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市場調查報告書
商品編碼
2119155

歐洲 5G 核心網路:市場佔有率分析、產業趨勢和統計數據以及成長預測(2026-2031 年)

Europe 5G Core Network - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2026 - 2031)

出版日期: | 出版商: Mordor Intelligence | 英文 158 Pages | 商品交期: 2-3個工作天內

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簡介目錄

根據 Mordor Intelligence 預測,歐洲 5G 核心網路市場規模將從 2025 年的 8.9 億美元和 2026 年的 10.5 億美元成長到 2031 年的 25.1 億美元,2026 年至 2031 年的年複合成長率(CAGR)為 19.04%。

歐洲 5G 核心網路市場-IMG1

本報告按組件(解決方案和服務)、部署模式(本地/專用、公共雲端、混合雲和電信邊緣雲端)、最終用戶(電信運營商和企業)、網路功能(網路開放功能、用戶平面功能、應用功能、整合資料管理等)以及國家/地區進行細分。市場預測以價值(美元)表示。

歐洲5G核心網路市場的趨勢與洞察

在成熟的歐洲網路中向雲端原生獨立核心遷移

隨著電信業者逐步淘汰為快速覆蓋部署而建構的非獨立組網(NSA)疊加網路,向雲端原生獨立組網核心網的遷移正成為歐洲5G核心網市場最具影響力的結構性促進因素。獨立組網架構賦予營運商對服務建置、策略管理和網路自動化更精細的控制。德國電信已在其「橫向電信雲端」(Horizo​​ntal TelCo Cloud)專案中,透過Mavenir的容器化封包核心網路傳輸獨立組網流量。 Telia已於2025年在芬蘭、瑞典、挪威、愛沙尼亞和立陶宛完成了諾基亞雲端原生5G獨立網路核心網路的部署。這種區域性部署方式允許在多個國家網路中使用通用營運工具。核心網路遷移也有利於歐洲5G核心網路市場的發展,因為它需要同時進行收費、策略和編配等方面的工作。

將網路切片技術應用於企業和私有 5G 用例

網路切片技術正從技術試點階段邁向面向工業和企業客戶的商業服務。沃達豐德國於2025年推出了兩項費率方案:“Campus Flex Exclusive”和“Campus Flex Starter”,其中包括一項專為關鍵任務應用設計的方案,每個站點每月收費2000歐元(約2310.14美元)。該服務適用於自動化生產和自動駕駛車輛控制等應用場景。沃達豐也將其服務模式擴展至英國,並提供服務等級保證。德國電信也推出了商用網路切片技術,並透過iOS 26實現了與Apple FaceTime的消費者級整合。這些舉措表明,歐洲5G核心網路市場可以支援不同於基礎行動連線的收入模式。

升級為獨立核心需要大量的初始資本投入,且投資回報不確定。

資本密集度仍是歐洲獨立核心網路部署的一大阻礙因素。 2026年5月,GSMA歐洲分會報告稱,到2035年,歐洲行動營運商需要4,750億歐元(5,486.6億美元)的行動網路投資,而目前預計的投資額僅為2,700億歐元(3,118.7億美元)。這2050億歐元(2367.9億美元)的資金缺口限制了用於同時遷移核心軟體、升級硬體和更新頻段的可用資金籌措。自2020年以來,歐洲營運商已在頻段收購方面花費了超過300億歐元(346.5億美元)。 2024年,歐洲每條連結的平均資本支出為35歐元(40.43美元),而全球通訊業領導企業的平均資本支出為70歐元(80.85美元)。

細分市場分析

預計到2025年,該解決方案將佔據歐洲5G核心網市場62.59%的佔有率。封包核心網路軟體、網路功能虛擬化(NFV)基礎架構以及編配和管理工具構成獨立網路專案中的主要支出層級。封包核心網路軟體包括AMF、SMF、UPF、PCF及相關的5G核心功能。電信業者根據多年授權合約,以虛擬化或容器化軟體包的形式購買這些功能。諾基亞、愛立信和Mavenir等供應商均提供這些功能。網路功能虛擬化(NFV)基礎架構包括商用伺服器和雲端平台,用於託管這些虛擬化功能。一些大型電信業者正在與超大規模資料中心業者雲端服務商建立合作關係,而其他業者則繼續經營自己的雲端平台。

預計到2031年,歐洲5G核心網路服務市場的服務部門將以20.98%的複合年成長率成長。在過渡初期,整合和部署服務的需求預計將最為旺盛。在沃達豐Three的現代化專案等大型專案中,支援和維護合約的期限可能長達5至8年。沒有專門雲端工程團隊的電信業者也需要容器化、持續整合、持續交付和開放式無線接取網路(Open RAN)整合方面的支援。標準的變更可能會增加對暴露API和策略控制諮詢服務的需求。 Release 18擴展了5G系統中的網路暴露功能(NEF)API和策略功能。這些需求為系統整合商和雲端原生專業人員帶來了持續的工作機會。

預計到2025年,本地部署和專用部署將佔市場佔有率的55.00%。在這種模式下,操作員對延遲敏感的控制平面功能保持物理控制。由於專用基礎設施可能還需要支援合法攔截和資料主權要求,因此替換現有專用基礎設施仍然成本高昂。德國、法國和英國的安全和主權法規正在推動營運商控制或國家控制的資料環境的使用。營運商也採用工業專用網路環境中混合模式和電信邊緣雲端模型。 BMW計劃於2025年10月在其位於匈牙利德布勒森的工廠開始生產iX3,該工廠將使用由匈牙利電信營運的公私混合5G網路。預計該部署將連接超過400公頃土地上的機器人、自動駕駛汽車和數位孿生體。

在歐洲5G核心網路市場,公共雲端預計將在2026年至2031年間以23.87%的複合年成長率成長。 O2 Telefónica預計於2026年3月在其自有資料中心的AWS Outposts上部署生產規模的5G核心功能,並採用諾基亞技術。此次部署將服務百萬用戶,維護工作流程將採用Amazon Bedrock模型。公共雲端基礎架構可以縮短部署新功能所需的時間,並減少對專用硬體生命週期的依賴。混合配置允許將敏感功能置於運營商的控制之下,同時在邊緣部署特定工作負載。 ETSI標準為邊緣使用者平面功能和邊緣應用平台之間的互通性提供了通用基礎。

其他好處:

  • Excel格式的市場預測(ME)表
  • 3個月的分析師支持

目錄

第1章:引言

  • 研究假設和市場定義
  • 調查範圍

第2章:調查方法

第3章執行摘要

第4章 市場狀況

  • 市場概覽
  • 市場促進因素
    • 在成熟的歐洲網路中向雲端原生獨立核心遷移
    • 在企業和私有 5G 用例中實現網路切片的商業化
    • 5G核心網路的現代化與供應商多元化和開放式架構密切相關。
    • 工業場所邊緣低延遲服務的成長
    • 將核心網路升級為節能型設計,以降低營運成本。
    • 監管措施旨在建構一個具有韌性、安全性和自主性的通訊基礎設施
  • 市場限制因素
    • SA核心升級需要大量的初始資本投入,且投資回收期存在不確定性。
    • 傳統EPC和多供應商環境下的整合複雜性
    • 雲端原生核心與通訊業DevOps技能短缺
    • 與進階核心自動化和暴露 API 相關的安全性和合規性負擔。
  • 價值鏈分析
  • 監理情勢
  • 技術展望
  • PESTLE分析
  • 波特五力分析

第5章 市場規模與成長預測

  • 按組件
    • 解決方案
      • 封包核心網路軟體
      • NFV基礎設施
      • 編配與管理
    • 服務
      • 整合與部署
      • 諮詢和顧問服務
      • 支援與維護
  • 按部署模式
    • 本地部署/專用
    • 公共雲端
    • 混合雲和運營商邊緣雲端
  • 最終用戶
    • 電信營運商
    • 公司
      • 製造業
      • 能源公用事業
      • 運輸/物流
      • 公共安全和緊急情況
      • 智慧城市和地方政府
  • 網路功能
    • 網路暴露函數(NEF)
    • 使用者平面功能(UPF)
    • 應用功能(AF)
    • 統一資料管理(UDM)
    • 會話管理功能 (SMF)
    • 網路切片選擇函數(NSSF)
    • 策略控制功能(PCF)
    • 網路儲存庫功能(NRF)
    • 認證伺服器功能(AUSF)
    • 存取和移動性管理 (AMF)
  • 國家
    • 德國
    • 英國
    • 法國
    • 西班牙
    • 俄羅斯
    • 其他歐洲國家

第6章 競爭情勢

  • 市場集中度
  • 策略趨勢
  • 市佔率分析
  • 公司簡介
    • Nokia Corporation
    • Ericsson
    • Huawei Technologies Co., Ltd.
    • ZTE Corporation
    • Samsung Electronics Co., Ltd.
    • Cisco Systems, Inc.
    • Mavenir Systems, Inc.
    • Ciena Corporation
    • Hewlett Packard Enterprise Company
    • Oracle Corporation
    • Amazon Web Services, Inc.
    • Microsoft Corporation
    • Google Cloud LLC
    • Amdocs Limited
    • Broadcom Inc.
    • Dell Technologies Inc.
    • Red Hat, Inc.

第7章 市場機會與未來展望

簡介目錄
Product Code: 101330

According to Mordor Intelligence, the Europe 5G core network market size is projected to expand from USD 0.89 billion in 2025 and USD 1.05 billion in 2026 to USD 2.51 billion by 2031, registering a CAGR of 19.04% between 2026 to 2031.

Europe 5G Core Network - Market - IMG1

This report is Segmented by Component (Solutions, and Services), Deployment Model (On-Premises/Dedicated, Public Cloud, and Hybrid and Telco Edge Cloud), End-User (Telecom Operators, and Enterprises), Network Function (Network Exposure Function, User Plane Function, Application Function, Unified Data Management, and More), and Country. The Market Forecasts are Provided in Terms of Value (USD).

Europe 5G Core Network Market Trends and Insights

Cloud-Native Standalone Core Migration in Mature European Networks

Cloud-native standalone core migration is the most influential structural driver in the Europe 5G core network market, as operators replace non-standalone overlays built for rapid coverage deployment. A standalone architecture gives operators greater control over service creation, policy management, and network automation. Deutsche Telekom moved standalone traffic through Mavenir's containerized packet core under its Horizontal TelCo Cloud program. Telia completed Nokia's cloud-native 5G standalone core deployment across Finland, Sweden, Norway, Estonia, and Lithuania in 2025. This regional approach supports common operating tools across several national networks. The Europe 5G core network market also benefits because core migration requires concurrent work on charging, policy, and orchestration functions.

Network Slicing Monetization for Enterprise and Private 5G Use Cases

Network slicing is moving from technical testing toward commercial offerings for industrial and enterprise customers. Vodafone Germany introduced the Campus Flex Exclusive and Campus Flex Starter tariffs in 2025, including an exclusive tier priced at EUR 2,000 (USD 2,310.14) per location per month for mission-critical applications. The offering supports use cases such as automated production and autonomous vehicle control. Vodafone also extended service models with service-level commitments to the United Kingdom. Deutsche Telekom implemented commercial network slices, including consumer-scale integration with Apple FaceTime through iOS 26. These actions show how the European 5G core network market can support revenue models distinct from basic mobile connectivity.

High Up-Front Capital Expenditure and Uncertain Payback for Standalone Core Upgrades

Capital intensity remains the immediate constraint on standalone core deployment across Europe. GSMA Europe reported in May 2026 that European mobile operators require EUR 475 billion (USD 548.66 billion) in mobile network investment by 2035, while EUR 270 billion (USD 311.87 billion) is currently expected to materialize. The EUR 205 billion (USD 236.79 billion) gap limits the ability to fund core software migration, hardware refreshes, and spectrum renewal simultaneously. European operators had spent more than EUR 30 billion (USD 34.65 billion) on spectrum since 2020. Capital expenditure per connection stood at EUR 35 (USD 40.43) in Europe in 2024, compared with EUR 70 (USD 80.85) in global connectivity leaders.

Other drivers and restraints analyzed in the detailed report include:

  1. Regulatory Push for Resilient, Secure, and Sovereign Telecom Infrastructure
  2. 5G Core Modernization Through Vendor Diversification and Open Architectures
  3. Integration Complexity With Legacy EPC and Multi-Vendor Environments

For complete list of drivers and restraints, kindly check the Table Of Contents.

Segment Analysis

Solutions are expected to account for 62.59% of the Europe 5G core network market share in 2025. Packet-core software, network functions virtualization infrastructure, and orchestration and management tools form the primary spending layer for standalone network programs. Packet-core software includes functions such as AMF, SMF, UPF, PCF, and related 5G core functions. Operators purchase these functions as virtualized or containerized software bundles under multiyear license agreements. Nokia, Ericsson, and Mavenir are among the suppliers providing these capabilities. Network functions virtualization infrastructure includes commercial off-the-shelf servers and cloud platforms that host virtualized functions. Some large operators use hyperscaler arrangements, while others continue to operate proprietary cloud stacks.

The services segment in the Europe 5G core network services market size is projected to expand at a CAGR of 20.98% through 2031. Integration and deployment services see the highest demand during the initial migration stage. Support and maintenance agreements can extend for 5-8 years in large programs, such as the VodafoneThree modernization. Operators without dedicated cloud engineering teams also require support for containerization, continuous integration, continuous delivery, and Open RAN integration. Standards changes can increase demand for advisory work on exposure APIs and policy control. Release 18 expanded the Network Exposure Function API and policy capabilities within the 5G system. These requirements create recurring work for system integrators and cloud-native specialists.

On-premises and dedicated deployments are expected to account for 55.00% of the market in 2025. Under this model, operators retain physical control over latency-sensitive control-plane functions. Existing dedicated infrastructure remains expensive to replace because it may also support lawful interception and data sovereignty requirements. Security and sovereignty rules in Germany, France, and the United Kingdom reinforce the use of operator-controlled or nationally governed data environments. Operators also use hybrid and telco-edge-cloud models in industrial private-network environments. BMW is expected to begin production of the iX3 at its Debrecen facility in Hungary in October 2025, using a hybrid public-private 5G network operated by Magyar Telekom. The deployment is expected to connect robots, autonomous vehicles, and digital twins across more than 400 hectares.

The public cloud is projected to expand at a CAGR of 23.87% from 2026 to 2031 in the Europe 5G core network market. O2 Telefonica is expected to deploy production-scale 5G core functions on AWS Outposts in its own data center in March 2026 using Nokia technology. The deployment is expected to serve 1 million customers and use Amazon Bedrock models in maintenance workflows. Public-cloud infrastructure can reduce the time required to introduce new functions and limit commitments to dedicated hardware cycles. Hybrid configurations can keep sensitive functions under operator control while placing selected workloads at the edge. ETSI standards provide a common basis for interoperability between edge-hosted user-plane functions and edge application platforms.

Complete Report Scope:

  • By Component
    • Solutions
      • Packet-Core Software
      • NFV Infrastructure
      • Orchestration and Management
    • Services
      • Integration and Deployment
      • Consulting and Advisory
      • Support and Maintenance
  • By Deployment Model
    • On-Premise/Dedicated
    • Public Cloud
    • Hybrid and Telco Edge Cloud
  • By End-User
    • Telecom Operators
    • Enterprises
      • Manufacturing
      • Energy and Utilities
      • Transportation and Logistics
      • Public Safety and Emergency
      • Smart Cities and Municipalities
  • By Network Function
    • Network Exposure Function (NEF)
    • User Plane Function (UPF)
    • Application Function (AF)
    • Unified Data Management (UDM)
    • Session Management Function (SMF)
    • Network Slice Selection Function (NSSF)
    • Policy Control Function (PCF)
    • Network Repository Function (NRF)
    • Authentication Server Function (AUSF)
    • Access and Mobility Management (AMF)
  • By Country
    • Germany
    • United Kingdom
    • France
    • Spain
    • Russia
    • Rest of Europe

List of Companies Covered in this Report:

  1. Nokia Corporation
  2. Ericsson
  3. Huawei Technologies Co., Ltd.
  4. ZTE Corporation
  5. Samsung Electronics Co., Ltd.
  6. Cisco Systems, Inc.
  7. Mavenir Systems, Inc.
  8. Ciena Corporation
  9. Hewlett Packard Enterprise Company
  10. Oracle Corporation
  11. Amazon Web Services, Inc.
  12. Microsoft Corporation
  13. Google Cloud LLC
  14. Amdocs Limited
  15. Broadcom Inc.
  16. Dell Technologies Inc.
  17. Red Hat, Inc.

Additional Benefits:

  • The market estimate (ME) sheet in Excel format
  • 3 months of analyst support

TABLE OF CONTENTS

1 INTRODUCTION

  • 1.1 Study Assumptions and Market Definition
  • 1.2 Scope of the Study

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 MARKET LANDSCAPE

  • 4.1 Market Overview
  • 4.2 Market Drivers
    • 4.2.1 Cloud-Native Standalone Core Migration in Mature European Networks
    • 4.2.2 Network Slicing Monetization for Enterprise and Private 5G Use Cases
    • 4.2.3 5G Core Modernization Linked to Vendor Diversification and Open Architectures
    • 4.2.4 Growth in Edge-Enabled Low-Latency Services Across Industrial Hubs
    • 4.2.5 Energy-Efficient Core Network Upgrades to Reduce Operating Costs
    • 4.2.6 Regulatory Push for Resilient, Secure, and Sovereign Telecom Infrastructure
  • 4.3 Market Restraints
    • 4.3.1 High Up-Front Capex and Uncertain Payback for SA Core Upgrades
    • 4.3.2 Integration Complexity With Legacy EPC and Multi-Vendor Environments
    • 4.3.3 Shortage of Cloud-Native Core and Telco DevOps Skills
    • 4.3.4 Security and Compliance Burden from Advanced Core Automation and Exposure APIs
  • 4.4 Value Chain Analysis
  • 4.5 Regulatory Landscape
  • 4.6 Technological Outlook
  • 4.7 PESTLE Analysis
  • 4.8 Porter's Five Forces Analysis
    • 4.8.1 Threat of New Entrants
    • 4.8.2 Bargaining Power of Buyers
    • 4.8.3 Bargaining Power of Suppliers
    • 4.8.4 Threat of Substitutes
    • 4.8.5 Competitive Rivalry

5 MARKET SIZE AND GROWTH FORECASTS (VALUE)

  • 5.1 By Component
    • 5.1.1 Solutions
      • 5.1.1.1 Packet-Core Software
      • 5.1.1.2 NFV Infrastructure
      • 5.1.1.3 Orchestration and Management
    • 5.1.2 Services
      • 5.1.2.1 Integration and Deployment
      • 5.1.2.2 Consulting and Advisory
      • 5.1.2.3 Support and Maintenance
  • 5.2 By Deployment Model
    • 5.2.1 On-Premise/Dedicated
    • 5.2.2 Public Cloud
    • 5.2.3 Hybrid and Telco Edge Cloud
  • 5.3 By End-User
    • 5.3.1 Telecom Operators
    • 5.3.2 Enterprises
      • 5.3.2.1 Manufacturing
      • 5.3.2.2 Energy and Utilities
      • 5.3.2.3 Transportation and Logistics
      • 5.3.2.4 Public Safety and Emergency
      • 5.3.2.5 Smart Cities and Municipalities
  • 5.4 By Network Function
    • 5.4.1 Network Exposure Function (NEF)
    • 5.4.2 User Plane Function (UPF)
    • 5.4.3 Application Function (AF)
    • 5.4.4 Unified Data Management (UDM)
    • 5.4.5 Session Management Function (SMF)
    • 5.4.6 Network Slice Selection Function (NSSF)
    • 5.4.7 Policy Control Function (PCF)
    • 5.4.8 Network Repository Function (NRF)
    • 5.4.9 Authentication Server Function (AUSF)
    • 5.4.10 Access and Mobility Management (AMF)
  • 5.5 By Country
    • 5.5.1 Germany
    • 5.5.2 United Kingdom
    • 5.5.3 France
    • 5.5.4 Spain
    • 5.5.5 Russia
    • 5.5.6 Rest of Europe

6 COMPETITIVE LANDSCAPE

  • 6.1 Market Concentration
  • 6.2 Strategic Moves
  • 6.3 Market Share Analysis
  • 6.4 Company Profiles (includes Global Level Overview, Market Level Overview, Core Segments, Financials as available, Strategic Information, Market Rank/Share, Products and Services, Recent Developments)
    • 6.4.1 Nokia Corporation
    • 6.4.2 Ericsson
    • 6.4.3 Huawei Technologies Co., Ltd.
    • 6.4.4 ZTE Corporation
    • 6.4.5 Samsung Electronics Co., Ltd.
    • 6.4.6 Cisco Systems, Inc.
    • 6.4.7 Mavenir Systems, Inc.
    • 6.4.8 Ciena Corporation
    • 6.4.9 Hewlett Packard Enterprise Company
    • 6.4.10 Oracle Corporation
    • 6.4.11 Amazon Web Services, Inc.
    • 6.4.12 Microsoft Corporation
    • 6.4.13 Google Cloud LLC
    • 6.4.14 Amdocs Limited
    • 6.4.15 Broadcom Inc.
    • 6.4.16 Dell Technologies Inc.
    • 6.4.17 Red Hat, Inc.

7 MARKET OPPORTUNITIES AND FUTURE OUTLOOK

  • 7.1 White-Space and Unmet-Need Assessment