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市场调查报告书
商品编码
1462638
到 2030 年支援物联网的无线车队管理市场预测:按组件、车队类型、部署类型、应用和区域进行的全球分析IoT Enabled Wireless Fleet Management Market Forecasts to 2030 - Global Analysis By Component (Solutions, Services and Other Components), Fleet Type (Passenger Fleet, Commercial Fleet and Other Fleet Types), Deployment Type, Application and By Geography |
根据 Stratistics MRC 的数据,2023 年全球物联网无线车队管理市场规模为 1,350 万美元,预计到 2030 年将达到 5,380 万美元,预测期内复合年增长率为 21.8%。
支援物联网的无线车队管理市场是指专注于利用物联网(IoT)技术来优化车辆、卡车、船舶等车队管理的产业。支援物联网的车队管理系统收集和分析与车辆位置、速度、消费量、引擎性能和驾驶员行为相关的资料。有了这些讯息,车队经理可以提高业务效率、降低燃料成本、改善车辆维护并确保合规性。
根据阿贡国家实验室 2015 年进行的一项研究,由于卡车过度空转,大约有 10 亿加仑的燃料被浪费,每年造成的损失约 30 亿美元。
对业务效率的需求不断增加
各行业的公司必须优化其车队运营,才能在当今动态的市场中保持竞争力。支援物联网的无线车队管理解决方案提供即时监控和控制功能,使公司能够有效管理车辆、减少空转时间、最大限度地减少燃料消耗并提高整体生产力。这种资料主导的方法使企业能够做出明智的决策、简化业务并更有效地分配资源。
初期投资成本高
实施这些先进技术需要在硬体、软体、基础设施和培训方面进行大量投资。对于许多公司,尤其是财力有限的中小型企业来说,实施支援物联网的车队管理系统的初始成本可能令人望而却步。成本不仅限于初始设置,还包括维护、升级和资料管理等持续成本。儘管这些投资具有业务效率、成本节约和改善车队管理等潜在的长期效益,但其资本集中性质往往会阻碍公司实施物联网解决方案。
远端资讯处理和联网汽车的采用率不断提高
嵌入车辆中的远端资讯处理系统可以无缝传输有关车辆性能、位置和驾驶员行为的即时资料。这些系统与连网型车辆技术相结合,为车队经理提供了大量可行的见解,以优化业务并提高效率。支援物联网的无线车队管理解决方案利用这些资料提供全面的车辆监控、路线最佳化、预测性维护和驾驶员安全功能。此外,远端资讯处理和连网型车辆的整合使车队经理能够对其车队拥有前所未有的可见性和控制力,从而改善决策、降低营运成本并提高客户满意度。
缺乏标准化通讯协定
车队管理中的物联网设备和通讯网路缺乏普遍接受的标准和通讯协定,导致了互通性问题,并且很难无缝整合来自不同供应商的不同系统和设备。标准化的缺乏使得物联网车队管理解决方案的开发、部署和维护变得复杂,增加了实施成本,并抑制了扩充性。然而,如果没有标准化通讯协定,公司发现很难确保车队管理生态系统各个组件之间的兼容性和互通性,导致资料交换和通讯效率低下和受到限制。
为遏制病毒传播而实施的广泛封锁和限制扰乱了供应链和物流业务,增加了对车辆活动的即时可见性和控制的需求。由于疫情造成的景气衰退,一些企业因财务紧张而推迟或缩减了对物联网解决方案的投资,影响了市场成长。总体而言,COVID-19 凸显了支援物联网的无线车队管理在应对不断变化的挑战中应对干扰和优化车队营运的重要性。
预计客运机队在预测期内将是最大的
由于对提高乘客安全性和舒适度的需求不断增长,促使运输公司投资于即时监控车辆健康和乘客体验的物联网解决方案,客运车队市场将在整个预测期内继续增长,预计将占据最大的份额.市场占有率.此外,这些技术使营运商能够优化路线、提高燃油效率并及时进行维护,从而提高整体营运效率。此外,由于强调永续性和环保意识,支援物联网的车队管理解决方案可以帮助客运业者透过优化路线规划和环保驾驶实践来减少碳排放。
预计途径管理业务在预测期间内复合年增长率最高
物联网技术的整合使车队经理能够存取有关车辆位置、交通状况和交付时间表的即时资料,从而优化路线以实现最大效率和生产力。支援物联网的途径管理系统利用先进的演算法和预测分析,根据交通拥堵、天气和交付优先顺序等因素动态调整途径。这不仅可以最大限度地减少旅行时间和燃油消耗,还可以提高车队的整体运转率和客户满意度。
亚太地区经济的快速扩张和都市化迅速增加了对高效运输和物流解决方案的需求,推动了物联网车队管理技术的采用。电子商务平台的普及和线上零售的兴起推动了对优化最后一哩交付服务的需求,并促使公司投资于路线优化、车辆追踪和交付管理的物联网解决方案。
预计亚太地区将在整个主导时期呈现良好的成长势头。随着该地区经济的扩张和都市化程度的不断提高,确保在多样化且往往恶劣的环境中运行的车辆的安全成为人们关注的焦点。该地区各国政府越来越重视推动智慧交通倡议并解决交通拥堵和污染问题,进一步加速采用物联网车队管理系统。
According to Stratistics MRC, the Global IoT Enabled Wireless Fleet Management Market is accounted for $13.5 million in 2023 and is expected to reach $53.8 million by 2030 growing at a CAGR of 21.8% during the forecast period. The IoT Enabled Wireless Fleet Management Market refers to the sector focused on utilizing Internet of Things (IoT) technologies to optimize the management of fleets, such as vehicles, trucks, or ships. IoT-enabled fleet management systems collect and analyze data related to vehicle location, speed, fuel consumption, engine performance, and driver behavior. By leveraging this information, fleet managers can improve operational efficiency, reduce fuel costs, enhance vehicle maintenance, and ensure regulatory compliance.
According to a research study conducted by Argonne National Laboratory in 2015, approximately 1 billion gallons of fuel was wasted because of excessive truck idling, which cost around USD 3 billion yearly.
Increasing demand for operational efficiency
Businesses across various industries are under pressure to optimize their fleet operations to remain competitive in recent dynamic marketplace. IoT-enabled wireless fleet management solutions offer real-time monitoring and control capabilities, allowing companies to efficiently manage their fleets, reduce idle time, minimize fuel consumption, and improve overall productivity. This data-driven approach enables businesses to make informed decisions, streamline operations, and allocate resources more effectively.
High initial investment costs
The implementation of these advanced technologies requires substantial investments in hardware, software, infrastructure, and training. For many businesses, especially smaller companies with limited financial resources, the upfront expenses associated with deploying IoT-enabled fleet management systems can be prohibitive. The costs extend beyond the initial setup to include ongoing expenses such as maintenance, upgrades, and data management. The capital-intensive nature of these investments often deters organizations from pursuing IoT-enabled solutions, despite their potential long-term benefits in terms of operational efficiency, cost savings, and improved fleet management.
Increasing adoption of telematics and connected vehicles
Telematics systems embedded within vehicles enable the seamless transmission of real-time data regarding vehicle performance, location, and driver behavior. Combined with connected vehicle technology, these systems provide a wealth of actionable insights that empower fleet managers to optimize operations and enhance efficiency. IoT-enabled wireless fleet management solutions leverage this data to offer comprehensive fleet monitoring, route optimization, predictive maintenance, and driver safety features. Furthermore, with the integration of telematics and connected vehicles, fleet managers gain unprecedented visibility and control over their fleets, leading to improved decision-making, reduced operational costs, and enhanced customer satisfaction.
Lack of standardized protocols
In the absence of universally accepted standards and protocols for IoT devices and communication networks in fleet management, interoperability issues arise, making it challenging to integrate disparate systems and devices from different vendors seamlessly. This lack of standardization complicates the development, deployment, and maintenance of IoT-enabled fleet management solutions, increasing implementation costs and hindering scalability. However, without standardized protocols, businesses face difficulties in ensuring compatibility and interoperability between various components of their fleet management ecosystem, leading to inefficiencies and limitations in data exchange and communication.
The widespread lockdowns and restrictions imposed to curb the spread of the virus disrupted supply chains and logistics operations, leading to increased demand for real-time visibility and control over fleet activities. The economic downturn caused by the pandemic led some businesses to postpone or scale back investments in IoT solutions due to financial constraints, impacting market growth. Overall, COVID-19 underscored the importance of IoT-enabled wireless fleet management in navigating disruptions and optimizing fleet operations amid evolving challenges.
The passenger fleet segment is expected to be the largest during the forecast period
Passenger Fleet segment is expected to hold the largest share of the market throughout the projection period due to a rising demand for enhanced passenger safety and comfort, prompting transportation companies to invest in IoT-enabled solutions for real-time monitoring of vehicle conditions and passenger experience. Furthermore, these technologies allow fleet operators to optimize routes, improve fuel efficiency, and ensure timely maintenance, leading to enhanced overall operational efficiency. Additionally, with the growing emphasis on sustainability and environmental consciousness, IoT-enabled fleet management solutions help passenger fleet operators reduce carbon emissions through optimized route planning and eco-driving practices.
The routing management segment is expected to have the highest CAGR during the forecast period
With the integration of IoT technologies, fleet managers can access real-time data on vehicle location, traffic conditions, and delivery schedules, enabling them to optimize routes for maximum efficiency and productivity, Routing Management segment is estimated to grow at a rapid pace during the overcast period of time frame. IoT-enabled routing management systems leverage advanced algorithms and predictive analytics to dynamically adjust routes based on factors such as traffic congestion, weather conditions, and delivery priorities. This not only minimizes travel time and fuel consumption but also improves overall fleet utilization and customer satisfaction.
Due to the region's rapid economic development and urbanization have led to a surge in demand for efficient transportation and logistics solutions, driving the adoption of IoT-enabled fleet management technologies, Throughout the extrapolated period of time frame, Asia Pacific region dominated the largest market share. The proliferation of e-commerce platforms and the rise of online retailing have fueled the need for optimized last-mile delivery services, prompting businesses to invest in IoT solutions for route optimization, vehicle tracking and delivery management.
Asia Pacific region is prophesied to witness lucrative growth throughout the domination period. With the region's expanding economy and increasing urbanization, there's a heightened emphasis on ensuring the safety of fleets operating in diverse and often challenging environments. Governments in the region are increasingly focusing on promoting smart transportation initiatives and addressing traffic congestion and pollution issues, further accelerating the adoption of IoT-enabled fleet management systems.
Key players in the market
Some of the key players in IoT Enabled Wireless Fleet Management market include AT&T Inc, Bridgestone Mobility Solutions B.V., Cisco Systems, Inc, Geotab Inc, IBM Corporation, Omnitracs, LLC, Sierra Wireless, Teletrac Navman Group and Trimble Inc.
In January 2023, AROBS Transilvania Software, a custom software development company, acquired Centrul de Soft GPS SRL, a provider of fleet management solutions. The acquisition enables AROBS to strengthen its position in the IoT enabled wireless fleet management market.
In November 2022, Powerfleet, Inc., a provider of Internet of Things (IoT) Software-as-a-Service (SaaS) solutions, announced the launch of Powerfleet Unity, its new IoT enabled fleet intelligence platform that integrates IoT devices and third-party business systems to transform business operations.
In September 2022, Amazon Web Services, Inc. launched AWS IoT FleetWise, its new service for automotive companies that helps to collect, transform, and transfer vehicle data to the cloud in near real time.