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위성 IoT 통신 (Satellite IoT Communication) 시장조사 보고서 – 3rd Edition

 

조사회사:Berg Insight 출판년월:2023년08월

The Satellite IoT Communications Market – 3rd Edition
Berg Insight의 이 전략 연구 보고서는 비즈니스 결정의 기반이 되는 5년간의 업계 예측 및 전문가 논평을 포함하여 60페이지에 달하는 고유한 비즈니스 인텔리전스를 제공합니다.

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구성 영문조사보고서

리포트목차    주문/문의    조사회사/구입안내

 

Berg Insight「위성 IoT 통신 시장 3rd Edition - The Satellite IoT Communications Market – 3rd Edition」는 세계 위성 IoT 통신 시장을 조사하고 2027년까지 시장 예측을 실시하고 있습니다. 또한 유럽 및 북미의 주요 위성 IoT 사업자 44사에 대해서도 소개하고 있습니다.

위성 IoT 통신 (Satellite IoT Communication) 시장조사 보고서

이 보고서의 주요 특징

  • 위성 IoT 통신 생태계의 전방위 개요
  • 위성 IoT 운영자 44개사의 전략 검토
  • 새로운 LEO 소형 위성 배치의 영향에 대한 견해
  • 최신 업계 동향과 전개 요약
  • 운영자 시장 점유율 및 경쟁 역학 검토
  • 202년까지 세계와 지역별 광범위한 시장 예측

Report Overview

The Satellite IoT Communications Market analyses the latest trends and developments on the emerging satellite IoT connectivity market. This strategic research report from Berg Insight provides you with 60 pages of unique business intelligence including 5-year industry forecasts and expert commentary on which to base your business decisions.

This study investigates the satellite IoT connectivity market. The research covers a total of 44 satellite IoT operators including both the incumbent operators and all the new LEO smallsat constellations. The global satellite IoT communications market is growing at a good steady pace. The global satellite IoT subscriber base grew to surpass 4.5 million in 2022. The number of satellite IoT subscribers will increase at a compound annual growth rate (CAGR) of 39.6 percent to reach 23.9 million units in 2027. Get up to date with the latest information and trends about the satellite IoT business opportunity.

Highlights from the report:
360-degree overview of the satellite IoT communications ecosystem.
Reviews of the strategies of 44 satellite IoT operators.
Perspectives on the impact of the new LEO nano satellite constellations.
Summary of the latest industry trends and developments.
Reviews of operator market shares and competitive dynamics.
Extensive global and regional market forecasts lasting until 2027.
The number of satellite IoT subscribers to reach 23.9 million in 2027

Only about 10 percent of the Earth’s surface has access to terrestrial connectivity services which leaves a massive opportunity for satellite IoT communications. Satellite connectivity provides a complement to terrestrial cellular and non-cellular networks in remote locations, especially useful for applications in agriculture, asset tracking, maritime and intermodal transportation, oil and gas industry exploration, utilities, construction and governments. Both incumbent satellite operators and more than two dozen new initiatives are now betting on the IoT connectivity market. This study covers a total of 44 satellite IoT operators. Only 19 of these offer commercial satellite IoT connectivity services today.
The global satellite IoT communications market is growing at a good steady pace. The global satellite IoT subscriber base grew to surpass 4.5 million in 2022. The number of satellite IoT subscribers will increase at a compound annual growth rate (CAGR) of 39.6 percent to reach 23.9 million units in 2027. Satellite IoT connectivity revenues are at the same time forecasted to grow at a compound annual growth rate (CAGR) of 35.3 percent from € 275.4 million in 2022 to approximately € 1.25 billion in 2027. Meanwhile the monthly ARPU is expected to drop to € 4.35 by 2027. Iridium, Orbcomm, Inmarsat and Globalstar are the largest satellite IoT network operators. Iridium grew its subscriber base by 20 percent in the last year and reached the number one spot serving 1.5 million subscribers. Originally a dedicated satellite operator, Orbcomm has transitioned into an end-to-end solution provider, delivering services on its own satellite network as well as being a reseller partner of Inmarsat and others. At the end of Q4-2022, the company had 1.1 million satellite IoT subscribers on its own and Inmarsat’s networks. Inmarsat does not currently report IoT subscribers. Globalstar reached 0.44 million subscribers. Other players with connections in the tens of thousands include for instance Myriota in Australia, Kineis in France and Thuraya in the UAE.

In addition to the incumbent satellite operators a number of new initiatives have appeared on the market recently. Examples of some high-profile projects are Astrocast, AST SpaceMobile, CASC/CASIC, E-Space, Fleet Space Technologies, Hubble Network, Kepler Communications, Kineis, Ligado Networks, Lynk, Myriota, Omnispace, Skylo, Swarm Technologies (SpaceX) and Totum. Many of these are based on low-earth orbit nano satellite concepts. While most rely on proprietary satellite connectivity technologies to support IoT devices, several are starting to leverage terrestrial wireless IoT connectivity technologies. Examples include OQ Technology, AST SpaceMobile, Omnispace, Sateliot, Galaxy Space, Ligado Networks, Lynk, Skylo and Starlink (3GPP 4G/5G); EchoStar Mobile, Fossa Systems, Lacuna Space, Innova Space and Eutelsat (LoRaWAN); and Hubble Network (Bluetooth).


목차

Table of Contents

1 Satellite Networks for the Internet of Things

1.1 Introduction to satellite IoT technologies
1.1.1 Traditional GEO constellations
1.1.2 The new age of large LEO constellations
1.2 Satellite IoT constellations
1.2.1 Satellite orbit types
1.2.2 Space junk challenges
1.2.3 Frequency bands
1.2.4 Latency
1.2.5 Coverage and capacity
1.3 Investments and M&As in the satellite IoT industry
1.4 Use cases for satellite IoT
1.5 Business models and project strategies
1.6 Launch services
1.7 Satellite design and manufacturing
1.8 Satellite IoT modules and terminals

2 Market Forecasts and Trends

2.1 Market analysis
2.1.1 The incumbent satellite IoT operators
2.1.2 The new space race boosted by numerous new LEO constellations
2.1.3 Hybrid satellite-terrestrial connectivity initiatives on the rise
2.1.4 Satellite IoT subscriber forecasts
2.1.5 Satellite operator market shares
2.2 Regional trends
2.2.1 Europe
2.2.2 North America
2.2.3 China
2.2.4 Rest of World
2.3 Future industry trends

3 Company Profiles and Strategies

3.1 European satellite operators
3.1.1 Astrocast
3.1.2 EchoStar Mobile
3.1.3 Eutelsat
3.1.4 Fossa Systems
3.1.5 Hiber
3.1.6 Inmarsat
3.1.7 Kineis
3.1.8 Lacuna Space
3.1.9 OneWeb
3.1.10 OQ Technology
3.1.11 Sateliot
3.2 North American satellite operators
3.2.1 Amazon
3.2.2 AST SpaceMobile
3.2.3 Boeing
3.2.4 eSAT Global
3.2.5 E-Space
3.2.6 Globalstar
3.2.7 Hubble Network
3.2.8 Ingenu
3.2.9 Iridium
3.2.10 Kepler Communications
3.2.11 Ligado Networks
3.2.12 Lynk
3.2.13 Omnispace
3.2.14 Orbcomm
3.2.15 Skylo
3.2.16 Starlink (SpaceX)
3.2.17 Swarm Technologies
3.2.18 Telesat
3.2.19 Totum
3.3 Chinese satellite operators
3.3.1 CASC and CASIC
3.3.2 Commsat
3.3.3 Galaxy Space
3.3.4 Geely
3.3.5 Guodian Tech
3.3.6 Head Aerospace
3.3.7 Linksure
3.4 Rest of World satellite operators
3.4.1 Fleet Space Technologies
3.4.2 hiSky
3.4.3 Innova Space
3.4.4 Myriota
3.4.5 Roscosmos
3.4.6 Sky and Space Company
3.4.7 Thuraya
Glossary

List of Figures

Figure 1.1: The main satellite orbits ……… 6
Figure 1.2: Orbiting objects………… 7
Figure 1.3: Satellite frequency bands ……….. 8
Figure 1.4: Latency for satellite networks …….. 10
Figure 1.5: Latest funding rounds for satellite IoT operators (2019–2023)…….. 11
Figure 1.6: M&As in the satellite IoT connectivity industry (2019–2023) …… 12
Figure 2.1: Announced satellite IoT partnerships …… 20
Figure 2.2: Satellite IoT subscriber forecast, by region (World 2021–2027)…… 21
Figure 2.3: Satellite IoT subscriber forecast, by vertical (World 2021–2027) …. 21
Figure 2.4: Satellite IoT connectivity revenue forecast (World 2021–2027)……. 22
Figure 2.5: Satellite network operators by IoT subscriber base (Q4-2022)……. 23
Figure 3.1: Satellite operators in Europe ……… 28
Figure 3.2: Satellite operators in North America…….. 38
Figure 3.3: The AFNIO constellation by Ingenu……… 42
Figure 3.4: Doppler Multichannel Spread Spectrum (DMSS) by Totum …… 50
Figure 3.5: Satellite operators in China………… 51
Figure 3.6: Satellite operators in Rest of World ……… 54


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