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市场调查报告书
商品编码
1945870
物联网工程服务市场 - 全球产业规模、份额、趋势、机会、预测(按服务、最终用户、地区和竞争格局划分),2021-2031年IoT Engineering Services Market - Global Industry Size, Share, Trends, Opportunity, and Forecast. Segmented By Service, By End User, By Region & Competition, 2021-2031F |
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全球物联网工程服务市场预计将从 2025 年的 351.1 亿美元大幅成长至 2031 年的 1,320.8 亿美元,复合年增长率达 24.71%。
这些服务涵盖了建构和实施互联设备生态系统所需的策略咨询、技术开发和系统整合等关键要素。市场成长的主要驱动力是对工业自动化的迫切需求以及预测性维护在提升营运效率方面日益增长的重要性。此外,5G基础设施的广泛部署也发挥着重要的催化作用,这需要专业的工程技术来处理海量的机器间通讯和复杂的网路架构。根据GSMA Intelligence报告显示,到2024年,企业级物联网连接数将达到107亿,这印证了大规模的基础设施规模,而这需要强大的工程支援。
| 市场概览 | |
|---|---|
| 预测期 | 2027-2031 |
| 市场规模:2025年 | 351.1亿美元 |
| 市场规模:2031年 | 1320.8亿美元 |
| 复合年增长率:2026-2031年 | 24.71% |
| 成长最快的细分市场 | 云端工程 |
| 最大的市场 | 亚太地区 |
儘管物联网市场成长势头强劲,但在有效保障整合资讯科技和操作技术环境的安全方面,仍面临许多挑战。将旧有系统与现代连接方式融合会产生复杂的安全漏洞,增加企业遭受网路威胁和资料外洩的风险。这种安全复杂性迫使企业将大量资源投入防御而非创新,往往导致计划实施延期。因此,风险规避型企业常常放弃扩展物联网倡议,转而将重心从提升自身能力转移到规避潜在责任。
工业4.0和智慧倡议的快速发展正在从根本上改变全球物联网工程服务市场。随着工业企业向全面数位化营运转型,对工程专业知识的需求日益迫切,以设计复杂的网实整合系统,并将传统机械与现代云端平台整合。这项现代化进程需要严谨的技术开发来支援数位双胞胎孪生和自动化工作流程,因此,主要企业纷纷聘请外部专家进行系统结构和实施。根据罗克韦尔自动化于2024年6月发布的第九份年度智慧製造报告,95%的製造商目前正在实施或评估智慧製造技术,这表明一场策略转型正在进行,并将推动对专业工程咨询服务的需求。
同时,对先进的物联网安全和资料隐私工程日益增长的需求正在推动市场活动。互联生态系统的扩展带来了巨大的安全漏洞,迫使企业采用安全设计架构,从韧体层到云端全面保护敏感的营运资料。网路规模的不断扩大加剧了这种紧迫性,爱立信预测到2025年底,蜂窝蜂巢式物联网联网恶意软体攻击年增45%,凸显了工程服务在强化基础设施以抵御不断演变的网路威胁方面发挥的关键作用。
全球物联网工程服务市场扩张的一大障碍在于,保障整合资讯科技 (IT) 与操作技术(OT) 环境的安全极为复杂。企业在尝试将传统工业系统与现代连接技术融合时,无意间製造出难以防御的复杂漏洞。这种安全漏洞迫使企业优先应对眼前的威胁,而非进行策略发展,导致新工程计划的推进速度放缓。企业被迫将大量资金和人力资源投入建立防御通讯协定和补救策略中,而非投资于扩充性的创新。
近期产业数据显示威胁情势日益恶化,进一步强化了这种防御姿态。据ISACA称,55%的受访网路安全专业人士表示,到2024年,网路攻击的数量将比前一年增加。威胁频率的增加导致市场风险规避情绪升温,决策者担心关键基础设施遭到破坏,因此对核准新的物联网工程倡议犹豫不决。结果,由于安全需求超过了数位转型和营运扩充性的驱动力,市场成长明显放缓。
边缘人工智慧和人工智慧物联网 (AIoT) 功能的整合正在迅速改变工程工作流程,因为它要求将处理能力直接部署在终端设备上。随着企业寻求降低延迟和频宽依赖性,工程团队正优先开发能够在本地端运行复杂推理模型的自主系统。这种转变需要内建软体和硬体设计的稳健融合,使智慧不再依赖持续的云端连接。根据 Zededa 在 2025 年 5 月进行的一项调查,90% 的企业正在增加其 2025 年的边缘人工智慧预算,这主要是由于迫切需要在工业环境中实现分散式智慧。
同时,对永续和节能型物联网产品设计的日益重视,迫使工程师设计出能够最大限度降低功耗并延长运作的设备。这一趋势推动了专用低功耗连接标准(例如精简容量 (RedCap) 技术)的普及,使工程师能够在严格的能耗限制下平衡效能。韧体和硬体中的节能优化使企业能够大幅降低其连网设备对环境的影响,同时缩短维护週期。根据爱立信 2025 年 6 月发布的《行动旅行报告》,目前 24 个国家的 34 家通讯服务供应商正在投资 5G RedCap 技术,这标誌着市场正在转向能够降低复杂性并提高电池效能的工程解决方案。
The Global IoT Engineering Services Market is projected to expand significantly, rising from USD 35.11 Billion in 2025 to USD 132.08 Billion by 2031, representing a CAGR of 24.71%. These services comprise the essential strategic consulting, technical development, and system integration needed to build and implement connected device ecosystems. Market growth is largely fueled by the urgent demand for industrial automation and the increasing importance of predictive maintenance in boosting operational efficiency. Additionally, the widespread rollout of 5G infrastructure serves as a major catalyst, requiring specialized engineering to handle extensive machine-type communications and complex network architectures. GSMA Intelligence reported that the enterprise segment accounted for 10.7 billion IoT connections in 2024, underscoring the massive infrastructure scale that demands robust engineering support.
| Market Overview | |
|---|---|
| Forecast Period | 2027-2031 |
| Market Size 2025 | USD 35.11 Billion |
| Market Size 2031 | USD 132.08 Billion |
| CAGR 2026-2031 | 24.71% |
| Fastest Growing Segment | Cloud Engineering |
| Largest Market | Asia Pacific |
Despite this strong growth trajectory, the market faces a substantial obstacle in effectively securing converged information and operational technology environments. Merging legacy systems with modern connectivity often introduces intricate vulnerabilities, leaving enterprises open to cyber threats and data breaches. This security complexity compels organizations to dedicate significant resources to defensive measures rather than innovation, often delaying project implementation. Consequently, risk-averse businesses are frequently deterred from scaling their IoT initiatives, as the focus shifts toward mitigating potential liabilities rather than expanding capabilities.
Market Driver
The rapid advancement of Industry 4.0 and smart manufacturing initiatives is fundamentally transforming the Global IoT Engineering Services Market. As industrial enterprises shift toward fully digitized operations, there is a critical need for engineering expertise to design complex cyber-physical systems and integrate legacy machinery with modern cloud platforms. This modernization effort requires rigorous technical development to support digital twins and automated workflows, leading companies to hire external specialists for system architecture and deployment. In June 2024, Rockwell Automation's '9th Annual State of Smart Manufacturing Report' noted that 95% of manufacturers are now using or evaluating smart manufacturing technologies, indicating a major strategic shift that drives the consumption of specialized engineering and consulting services.
Simultaneously, the growing necessity for advanced IoT security and data privacy engineering is stimulating significant market activity. The expansion of connected ecosystems introduces critical vulnerabilities, forcing organizations to adopt security-by-design architectures that protect sensitive operational data from the firmware level up to the cloud. This urgency is heightened by the increasing scale of the network; Ericsson forecasts that cellular IoT connections will reach 4.5 billion by the end of 2025. This vast connectivity landscape has led to a sharp rise in hostile activity, requiring dedicated security engineering to mitigate risks. Zscaler's October 2024 report highlighted a 45% year-over-year increase in IoT malware attacks, emphasizing the vital role of engineering services in fortifying infrastructure against evolving cyber threats.
Market Challenge
A primary obstacle hindering the expansion of the Global IoT Engineering Services Market is the profound complexity associated with securing converged Information Technology (IT) and Operational Technology (OT) environments. As enterprises attempt to link legacy industrial systems with modern connectivity, they inadvertently create intricate vulnerabilities that are difficult to defend. This security gap forces organizations to prioritize immediate threat mitigation over strategic development, effectively stalling the deployment of new engineering projects. Instead of investing in scalable innovations, businesses are compelled to divert substantial capital and workforce hours toward establishing defensive protocols and remediation strategies.
This defensive posture is reinforced by recent industry data indicating a deteriorating threat landscape. According to ISACA, in 2024, 55 percent of surveyed cybersecurity professionals reported an increase in the number of cyberattacks compared to the previous year. This rising frequency of threats fosters a risk-averse atmosphere where decision-makers hesitate to authorize new IoT engineering initiatives for fear of compromising critical infrastructure. Consequently, the market experiences a measurable slowdown as the imperative for security overshadows the drive for digital transformation and operational scalability.
Market Trends
The integration of Edge AI and AIoT capabilities is rapidly reshaping engineering workflows by requiring processing power to be deployed directly on endpoint devices. As organizations aim to reduce latency and dependence on bandwidth, engineering teams are prioritizing the development of autonomous systems capable of executing complex inference models locally. This shift demands a robust convergence of embedded software and hardware design, ensuring that intelligence is not reliant on constant cloud connectivity. According to Zededa's May 2025 survey, 90 percent of organizations are increasing their edge AI budgets for 2025, driven by the critical need to operationalize distributed intelligence across industrial environments.
Concurrently, the focus on sustainable and energy-efficient IoT product design is compelling engineers to architect devices that minimize power consumption and extend operational lifecycles. This trend is driving the adoption of specialized low-power connectivity standards, such as Reduced Capability (RedCap) technologies, which allow engineers to balance performance with strict energy constraints. By optimizing firmware and hardware for energy efficiency, companies can significantly lower the environmental impact of their connected fleets while reducing maintenance frequency. Ericsson's June 2025 Mobility Report indicates that 34 communication service providers in 24 countries are currently investing in 5G RedCap technology, reflecting a market-wide pivot toward engineering solutions that support reduced complexity and enhanced battery performance.
Report Scope
In this report, the Global IoT Engineering Services 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 IoT Engineering Services Market.
Global IoT Engineering Services 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: