私有 5G 網路部署:追蹤與預測(2026-2030 年)
市場調查報告書
商品編碼
2074817

私有 5G 網路部署:追蹤與預測(2026-2030 年)

Private 5G Network Deployment Tracker & Forecasts: 2026 - 2030

出版日期: | 出版商: SNS Telecom & IT | 英文 | 商品交期: 最快1-2個工作天內

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簡介目錄

概要

在2G和3G時代,專用蜂巢式網路通常仍屬於小眾解決方案,儘管用於鐵路通訊的GSM-R網路仍在運行,並且正在計劃向基於5G的FRMCS(未來鐵路移動通訊系統)過渡。 2010年代初期,專用LTE網路部署激增,其中包括力拓集團在西澳大利亞礦業營運中使用的專用LTE網路、Tampnet的近海4G基礎設施以及iNET在二疊紀盆地的700MHz網路。這些網路為無線基礎設施領域內現有細分市場的後續發展奠定了基礎。然而,如今,基於3GPP定義的5G規範的專用5G網路,即非公共網路(NPN),正在許多垂直行業中取代LTE,其市場潛力遠遠超過以往任何一代技術。

與LTE技術相比,專用5G網路在吞吐量、延遲、可靠性、可用性和連接密度方面能夠滿足更嚴格的效能要求。特別是,5G的超低可靠性、低延遲通訊(URLLC)和大規模機器通訊(mMTC)功能,以及其面向未來的、計劃在2030年代過渡到6G網路的路徑,使5G成為工業機械、機器人和控制系統之間有線連接的一種可行替代方案。此外,儘管5G的總體擁有成本(TCO)相對較高,但其每個無線節點的廣泛覆蓋範圍、可擴展性、確定性、安全功能以及移動性,使其作為工業物聯網(IIoT)環境中易受干擾的非授權無線技術的潛在替代方案,引起了廣泛關注。在工業工業IoT環境中,未來幾年連接的感測器和其他終端的數量預計將顯著增加。

隨著美國、加拿大、德國、英國、英國、西班牙、義大利、中國、日本、韓國、台灣、澳洲、紐西蘭、巴西等國家和地區的終端用戶企業加速推進工業智慧、自動化、實體人工智慧和關鍵任務通訊等領域的發展,私有5G的部署正邁向一個切實可見的階段。尤其值得一提的是,效率提升、成本降低和安全性增強等優勢正日益凸顯。

本報告追蹤全球私人 5G 網路的部署情況,詳細分析了按網路類型和基礎設施子市場分類的 5G 網路收入、5G RAN 出貨量、5G RAN 收入以及行業和地區特定數據。

資料庫詳情和預測分割

全球專用蜂巢式網路部署案例研究資料庫包含以下詳細資訊:

  • 日期
  • 地區
  • 國家
  • 按行業
  • 客戶名稱/專案名稱
  • 供應商和整合商
  • 無線介面技術
  • 頻帶
  • 發展狀況
  • 概要

頻段追蹤資料庫包含每個頻率存取路徑的以下資訊:

  • 地區
  • 國家
  • 頻寬
  • 3GPP頻段
  • 目標網路類型
  • 授權框架
  • 雙工法
  • 頻寬
  • 可用性
  • 細節

我們提供了以下各個子市場及其子類別的市場預測:

  • 網路類型
    • 廣域網路
    • 校園/區域網路
  • 基礎設施子市場
    • 5G NR RAN(無線接取網路)
      • 基地台 RU(無線電單元)
      • DU/CU(分散式和集中式基頻單元)
    • 5GC(5G核心網)
      • UPF(使用者平面功能)
      • 控制平面功能
    • 5G傳輸(去程傳輸、中傳、回程傳輸)
      • 光纖和有線通訊
      • 微波
      • 衛星通訊
  • 細胞大小
    • 小型基地台
      • 室內的
      • 戶外的
    • 大型基地台
  • 頻段授權模式
    • 行動通訊業者擁有的頻段
    • 廣域授權頻段
    • 共用和本地授權頻寬
    • 免許可頻段
  • 頻帶
    • 410/450 MHz
    • 600 MHz
    • 700 MHz
    • 800 MHz
    • 900 MHz
    • 1.4~1.9 GHz
    • 2.1~2.6 GHz
    • 3.5 GHz CBRS
    • 3.3~3.8 GHz
    • 3.8~4.2 GHz
    • 4.4~4.9 GHz
    • 26/28 GHz
    • 其他頻段
  • 終端用戶市場
    • 產業
      • 農業
      • 航空
      • 廣播
      • 建造
      • 教育
      • 林業
      • 醫療保健
      • 製造業
      • 軍隊
      • 礦業
      • 石油和天然氣
      • 港口/航運
      • 公安
      • 鐵路
      • 公共產業
      • 倉庫和其他
    • 辦公室、建築物、公共設施
  • 當地市場
    • 北美洲
    • 亞太地區
    • 歐洲
    • 中東和非洲
    • 拉丁美洲和中美洲

目錄

  • 專用蜂巢式網路參與
  • 私有蜂窩頻率追蹤資料庫
  • 全球私有5G網路的基礎建設收入
  • 全球私有5G網路收入:依網路類型分類
  • 全球私有5G網路收入:依基礎設施子市場分類
  • 全球專用5G無線接取網出貨量
  • 全球私有5G無線接取網收入
  • 全球私有5G核心網路收入
  • 全球私有5G傳輸網路的收入
  • 全球私人 5G RU 出貨量:依小區尺寸分類
  • 全球私有 5G RU 收入:依小區規模分類
  • 全球私有5G網路收入:依頻率授權模式
  • 全球私有 5G 網路按頻段分類的收入。
  • 全球私有5G網路基礎設施收入:依最終用戶市場分類
  • 全球專用 5G 網路市場:依產業分類
  • 全球專用 5G 網路收入:按工業和基礎設施子市場分類
  • 全球私有 5G RAN 出貨量:依產業分類
  • 農業:全球私有 5G 網路收入:依基礎設施子市場分類
  • 農業:全球私有5G無線接取網出貨量
  • 航空業:全球專用 5G 網路收入:依基礎設施子市場分類
  • 航空:全球專用5G無線接取網路出貨量
  • 廣播:全球專用 5G 網路收入:依基礎設施子市場分類
  • 廣播:全球專用5G無線接取網路出貨量
  • 建置:全球私有 5G 網路收入:基礎設施子市場細分
  • 建置:全球私有5G無線接取網出貨量
  • 教育:全球私有 5G 網路收入:依基礎設施子市場分類
  • 教育:全球專用 5G RAN 出貨量
  • 建置:全球私有 5G 網路收入:基礎設施子市場細分
  • 建置:全球私有5G無線接取網出貨量
  • 林業:全球私有 5G 網路收入:依基礎設施子市場分類
  • 林業:全球私有5G無線接取網出貨量
  • 醫療保健:全球專用 5G 網路收入:按基礎設施子市場分類
  • 醫療保健:全球專用 5G 無線存取網出貨量
  • 製造業:全球私有 5G 網路收入:按子市場分類的基礎設施
  • 製造:全球專用 5G RAN 出貨量
  • 軍用:全球專用 5G 網路收入:依基礎設施子市場分類
  • 軍方:全球專用5G無線接取網路出貨量
  • 礦業:全球私有 5G 網路收入:依基礎設施子市場分類
  • 挖礦:全球私有5G無線接取網出貨量
  • 石油和天然氣:全球專用 5G 網路收入:按基礎設施子市場分類
  • 石油與天然氣:全球私有 5G RAN 出貨量
  • 港口與海洋:全球專用 5G 網路收入:按基礎設施子市場分類
  • 港口與海運:全球私有 5G RAN 出貨量
  • 公開:全球私有 5G 網路收入:依基礎設施子市場分類
  • 公開數據:全球私有5G無線接取網路出貨量
  • 鐵路:全球專用 5G 網路收入:依基礎設施子市場分類
  • 鐵路:全球專用5G無線接取網的出貨量
  • 公共產業:全球私有 5G 網路收入:依基礎設施子市場分類
  • 公共產業:全球專用 5G 無線接取網出貨量
  • 倉儲業及其他:全球私有 5G 網路收入:依基礎設施子市場分類
  • 倉儲業及其他:全球私有5G無線接入網出貨量
  • 辦公大樓、建築及公共設施:全球專用 5G 網路收入:依基礎設施子市場分類
  • 辦公室、建築和公共設施:全球專用 5G 無線接入網出貨量
  • 專用5G網路市場:辦公室、建築和公共設施
  • 來自私有5G網路基礎設施的收入
  • 北美私人 5G 網路收入:按基礎設施子市場分類
  • 北美私人5G無線接入網出貨量
  • 北美私人 5G 網路收入:依最終用戶市場分類
  • 歐洲私有 5G 網路收入:依基礎設施子市場分類
  • 歐洲私有5G無線接取網出貨量
  • 歐洲私有 5G 網路收入:依最終用戶市場分類
  • 中東和非洲私有 5G 網路收入:按基礎設施子市場分類
  • 中東和非洲的專用 5G RAN 出貨量
  • 中東和非洲私人 5G 網路收入:終端用戶市場
  • 拉丁美洲私有 5G 網路收入:依基礎設施子市場分類
  • 中南美洲的專用 5G RAN 出貨量
  • 拉丁美洲私有 5G 網路收入:依最終用戶市場分類
簡介目錄

Synopsis

Private cellular networks largely remained a fringe solution in the 2G and 3G eras, although GSM-R networks for railway communications are still operational ahead of a planned transition to 5G-based FRMCS (Future Railway Mobile Communication System). The early 2010s saw the first installations of private LTE networks – including Rio Tinto's private LTE network for its Western Australia mining operations, Tampnet's offshore 4G infrastructure and iNET's 700 MHz network in the Permian Basin – marking the beginning of what has since grown into a well-established but niche segment of the wider wireless infrastructure sector. However, private 5G networks or NPNs (Non-Public Networks) based on 3GPP-defined 5G specifications are increasingly replacing LTE across many verticals, with a market potential far exceeding that of previous technology generations. There continues to be a steady rise in production-grade deployments by household names and industrial giants such as ADNOC, Airbus, ArcelorMittal, BASF, Bayer, Belden, BHP, BMW, Boliden, BP, Cargill, Celanese, Chevron, CIMPOR, COSCO Shipping, CPF (Charoen Pokphand Foods), Denka, Dot Foods, DP World, Duracell, Equinor, EMSTEEL, Etihad, Flex, Ford, Foxconn, Gerdau, Google, Hancock Prospecting, Hitachi Rail, Home Depot, Hutchison Ports, Hyundai, Intel, Inventec, Jaguar Land Rover, John Deere, LG Electronics, LS Electric, Lufthansa, LyondellBasell, Meijer, Moeve (Cepsa), Nestle, Newmont, Nucor, OKI Electric, Outokumpu, Pegatron, PETRONAS, POSCO, Repsol, Ricoh, Robert Bosch, Salzgitter, Snam, Subaru, Takeda, Tesla, Toyota, Trinity Industries, Usiminas, Volkswagen, Walmart, WEG, Whirlpool, Xerox, Xiaomi Auto and ZF.

Compared to LTE technology, private 5G networks can address far more demanding performance requirements in terms of throughput, latency, reliability, availability and connection density. In particular, 5G's URLLC (Ultra-Reliable, Low-Latency Communications) and mMTC (Massive Machine-Type Communications) capabilities, along with a future-proof transition path to 6G networks in the 2030s, have positioned it as a viable alternative to physically wired connections for industrial-grade communications between machines, robots and control systems. Furthermore, despite its relatively higher cost of ownership, 5G's wider coverage radius per radio node, scalability, determinism, security features and mobility support have stirred strong interest in its potential as a replacement for interference-prone unlicensed wireless technologies in IIoT (Industrial IoT) environments, where the number of connected sensors and other endpoints is expected to increase significantly over the coming years.

As end user organizations in the United States, Canada, Germany, United Kingdom, France, Spain, Italy, China, Japan, South Korea, Taiwan, Australia, New Zealand, Brazil and other countries ramp up their industrial intelligence, automation, physical AI and mission-critical communications initiatives initiatives, a growing number of private 5G installations have progressed to a stage where practical and tangible benefits – particularly efficiency gains, cost savings and safety – are becoming increasingly evident. For instance, Tesla, Ford, Hyundai, Toyota, LG Electronics, NEC Corporation, Foxconn, Whirlpool, Salzgitter, BASF, Midea, Gree and JD Logistics are just some of the industrial organizations that have eliminated connection-related stoppages since migrating AGV (Automated Guided Vehicle) and AMR (Autonomous Mobile Robot) communications from Wi-Fi to private 5G networks at their manufacturing and logistics facilities, while Jaguar Land Rover, BD SENSORS and others have extended connectivity to parts of their plants that were previously left unconnected due to the cost and complexity of wired Ethernet links.

Among other impactful industrial examples, automotive engine parts supplier Fulin Precision has freed workers from repetitive box-moving tasks by adopting 100 semi-humanoid robots coordinated by a private 5G-Advanced network, Newmont has extended the reach of teleremote and autonomous machines from 100 meters to 2.5 kilometers at its gold mining operations in Australia, Portuguese cement producer CIMPOR has achieved more than $1 million in annual savings per plant through private 5G-enabled predictive maintenance and Taiwanese electronics manufacturer Pegatron's multi-national private 5G deployment has reduced factory reconfiguration costs by up to 50%. In the public sector, Las Vegas' municipal private 5G network has contributed to a 90% drop in wrong-way driving incidents, while Mexico City Police has extended immersive VR training sessions from 25 minutes to 1.5 hours and eliminated the need for officers to carry bulky backpacks through a standalone private 5G network.

SNS Telecom & IT projects that annual investments in private 5G networks for vertical industries will grow at a CAGR of approximately 34% between 2026 and 2029, eventually surpassing $6.6 billion by the end of 2029. A substantial proportion of this growth will be led by highly localized 5G networks for workforce connectivity, automation and AI applications in enterprise campuses and industrial facilities. The adoption of physical AI is particularly pronounced, with many industrial giants relying on private 5G-connected AGVs, AMRs, drones, cranes, forklifts, mining vehicles, quadruped robots and even semi-humanoid systems for tasks such as the autonomous transportation of loads ranging from raw materials and parts to assembled vehicles and heavy steel slabs, remote-controlled dozing in mining operations, high-bay inventory counting, visual inspections for predictive maintenance, unmanned security patrols and dual-arm object manipulation. Alongside enterprise and industrial deployments, mission-critical communications is a distinct but equally important growth pillar for private 5G adoption among defense forces, public safety agencies, railways, utilities and critical infrastructure operators.

The "Private 5G Network Deployment Tracker & Forecasts: 2026 – 2030" datasheet includes an extensive database of over 9,300 global private cellular network engagements across 130 countries – including more than 4,600 private 5G installations – as of Q2 2026. Also included is a spectrum tracking database covering over 400 spectrum access routes in the sub-1 GHz, mid-band and mmWave ranges, with associated frequencies and bandwidth availability for both local and wide area private networks on a per-country basis. In addition, it provides global and regional market size forecasts from 2026 to 2030, as well as historical data from 2023 to 2025. The forecasts and historical data cover two network types, three infrastructure submarkets, four spectrum licensing models, 13 frequency bands, 16 vertical industries and five regional markets.

Database Details & Forecast Segmentation

The following details are included in the global database of private cellular network engagements:

  • Date
  • Region
  • Country
  • Vertical Industry
  • Customer/Project Name
  • Suppliers & Integrators
  • Air Interface Technology
  • Spectrum
  • Deployment Status
  • Summary

The spectrum tracking database includes the following information for each spectrum access route:

  • Region
  • Country
  • Frequency Range
  • 3GPP Band
  • Target Network Type
  • Licensing Framework
  • Duplex Scheme
  • Bandwidth
  • Availability
  • Details

Market forecasts are provided for each of the following submarkets and their subcategories:

  • Network Types
    • Wide Area Networks
    • Campus/Local Area Networks
  • Infrastructure Submarkets
    • 5G NR RAN (Radio Access Network)
      • Base Station RUs (Radio Units)
      • DUs/CUs (Distributed & Centralized Baseband Units)
    • 5GC (5G Core)
      • UPF (User Plane Function)
      • Control Plane Functions
    • 5G Transport (Fronthaul, Midhaul & Backhaul)
      • Fiber & Wireline
      • Microwave
      • Satellite Communications
  • Cell Sizes
    • Small Cells
      • Indoor
      • Outdoor
    • Macrocells
  • Spectrum Licensing Models
    • Mobile Operator-Owned Spectrum
    • Wide Area Licensed Spectrum
    • Shared & Local Area Licensed Spectrum
    • Unlicensed Spectrum
  • Frequency Bandsv
    • 410/450 MHz
    • 600 MHz
    • 700 MHz
    • 800 MHz
    • 900 MHz
    • 1.4-1.9 GHz
    • 2.1-2.6 GHz
    • 3.5 GHz CBRS
    • 3.3-3.8 GHz
    • 3.8-4.2 GHz
    • 4.4-4.9 GHz
    • 26/28 GHz
    • Other Bands
  • End User Markets
    • Vertical Industries
      • Agriculture
      • Aviation
      • Broadcasting
      • Construction
      • Education
      • Forestry
      • Healthcare
      • Manufacturing
      • Military
      • Mining
      • Oil & Gas
      • Ports & Maritime Transport
      • Public Safety
      • Railways
      • Utilities
      • Warehousing & Others
    • Offices, Buildings & Public Venues
  • Regional Markets
    • North America
    • Asia Pacific
    • Europe
    • Middle East & Africa
    • Latin & Central America

Table of Contents

  • Database of Private Cellular Network Engagements (Last Updated Q2 2026)
  • Private Cellular Spectrum Tracking Database
  • Global Private 5G Network Infrastructure Revenue: 2026 - 2030 ($ Million)
  • Global Private 5G Network Revenue by Network Type: 2026 - 2030 ($ Million)
  • Global Private 5G Network Revenue by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments: 2026 - 2030 (Thousands of Units)
  • Global Private 5G RAN Revenue: 2026 - 2030 ($ Million)
  • Global Private 5GC Revenue: 2026 - 2030 ($ Million)
  • Global Private 5G Transport Network Revenue: 2026 - 2030 ($ Million)
  • Global Private 5G RU Shipments by Cell Size: 2026 - 2030 (Thousands of Units)
  • Global Private 5G RU Revenue by Cell Size: 2026 - 2030 ($ Million)
  • Global Private 5G Network Revenue by Spectrum Licensing Model: 2026 - 2030 ($ Million)
  • Global Private 5G Network Revenue by Frequency Band: 2026 - 2030 ($ Million)
  • Global Private 5G Network Infrastructure Revenue by End User Market: 2026 - 2030 ($ Million)
  • Global Private 5G Network Revenue in Vertical Industries by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in Vertical Industries: 2026 - 2030 (Thousands of Units)
  • Global Private 5G Network Revenue in the Agriculture Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Agriculture Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Aviation Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Aviation Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Broadcasting Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Broadcasting Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Construction Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Construction Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Education Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Education Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Forestry Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Forestry Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Healthcare Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Healthcare Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Manufacturing Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Manufacturing Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Military Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Military Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Mining Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Mining Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Oil & Gas Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Oil & Gas Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Ports & Maritime Transport Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Ports & Maritime Transport Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Public Safety Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Public Safety Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Railways Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Railways Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in the Utilities Vertical by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in the Utilities Vertical: 2026 - 2030
  • Global Private 5G Network Revenue in Warehousing & Other Verticals by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in Warehousing & Other Verticals: 2026 - 2030
  • Global Private 5G Network Revenue in Offices, Buildings & Public Venues by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Global Private 5G RAN Unit Shipments in Offices, Buildings & Public Venues: 2026 - 2030 (Thousands of Units)
  • Private 5G Network Infrastructure Revenue by Region: 2026 - 2030 ($ Million)
  • North America Private 5G Network Revenue by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • North America Private 5G RAN Unit Shipments: 2026 - 2030 (Thousands of Units)
  • North America Private 5G Network Revenue by End User Market: 2026 - 2030 ($ Million)
  • Asia Pacific Private 5G Network Revenue by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Asia Pacific Private 5G RAN Unit Shipments: 2026 - 2030 (Thousands of Units)
  • Asia Pacific Private 5G Network Revenue by End User Market: 2026 - 2030 ($ Million)
  • Europe Private 5G Network Revenue by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Europe Private 5G RAN Unit Shipments: 2026 - 2030 (Thousands of Units)
  • Europe Private 5G Network Revenue by End User Market: 2026 - 2030 ($ Million)
  • Middle East & Africa Private 5G Network Revenue by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Middle East & Africa Private 5G RAN Unit Shipments: 2026 - 2030 (Thousands of Units)
  • Middle East & Africa Private 5G Network Revenue by End User Market: 2026 - 2030 ($ Million)
  • Latin & Central America Private 5G Network Revenue by Infrastructure Submarket: 2026 - 2030 ($ Million)
  • Latin & Central America Private 5G RAN Unit Shipments: 2026 - 2030 (Thousands of Units)
  • Latin & Central America Private 5G Network Revenue by End User Market: 2026 - 2030 ($ Million)