市場調查報告書
商品編碼
1423340
2024-2032 年按組件(硬體、軟體、服務、連接)、最終用戶(製造、能源和公用事業、汽車和運輸、醫療保健等)和地區分類的工業物聯網市場報告Industrial IoT Market Report by Component (Hardware, Software, Services, Connectivity), End User (Manufacturing, Energy and Utilities, Automotive and Transportation, Healthcare, and Others), and Region 2024-2032 |
2023年全球工業物聯網(IIoT)市場規模達2,553億美元。展望未來, IMARC Group預計到2032年市場規模將達到8,060億美元,2024-2032年複合年成長率(CAGR)為13.2% 。對互聯設備的需求不斷成長、物聯網在不同行業垂直領域的利用率不斷提高,以及半導體和電器製造領域先進技術的引入,是推動市場發展的主要因素。
工業物聯網 (IIoT),通常稱為工業物聯網,是一個變革性的技術概念,涉及將物聯網 (IoT) 技術整合到工業和製造流程中。它將日常物體和設備連接到網際網路以收集和共享資料聯網原理擴展到工業環境和機械。 IIoT 系統使用先進的連接技術,包括 Wi-Fi、蜂窩網路、藍牙和低功耗廣域網路 (LPWAN),將資料從感測器傳輸到中央平台進行分析。 IIoT 的主要目標是提高製造、能源、交通、醫療保健等產業的效率、生產力和安全性。
由於幾個關鍵因素,市場正在經歷顯著的提振。主要促進因素之一是全球快速的城市化和工業化,以及全球人口的不斷成長,推動了對連網設備的需求。此外,物聯網 (IoT) 在交通、石油和天然氣、零售和基礎設施等各個行業領域的廣泛採用,也為市場成長做出了積極貢獻。此外,製造業正在將人工智慧和物聯網技術用於預測性維護、預警、最佳化生產流程和加強品質控制等應用。此外,半導體製造和電器的不斷進步也為市場的擴張做出了重大貢獻。此外,雲端運算平台的利用和IPv6的標準化透過提供可擴展且高效的解決方案進一步推動市場成長。此外,產業參與者正在增加對廣泛研發(R&D)活動的投資,以保持技術進步的前沿,預計這將進一步推動市場的成長。
對互聯設備的需求不斷成長
隨著行業和企業尋求提高營運效率並收集更多資料以做出明智的決策,對互連設備和感測器的需求不斷成長。這些設備可實現即時資料收集、共享和分析,從而提高生產力並節省成本。此外,工業物聯網還可以遠端監控和控制工業設備和系統。此功能減少了現場檢查和人工干預的需要,從而節省了成本並提高了安全性,特別是在危險環境中。此外,工業物聯網補充了工業流程自動化的趨勢。連接設備與自動化系統的整合可透過最大限度地減少人為干預並使流程自主運作來提高整體效率。
提高物聯網在不同垂直產業的使用率
製造、能源、醫療保健和運輸等各行業領域的物聯網設備不斷從感測器和連接設備收集大量資料。這些資料包括有關設備性能、環境條件、產品品質等的資訊。物聯網與這些垂直行業的整合使企業能夠收集即時資料,為決策和流程最佳化提供有價值的見解。此外,物聯網設備用於自動化和控制工業流程。這種自動化提高了生產效率和準確性,並減少了人為干預。 IIoT 能夠遠端監控和控制設備和流程,從而增強操作控制和靈活性。物聯網感測器和連接系統用於監控和管理工業設施的能源消耗。透過尋找最佳化能源使用、減少浪費和實施更有效的能源管理實踐的機會來節省能源,從而推動市場發展。
引進半導體、電器製造領域的先進技術
先進的半導體製造技術促進了更精確、更有效率的感測器的開發。這些感測器可以以更高的精度和更快的速度收集資料,這對於工業物聯網應用至關重要。例如,在智慧製造中,精密感測器可以監控設備性能並即時檢測異常,從而實現預測性維護並減少停機時間。此外,半導體現在正在設計內建物聯網功能。這些物聯網晶片可以嵌入到各種電器和工業設備中,使它們能夠連接到網際網路並無縫共享資料。這種整合簡化了工業物聯網解決方案的部署,使製造商更容易使用它們。此外,先進的半導體技術可實現更好的連接選項,包括低功耗藍牙 (BLE) 和 Zigbee 等低功耗無線通訊協定。這些技術有助於在工業環境中創建物聯網網路,確保設備之間可靠、高效的資料傳輸。
The global Industrial Internet of things (IIoT) market size reached US$ 255.3 Billion in 2023. Looking forward, IMARC Group expects the market to reach US$ 806.0 Billion by 2032, exhibiting a growth rate (CAGR) of 13.2% during 2024-2032. The rising demand for connected devices, the increasing utilization of IoT across different industry verticals, and the introduction of advanced technologies in manufacturing semiconductors and electrical appliances are some of the major factors propelling the market.
Industrial Internet of Things (IIoT), often referred to as Industrial IoT, is a transformative technological concept that involves the integration of Internet of Things (IoT) technologies into industrial and manufacturing processes. It extends the principles of IoT, which connect everyday objects and devices to the internet to gather and share data, to industrial settings and machinery. IIoT systems use advanced connectivity technologies, including Wi-Fi, cellular networks, Bluetooth, and low-power wide-area networks (LPWAN), to transmit data from sensors to central platforms for analysis. The primary objective of IIoT is to improve efficiency, productivity, and safety in industries such as manufacturing, energy, transportation, healthcare, and more.
The market is experiencing a significant boost due to several key factors. One of the primary drivers is the rapid urbanization and industrialization occurring worldwide, accompanied by a growing global population that is fueling the demand for connected devices. Additionally, the widespread adoption of the Internet of Things (IoT) across various industry sectors, including transportation, oil and gas, retail, and infrastructure, is contributing positively to market growth. Moreover, the manufacturing industry is embracing AI and IoT technologies for applications like predictive maintenance, early warnings, optimizing production processes, and enhancing quality control. Furthermore, continuous advancements in semiconductor manufacturing and electrical appliances are making significant contributions to the market's expansion. Besides, the utilization of cloud computing platforms and the standardization of IPv6 are further driving market growth by providing scalable and efficient solutions. Additionally, industry players are increasing their investments in extensive research and development (R&D) activities to stay at the forefront of technological advancements, which is expected to further propel the market's growth.
Escalating demand for connected devices
As industries and businesses seek to enhance their operational efficiency and gather more data for informed decision-making, there is a growing need for interconnected devices and sensors. These devices enable real-time data collection, sharing, and analysis, leading to improved productivity and cost savings. Besides, IIoT allows for remote monitoring and control of industrial equipment and systems. This capability reduces the need for on-site inspections and manual interventions, leading to cost savings and improved safety, especially in hazardous environments. Moreover, IIoT complements the trend of automation in industrial processes. The integration of connected devices with automation systems enhances overall efficiency by minimizing human intervention and enabling processes to run autonomously.
Increasing utilization of IoT across different industry verticals
IoT devices in various industry sectors, such as manufacturing, energy, healthcare, and transportation, are continuously collecting vast amounts of data from sensors and connected devices. This data includes information about equipment performance, environmental conditions, product quality, and more. The integration of IoT into these verticals enables businesses to gather real-time data, providing valuable insights for decision-making and process optimization. Moreover, IoT devices are used to automate and control industrial processes. This automation leads to increased efficiency and accuracy in production, as well as reduced human intervention. IIoT enables remote monitoring and control of equipment and processes, enhancing operational control and flexibility. IoT sensors and connected systems are used to monitor and manage energy consumption in industrial facilities. This leads to energy savings by identifying opportunities to optimize energy usage, reduce waste, and implement more efficient energy management practices, which is propelling the market.
Introduction of advanced technologies in manufacturing semiconductors and electrical appliances
Advanced semiconductor manufacturing techniques have led to the development of more precise and efficient sensors. These sensors can collect data with higher accuracy and at a faster rate, which is crucial for IIoT applications. For instance, in smart manufacturing, precise sensors can monitor equipment performance and detect anomalies in real time, enabling predictive maintenance and reducing downtime. Besides, semiconductors are now being designed with built-in IoT capabilities. These IoT chips can be embedded into various electrical appliances and industrial equipment, allowing them to connect to the internet and share data seamlessly. This integration simplifies the deployment of IIoT solutions, making them more accessible to manufacturers. Moreover, advanced semiconductor technologies enable better connectivity options, including low-power wireless communication protocols like Bluetooth Low Energy (BLE) and Zigbee. These technologies facilitate the creation of IoT networks within industrial environments, ensuring reliable and efficient data transmission between devices.
IMARC Group provides an analysis of the key trends in each segment of the global industrial IoT market report, along with forecasts at the global and regional levels for 2024-2032. Our report has categorized the market based on component and end user.
Hardware
Software
Services
Connectivity
Hardware represents the most used component
The report has provided a detailed breakup and analysis of the market based on the component. This includes hardware, software, services, and connectivity. According to the report, hardware components represented the largest segment.
Hardware components include a wide range of sensors and devices that are essential for collecting data from the physical world. These sensors can monitor various parameters such as temperature, pressure, humidity, vibration, and more. They serve as the eyes and ears of IIoT systems, capturing real-world data that is crucial for monitoring and controlling industrial processes. Moreover, they provide the means for connectivity in IIoT. This includes communication modules, such as Wi-Fi, cellular, Bluetooth, and LPWAN, that enable data transmission from sensors to central processing units or cloud platforms. Besides, IIoT hardware includes processing units, microcontrollers, and edge computing devices that can perform initial data analysis and preprocessing. This capability is vital for reducing latency and ensuring timely decision-making, especially in applications where real-time responses are critical.
Manufacturing
Energy and Utilities
Automotive and Transportation
Healthcare
Others
Manufacturing industry accounts for the majority of market share
A detailed breakup and analysis of the market based on the end user has also been provided in the report. This includes manufacturing, energy and utilities, automotive and transportation, healthcare, and others. According to the report, the manufacturing industry represented the largest segment.
Manufacturing processes are inherently complex, involving various machines, equipment, and production lines. IIoT technology can seamlessly connect and monitor these components, making it highly beneficial for optimizing production efficiency, reducing downtime, and enhancing overall productivity. Besides, IIoT solutions enable predictive maintenance, allowing manufacturers to identify and address equipment issues before they lead to costly breakdowns. This results in reduced maintenance costs, minimized production disruptions, and improved resource allocation. Moreover, quality control is critical in manufacturing to ensure that products meet industry standards and customer expectations. IIoT sensors and data analytics help in real-time quality monitoring, enabling immediate adjustments and reducing defective product output.
Breakup by Region:Hardware
Software
Services
Connectivity
Hardware represents the most used component
The report has provided a detailed breakup and analysis of the market based on the component. This includes hardware, software, services, and connectivity. According to the report, hardware components represented the largest segment.
Hardware components include a wide range of sensors and devices that are essential for collecting data from the physical world. These sensors can monitor various parameters such as temperature, pressure, humidity, vibration, and more. They serve as the eyes and ears of IIoT systems, capturing real-world data that is crucial for monitoring and controlling industrial processes. Moreover, they provide the means for connectivity in IIoT. This includes communication modules, such as Wi-Fi, cellular, Bluetooth, and LPWAN, that enable data transmission from sensors to central processing units or cloud platforms. Besides, IIoT hardware includes processing units, microcontrollers, and edge computing devices that can perform initial data analysis and preprocessing. This capability is vital for reducing latency and ensuring timely decision-making, especially in applications where real-time responses are critical.
Manufacturing
Energy and Utilities
Automotive and Transportation
Healthcare
Others
Manufacturing industry accounts for the majority of market share
A detailed breakup and analysis of the market based on the end user has also been provided in the report. This includes manufacturing, energy and utilities, automotive and transportation, healthcare, and others. According to the report, the manufacturing industry represented the largest segment.
Manufacturing processes are inherently complex, involving various machines, equipment, and production lines. IIoT technology can seamlessly connect and monitor these components, making it highly beneficial for optimizing production efficiency, reducing downtime, and enhancing overall productivity. Besides, IIoT solutions enable predictive maintenance, allowing manufacturers to identify and address equipment issues before they lead to costly breakdowns. This results in reduced maintenance costs, minimized production disruptions, and improved resource allocation. Moreover, quality control is critical in manufacturing to ensure that products meet industry standards and customer expectations. IIoT sensors and data analytics help in real-time quality monitoring, enabling immediate adjustments and reducing defective product output.
North America
Europe
Asia Pacific
Middle East and Africa
Latin America
Europe exhibits a clear dominance in the market
The market research report has also provided a comprehensive analysis of all the major regional markets, which North America, Asia Pacific, Latin America, and the Middle East and Africa. According to the report, Europe accounted for the largest market share.
Europe has a robust and diverse industrial base, encompassing manufacturing, automotive, aerospace, healthcare, and more. This strong industrial presence creates a substantial demand for IIoT solutions to enhance efficiency, productivity, and competitiveness. Moreover, European countries have a long history of innovation and investment in technology. Governments and industries in Europe have been at the forefront of adopting emerging technologies like IIoT to maintain a competitive edge in the global market. Besides, the region has implemented regulations and standards that promote the adoption of IIoT for various purposes, including environmental monitoring, energy efficiency, and safety. These regulations drive the demand for IIoT solutions that help companies comply with these standards.
The competitive landscape of the market is characterized by the presence of multiple players that include established brands, emerging startups, and specialty manufacturers. Presently, leading companies are expanding their product and service offerings to cater to a broader range of industries and applications. This includes developing specialized IIoT solutions for sectors like manufacturing, energy, healthcare, and logistics. They are also forming strategic partnerships and alliances with other technology companies, system integrators, and industry-specific organizations. These collaborations help create comprehensive IIoT ecosystems and provide customers with end-to-end solutions. Moreover, companies are allocating significant resources to R&D efforts to develop cutting-edge IIoT technologies, including advanced sensors, communication protocols, and analytics capabilities.
Cisco Systems, Inc.
General Electric
Honeywell International Inc.
Intel Corporation
International Business Machines Corporation
ABB Group
Rockwell Automation
Siemens AG
Huawei Technologies Co., Ltd.
Bosch
KUKA Robotics
Texas Instruments Incorporated
Dassault Systemes SE
PTC
Arm Limited
NEC Corporation.
In February 2023, Cisco Systems added new products to its cloud tools to provide further visibility and control over networks. The new cloud management tools are designed for industrial IoT (IIoT) apps to simplify IT and OT operations dashboards and provide flexible network intelligence for industrial assets.
In June 2020, Intel Corporation in partnership with Nebbiolo for edge computing software, helped German automaker Audi automate and enhance critical quality-control processes in its factories.
In October 2020, Honeywell International partnered with Microsoft to integrate the Honeywell Forge industrial analytics platform with the Dynamics 365 Field Service offering and Azure