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市场调查报告书
商品编码
1941250
Wi-Fi市场报告:按组件、密度、位置类型、组织规模、垂直产业和地区划分(2026-2034年)Wi-Fi Market Report by Component, Density, Location Type, Organization Size, Industry Vertical, and Region 2026-2034 |
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2025年全球Wi-Fi市场规模达397亿美元。展望未来,IMARC集团预测,到2034年,市场规模将达到1,010亿美元,2026年至2034年的复合年增长率为10.90%。推动市场成长的关键因素包括BYOD(自备设备办公室)政策的日益普及、对社群媒体平台体验和内容共用的需求不断增长,以及线上游戏和电子竞技的日益普及。
无线保真度(Wi-Fi)是一种技术解决方案,它使智慧型手机和笔记型电脑等电子设备能够透过无线电波连接到互联网并相互通讯。它工作在 2.4 GHz 和 5 GHz 频段,可在有效范围内实现设备间的高速资料传输。透过路由器等无线网路基地台建立网络,从而实现设备与互联网之间的资料传输。这提供了一种便捷灵活的网路连线方式,无需实体线缆。 Wi-Fi 广泛应用于家庭、办公室、公共设施和各种工业领域,用于将设备连接到互联网和本地网路。
职场中自备设备办公(BYOD)政策的日益普及,鼓励员工使用智慧型手机、笔记型电脑等个人设备办公,从而推动了市场成长。此外,社群媒体平台上体验和内容共用需求的不断增长,也带动了公共场所和活动中对Wi-Fi的需求。配备数位和电子设备的现代智慧家庭的兴起,同样促进了市场成长。此外,网路游戏和电子竞技的日益普及,需要稳定高速的Wi-Fi连接以确保流畅的游戏体验,也对市场产生了积极影响。同时,越来越多的饭店、餐厅和咖啡馆提供Wi-Fi服务,以提升顾客体验、增加线上预订量,并在店内提供数位化服务,这些因素也推动了市场成长。
连网设备的使用日益增多
智慧型手机、平板电脑、笔记型电脑、智慧型家电和物联网设备等连网装置的指数级成长,正在推动对Wi-Fi连线的需求。这些设备依赖无线网路存取互联网并彼此无缝通讯。随着这些设备在全球的普及,个人和企业都需要可靠、快速的Wi-Fi网路来满足其多样化的需求。 Wi-Fi的便利性使用户能够随时随地存取资讯、进行交易并保持连接,使其成为数位环境中不可或缺的功能。
智慧城市发展进展
快速的都市化和智慧城市建设正在推动Wi-Fi基础设施的需求。在智慧城市建设中,Wi-Fi是各种互联繫统的基础,包括智慧交通、公共和市政服务。市民和企业越来越依赖公共场所、购物中心、机场和咖啡馆等地的Wi-Fi热点进行行动上网。诸如定位服务和室内导航等Wi-Fi技术能够提升城市环境中的使用者体验和营运效率。随着城市数位转型,对Wi-Fi的需求预计将持续成长,从而促进创新,并最终提升居民的整体生活品质。
物联网 (IoT) 的扩展
物联网设备在各行各业的快速普及是推动Wi-Fi需求成长的关键因素。物联网设备配备嵌入式感测器并连接到互联网,从而能够交换资料并执行自动化任务。从智慧家庭和工业自动化到医疗保健和农业,物联网应用的广泛普及都高度依赖Wi-Fi连接。这些设备需要无缝且安全的无线网路才能有效运作。随着企业和个人将越来越多的物联网设备融入日常营运和生活中,对强大Wi-Fi基础设施的需求也变得愈发迫切。
The global Wi-Fi market size reached USD 39.7 Billion in 2025. Looking forward, IMARC Group expects the market to reach USD 101.0 Billion by 2034, exhibiting a growth rate (CAGR) of 10.90% during 2026-2034. The increasing adoption of BYOD policies, rising need to share experiences and content on social media platforms, and the growing popularity of online gaming and esports are some of the major factors propelling the market.
Wireless fidelity (wi-fi) is a technological solution that allows devices like smartphones, laptops, and other electronics to connect over the internet and communicate with each other wirelessly using radio waves. It works on the 2.4 GHz and 5 GHz radio frequency bands, which provides high-speed data transmission between devices within its range. Its networks are created through wireless access points, such as routers, which transmit data between devices and the internet and enable convenient and flexible internet connectivity without the need for physical cables. It is widely used in homes, offices, public places, and various industries to connect devices to the internet and local networks.
The increasing adoption of bring your own device (BYOD) policies in workplaces encourages employees to use their personal devices, like smartphones and laptops, for work tasks, which is strengthening the growth of the market. Moreover, the rising need to share experiences and content on social media platforms is driving the demand for Wi-Fi in public places and events. In addition, the emergence of contemporary and smart homes with digital and electronic devices is favoring the growth of the market. Apart from this, the growing popularity of online gaming and esports that requires stable and high-speed Wi-Fi connections to ensure smooth gameplay is influencing the market positively. Furthermore, the increasing number of hotels, restaurants, and cafes that provide Wi-Fi to enhance guest experiences, facilitate online bookings, and enable digital services within their premises is propelling the growth of the market.
Increase use of connected devices
The exponential increase in connected devices, such as smartphones, tablets, laptops, smart home appliances, and IoT devices, is fueling the demand for Wi-Fi connectivity. These devices rely on wireless networks to access the internet and communicate with each other seamlessly. As the adoption of these devices continues to surge globally, individuals and businesses seek reliable and high-speed Wi-Fi networks to support their diverse needs. The convenience of Wi-Fi enables users to access information, conduct transactions, and stay connected on-the-go, which makes it an essential feature in the digital landscape.
Rise in the development of smart cities
Rapid urbanization and the development of smart cities is catalyzing the demand for Wi-Fi infrastructure. In smart city initiatives, Wi-Fi forms the backbone of various interconnected systems, such as smart transportation, public safety, and municipal services. Citizens and businesses increasingly rely on Wi-Fi hotspots in public spaces, shopping centers, airports, and cafes for internet access while on the move. Wi-Fi-enabled technologies, like location-based services and indoor navigation, enhance user experiences and streamline operations in urban environments. As cities continue to embrace digital transformation, the demand for Wi-Fi is expected to grow, fostering innovation and improving overall quality of life for residents.
Expansion of Internet of Things (IoT)
The rapid expansion of IoT devices across various industries is a significant driver for Wi-Fi demand. IoT devices are embedded with sensors and connected to the internet, allowing them to exchange data and perform automated tasks. From smart homes and industrial automation to healthcare and agriculture, the proliferation of IoT applications relies heavily on Wi-Fi connectivity. These devices require seamless and secure wireless networks to function effectively. As businesses and individuals integrate more IoT devices into their daily operations and lifestyles, the need for robust Wi-Fi infrastructure becomes even more pronounced.
Hardware dominates the market
Wi-Fi hardware refers to the physical devices and equipment that enable wireless communication. It includes wireless routers, access points, network interface cards (NICs) in devices like laptops and smartphones, and Wi-Fi extenders. Routers and access points create Wi-Fi networks, while devices with Wi-Fi NICs can connect to these networks wirelessly. Wi-Fi hardware is designed to transmit and receive data using radio waves, which allows devices to communicate with each other and access the internet without the need for cables.
Wi-Fi solutions encompass the software and configurations used to manage and optimize Wi-Fi networks. It involves firmware and software in routers and access points that control network settings and security features. Wi-Fi solutions may also involve network management software that allows administrators to monitor and control the network, which ensures smooth performance and security. Wi-Fi solutions can vary based on the needs of the environment, such as home networks, enterprise networks, or public Wi-Fi hotspots.
High-density Wi-Fi refers to a network setup designed to handle many Wi-Fi devices in a confined area. It is typically implemented in locations with a high concentration of users, such as stadiums, convention centers, airports, shopping malls, and other crowded public spaces.
On the other hand, enterprise-class Wi-Fi refers to Wi-Fi solutions specifically designed for businesses and organizations. It is usually deployed in corporate offices, campuses, hospitals, hotels, and other enterprise environments. Enterprise Wi-Fi systems feature more robust hardware, advanced security protocols, and sophisticated management tools compared to consumer-grade Wi-Fi routers.
Indoor dominates the market
Indoor Wi-Fi refers to wireless networks that are designed and deployed to provide internet connectivity and local network access within enclosed spaces or buildings. It is commonly found in homes, offices, schools, shopping malls, hospitals, airports, and other indoor environments. Its access points are usually installed on ceilings or walls to ensure optimal signal propagation that can be connected to a wired network or router, which acts as the internet gateway. Indoor Wi-Fi networks are essential for providing seamless internet access and connectivity to Wi-Fi-enabled devices like laptops, smartphones, tablets, and IoT devices within the building.
Outdoor Wi-Fi refers to wireless networks specifically designed for providing internet connectivity and coverage in outdoor spaces. It is commonly deployed in public parks, outdoor stadiums, city centers, outdoor cafes, and other open-air areas. Outdoor Wi-Fi access points are designed to withstand environmental factors like weather conditions and temperature fluctuations.
Wi-Fi networks in large enterprises cater to a substantial number of users and devices and support various applications and services. Large enterprise Wi-Fi networks require robust and scalable solutions. They consist of multiple access points deployed strategically throughout the premises to ensure comprehensive coverage. The network design can incorporate advanced features like virtual LANs (VLANs), Quality of Service (QoS), and centralized management platforms for better control and security. Security is of paramount importance in large enterprises, as these networks may hold sensitive business data and require protection against potential threats.
Wi-Fi solutions for SMEs are generally more straightforward and cost-effective compared to those for large enterprises. They can involve a single wireless router or access point that provides internet connectivity and local network access for employees' devices.
IT and telecommunication dominate the market
Wi-Fi plays a crucial role in the IT and telecommunication industry to provide seamless internet access to their employees and facilitate communication and collaboration. Telecommunication service providers also use Wi-Fi technology to offer public Wi-Fi hotspots to their customers, enabling internet connectivity in various public areas and enhancing customer satisfaction.
Wi-Fi has become an integral part of the education sectors as schools, colleges, and universities utilize Wi-Fi networks to provide internet access to students, teachers, and staff. Wi-Fi in educational settings supports online learning, research, and collaboration among students and educators. It also enables the use of educational technology and digital resources within the campus.
Wi-Fi is increasingly used in the BFSI sector to provide reliable and secure internet connectivity for both employees and customers. It facilitates day-to-day operations, communication, and data sharing among employees. It can be available for customers, which enables them to access banking services and information while visiting the bank premises.
Asia Pacific exhibits a clear dominance, accounting for the largest Wi-Fi market share
The report has also provided a comprehensive analysis of all the major regional markets, which includes North America (the United States and Canada); Asia Pacific (China, Japan, India, South Korea, Australia, Indonesia, and Others); Europe (Germany, France, the United Kingdom, Italy, Spain, Russia, and Others); Latin America (Brazil, Mexico, and Others); and the Middle East and Africa. According to the report, Asia Pacific accounted for the largest market share.
The increasing penetration of the internet and a considerable reliance on smartphones represents one of the primary factors driving the demand for Wi-Fi in the Asia Pacific region. Moreover, the rising development of smart cities with easy access to Wi-Fi for supporting the healthcare and education sectors is favoring the growth of the market in the region. Apart from this, the growing investment on transportation, public safety, utilities, and education-related projects is influencing the market positively in the region.
Europe is estimated to witness stable growth, owing to the preference for autonomous vehicles, integration of advanced technologies, government initiatives, etc.
The leading companies are incorporating the use of beamforming and beam steering technologies, which enable access points to dynamically focus and direct signals to connected devices and ensure a stable and optimized connection. Moreover, key players are introducing Wi-Fi 6 that is designed to address the increasing demand for faster and more reliable connections. It introduces various improvements over its predecessor, Wi-Fi 5 (802.11ac), including increased data rates, higher capacity, and improved efficiency in handling multiple devices simultaneously. These technologies enable low-power connections and extended battery life for IoT devices while maintaining seamless connectivity. Besides this, the integration of multi-user, multiple-input, multiple-output (MU-MIMO) that allows access points to communicate with multiple devices simultaneously, improving network efficiency in crowded environments. Wi-Fi networks can better support multiple users and devices without sacrificing performance with MU-MIMO.