Global In-Building Wireless Market Size By Technology (Distributed Antenna System (DAS), Small Cells), By Solution (Hardware, Services, Software), By Deployment Type (Indoor, Outdoor/Indoor-Outdoor), By Geographic Scope and Forecast

Published Date: August - 2024 | Publisher: MIR | No of Pages: 320 | Industry: latest updates trending Report | Format: Report available in PDF / Excel Format

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In-Building Wireless Market Size and Forecast

In-Building Wireless Market size was valued at USD 12.7 Billion in 2024 and is projected to reach USD 20.9 Billion by 2031, growing at a CAGR of 8.6% from 2024 to 2031.

  • In-building wireless refers to the technology and infrastructure that allows wireless communication within buildings such as workplaces, hotels, hospitals, and residential complexes. It provides dependable mobile connectivity for users indoors when standard outdoor cellular signals may be poor or ineffective. In-building wireless systems typically consist of antennas, amplifiers, and distributed antenna systems (DAS) strategically placed throughout the building to improve signal coverage and capacity.
  • A significant application of in-building wireless is to allow wireless internet connectivity sometimes known as Wi-Fi, throughout big or complicated facilities. Wi-Fi networks allow users to connect their smartphones, tablets, computers, and other devices to the internet without using cellular data. In-building wireless systems improve Wi-Fi coverage by carefully placing access points throughout the building ensuring consistent and fast Internet access in workplaces, hotels, institutions, and residential complexes.
  • In-building wireless technology is positioned for substantial future application as the demand for dependable and high-speed connectivity in indoor areas grows. This technology encompasses solutions that improve wireless network coverage and capacity within buildings allowing seamless connectivity for mobile devices such as smartphones, tablets, and IoT devices.

Global In-Building Wireless Market Dynamics

The key market dynamics that are shaping the global in-building wireless market include

Key Market Drivers

  • Increasing Demand for Seamless Connectivity One of the key drivers for in-building wireless solutions is the growing need for seamless connectivity within buildings. As more people rely on mobile devices for communication, business, and entertainment, there is an increased demand for dependable wireless service indoors. In-building wireless systems such as distributed antenna systems (DAS) and small cell networks improve cellular signal strength and quality within buildings allowing customers to access voice and data services uninterrupted.
  • Proliferation of Mobile Data Usage Mobile data usage is rising, another important factor driving the demand for in-building wireless solutions. With the rise of streaming services, social media platforms, and cloud-based applications, people consume a lot of data on their phones. This trend is supported by in-building wireless systems that offload cellular traffic off overcrowded macrocell networks while also delivering high-speed connectivity indoors.
  • Support for IoT and Smart Building TechnologiesIn-building wireless systems are critical for supporting IoT (Internet of Things) devices and smart building technologies. Sensors, actuators, and smart appliances all require dependable connectivity to interact and exchange data within buildings. In-building wireless networks provide the infrastructure required for these devices to function properly allowing applications such as building automation, energy management, and predictive maintenance.

Key Challenges

  • Coverage and Capacity One of the most difficult tasks is ensuring enough coverage and capacity within buildings, particularly large or complicated ones. Building materials such as concrete and steel can interfere with wireless signals resulting in dead zones or poor indoor connectivity. Ensuring uniform coverage in all places including elevators, basements, and distant corners is a big technical issue.
  • Interference and Signal CongestionIn-building wireless networks are frequently subjected to interference from other electronic equipment, neighboring buildings, or external sources such as radio frequency (RF). Signal congestion can occur when several users or devices seek to connect to the network at the same time resulting in decreased performance and slower data speeds.
  • Cost and ComplexityInstalling and maintaining in-building wireless solutions can be expensive and difficult. The initial expenditure on infrastructure, equipment, and installation can be significant, particularly for bigger buildings or facilities with extensive coverage. Furthermore, integrating various technologies and guaranteeing interoperability with current IT infrastructure increases the complexity.

Key Trends

  • Scalability and FlexibilityAnother noteworthy development is the emphasis on scalability and flexibility in in-building wireless networks. Businesses and building owners want wireless solutions that can readily scale to meet growing data demands and adapt to changes in building layouts or usage.
  • Integration of Distributed Antenna Systems (DAS)Integration of Distributed Antenna Systems (DAS) is another important trend in in-building wireless technology. DAS solutions use a network of antennas and amplifiers to distribute wireless signals across a building delivering consistent coverage and capacity in all regions.
  • Enhanced User Experience and Smart Building IntegrationThere is a growing trend of improving user experience and integrating in-building wireless technologies with smart building systems. In addition to delivering dependable wireless access, current systems include location-based services, indoor navigation, and personalized user experiences.

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Global In-Building Wireless Market Regional Analysis

Here is a more detailed regional analysis of the global in-building wireless market

North America

  • The North American region dominates the in-building wireless (IBW) market with the United States at the forefront of acceptance and deployment. This dominance is mostly the result of the region’s advanced telecommunications infrastructure and strong smartphone penetration rates. The Federal Communications Commission (FCC) estimates that by 2023, about 99% of Americans will have access to 4G LTE service with 5G networks rapidly extending across the country. The United States Census Bureau claims that 85% of American households own smartphones demonstrating the widespread use of mobile devices.
  • This expansion is driven by the growing demand for seamless connectivity in a variety of industries including commercial buildings, healthcare facilities, and educational institutions. The National Institute of Standards and Technology (NIST) underlines the relevance of IBW solutions in improving public safety communications, pointing out that nearly 80% of emergency calls come from indoor areas. This has resulted in tougher building norms and regulations accelerating the use of IBW technology. Furthermore, the Canadian Radio-television and Telecommunications Commission (CRTC) says that 99.7% of Canadian households have access to LTE mobile networks implying a solid basis for IBW expansion in the country.

Asia Pacific

  • Asia Pacific is the world’s fastest-growing region in the in-building wireless (IBW) market. This rapid expansion is being driven by expanding smartphone penetration, increased demand for high-speed connectivity, and the implementation of 5G networks throughout the area. According to a worldwide System for Mobile Communications Association (GSMA) report, the Asia Pacific region is predicted to dominate the globe in 5G adoption accounting for 1.14 billion 5G connections by 2025, or more than half of all worldwide 5G connections. This broad 5G deployment is a major driver of IBW market growth. The International Telecommunication Union (ITU) forecasts that mobile broadband subscriptions in the Asia Pacific area will reach 3.8 billion in 2020, indicating an 89% penetration rate.
  • Rapid urbanization in the Asia Pacific region is another element driving IBW market expansion. The United Nations Economic and Social Commission for Asia and the Pacific (UNESCAP) predicts that the region’s urban population will grow by 1.2 billion people by 2050, to 3.3 billion. This urban expansion is pushing the construction of new buildings and the refurbishment of old structures resulting in chances for IBW installations. Furthermore, the Asia Pacific Economic Cooperation (APEC) forecasts that the region’s digital economy is predicted to increase by 8.6% per year reaching $1.7 trillion by 2025.

Global In-Building Wireless MarketSegmentation Analysis

The Global In-Building Wireless Market is segmented based on Technology, Solution, Deployment Type, and Geography.

In-Building Wireless Market, By Technology

  • Distributed Antenna System (DAS)
  • Small Cells
  • Wi-Fi
  • Hybrid Systems
  • Cellular/3G/4G/5G

Based on the Technology, the Global In-Building Wireless Market is bifurcated into Distributed Antenna Systems (DAS), Small Cells, Wi-Fi, Hybrid Systems, Cellular/3G/4G/5G. Distributed antenna systems (DAS) dominate the global in-building wireless market. DAS is preferred for its ability to provide robust and scalable coverage across large buildings, stadiums, airports, and other expansive indoor spaces where traditional wireless networks may face coverage challenges. It supports multiple wireless technologies including 4G LTE and increasingly, 5G ensuring seamless connectivity for a wide range of applications and devices.

In-Building Wireless Market, By Solution

  • Hardware
  • Services
  • Software

Based on the Solution, the Global In-Building Wireless Market is bifurcated into Hardware, Services, and Software. In the global in-building wireless market, services are dominant. This dominance is driven by the complex nature of deploying and maintaining in-building wireless infrastructure. Services encompass design, installation, optimization, and maintenance of wireless systems ensuring seamless coverage and performance within buildings. With the rapid evolution of wireless technologies and the increasing demand for robust connectivity solutions, businesses and building owners rely heavily on specialized service providers for expertise in planning and implementing tailored wireless solutions.

In-Building Wireless Market, By Deployment Type

  • Indoor
  • Outdoor/Indoor-Outdoor

When we look at how in-building wireless is set up, we see two main typesinside (Indoor) and a mix of inside and outside (Outdoor/Indoor-Outdoor). Right now, Indoor setups are really popular in the global market. Why? Because everyone wants rock-solid, dependable wireless inside buildings. Think about it – offices, hospitals, schools, and stores all need great connectivity. So, Indoor setups step in to provide super-fast wireless for everything from heavy-duty data apps to all those IoT gadgets and everyone's cell phones. Plus, with the push for smart buildings and going digital, more and more places are grabbing indoor in-building wireless to make things better for users, run smoother operations, and get ready for cool new stuff like 5G.

In-Building Wireless Market, By Geography

  • North America
  • Europe
  • Asia Pacific
  • Rest of the World

Based on Geography, the Global In-Building Wireless Market is classified into North America, Europe, Asia Pacific, and the Rest of the World. North America dominates the global in-building wireless market primarily due to several key factors. The region has a highly developed telecommunications infrastructure with widespread adoption of advanced wireless technologies across various sectors such as commercial buildings, healthcare facilities, and educational institutions. North America is at the forefront of 5G deployment driving the demand for in-building wireless solutions that can support high-speed data transmission and low latency indoors.

Key Players

The “Global In-Building Wireless Market” study report will provide valuable insight with an emphasis on the global market.  The major players in the market are CommScope, Corning Incorporated, Ericsson, Huawei, Nokia, Samsung Electronics, TE Connectivity, JMA Wireless, Cobham, and Airspan Networks.

Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.

Global In-Building Wireless Market Key Developments

  • In December 2023, HFCL Limited announced that it had developed the first Indian 5G Fixed Wireless Access (FWA) Customer Premise Equipment (CPE) solution. It now offers telecom infrastructure solutions and has developed its own 5G FWA products.
  • In February 2024, Wipro Ltd and Nokia Corporation began jointly offering a private 5G wireless solution. This will assist firms in transitioning to digital environments. Initially, this solution is limited to enterprises in manufacturing, energy, utilities, transportation, and sports entertainment.

Report Scope

REPORT ATTRIBUTESDETAILS
STUDY PERIOD

2021-2031

BASE YEAR

2024

FORECAST PERIOD

2024-2031

HISTORICAL PERIOD

2021-2023

UNIT

Value (USD Billion)

KEY COMPANIES PROFILED

CommScope, Corning Incorporated, Ericsson, Huawei, Nokia, Samsung Electronics, TE Connectivity, JMA Wireless, Cobham, and Airspan Networks.

SEGMENTS COVERED

By Technology, By Solution, By Deployment Type And By Geography.

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