Power Grid Market By Component-
Power Grid Market By Power Source-
Power Grid Market By Application-
Power Grid Market By Region-
North America-
Europe-
Asia-Pacific-
Latin America-
Middle East & Africa-
Chapter 1. Methodology and Scope
1.1. Research Methodology
1.2. Research Scope & Assumptions
Chapter 2. Executive Summary
Chapter 3. Global Power Grid Market Snapshot
Chapter 4. Global Power Grid Market Variables, Trends & Scope
4.1. Market Segmentation & Scope
4.2. Drivers
4.3. Challenges
4.4. Trends
4.5. Investment and Funding Analysis
4.6. Industry Analysis – Porter’s Five Forces Analysis
4.7. Competitive Landscape & Market Share Analysis
4.8. Impact of Covid-19 Analysis
Chapter 5. Market Segmentation 1: by Component Estimates & Trend Analysis
5.1. by Component & Market Share, 2024 & 2034
5.2. Market Size (Value (US$ Mn)) & Forecasts and Trend Analyses, 2021-2034 for the following by Component:
5.2.1. Cables
5.2.2. Varaible Speed Drives
5.2.3. Transformers
5.2.4. Switchgear
5.2.5. Others
Chapter 6. Market Segmentation 2: by Power Source Estimates & Trend Analysis
6.1. by Power Source & Market Share, 2023 & 2031
6.2. Market Size (Value (US$ Mn)) & Forecasts and Trend Analyses, 2021-2034 for the following by Power Source:
6.2.1. Oil
6.2.2. Natural Gas
6.2.3. Coal
6.2.4. Hydro Electric
6.2.5. Renewables
6.2.6. Others
Chapter 7. Market Segmentation 3: by Application Estimates & Trend Analysis
7.1. by Application & Market Share, 2023 & 2031
7.2. Market Size (Value (US$ Mn)) & Forecasts and Trend Analyses, 2021-2034 for the following by Application:
7.2.1. Generation
7.2.2. Transmission
7.2.3. Distribution
Chapter 8. Power Grid Market Segmentation 4: Regional Estimates & Trend Analysis
8.1. North America
8.1.1. North America Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Component, 2021-2034
8.1.2. North America Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Power Source, 2021-2034
8.1.3. North America Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Application, 2021-2034
8.1.4. North America Power Grid Market Revenue (US$ Million) Estimates and Forecasts by country, 2021-2034
8.2. Europe
8.2.1. Europe Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Component, 2021-2034
8.2.2. Europe Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Power Source, 2021-2034
8.2.3. Europe Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Application, 2021-2034
8.2.4. Europe Power Grid Market Revenue (US$ Million) Estimates and Forecasts by country, 2021-2034
8.3. Asia Pacific
8.3.1. Asia Pacific Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Component, 2021-2034
8.3.2. Asia Pacific Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Power Source, 2021-2034
8.3.3. Asia-Pacific Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Application, 2021-2034
8.3.4. Asia Pacific Power Grid Market Revenue (US$ Million) Estimates and Forecasts by country, 2021-2034
8.4. Latin America
8.4.1. Latin America Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Component, 2021-2034
8.4.2. Latin America Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Power Source, 2021-2034
8.4.3. Latin America Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Application, 2021-2034
8.4.4. Latin America Power Grid Market Revenue (US$ Million) Estimates and Forecasts by country, 2021-2034
8.5. Middle East & Africa
8.5.1. Middle East & Africa Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Component, 2021-2034
8.5.2. Middle East & Africa Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Power Source, 2021-2034
8.5.3. Middle East & Africa Power Grid Market Revenue (US$ Million) Estimates and Forecasts by Application, 2021-2034
8.5.4. Middle East & Africa Power Grid Market Revenue (US$ Million) Estimates and Forecasts by country, 2021-2034
Chapter 9. Competitive Landscape
9.1. Major Mergers and Acquisitions/Strategic Alliances
9.2. Company Profiles
9.2.1. ABB (Switzerland)
9.2.2. Siemens (Germany)
9.2.3. General Electric (US)
9.2.4. Prysmian Group (Italy)
9.2.5. Nexans (France)
9.2.6. Schneider Electric (France)
9.2.7. Mitsubishi Electric (Japan)
9.2.8. Eaton (Ireland)
9.2.9. Hitachi Energy (Switzerland)
9.2.10. Powell Industries (US)
9.2.11. Havells (India)
9.2.12. LS Elctric (South Korea),
9.2.13. Hubbell (India)
9.2.14. Toshiba Energy Systems & Solutions Corporation (Japan)
9.2.15. Fuji Electric (Japan)
9.2.16. Sumitomo Electric (Japan)
9.2.17. NKT (Denmark)
9.2.18. Hyundai Electric & Energy Systems Co, Ltd (South Korea)
9.2.19. Secheron (Switzerland)
9.2.20. Southwire Company (US)
9.2.21. Other Prominent Players
This study employed a multi-step, mixed-method research approach that integrates:
This approach ensures a balanced and validated understanding of both macro- and micro-level market factors influencing the market.
Secondary research for this study involved the collection, review, and analysis of publicly available and paid data sources to build the initial fact base, understand historical market behaviour, identify data gaps, and refine the hypotheses for primary research.
Secondary data for the market study was gathered from multiple credible sources, including:
These sources were used to compile historical data, market volumes/prices, industry trends, technological developments, and competitive insights.
Primary research was conducted to validate secondary data, understand real-time market dynamics, capture price points and adoption trends, and verify the assumptions used in the market modelling.
Primary interviews for this study involved:
Interviews were conducted via:
Primary insights were incorporated into demand modelling, pricing analysis, technology evaluation, and market share estimation.
All collected data were processed and normalized to ensure consistency and comparability across regions and time frames.
The data validation process included:
This ensured that the dataset used for modelling was clean, robust, and reliable.
The bottom-up approach involved aggregating segment-level data, such as:
This method was primarily used when detailed micro-level market data were available.
The top-down approach used macro-level indicators:
This approach was used for segments where granular data were limited or inconsistent.
To ensure accuracy, a triangulated hybrid model was used. This included:
This multi-angle validation yielded the final market size.
Market forecasts were developed using a combination of time-series modelling, adoption curve analysis, and driver-based forecasting tools.
Given inherent uncertainties, three scenarios were constructed:
Sensitivity testing was conducted on key variables, including pricing, demand elasticity, and regional adoption.