5G Services Market to Surpass a Market Valuation of USD Billion 1018.68 by 2031, Led by Increasing Penetration of Smartphones and Rising Mobile Network Data Traffic

5G Services Market to Surpass a Market Valuation of USD Billion 1018.68 by 2031, Led by Increasing Penetration of Smartphones and Rising Mobile Network Data Traffic
Skyquest Technology
5G Services Market Size, Share, Growth Analysis, By Application (Asset Tracking, Smart Cities), By End User (Consumer, Enterprise), By Communication (Enhanced Mobile Broadband, Massive Machine Type Communication), By Region- Industry Forecast 2024-2031

5G Services Market size was valued at around USD 73.13 billion in 2022 and is poised to grow from USD 98 billion in 2023 to USD 1018.68 billion by 2031, at a CAGR of 34% over the forecast period (2024–2031).

5G services offer much faster download speed, less latency, and greater connection density of devices per 2 kilometers. This high-performance feature speeds up the growth of several new and current technologies. Hence, fast data speed and low latency of 5G services will improve user experience for a wide range of uses like AR and VR gaming, UHD videos, smooth video calling, and more. Rising demand for high-speed data connectivity for incorporated IoT applications like energy management in smart homes is projected to fuel the adoption of 5G services in the coming years.

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Top Players in the 5G Services Market

  • AT&T Inc.
  • Verizon Communications Inc.
  • China Mobile Ltd.
  • China Telecom Corp. Ltd.
  • Vodafone Group Plc
  • Deutsche Telekom AG
  • Orange S.A.
  • Telefonaktiebolaget LM Ericsson
  • Nokia Corporation
  • Samsung Electronics Co. Ltd.
  • Huawei Technologies Co. Ltd.
  • Fujitsu Limited
  • Hewlett Packard Enterprise Co.
  • Cisco Systems Inc.
  • Intel Corporation
  • SK Telecom Co. Ltd.
  • LG Electronics Inc.
  • BT Group Plc
  • T-Mobile US Inc.
  • Rakuten Mobile Inc.

 

Network slicing enables the creation of several unique virtual networks over a centralized physical infrastructure. This arrangement helps address the different demands of 5G applications like low-latency connection, ultra-reliable, and massive machine-to-machine communications. The modular nature of network slicing enables the customizing of network fragments to meet certain needs of diverse services or applications. Another trend seen in the 5G services market is beam forming technology that help semph a size wireless signals towards a certain receiving device instead of spreading signals in the ways. In 5G services, the key benefit of beam forming is its capability to majorly enhance the strength of the signal and reduce interference. This approach improves overall network efficiency, resulting in fast data connectivity and highly reliable connections by directing the signal beam to the specific user. It is useful in populated areas, where the wireless spectrum is overcrowded.

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Segments covered

Application

Communication and Collaboration, Asset Tracking, Smart Cities, Smart Building, Autonomous Vehicle, Smart Healthcare, Industry 4.0, Smart Utilities, Immersive Media & Gaming and Others

Communication

Enhanced Mobile Broadband, Massive Machine Type Communication, and Ultra-Reliable Low Latency Communication

Enterprise

Manufacturing, Healthcare & Lifesciences, Retail & Commerce, Transportation & Logistics, Education, Energy & Utilities, Media & Entertainment, BFSI, Government & Public Sector, Construction & Real Estate, and Other Enterprise

End User

Consumer, and Enterprise

5G to Help Businesses to Gain Insights in their Different Operations

5G helps organizations of all sizes to scale reliably and obtain visions for their activities in novel ways which was not possible earlier. One of the best benefits of 5G is the capability of owning private 5G network just like businesses own their Wi-Fi network in the present date. For several years, enterprises have been dependent on commercial carriers and handle service providers to access 5G and 4G services for their business uses. Since this model has proved to be highly convenient, it could restrict the scalability and control of the service. For instance, medical providers can make regulations to ensure life-saving g machines always get sufficient network resources also when the healthcare facility is at maximum capacity. Artificial intelligence can constantly monitor networks and make required changes enthusiastically to assure service level agreements are always intact with these regulations in place.

  • In April 2024, Qualcomm Technologies and Samsung Electronics announced that they finished 1024 (QAM) Quadrature Amplitude Modulation tests for (FDD) Frequency Division Duplex and (TDD) Time Division Duplex spectrum bands. This innovative breakthrough and alliance demonstrate the companies’ commitment to aid the operators to grow 5G throughput and drive their networks’ spectral efficiency.
  • In February 2024, AT&T and Ericsson declared that they started deploying Cloud RAN technology of Ericsson on the commercial 5G network of AT&T. The two organizations finished a Cloud RAN call as a landmark in the deployment of Open RAN. AT&T today has saleable traffic rolling on Cloud RAN sites, of which the first one is situated in Dallas.
  • In May 2024, Ericsson introduced a novel software toolkit to reinforce 5G Standalone network competencies and enable premium services with distinguished connectivity. Growth in their product line is backed by the development of new applications and increasing expectations of mobile users concerning the quality of 5G, pressurizing high demands on performance and network capacity.
  • In May 2024, Verizon Business finished the first certification stage to add the Nokia (DAC) Digital Automation Cloud to the category of private network platforms backed by the United States telecom operator’s authorized 5G spectrum.

 

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Increased Adoption of 5G Technology to Deliver Exceptional Connectivity and Innovations to Different Sectors

The speedy transformation and adoption of 5G technology guarantees an exceptional era of innovation and connectivity. The application of network slicing, beamforming, RAM, and more is ready to change most industries like self-driving cars and IoT applications. The growth of dynamic spectrum sharing and carrier aggregation promotes improved efficiency. In this changing scenario, the future supported by ground-breaking trends, holds prom promise for unified and high-speed connectivity.

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