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Global Optical Fiber Composite Overhead Ground Wire (OPGW) Supply, Demand and Key Producers, 2026-2032

Publisher GlobalInfoResearch
Published Jan 05, 2026
Length 121 Pages
SKU # GFSH20788132

Description

The global Optical Fiber Composite Overhead Ground Wire (OPGW) market size is expected to reach $ 1001 million by 2032, rising at a market growth of 4.3% CAGR during the forecast period (2026-2032).

Optical Fiber Composite Overhead Ground Wire (OPGW) is a composite conductor system that integrates optical fiber communication units with traditional overhead ground wires. It serves dual functions: performing grounding and lightning protection duties for power transmission lines, while simultaneously providing high-speed optical communication transmission capabilities. As a critical enabler of integrated power grid communication and transmission infrastructure, OPGW offers superior mechanical strength, excellent corrosion resistance, and high tensile performance, ensuring long-term stable operation in high-voltage transmission environments. This product not only supports intelligent communication requirements for power system dispatch, monitoring, and protection but also forms the backbone of dedicated power communication networks. It serves as a fundamental component for realizing the Power Internet of Things, smart grids, and energy informatization. The application of OPGW drives the convergent evolution of power communication and energy transmission, establishing itself as a key medium connecting energy infrastructure with digital communication networks.

Market Opportunities and Drivers: What Forces Are Driving the Global Convergence of Energy and Communication via OPGW?

The digital transformation of global energy infrastructure and the intelligent construction of power grids are core drivers for the OPGW market. With the strategic implementation of smart grids and the Energy Internet of Things, governments worldwide are promoting the communication-enablement and visual operation and maintenance of transmission lines, stimulating large-scale replacement and new demand for OPGW. Simultaneously, the trend of integrating communication and power networks is becoming increasingly evident, particularly in the Asia-Pacific, Middle East, and Africa regions, where power utilities utilize OPGW to form long-distance, high-speed communication channels for grid dispatch, disaster monitoring, and remote control. On the technological front, increases in fiber core count, improvements in composite materials, and low-loss sheath designs have significantly enhanced the service life and performance of OPGW. Policy-wise, power regulatory authorities in multiple countries mandate that new ultra-high voltage lines adopt ground wire systems with communication functions, providing stable conditions for market adoption. Challenges primarily stem from the partial penetration of alternative technologies like ADSS optical cables, long retrofit cycles for aging lines, and fluctuations in raw material prices. Nevertheless, the overall trend remains focused on high-performance, low-loss, and sustainable OPGW solutions.

Industry Chain Landscape: How Does the OPGW Supply Chain Build a Closed Loop for Energy Communication?

The OPGW industry chain features tight upstream and downstream linkages. The upstream segment primarily includes suppliers of optical fiber preforms, aluminum-clad steel wires, stainless steel tubes, and composite sheath materials, whose quality directly impacts the electrical conductivity and communication performance of the entire line. The downstream segment encompasses power grid construction companies, transmission line contractors, and communication operation and maintenance enterprises, serving as the primary demand drivers. Representative manufacturers like ZTT, Fujikura, NKT Cables, Tongguang Cable, LS Cable & System, Furukawa, and Taihan have established integrated processes from fiber preparation to cable formation. Chinese and Japanese companies hold leading positions in production capacity and manufacturing precision, while European manufacturers like NKT Cables and Tratos focus on reliability integration within high-voltage transmission systems. Downstream power giants such as State Grid Corporation of China, Tokyo Electric Power Company Holdings, and major transmission investors in the Middle East continuously expand OPGW communication retrofit projects, shifting the entire industry chain from single product manufacturing towards providing integrated solutions.

Market Segment Trends: Which Application Scenarios Are Leading the Accelerated Deployment of OPGW?

In terms of applications, the primary demand for OPGW comes from the construction and retrofit projects of high-voltage and ultra-high voltage transmission lines. As countries update aging power grids and advance long-distance power transmission projects, OPGW is widely used for interconnecting smart substations, cross-provincial power dispatch channels, and long-distance transmission corridors. Its optical communication characteristics make it a core medium for power monitoring systems and online fault diagnosis platforms. Concurrently, the demand for highly reliable communication lines in renewable energy integration projects has grown significantly, driving the replacement of traditional aluminum conductor steel-reinforced cables with OPGW as the preferred solution. In urban areas and industrial parks, some dedicated power communication networks and security monitoring systems have also begun adopting OPGW to build data transmission backbones, enabling integrated scheduling of energy and information. Overall, smart grid construction and new energy transmission projects are becoming the most active segments for OPGW development.

Regional Trends: Which Global Regions Are Becoming Strategic High Grounds for the OPGW Market?

Regionally, the Asia-Pacific area has become the core growth engine for OPGW. China's sustained investment in ultra-high voltage transmission and digital grid construction makes it the world's largest production and consumption market. Japanese and Korean manufacturers maintain leadership in the high-performance cable market through advanced materials and precision manufacturing technologies. The European market focuses on the intelligent retrofit of aging transmission lines and the integration of power and communication, promoting OPGW use in green power interconnection projects. Growth in North America primarily benefits from energy infrastructure modernization and the construction of interstate transmission communication systems. The Middle East and Africa, with their cross-national grid interconnection plans and large energy corridor projects, are emerging as incremental markets. Overall, the regional development pattern shows a multi-tiered trend of "Asia-Pacific dominance, Europe and America focusing on quality, and emerging markets expanding volume." Global suppliers are accelerating the layout of localized production and long-term maintenance networks to meet the diverse needs of different regions.

Latest Developments

In June 2023, ZTT announced a collaboration with Saudi Electricity Company to provide OPGW solutions for a Middle East ultra-high voltage transmission project, marking the establishment of its long-term technical support center in the Gulf region;

In March 2024, Fujikura commenced production of a new high-temperature resistant OPGW fiber line in Ibaraki Prefecture, Japan, specifically designed for smart grid real-time monitoring systems, strengthening its leading position in the domestic power communication field;

In February 2025, LS Cable & System signed a memorandum of understanding with Korea Electric Power Corporation to develop composite OPGW products for offshore wind power transmission lines, supporting the integrated layout of offshore energy and communication.

This report studies the global Optical Fiber Composite Overhead Ground Wire (OPGW) production, demand, key manufacturers, and key regions.

This report is a detailed and comprehensive analysis of the world market for Optical Fiber Composite Overhead Ground Wire (OPGW) and provides market size (US$ million) and Year-over-Year (YoY) Growth, considering 2025 as the base year. This report explores demand trends and competition, as well as details the characteristics of Optical Fiber Composite Overhead Ground Wire (OPGW) that contribute to its increasing demand across many markets.

Highlights and key features of the study

Global Optical Fiber Composite Overhead Ground Wire (OPGW) total production and demand, 2021-2032, (K Meter)

Global Optical Fiber Composite Overhead Ground Wire (OPGW) total production value, 2021-2032, (USD Million)

Global Optical Fiber Composite Overhead Ground Wire (OPGW) production by region & country, production, value, CAGR, 2021-2032, (USD Million) & (K Meter), (based on production site)

Global Optical Fiber Composite Overhead Ground Wire (OPGW) consumption by region & country, CAGR, 2021-2032 & (K Meter)

U.S. VS China: Optical Fiber Composite Overhead Ground Wire (OPGW) domestic production, consumption, key domestic manufacturers and share

Global Optical Fiber Composite Overhead Ground Wire (OPGW) production by manufacturer, production, price, value and market share 2021-2026, (USD Million) & (K Meter)

Global Optical Fiber Composite Overhead Ground Wire (OPGW) production by Type, production, value, CAGR, 2021-2032, (USD Million) & (K Meter)

Global Optical Fiber Composite Overhead Ground Wire (OPGW) production by Application, production, value, CAGR, 2021-2032, (USD Million) & (K Meter)

This report profiles key players in the global Optical Fiber Composite Overhead Ground Wire (OPGW) market based on the following parameters - company overview, production, value, price, gross margin, product portfolio, geographical presence, and key developments. Key companies covered as a part of this study include ZTT, Fujikura, NKT Cables, Tongguang Cable, Shenzhen SDG, Furukawa, LS Cable & System, Jiangsu Hongtu, Taihan, Sichuan Huiyuan, etc.

This report also provides key insights about market drivers, restraints, opportunities, new product launches or approvals.

Stakeholders would have ease in decision-making through various strategy matrices used in analyzing the World Optical Fiber Composite Overhead Ground Wire (OPGW) market

Detailed Segmentation:

Each section contains quantitative market data including market by value (US$ Millions), volume (production, consumption) & (K Meter) and average price (USD/K Meter) by manufacturer, by Type, and by Application. Data is given for the years 2021-2032 by year with 2025 as the base year, 2026 as the estimate year, and 2027-2032 as the forecast year.

Global Optical Fiber Composite Overhead Ground Wire (OPGW) Market, By Region:
United States
China
Europe
Japan
South Korea
ASEAN
India
Rest of World

Global Optical Fiber Composite Overhead Ground Wire (OPGW) Market, Segmentation by Type:
Layer Stranding Structure OPGW
Central Tube Structure OPGW

Global Optical Fiber Composite Overhead Ground Wire (OPGW) Market, Segmentation by Application:
Below 66KV
66KV~110KV
110KV~220KV
220KV~330KV
330~500KV
More than 500KV

Companies Profiled:
ZTT
Fujikura
NKT Cables
Tongguang Cable
Shenzhen SDG
Furukawa
LS Cable & System
Jiangsu Hongtu
Taihan
Sichuan Huiyuan
Elsewedy Cables
Tratos
J-Power Systems

Key Questions Answered:

1. How big is the global Optical Fiber Composite Overhead Ground Wire (OPGW) market?

2. What is the demand of the global Optical Fiber Composite Overhead Ground Wire (OPGW) market?

3. What is the year over year growth of the global Optical Fiber Composite Overhead Ground Wire (OPGW) market?

4. What is the production and production value of the global Optical Fiber Composite Overhead Ground Wire (OPGW) market?

5. Who are the key producers in the global Optical Fiber Composite Overhead Ground Wire (OPGW) market?

6. What are the growth factors driving the market demand?

Table of Contents

121 Pages
1 Supply Summary
2 Demand Summary
3 World Manufacturers Competitive Analysis
4 United States VS China VS Rest of the World
5 Market Analysis by Type
6 Market Analysis by Application
7 Company Profiles
8 Industry Chain Analysis
9 Research Findings and Conclusion
10 Appendix
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