![]() |
市場調查報告書
商品編碼
1914671
監控與資料收集(SCADA)市場-全球產業規模、佔有率、趨勢、機會及預測(依產品、組件、類型、應用、地區及競爭格局分類),2021-2031年Supervisory Control and Data Acquisition Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, Segmented By Offering, By Component, By Type, By Application, By Region & Competition, 2021-2031F |
||||||
全球監控與數據採集(SCADA)市場預計將從2025年的140.6億美元成長到2031年的223.2億美元,複合年成長率(CAGR)為8.01%。 SCADA系統是這項成長的核心驅動力,它是一種先進的軟硬體平台,負責監控工業流程並控制遠端和本地資產。市場成長的主要促進因素是:為提高營運效率,工業自動化需求不斷成長;以及工業4.0技術的廣泛應用,這些技術能夠實現以數據為中心的決策。這些因素對於能源、水資源管理和製造業等關鍵產業的現代化基礎設施至關重要,因為這些產業需要強大的控制系統來確保可靠運作。
| 市場概覽 | |
|---|---|
| 預測期 | 2027-2031 |
| 市場規模:2025年 | 140.6億美元 |
| 市場規模:2031年 | 223.2億美元 |
| 複合年成長率:2026-2031年 | 8.01% |
| 成長最快的細分市場 | 第二代 |
| 最大的市場 | 北美洲 |
然而,由於網路安全領域技能缺口日益擴大,市場面臨嚴峻挑戰。互聯互通的操作技術(OT) 環境極易受到高階威脅的攻擊。隨著工業和企業網路的融合,缺乏能夠保障這些複雜系統的合格人員已成為一大瓶頸。根據 SANS 研究所 2024 年的一項調查,51% 的工業控制系統安全專業人員沒有持有特定的 ICS/OT 認證。這種人才短缺對 SCADA 解決方案的安全部署和擴充性構成重大風險,並可能阻礙整體市場擴張。
工業4.0與工業物聯網(IIoT)技術的整合正成為全球監控與資料擷取(SCADA)市場的關鍵驅動力。這種融合正在推動從孤立的監控模式轉向互聯互通、資料豐富的生態系統轉變,並透過進階分析和預測性維護來提升資產效能。隨著製造商專注於數位轉型,將人工智慧(AI)融入SCADA架構對於最大限度地減少停機時間和提高敏捷性至關重要。根據羅克韋爾自動化於2025年6月發布的《2025年智慧製造現況報告》,95%的製造商已經實施或計劃在未來五年內投資人工智慧和機器學習,這就需要能夠處理大量IIoT資料流的強大平台。此外,Fortinet於2025年7月發布的報告指出,52%的組織現在將操作技術(OT)安全置於首席資訊安全安全官(CISO)的職責範圍內,這反映了工業網路和企業網路日益融合的趨勢。
第二個關鍵促進因素是可再生能源併網和智慧電網基礎設施的擴展,這從根本上改變了公共產業領域對SCADA系統的需求。現代電網需要管理分散式發電的複雜性,這就要求先進的系統能夠平衡即時需求與來自風能和太陽能等資產的波動性輸入。國際能源總署(IEA)於2025年10月發布的《2025年可再生報告》預測,2025年至2030年間,全球可再生能源發電裝置容量將增加4,600吉瓦。如此大規模的成長迫使電力公司部署先進的SCADA解決方案,以確保在間歇性再生能源來源快速湧入的情況下,電網的穩定性和高效的能源分配。
合格網路安全專業人員的短缺是全球監控與資料收集 (SCADA) 市場成長的一大障礙。隨著工業營運為提高效率而與數位網路日益融合,尋找能夠管理特定安全風險的人才變得異常困難,迫使企業推遲或縮減現代化改造舉措的規模。只要缺乏精通操作技術(OT) 安全領域的專業人才,企業就仍然容易受到潛在安全漏洞的攻擊,並且不願投資建立大型網路控制架構。
人才短缺直接限制了自動化系統的擴充性,造成了關鍵資源的瓶頸。根據ISC2預測,到2024年,全球網路安全人才缺口將達到480萬,凸顯了支援數位基礎設施擴展的專業知識嚴重不足。這種人才短缺在SCADA市場尤為突出,因為該市場需要工業通訊協定的專業知識。因此,獲取所需人才的高成本和挑戰推高了營運風險和整體擁有成本,有效減緩了工業運營商採用自動化系統的速度。
部署用於高速工業連接的專用 5G 網路正成為一項關鍵趨勢,顯著提升了 SCADA 系統的通訊基礎架構。與傳統的有線或 Wi-Fi 連線不同,專用 5G 可提供任務關鍵型控制迴路所需的超低延遲和確定性,同時支援數千個移動感測器和自主機器人的密集連線。這項演進使 SCADA 架構能夠從固定控制室擴展到行動平台,使操作人員能夠在工廠車間的任何位置動態管理資產,而無需犧牲安全性。其影響將是巨大的。根據諾基亞於 2025 年 9 月發布的《2025 年工業數位化報告》,由於資產移動性和即時數據存取的提升,已部署專用無線邊緣網路的企業中有 87% 在一年內實現了投資回收期。
同時,SCADA系統在永續性和ESG合規性監測中的應用,已使這些平台從簡單的操作工具轉變為環境責任的關鍵促進因素。工業營運商正擴大配置SCADA介面,以即時監控能源消費量、用水量和碳排放。將這些數據整合到企業永續性儀錶板中,可確保合規性並最佳化資源效率。對於管理複雜供應鏈中的範圍3排放,這種能力尤其重要,因為自動化資料收集取代了容易出錯的手動報告。此類策略的成功顯而易見:Schneider Electric於2025年2月發布的《2024年永續發展報告》顯示,到2024年底,其前1000家供應商透過嚴格的追蹤和效率提升舉措,已將營運排放減少了40%。
The Global Supervisory Control and Data Acquisition Market is projected to increase from USD 14.06 Billion in 2025 to USD 22.32 Billion by 2031, reflecting a CAGR of 8.01%. SCADA systems, which serve as sophisticated hardware and software frameworks for monitoring industrial processes and controlling equipment remotely or locally, are central to this growth. The market's upward trajectory is primarily driven by the rising need for industrial automation to enhance operational efficiency and the broad acceptance of Industry 4.0 technologies that enable data-centric decision-making. These factors are essential for modernizing infrastructure across key sectors like energy, water management, and manufacturing, necessitating robust control systems for reliable operations.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 14.06 Billion |
| Market Size 2031 | USD 22.32 Billion |
| CAGR 2026-2031 | 8.01% |
| Fastest Growing Segment | Second Generation |
| Largest Market | North America |
However, the market faces significant hurdles due to a growing cybersecurity skills gap, leaving interconnected operational technology environments susceptible to sophisticated threats. As industrial and enterprise networks converge, the lack of qualified personnel to secure these intricate systems creates a major bottleneck. According to a 2024 SANS Institute survey, 51 percent of professionals protecting industrial control systems lacked specific ICS/OT certifications. This workforce shortage presents a considerable risk to the secure deployment and scalability of SCADA solutions, potentially hindering broader market expansion.
Market Driver
The convergence of Industry 4.0 and Industrial Internet of Things (IIoT) technologies acts as a major catalyst for the Global Supervisory Control and Data Acquisition Market. This integration facilitates a shift from isolated monitoring to connected, data-rich ecosystems where advanced analytics and predictive maintenance improve asset performance. As manufacturers focus on digital transformation, incorporating artificial intelligence into SCADA architectures is crucial for minimizing downtime and increasing agility. According to Rockwell Automation's '2025 State of Smart Manufacturing Report' from June 2025, 95 percent of manufacturers have invested in or intend to invest in AI and machine learning over the coming five years, necessitating robust platforms to handle massive IIoT data streams. Additionally, Fortinet's July 2025 report notes that 52 percent of organizations now assign operational technology security to the Chief Information Security Officer, reflecting the deepening merger of industrial and enterprise networks.
A second pivotal driver is the expansion of renewable energy integration and smart grid infrastructure, which is fundamentally altering SCADA requirements in the utility sector. Modern grids are tasked with managing the complexities of decentralized power generation, demanding sophisticated systems to balance variable inputs from wind and solar assets with real-time demand. The International Energy Agency's 'Renewables 2025' report from October 2025 anticipates a global renewable power capacity increase of 4,600 gigawatts between 2025 and 2030. This massive growth forces utility operators to implement advanced SCADA solutions to ensure grid stability and efficient energy distribution amidst a rapid influx of intermittent renewable sources.
Market Challenge
The shortage of qualified cybersecurity professionals stands as a significant obstacle to the growth of the Global Supervisory Control and Data Acquisition Market. As industrial operations become more integrated with digital networks to boost efficiency, the difficulty in finding talent capable of managing specific security risks forces organizations to postpone or reduce the scope of modernization initiatives. Without a workforce skilled in securing operational technology, companies remain vulnerable to potential breaches, resulting in a reluctance to invest in extensive networked control architectures.
This lack of talent directly limits the scalability of automated systems by creating critical resource bottlenecks. According to ISC2, the global cybersecurity workforce gap reached 4.8 million professionals in 2024, highlighting a severe deficiency in the expertise needed to support growing digital infrastructures. This shortage is especially acute for the SCADA market, which requires specialized knowledge of industrial protocols. Consequently, the high costs and challenges associated with securing necessary personnel elevate operational risks and total ownership costs, effectively slowing the rate of adoption among industrial operators.
Market Trends
The adoption of private 5G networks for high-speed industrial connectivity is emerging as a vital trend, significantly upgrading the communication infrastructure of SCADA systems. Unlike traditional wired or Wi-Fi connections, private 5G provides the ultra-low latency and determinism necessary for mission-critical control loops while supporting the dense connectivity of thousands of mobile sensors and autonomous robots. This evolution enables SCADA architectures to expand beyond fixed control rooms to mobile platforms, allowing operators to manage assets dynamically from any location on the plant floor without compromising security. The impact is significant; according to Nokia's September 2025 '2025 Industrial Digitalization Report', 87 percent of enterprises deploying private wireless and edge networks saw a return on investment within one year, driven by improved asset mobility and real-time data access.
Concurrently, the use of SCADA systems for sustainability and ESG compliance monitoring has evolved these platforms from simple operational tools into key drivers of environmental accountability. Industrial operators are increasingly configuring SCADA interfaces to monitor energy consumption, water usage, and carbon emissions in real-time, integrating this data into corporate sustainability dashboards to ensure regulatory compliance and optimize resource efficiency. This capability is especially critical for managing Scope 3 emissions across complex supply chains, where automated data collection replaces error-prone manual reporting. The success of such strategies is clear; Schneider Electric's February 2025 '2024 Sustainability Report' indicates that rigorous tracking and efficiency initiatives led to a 40 percent reduction in operational emissions among its top 1,000 suppliers by the end of 2024.
Report Scope
In this report, the Global Supervisory Control and Data Acquisition Market has been segmented into the following categories, in addition to the industry trends which have also been detailed below:
Company Profiles: Detailed analysis of the major companies present in the Global Supervisory Control and Data Acquisition Market.
Global Supervisory Control and Data Acquisition Market report with the given market data, TechSci Research offers customizations according to a company's specific needs. The following customization options are available for the report: