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到 2030 年地理空間影像分析市場預測:按類型、收集媒介、部署模式、組織規模、應用程式、最終用戶和區域進行的全球分析Geospatial Imagery Analytics Market Forecasts to 2030 - Global Analysis By Type, Collection Medium, Deployment Mode, Organization Size, Application, End User and by Geography |
根據 Stratistics MRC 的數據,2023 年全球地理空間影像分析市場規模為 154.6 億美元,預計在預測期內複合年成長率為 30.1%,到 2030 年將達到 975.1 億美元。
地理空間影像分析這項研究和技術領域的重點是分析衛星和航空影像,以提取有關地球表面的有用資料。地理空間影像分析使您能夠識別、分類和解釋植被、土地覆蓋、城市發展、自然災害等特徵。這是透過利用先進的演算法和人工智慧來實現的。此外,許多應用都嚴重依賴這項技術,包括國家安全、農業、城市規劃、災害應變和環境監測。
根據美國科技協會的數據,去年智慧城市的支出為 348.5 億美元,預計到 2026 年將達到 543.5 億美元。
對基於位置的服務的需求不斷成長
物流、零售和醫療保健等領域定位服務(LBS) 的成長推動了對地理空間影像分析的需求。企業正在使用位置資訊來提高業務效率、客製化客戶體驗並最佳化供應鏈。此外,透過提供空間上下文,可以促進地理空間分析與各個領域的整合,這對於構建和提供定位服務的高效決策至關重要。
設定成本高
實施地理空間影像分析解決方案需要大量的初期成本,包括僱用員工和購買最尖端科技。公司可能會發現很難將資金分配給能夠處理和分析地理空間資料的合格專家。此外,降低這些初始設置成本的潛在方法包括開發具有成本效益的技術、合作夥伴關係和創造性的資金籌措模式。
5G技術快速發展
5G 技術的普及為改善資料連接和更快的通訊創造了機會。即時處理和分析地理空間資料的能力促進了自動駕駛汽車、擴增實境(AR) 和其他時間敏感領域的應用。此外,借助 5G 網路的高頻寬和低延遲,地理空間影像分析可以提供更動態且響應更快的解決方案。
資料準確性和質量
維持地理分析的可靠性需要不斷努力解決資料準確性和品質方面的問題。透過投資最先進的資料檢驗技術、頻繁更新衛星影像以及合併地面實況資料,可以降低準確性。此外,保持地理空間見解的完整性需要持續的監控程序以及與資料提供者的協作。
由於 COVID-19 大流行,地理空間影像分析市場受到了重大影響,機會與挑戰並存。最初受到供應鏈中斷和計劃延遲的挑戰,人們越來越認知到地理空間分析在疫情應對中發揮的關鍵作用,刺激了需求。遠端監控、緊急管理和醫療保健領域的應用不斷增加,凸顯了科技在解決世界問題的重要性。此外,隨著經濟復甦並變得更具彈性,市場可能會穩定成長,因為人們越來越認知到地理空間影像分析在應對複雜和動態情況中所發揮的關鍵作用。
預計災害管理部門將成為預測期內最大的部門
在地理空間影像分析市場中,災害管理領域佔據了最大的市場佔有率。地理空間影像分析已成為世界各地災害管理組織的重要工具,因為它使他們能夠快速且準確地評估和應對颶風、洪水、野火和地震等自然災害。此外,可以藉助提供即時情境察覺、預測建模和事後分析的地理空間分析來規劃和執行有效的災難應變計畫。透過協助損失評估、疏散計劃和資源分配,技術最終提高了社區的復原力並減少了災害的影響。
環境監測領域預計在預測期內複合年成長率最高
預計環境監測產業的複合年成長率最高。隨著世界各地的組織和政府越來越關注環境,他們越來越依賴地理空間影像分析來追蹤和評估生態系統、氣候模式和自然資源的變化。本節涵蓋森林砍伐監測、空氣和水質分析以及生物多樣性保護等應用。此外,透過尖端衛星技術和分析工具的整合實現準確、即時的資料洞察,可以實現主動的環境管理和對永續目標的遵守。
北美佔據最大的市場佔有率。先進的基礎設施、地理空間技術在各行各業的廣泛普及以及強大的關鍵行業參與者網路被認為是該地區的優勢因素。美國尤其處於這一領域的前沿,將地理空間影像分析應用於從城市規劃、環境監測、醫療保健到國防和安全等廣泛領域。此外,地理空間分析、研發計劃頂級提供者的存在以及政府在尖端衛星技術上的支出也有助於北美在全球市場的主導地位。
市場複合年成長率最高的地區是亞太地區。由於經濟快速發展、人口成長和先進技術的採用增加,該地區具有巨大的成長潛力。由於中國、印度和日本等國家政府對基礎設施開發、智慧城市計畫和災害管理的投資,對地理空間影像分析的需求不斷成長。此外,對環境永續性的日益重視以及採礦、醫療保健和農業等行業的成長也推動了地理空間分析的使用。
According to Stratistics MRC, the Global Geospatial Imagery Analytics Market is accounted for $15.46 billion in 2023 and is expected to reach $97.51 billion by 2030 growing at a CAGR of 30.1% during the forecast period. The field of study and technology known as geospatial imagery analytics focuses on the analysis of satellite or aerial imagery to extract useful data about the surface of the Earth. Geospatial imagery analytics makes it possible to identify, classify, and interpret a variety of features, including vegetation, land cover, urban development, and natural disasters. It does this by utilizing sophisticated algorithms and artificial intelligence. Moreover, numerous applications, such as national security, agriculture, urban planning, disaster response, and environmental monitoring, depend heavily on this technology.
According to the Consumer Technology Association, spending on smart cities was US$ 34.85 billion last year and is predicted to reach US$ 54.35 billion by 2026.
Growing requirement for services based on location
The need for geospatial imagery analytics is fueled by the growth of location-based services (LBS) in sectors like logistics, retail, and healthcare. Companies use location data to improve operational efficiency, customize customer experiences, and optimize supply chains. Additionally, the integration of geospatial analytics into various sectors is facilitated by the provision of essential spatial context required for efficient decision-making in the creation and provision of location-based services.
High setup costs
Implementing geospatial imagery analytics solutions comes with significant upfront costs that include hiring staff and purchasing cutting-edge technology. It may be difficult for organizations to allocate funds for qualified experts who can handle and analyze geospatial data. Furthermore, possible ways to reduce these upfront setup costs include the creation of cost-effective technologies, cooperative partnerships, and creative finance models.
Rapid development in 5g technology
Opportunities for improved data connectivity and quicker communication arise with the widespread adoption of 5G technology. Applications in autonomous vehicles, augmented reality (AR), and other time-sensitive fields are made easier by the ability to process and analyze geospatial data in real-time. Moreover, with 5G networks high bandwidth and low latency, geospatial imagery analytics can provide more dynamic and responsive solutions.
Accuracy and quality of data
Sustaining the dependability of geographic analytics necessitates continuous endeavors to tackle issues pertaining to data precision and quality. Accuracy can be reduced by making investments in cutting-edge data validation methods, frequent updates to satellite imagery, and the inclusion of ground truth data. Furthermore, maintaining the integrity of geospatial insights requires ongoing monitoring procedures and collaborations with data providers.
The geospatial imagery analytics market experienced a notable impact from the COVID-19 pandemic, presenting both opportunities and challenges. Although supply chain disruptions and project delays initially presented challenges, growing awareness of the crucial role that geospatial analytics plays in pandemic response spurred demand. The rise in applications for remote monitoring, crisis management, and healthcare highlights the significance of technology in tackling global issues. Moreover, the market is positioned for steady growth as economies rebound and resilience gains traction propelled by a greater awareness of the critical role that geospatial imagery analytics plays in manoeuvring through complex and dynamic situations.
The Disaster Management segment is expected to be the largest during the forecast period
In the market for geospatial imagery analytics, the disaster management segment has the largest market share. The capability of geospatial imagery analytics to promptly and precisely evaluate and address natural disasters, such as hurricanes, floods, wildfires, and earthquakes, has made it an essential tool for disaster management organizations around the world. Additionally, effective disaster response plans can be planned and carried out with the help of geospatial analytics, which offers real-time situational awareness, predictive modeling, and post-event analysis. By assisting with damage assessment, evacuation planning, and resource allocation, technology eventually increases community resilience and lessens the effects of disasters.
The Environmental Monitoring segment is expected to have the highest CAGR during the forecast period
The environmental monitoring segment is projected to have the highest CAGR. Organizations and governments around the world are depending more and more on geospatial imagery analytics to track and evaluate changes in ecosystems, climate patterns, and natural resources as environmental concerns grow. Applications like monitoring deforestation, analyzing the quality of the air and water, and conserving biodiversity are covered in this section. Furthermore, proactive environmental management and sustainability goal compliance are made possible by the precise and real-time data insights made possible by the integration of cutting-edge satellite technology and analytics tools.
North America commands the largest share in the market. Its sophisticated infrastructure, widespread use of geospatial technologies in a wide range of industries, and a strong network of important industry participants are all considered contributing factors to the region's dominance. Using geospatial imagery analytics for applications ranging from urban planning, environmental monitoring, and healthcare to defense and security, the United States in particular has been at the forefront of this field. Additionally, contributing to North America's dominance in the global market are the existence of top providers of geospatial analytics, R&D projects, and government spending on cutting-edge satellite technologies.
The region with the highest CAGR in the market is Asia-Pacific. The region has significant growth potential due to its rapid economic development, growing population, and increasing adoption of advanced technologies. The need for geospatial imagery analytics is being driven by government investments in infrastructure development, smart city initiatives, and disaster management in nations like China, India, and Japan. Moreover, the growing emphasis on environmental sustainability and the development of sectors like mining, healthcare, and agriculture encourage the use of geospatial analytics.
Key players in the market
Some of the key players in Geospatial Imagery Analytics market include L3Harris Corporation, Maxar Technologies, Microsoft, Alteryx, Hexagon AB, Google, Citrix Systems Inc., Hydrosat, Boston Geospatial, Ola, TomTom International BV, Planet Labs PBC, Harris Corporation, Oracle Corporation, Toshiba Corporation, Sparkgeo, UrtheCast Corporation and Satellite Imaging Corporation.
In November 2023, L3Harris Technologies announced the signing of a definitive agreement under which an affiliate of TJC L.P. will acquire L3Harris' Commercial Aviation Solutions business for $800 million. The acquisition includes a $700 million cash purchase price and $100 million earnout based on the achievement of certain 2023 and 2024 financial performance targets, which together represent an approximate 15x LTM 9/30 EBITDA purchase multiple.
In September 2023, Google and El Salvador have announced a $500 million strategic partnership to modernize the country's government. Although details of the agreement are scarce, it will include digital government, digitizing processes such as electronic invoices and incorporating Google Cloud AI into education and healthcare. "El Salvador is moving forward. We believe technology and foreign investment are key for development. We are quickly becoming a hub for innovation.
In February 2023, The National Geospatial-Intelligence Agency awarded Maxar Technologies a five-year contract to provide commercial satellite imagery to U.S. allies. The contract is worth as much as $192 million, the Westminster, Colorado-based company said in a Feb. 8 statement. It includes high-resolution electro-optical imagery as well as synthetic aperture radar products, which uses radar to see through clouds and in dark conditions and detect things like material properties, precise movement and elevation.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.