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市场调查报告书
商品编码
1423678
到 2030 年自动乘客计数系统市场预测:按类型、技术、应用和地区分類的全球分析Automated Passenger Counting System Market Forecasts to 2030 - Global Analysis By Type, By Technology, Application and By Geography |
根据 Stratistics MRC 的数据,2023 年全球自动乘客计数系统市场规模为 99.2 亿美元,预计在预测期内将以 11.4% 的复合年增长率增长,到 2030 年达到 211.3 亿美元。
自动乘客计数系统是一种应用于运输车辆的技术,利用感测器和摄影机来准确追踪和统计车辆内的乘客数量。该系统有助于优化交通业务、提高效率,并为大众交通工具网路规划和资源分配提供有价值的资料。
增加城市密度和大众交通工具使用
城市密度的增加和大众交通工具使用量的快速增加是自动乘客计数系统市场的关键驱动因素。随着城市变得更加密集,对高效大众交通工具的需求不断增加,需要准确的乘客资料来改善服务规划和资源分配。自动化系统可以即时了解客流,帮助交通部门优化路线、时刻表和车队管理。该技术满足了人口稠密的都市区对高效、资料主导的大众交通工具解决方案日益增长的需求,并增强了整体交通运作。
投资成本高
实施先进的计数技术,例如先进的传感器和摄像头,需要大量资金。将这些系统纳入现有的交通基础设施需要硬体、软体和安装成本。对于预算有限的营运商来说,这些初期成本可能会阻碍采用并限制市场扩张。
高级分析和人工智慧集成
透过利用人工智慧演算法和分析,该系统不仅可以准确地统计乘客数量,还可以从收集的资料中得出有洞察力的模式和趋势。这可以实现预测建模、调度优化、人群管理和个人化乘客体验。透过部署人工智慧主导的分析,营运商可以做出明智的决策,提高服务质量,并提高运输网路的整体效率,从而在市场上获得竞争优势。
网路攻击和资料洩露
网路攻击和资料外洩对市场构成重大威胁。由于这些系统依赖互连的网路和软体,因此它们很容易受到恶意活动的影响。未授权存取敏感乘客资料可能会导致隐私侵犯和安全受损。此外,对 APC 系统的网路攻击可能会扰乱运输业务,导致服务停机、乘客数量不准确和系统故障。此类中断会影响运输效率、可靠性和乘客安全,并削弱人们对系统准确性和安全性的信心。
由于出行方式的变化和大众交通工具使用的减少,COVID-19 大流行对自动乘客计数系统 (APC) 市场产生了重大影响。封锁和限制减少了乘客数量,影响了 APC 系统的可用性和准确性。运输业者面临调整系统以遵守社交距离规范的挑战,并重新定义了乘客计数指标。然而,疫情也加速了对 APC 系统的需求,以监控大众交通工具运转率并确保安全距离。
预计行动应用领域将在预测期内成为最大的领域
由于智慧型手机的普及不断提高以及对即时资讯的需求不断增加,预计行动应用程式产业将在预测期内处于领先地位。与行动应用程式整合的自动乘客计数系统为通勤者提供有关车辆运转率、时刻表和路线的最新资讯。这将改善乘客体验,有助于遵守 COVID-19 后的社交距离规范,并支持高效的交通规划。此外,行动应用程式提供的便利性和可访问性预计将在预测期内主导自动乘客计数系统市场。
铁路部门预计在预测期内复合年增长率最高
由于铁路运输中越来越多地采用自动乘客计数系统,预计铁路部门在预测期内将实现最高成长率。 APC 系统可提高业务效率,实现准确的乘客资料收集,并为乘客安全做出贡献。随着铁路行业在全球范围内采用技术来优化和改善乘客体验,铁路行业预计将显着增长。
由于其先进的交通基础设施、较早的技术采用以及政府推动智慧交通系统的努力,预计北美将主导市场。该地区拥有发达的大众交通工具,尤其是在美国和加拿大,对APC系统优化营运和改善乘客服务的需求不断增长。此外,对智慧城市计画的投资增加以及对提高交通效率的关注也促进了该地区的成长。
由于快速的都市化、大众交通工具网络的扩张和技术的进步,亚太地区是一个市场成长显着的地区。政府对改善交通基础设施和对高效大众交通工具日益增长的需求的推动推动了 APC 系统的采用。此外,该地区的成长经济体,如中国、印度和东南亚国家,越来越倾向于智慧交通解决方案,预计这将导致亚太地区 APC 系统在预测期内显着增长。是。
According to Stratistics MRC, the Global Automated Passenger Counting System Market is accounted for $9.92 billion in 2023 and is expected to reach $21.13 billion by 2030 growing at a CAGR of 11.4% during the forecast period. Automated Passenger Counting System is a technology used in transportation vehicles, utilizing sensors or cameras to accurately track and count the number of passengers boarding, present within a vehicle. This system aids in optimizing transit operations, enhancing efficiency and providing valuable data for planning and resource allocation in public transportation networks.
Rising urban density and public transportation usage
Increasing urban density and a surge in public transportation usage serve as significant drivers for the Automated Passenger Counting System market. As cities grow denser, the demand for efficient public transit rises, necessitating accurate passenger data for improved service planning and resource allocation. Automated systems offer real-time insights into passenger flow, aiding transit authorities in optimizing routes, schedules and fleet management. This technology caters to the escalating need for efficient, data-driven public transportation solutions in densely populated urban areas, enhancing overall transit operations.
High investment costs
Implementing advanced counting technologies, such as sophisticated sensors and cameras, requires substantial capital. Integrating these systems into existing transportation infrastructure incurs expenses for hardware, software and installation. For budget-constrained operators, these upfront costs can hinder adoption, which limits market expansion.
Integration of advanced analytics and AI
Leveraging AI algorithms and analytics enables the system to not only accurately count passengers but also derive insightful patterns and trends from the gathered data. This allows for predictive modeling, optimized scheduling, crowd management and personalized passenger experiences. The implementation of AI-driven analytics empowers operators to make informed decisions, improve service quality and enhance overall efficiency within transportation networks, creating a competitive advantage in the market.
Cyberattacks and data breaches
Cyberattacks and data breaches pose a significant threat to the market. These systems rely on interconnected networks and software, they become susceptible to malicious activities. Unauthorized access to sensitive passenger data can lead to privacy violations and compromise security. Moreover, a cyberattack on APC systems can disrupt transportation operations, causing service downtime, inaccurate passenger counts or system malfunctions. Such disruptions impact transit efficiency, reliability and passenger safety, eroding trust in the system's accuracy and security.
The COVID-19 pandemic significantly affected the Automated Passenger Counting System (APC) market due to altered travel patterns and reduced public transportation usage. With lockdowns and restrictions, passenger volumes decreased, impacting APC system utilization and accuracy. Transit authorities faced challenges in adjusting systems to comply with social distancing norms, redefining passenger counting metrics. However, the pandemic also accelerated the need for APC systems to monitor occupancy and ensure safe distancing on public transport.
The mobile applications segment is expected to be the largest during the forecast period
The mobile applications segment is poised to lead during the forecast period due to increasing smartphone penetration and the demand for real-time information. Automated passenger counting systems integrated with mobile applications provide commuters with up-to-date information on vehicle occupancy, schedules, and routes. This enhances the passenger experience, aids in adherence to social distancing norms post-COVID-19, and supports efficient transit planning. Moreover, the convenience and accessibility offered by mobile applications contribute to their projected dominance in the automated passenger counting system market over the forecasted period.
The railways segment is expected to have the highest CAGR during the forecast period
The railways segment is anticipated to achieve the highest growth rate during the forecast period due to the increasing adoption of automated passenger counting systems in rail transport. APC systems enhance operational efficiency, enable accurate ridership data collection, and contribute to passenger safety. As the rail industry globally embraces technology for optimization and a better passenger experience, the railways segment is poised for substantial growth.
North America is poised to dominate the market due to advanced transportation infrastructure, early technology adoption and government initiatives promoting smart transportation systems. The region's robust public transit networks, especially in the United States and Canada, drive the demand for APC systems to optimize operations and improve passenger services. Moreover, increased investments in smart city initiatives and a focus on enhancing transit efficiency contribute to regional growth.
The Asia Pacific region is positioned for significant growth in the market owing to rapid urbanization, expanding public transportation networks and increasing technological advancements. Governments focus on improving transportation infrastructure and the rising demand for efficient public transit drive the adoption of APC systems. Moreover, the region's thriving economies, such as China, India and Southeast Asian countries, exhibit a growing inclination toward smart transportation solutions, contributing to the anticipated substantial growth of APC systems in the Asia Pacific during the forecast period.
Key players in the market
Some of the key players in Automated Passenger Counting System Market include Bosch Mobility Solutions, Clever Devices, Cleveron, Daktronics, DILAX Intelcom GmbH, Euclid Labs, Eurotech, HELLA Aglaia Mobile Vision GmbH, Hikvision, Honeywell, Infodev EDI, Iris-GmbH Infrared & Intelligent Sensors, LILEE Systems, Nexcom, Rail Vision, Siemens Mobility, Syncromatics and Trapeze Group.
In October 2020, SICK has launched its new PeopleCounter (PeCo) SensorApp. Using 3D LiDAR sensors, the system enables facility managers to maintain recommended occupancy levels in public spaces and in manufacturing settings.