Nokia and Taiwan Mobile Sign 5G Expansion Agreement to Accelerate AI-Native Networks
2026-07-21 10:02
Favorite

en.Wedoany.com Reported - Nokia has signed a 5G expansion agreement with Taiwan Mobile, aiming to accelerate the evolution of Taiwan's mobile networks toward artificial intelligence native architecture. The agreement is designed to enhance Taiwan Mobile's network performance, automation levels, and sustainability, while solidifying Nokia's role as a long-term network partner.

Under the agreement, Nokia will deploy its AirScale portfolio, including next-generation baseband and radio solutions, along with supporting advanced software capabilities. These devices will strengthen Taiwan Mobile's existing network infrastructure and unlock new 5G service and monetization opportunities. The joint goal is to integrate artificial intelligence into mobile networks, building highly automated, resilient, and energy-efficient networks capable of handling growing AI traffic.

Mark Atkinson, Head of Nokia's Radio Access Network division, stated that this collaboration continues the long-standing partnership between the two companies. Nokia's radio and baseband solutions, along with AI-driven software, provide intelligent automation, performance enhancements, and energy efficiency optimization, laying the foundation for 5G-Advanced and future networks. A future-ready network enables Taiwan Mobile to manage increasing AI traffic, deliver new services, and advance its sustainability goals.

The deployment introduces a range of AI-driven capabilities across four areas: network intelligence, infrastructure, sustainability, and resilience. In network intelligence, Nokia will deploy AI-driven software for real-time automation and predictive analytics, including Predictive Hardware Analysis (PHWA) services and the self-organizing network solution MantaRay SON, which leverages AI algorithms to automate operations and enhance performance. In infrastructure, Nokia's next-generation baseband and advanced radio solutions will increase network capacity and uplink performance to meet new traffic patterns generated by AI applications. In sustainability, AI-driven energy management algorithms enable traffic-aware optimization and proactive energy savings, helping Taiwan Mobile reduce energy consumption and achieve ESG goals. In resilience, AI-driven self-healing and traffic steering capabilities will enhance network robustness, allowing the network to dynamically adapt to changing conditions and maintain business continuity, including in extreme scenarios.

Jamie Lin, President of Taiwan Mobile, noted that the partnership with Nokia is key to the company's strategy of building high-performance, resilient, and sustainable networks. By integrating AI into the network for better energy optimization, resilience, and service innovation, Taiwan Mobile will deliver industry-leading experiences to customers, accelerate its journey to becoming the preferred partner in the AI era, and unlock new growth opportunities.

The new agreement expands 5G capacity and optimizes network performance through the deployment of advanced radio and next-generation baseband solutions. These upgrades support higher throughput, improve spectrum efficiency, and provide a superior user experience. Meanwhile, AI-driven network management and automation solutions enable predictive maintenance, reduce operational complexity and total cost of ownership, and support new 5G capabilities such as network slicing and RedCap.

Nokia's energy-efficient hardware, combined with AI-driven software, will help Taiwan Mobile reduce power consumption and achieve more sustainable network operations, supporting the operator's goal of building low-carbon, efficient networks while enhancing overall operational performance.

This bulletin is compiled and reposted from information of global Internet and strategic partners, aiming to provide communication for readers. If there is any infringement or other issues, please inform us in time. We will make modifications or deletions accordingly. Unauthorized reproduction of this article is strictly prohibited. Email: news@wedoany.com