged in developing ADR technologies.
Furthermore, governments worldwide are exploring
policy and regulatory frameworks to address the
issue of space debris and promote the adoption
of ADR technologies. Based on End User, the
commercial segment is projected to grow at the
highest CAGR in the on-orbit satellite servicing
market during the forecast period. The market for
commercial on-orbit satellite servicing is
rapidly evolving, providing a range of valuable
capabilities to commercial satellite operators.
These services include in-orbit refueling,
repairs, upgrades, and maintenance for
satellites. Leading companies such as
SpaceLogistics (US) and Astroscale (Japan) are
actively involved in this market, developing
advanced technologies like robotic arms, fluid
transfer systems, and sensors to ensure safe and
efficient servicing of satellites in orbit. The
primary advantage of commercial on-orbit
satellite servicing lies in its potential to
significantly extend the operational lifespan of
commercial satellites. By offering services that
enhance longevity, operators can continue
generating revenue from their satellites for an
extended period. This approach also reduces the
need for costly and risky satellite
replacements, while enabling operators to adapt
their existing satellites to match technological
advancements and market demands. Overall, the
commercial on-orbit satellite servicing market is
poised for rapid growth as more satellite
operators recognize the value of maximizing
their space assets' utility and profitability
through these services.. North America is
expected to account for the largest share in the
forecasted period. The on-orbit satellite
servicing market in North America is a vibrant
and rapidly expanding sector that encompasses a
diverse range of activities focused on servicing
and maintaining satellites in orbit. This market
involves the collaboration of government
agencies, private companies, and research
institutions, all contributing to the
development, deployment, and commercialization of
on-orbit satellite servicing technologies and
services. North America, particularly the United
States, is at the forefront of on-orbit satellite
servicing initiatives. NASA has played a pivotal
role in advancing this field through programs
like the NASA Satellite Servicing Capabilities
Office (SSCO), which concentrates on developing
cutting-edge technologies such as robotic
systems, tools, and spacecraft rendezvous and
docking capabilities.
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h America have also emerged as significant
players in the on-orbit satellite servicing
offer an array of services including satellite
refueling, repairs, upgrades, and mples include
SpaceLogistics (US), specializing in satellite
life extension services, and N(/)orthrop Grumman
Corporation (US), which provides satellite
servicing and robotic capabilities. The North
American market benefits from a robust aerospace
and technology industry, strong research and
Private companies in Nort market. These companies
maintenance. Notable exa
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development capabilities, and a supportive
regulatory environment. The increasing demand
from satellite
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lifespan of their assets, reduce costs associated
with satellite replacements, and adapt to
evolving market needs through upgrades and
modifications drives the market's growth.
On-Orbit Satellite Servicing Market by Region To
know about the assumptions considered for the
study, download the pdf brochure (https//www.mark
etsandmarkets.com/pdfdownloadNew.asp?id206789424)
Key Market Players Players such as Maxar
Technologies (US), Astroscale Holdings Inc.
(Japan), SpaceLogistics LLC (US), Airbus SE
(Netherlands), and Thales Alenia Space (France).
The report covers various industry trends and new
technological innovations in the on-orbit
satellite servicingcompanies (https//www.market
sandmarkets.com/ResearchInsight/on-orbit-satellite
-servicing-market.asp) for the period, 2019-2030.
Get online access to the report on the World's
First Market Intelligence Cloud
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Company Analysis Dashboard for high growth
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Scope of the Report
Report Metric
Details
Market Size Available for Years
20192030
Base Year Considered
2022
Forecast Period
20232030
Forecast Units
Value (USD Billion)
Segments Covered
Service, Type, End User, Orbit, and Region
North America, Europe, Asia Pacific, the Middle
East Africa, and Latin America
Geographies Covered
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Maxar Technologies (US), Astroscale Holdings Inc.
(Japan), SpaceLogistics LLC (US), Airbus SE
(Netherlands), and Thales Alenia Space (France)
among 25 others.
Companies Covered
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OLnEA-ODErRbSiHt ISP TaEtAeMlli(t/LeESASigDenErIRn
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CTOhNiTsArCeTsUeSa(r/CcOhNrTeApCToUrtS.cAaStPe)
gorizes the On-orbit satellite servicing market
based on Service, Type, End User, Orbit,
and Region.
Segment
Subsegment
Active Debris Removal (ADR) and Orbit Adjustment
Robotic Servicing Refueling Assembly
By Service
Low Earth Orbit (LEO) Medium Earth Orbit (MEO)
Geostationary Orbit (GEO)
By Orbit
Military Government Commercial
By End User
Small Satellites (lt 500 Kg) Medium Satellites
(501- 1000 Kg) Large Satellites (gt1000 Kg)
By Type
North America Europe Asia Pacific Middle East
Africa Latin America
By Region
Recent Developments In February 2023, Gilmour
Space Technologies and Atomos Space announced the
signing of an MOU to explore a multi-year
contract for Gilmour and Atomos to mutually
purchase the services for launching and in-space
transportation. In September 2022, Orbit Fab
jointly announced the partnership with
ClearSpace, joining their 2.2 million contract
awarded by the United Kingdom Space Agency (UKSA)
to equip the ClearSpace debris-removing
satellites with refueling capabilities. To refuel
in orbit, ClearSpace will integrate Orbit Fabs
RAFTI refueling valve in their Active Debris
Removal (ADR) satellite design. In September
2022, Thales Alenia Space and its partners have
been chosen by the European Commission to lead
EROSS IOD, a program dedicated to On-Orbit
Servicing. In April 2022, Orbit Fab and Neutron
Star Systems (NSS) established a cooperative
agreement for the co-
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unstes.ofTchooekiaesg.reMeorme einnfot lays the
foundation to
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9
f refuellable propellants by combining NSS
propellant-agnostic electric propulsion t Fabs
refueling interfaces and tankers. s Space
Machines, Inc. and US Department of Defense
signed a contract. The contract enabled Altius
to assist Maxar in developing two flight-ready
robotic arms, each 2 meters in length. Each arm
will be underactuated, with a single motor
running a tensioned cable system to transmit
torque to any
increase the range o technology with Orbi In
March 2022, Altiu
(/)
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Frequently Asked Questions (FAQ)
What is the current size of the on-orbit satellite servicing market?
Who are the winners in the on-orbit satellite servicing market?
What are some of the opportunities of the on-orbit satellite servicing market?
What are some of the technological advancements
in the market? What are the factors driving the
growth of the market? To speak to our analyst
for a discussion on the above findings, click
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