![]() |
市場調査レポート
商品コード
1518323
Raas(Robots-as-a-Service)市場:タイプ別、エンドユーザー別、地域別 - 2030年までの世界予測Robots-as-a-Service Market by Type, End User, and Geography - Global Forecast to 2030 |
||||||
カスタマイズ可能
|
Raas(Robots-as-a-Service)市場:タイプ別、エンドユーザー別、地域別 - 2030年までの世界予測 |
出版日: 2024年06月01日
発行: Meticulous Research
ページ情報: 英文 300 Pages
納期: 5~7営業日
|
この調査レポートは、「Raas(Robots-as-a-Service)の世界市場:ロボットタイプ別(産業用、商業用、家庭用)、エンドユーザー別(農業、ヘルスケア、ホスピタリティ、捜索救助、運輸物流、ガーデニング、専門清掃、その他のエンドユーザー)、地域別 - 2031年までの世界予測」と題し、世界のRaas(Robots-as-a-Service)市場を主要5地域で詳細に分析し、現在の市場動向、市場規模、市場シェア、最近の動向、2031年までの予測などをまとめています。
世界のRaas(Robots-as-a-Service)市場は、2024年から2031年までのCAGRが16.7%で、2031年までに98億米ドルに達すると予測されています。
Raas(Robots-as-a-Service)市場の成長は、臨床現場での効率的なプロセスのためにヘルスケアでRaaSの利用が増加していること、拡張性と柔軟性の向上により他の自動化ソフトウェアよりもRaaSが好まれるようになっていること、最終的にコストが削減されること、製造部門でRaaSの採用が増加していることなどが背景にあります。こうしたサービスの初期費用は最小限に抑えられますが、継続的なサブスクリプション料やRaas(Robots-as-a-Service)に関連する追加費用は時間の経過とともに蓄積される可能性があり、最終的にRaaSはロボットを直接購入して管理するよりも長期的にコストが高くなるため、RaaS市場の成長抑制要因となっています。
さらに、ホスピタリティや農業など様々な分野での自動化の進展、人的労働の削減への注目の高まり、インダストリー5.0の出現は、この市場の利害関係者に成長機会をもたらすと期待されています。しかし、ロボットの機動性の欠如や他の産業システムとの連携時の安全性の問題は、Raas(Robots-as-a-Service)市場の成長に影響を与える大きな課題です。
Table 191 Australia & New Zealand: Robots-as-a-Service Market for Transport & Logistics, by Type, 2021-2030 (USD Million)
Table 236 Rest of Latin America: Robots-as-a-Service Market for Healthcare, by Type, 2021-2030 (USD Million)
Table 240 Rest of Latin America: Robots-as-a-Service Market for Transport & Logistics, by Type, 2021-2030 (USD Million)
Robot-as-a-Service Market by Robot Type (Industrial, Commercial, Domestic), End User (Agriculture, Healthcare, Hospitality, Search & Rescue, Transportation & Logistics, Gardening, Professional Cleaning, Other End-users), and Geography-Global Forecast to 2031.
The research report titled, 'Robot-as-a-Service Market by Robot Type (Industrial, Commercial, Domestic), End User (Agriculture, Healthcare, Hospitality, Search & Rescue, Transportation & Logistics, Gardening, Professional Cleaning, Other End-users), and Geography-Global Forecast to 2031,' provides an in-depth analysis of global robot-as-a-service market in five major geographies and emphasizes on the current market trends, market sizes, market shares, recent developments, and forecasts till 2031.
The global robot-as-a-service market is projected to reach $9.8 billion by 2031, at a CAGR of 16.7% from 2024 to 2031.
The growth of the robot-as-a-service market is driven by the rising use of RaaS in healthcare for efficient processes in clinical settings, growing preference for RaaS over other automation software due to an increase in scalability & flexibility, reduced cost eventually, and increasing adoption of RaaS in the manufacturing sector. While the upfront costs for these services are minimal, ongoing subscription fees and additional expenses related to robot-as-a-service can accumulate over time, ultimately making RaaS more costly in the long term than buying and managing robots directly; this restraints the growth of the RaaS market.
Furthermore, the increasing automation across various sectors such as hospitality and agriculture, rising focus on reducing human labor, and the emergence of Industry 5.0 are expected to generate growth opportunities for the stakeholders in this market. However, lack of mobility and safety issues with robots while working with other industrial systems are major challenges impacting the growth of the robot-as-a-service market.
The robot-as-a-service market is segmented by robot type (industrial service robots, commercial service robots, and domestic service robots), end user (agriculture (cultivation, milking, and other farming), inspection & maintenance (buildings; tank, tubes, & pipes; and other inspection & maintenance services), healthcare (diagnostics, surgery, rehabilitation, and laboratory analysis), search & rescue (disaster relief, security services, and firefighting), hospitality (food & drink preparation, mobile guidance, and information), professional cleaning (window & floor cleaning, tube & pipe cleaning, hull cleaning, and disinfection), transport & logistics (inventory and AGVs), gardening, and other end users. The study also evaluates industry competitors and analyzes the market at the regional & country levels.
Based on robot type, the robot-as-a-service market is segmented into industrial, commercial, and domestic service robots. In 2024, the industrial service robots segment is expected to account for the largest share of the global robot-as-a-service market. The large market share of this segment is attributed to a significant increase in demand for RaaS across several industries, including logistics, defense, construction, and medicine; a surge in deployment of automation and mobility in many industries; rising labor cost; and a lack of skilled professionals. Moreover, this segment is projected to register the highest CAGR during the forecast period.
Based on end user, the robot-as-a-service market is segmented into agriculture, inspection & maintenance, healthcare, search & rescue, hospitality, professional cleaning, transport & logistics, gardening, and other end users. In 2024, the transportation & logistics segment is expected to account for the largest share of the global robot-as-a-service market. The large market share of this segment is attributed the increased usage in various applications such as picking, packing, and delivery; growing demand for autonomous mobile robots in warehouses to increase efficiency in inventory management; and enhanced safety & risk mitigation.
However, the healthcare segment is projected to register the highest CAGR during the forecast period. The highest growth is attributed to the rising number of surgical procedures, growing focus on minimizing human error, improved precision & accuracy, and growing adoption of advanced surgical systems by surgeons.
Based on geography, the robot-as-a-service market is segmented into North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa. In 2024, North America is expected to account for the largest share of the global robot-as-a-service market. The rising investments in innovative technology, growing investment in R&D, and adoption of significant technologies such as surgical robots in healthcare, AGVs & AMRs in manufacturing are some of the major drivers for the growth of this regional segment. However, Asia-Pacific is projected to register the highest CAGR during the forecast period.
The key players operating in the robot-as-a-service market are Locus Robotics (U.S.), inVia Robotics, Inc. (U.S.), Cobalt Robotics (U.S.), Knightscope, Inc. (U.S.), Aethon Inc. (U.S.), Relay Robotics, Inc. (U.S.), iRobot Corporation (U.S.), KUKA AG (Germany), Intuitive Surgical (U.S.), Daifuku Co., Ltd. (Japan), OMRON Corporation (Japan), Aldebaran & United Robotics Group (Japan), SoftBank Corp. (Japan), EXOTEC (France), and Hirebotics (U.S.).
Robot-as-a-Service Market Assessment-by Robot Type
Robot-as-a-Service Market Assessment-by End User
Robot-as-a-Service Market Assessment-by Geography