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市場調查報告書
商品編碼
1744613
2032 年地理資訊系統市場預測:按組件、功能、部署類型、應用和區域進行的全球分析Geographic Information System Market Forecasts to 2032 - Global Analysis By Component (Hardware, Software, Services, and Other Components), Function, Deployment Type, Application and By Geography |
根據 Stratistics MRC 的數據,全球地理資訊系統市場預計在 2025 年達到 120.1 億美元,到 2032 年將達到 244.6 億美元,預測期內的複合年成長率為 10.7%。
地理資訊系統 (GIS) 是一種基於電腦的工具,用於擷取、儲存、分析、管理和顯示空間或地理資料。 GIS 允許透過地圖和 3D 場景以視覺化和解釋的方式呈現數據,從而揭示模式、關係和趨勢。 GIS 整合不同類型的數據,並將數據連結到地球上的特定位置,以支援城市規劃、環境管理、交通運輸和災害應變等領域的決策。
空間資料分析的需求不斷成長
隨著企業和政府越來越依賴資料主導的決策,地理資訊系統 (GIS) 因其高效分析空間資訊的能力而備受關注。交通運輸、城市規劃和農業等各行各業的組織都在利用 GIS 來最佳化業務並加強策略規劃。即時數據流、衛星影像和物聯網感測器的融合進一步推動了對高階空間分析的需求。監管要求和鼓勵以數據為中心的永續性措施也推動了這項需求。
初始投資和設置成本高
實施 GIS 解決方案需要大量的資金,因為它需要昂貴的硬體、軟體和熟練的人力。許多組織在預算分配方面面臨困難,難以購買 GIS 平台,將其整合到現有基礎設施中,並維持系統的高效性。此外,GIS資料庫的複雜性和進階功能需要大量的培訓和技術專業知識。此外,獲取、儲存和處理資料的高昂成本也阻礙了中小企業採用這些技術。
整合GIS和新興技術
人工智慧、機器學習和巨量資料分析的進步正在改變GIS的功能,使其能夠更好地進行決策並自動化。 GIS與區塊鏈技術的整合將提高資料安全性和透明度,確保地理空間記錄的可靠性。此外,基於GIS的擴增實境(AR)應用正在透過提供基於位置的沉浸式體驗,為零售、旅遊和建築等行業提供支援。此類技術融合將為不同產業的GIS應用開闢新的途徑,促進市場擴張。
專業技能人才短缺
要充分利用 GIS 的功能,需要具備地理空間分析、遙感探測和資料解譯方面的專業知識,然而許多公司卻難以獲得合適的人才。此外,GIS 技術的快速發展也要求人才持續提陞技能和專業發展。缺乏專門的 GIS 培訓計畫和教育課程進一步加劇了這項挑戰。此外,將 GIS 專業知識與人工智慧和資料科學相結合的多學科技能的需求也使招募工作更加複雜。
COVID-19的影響
COVID-19疫情加速了地理資訊系統 (GIS) 技術在追蹤感染疾病、分析出行模式和管理醫療資源方面的應用。政府和企業使用 GIS 儀錶板來視覺化病毒傳播並最佳化緊急應變策略。空間資訊在物流、供應鏈管理和電子商務中變得至關重要。基於 GIS 的遠端協作工具也變得流行起來。然而,經濟衰退和預算限制推遲了一些計劃。即使在疫情之後,GIS 仍然是數位轉型工作中不可或缺的重要資產。
預計硬體部分將成為預測期內最大的部分
由於對高效能運算系統、先進GPS設備和強大資料儲存解決方案的需求成長,預計硬體領域將在預測期內佔據最大的市場佔有率。即時數據處理需求的不斷成長、用於空間數據收集的感測器和無人機的整合以及智慧計劃的不斷成長,進一步推動了全球GIS硬體組件市場的成長。
醫療保健領域預計將在預測期內實現最高複合年成長率
醫療保健領域預計將在預測期內實現最高成長,這得益於其在空間可視化和分析健康數據、精準定位疾病熱點和追蹤疫情方面的能力。 GIS 可以最佳化醫療機構的資源配置,改善醫療服務可近性,並增強緊急應變計畫。此外,GIS 還有助於策略規劃、識別未滿足需求的領域以及了解健康差異,且地理因素與健康結果之間的相關性正在得到認可。
預計亞太地區將在預測期內佔據最大的市場佔有率,這得益於快速的都市化、政府對地理空間基礎設施的投資以及智慧城市計劃的日益普及。中國、印度和日本等國家正在利用GIS進行環境監測、城市規劃和災害管理。此外,領先的GIS技術供應商和研究機構的存在正在推動技術創新和市場成長。
由於對先進地理空間技術和分析的投資不斷增加,預計北美地區在預測期內的複合年成長率最高。該地區受益於醫療保健、農業和國防等產業對GIS的廣泛採用。美國憑藉聯邦政府對地理空間資訊計畫和GIS前沿研究的大力支持,引領市場。此外,主要GIS軟體供應商的存在正在刺激技術創新和廣泛應用。
According to Stratistics MRC, the Global Geographic Information System Market is accounted for $12.01 billion in 2025 and is expected to reach $24.46 billion by 2032 growing at a CAGR of 10.7% during the forecast period. A Geographic Information System (GIS) is a computer-based tool that captures, stores, analyses, manages, and presents spatial or geographic data. It enables users to visualize and interpret data in ways that reveal patterns, relationships, and trends through maps and 3D scenes. GIS integrates various data types, supporting decision-making in fields like urban planning, environmental management, transportation, and disaster response, by linking data to specific locations on Earth.
Growing demand for spatial data analytics
As businesses and governments increasingly rely on data-driven decision-making, Geographic Information Systems (GIS) have gained prominence for their ability to analyse spatial information effectively. Organizations across industries such as transportation, urban planning, and agriculture-leverage GIS to optimize operations and enhance strategic planning. The integration of real-time data streams, satellite imagery, and IoT sensors has further increased the demand for advanced spatial analytics. This demand is also fuelled by regulatory requirements and sustainability initiatives that encourage data-centric approaches.
High initial investment and setup cost
Deploying GIS solutions requires substantial financial resources due to expensive hardware, software, and skilled personnel. Many organizations face difficulties in budget allocation for acquiring GIS platforms, integrating them into existing infrastructure, and maintaining system efficiency. Furthermore, the complexity of GIS databases and advanced functionalities necessitates significant training and technical expertise. High costs related to data acquisition, storage, and processing can also deter smaller enterprises from adopting these technologies.
Integration of GIS with emerging technologies
Advancements in artificial intelligence, machine learning, and big data analytics are transforming GIS capabilities, enabling better decision-making and automation. The integration of GIS with blockchain technology enhances data security and transparency, ensuring reliable geospatial records. Additionally, GIS-powered augmented reality applications support industries such as retail, tourism, and construction by offering immersive, location-based experiences. These technological integrations create new avenues for GIS applications across diverse sectors, driving market expansion.
Lack of skilled professionals
Expertise in geospatial analytics, remote sensing, and data interpretation is required to maximize GIS functionalities, but many enterprises struggle to find qualified personnel. Moreover, the rapidly evolving GIS technology landscape requires continuous skill upgrades and professional development. The absence of specialized training programs and academic curricula focusing on GIS further exacerbates this challenge. Additionally, the demand for interdisciplinary skills combining GIS expertise with artificial intelligence and data science complicates recruitment efforts.
Covid-19 Impact
The COVID-19 pandemic accelerated the adoption of Geographic Information Systems (GIS) technologies for tracking infections, analysing mobility patterns, and managing healthcare resources. Governments and businesses used GIS dashboards to visualize virus spread and optimize emergency response strategies. Spatial intelligence became essential in logistics, supply chain management, and e-commerce. GIS-assisted remote collaboration tools gained popularity. However, economic downturns and budget constraints delayed some projects. Post-pandemic, GIS remains a crucial asset in digital transformation efforts.
The hardware segment is expected to be the largest during the forecast period
The hardware segment is expected to account for the largest market share during the forecast period, due to growing demand for high-performance computing systems, advanced GPS devices, and robust data storage solutions. The rise in real-time data processing needs, integration of sensors and drones for spatial data collection, and the expansion of smart infrastructure projects further fuel the growth of GIS hardware components globally.
The healthcare segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the healthcare segment is predicted to witness the highest growth rate, due to its ability to visualize and analyse spatial health data, pinpointing disease hotspots, and tracking outbreaks. It optimizes resource allocation for health facilities, improves accessibility to care, and enhances emergency response planning. Furthermore, GIS aids in strategic planning, identifying areas with unmet needs, and understanding health disparities, driven by the growing recognition of the link between geography and health outcomes.
During the forecast period, the Asia Pacific region is expected to hold the largest market share due to rapid urbanization, government investments in geospatial infrastructure, and the increasing adoption of smart city initiatives. Countries such as China, India, and Japan are leveraging GIS for environmental monitoring, urban planning, and disaster management. Additionally, the presence of leading GIS technology providers and research institutions fosters innovation and market growth.
Over the forecast period, the North America region is anticipated to exhibit the highest CAGR, owing to increased investments in advanced geospatial technologies and analytics. The region benefits from high adoption rates of GIS across industries such as healthcare, agriculture, and defence. The United States leads the market with strong federal support for geospatial intelligence programs and cutting-edge research in GIS. Additionally, the presence of major GIS software providers facilitates innovation and widespread implementation.
Key players in the market
Some of the key players profiled in the Geographic Information System Market include Esri, Hexagon AB, Autodesk Inc., Trimble Inc., Bentley Systems, Incorporated, Pitney Bowes Inc., SuperMap Software Co., Ltd., Topcon Corporation, Maxar Technologies Inc., Caliper Corporation, Computer Aided Development Corporation Ltd. (Cadcorp), General Electric, Hi-Target Surveying Instrument Co. Ltd., L3Harris Technologies, Inc., and Precisely Incorporated.
In May 2025, Hexagon has partnered with ZeroTouch, part of Sandvik, to bring high-speed, high-accuracy non-contact gauging cells to European customers through its Manufacturing Intelligence division. The turnkey cell enables manufacturers to measure key dimensions of mission-critical parts with micron-level accuracy in seconds.
In May 2025, Trimble launched Trimble Forestry One, a comprehensive technology platform built to connect and streamline forestry operations. Unveiled at the Trimble Forestry User Conference, Forestry One enhances forest management by leveraging Trimble's common data environment for seamless integration with Trimble Connected Forest(R) solutions, while also simplifying regulatory compliance and optimizing supply chain management.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.