Global High Voltage Fault Current Limiter Market Size By Technology Type, By End-User Industry, By Geographic Scope And Forecast

Report ID: 383545|No. of Pages: 179

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Global High Voltage Fault Current Limiter Market Size By Technology Type, By End-User Industry, By Geographic Scope And Forecast

Report ID: 383545|Published Date: Feb 2024|No. of Pages: 179|Base Year for Estimate: 2023|Format:   Report available in PDF formatReport available in Excel Format

High Voltage Fault Current Limiter Market Size And Forecast

High Voltage Fault Current Limiter Market size was valued at USD 1.5 Billion in 2023 and is projected to reach USD 7.75 Billion by 2030, growing at a CAGR of 9.26% during the forecast period 2024-2030.

High Voltage Fault Current Limiter Market is estimated to grow at a CAGR of 9.26% & reach US$ 7.75  Bn by the end of 2030

Global High Voltage Fault Current Limiter Market Drivers

The market drivers for the High Voltage Fault Current Limiter Market can be influenced by various factors. These may include:

  • Initiatives for Grid Modernization: To improve the stability, efficiency, and dependability of their electrical systems, many nations are investing in infrastructure upgrades. By minimising fault currents and lessening the strain on already-existing equipment, HV FCLs are essential to the modernization of power grids because they increase system resilience and dependability.
  • Growing Need for Renewable Energy Integration: Because renewable energy sources are intermittent, grid operators face issues as renewable energy sources like solar and wind power become more prevalent. By reducing fault currents and permitting the smooth integration of renewable energy into the grid, high-voltage fast-coupling (HV FCLs) contribute to addressing concerns about grid stability and enable higher levels of penetration of renewable energy.
  • Increasing Awareness of Power Quality Issues: As sensitive electronic equipment and devices proliferate, so does public awareness of the significance of preserving excellent power quality in electrical systems. By restricting fault currents, minimising voltage sags, and lowering the possibility of interruptions and damage to sensitive loads, HV FCLs contribute to improved power quality.
  • Pay attention to grid reliability and resilience: Grid operators are placing a higher priority on grid resilience and dependability due to the frequency and severity of extreme weather events and other disruptions increasing. Through the reduction of fault currents, isolation of faults, and prevention of cascading failures, HV FCLs improve grid resilience, reducing downtime and enhancing overall grid reliability.
  • Regulations and Standards: The adoption of HV FCLs is influenced by regulations and standards that are designed to improve grid performance, dependability, and safety. HV FCL deployment is encouraged by regulatory compliance, including equipment protection and fault current limits, which utilities and grid operators must adhere to in order to modernise their infrastructure.
  • Upgrades are Required for Ageing Grid Infrastructure: An increasing number of nations are dealing with ageing grid infrastructure that is more prone to malfunctions and breakdowns. Because HV FCLs strengthen grid resilience against faults and disturbances and eliminate the need for expensive equipment replacements, they provide an affordable option for updating existing infrastructure.
  • Technological Developments: Superconducting, resistive, and hybrid FCLs are just a few of the high-voltage FCL technologies that are continuing to evolve, allowing for more uses and possibilities for these devices. Wider usage of HV FCLs in several electrical power industry areas can be attributed to their enhanced performance, dependability, and affordability.
  • Trends in Electrification and Energy Transition: The need for more durable and resilient electrical grids is being driven by the world’s shift to greener energy sources, as well as the electrification of industrial processes and transportation. By making it possible to integrate distributed energy resources, electric cars, and other electrified technologies into the grid, HV FCLs are essential to this energy transformation.

Global High Voltage Fault Current Limiter Market Restraints

Several factors can act as restraints or challenges for the High Voltage Fault Current Limiter Market. These may include:

  • High Initial Investment expenses: The creation, production, installation, and research and development of HV FCLs can include significant upfront expenses. Adoption may be hampered by the high capital costs associated with implementing HV FCLs, especially for utilities and grid operators with tight budgets or limited funding sources.
  • Technical Difficulties and Performance Limitations: Although HV FCL technology has advanced, there may still be difficulties including limited fault current limiting capability, problems with thermal management, and transient response characteristics. HV FCLs’ performance issues or technical constraints may prevent utilities and grid operators from widely implementing and accepting them.
  • Compatibility and Complexity of Integration: Including HV FCLs into the current grid architecture may be difficult and need careful coordination with other control and protection devices. Delays in deployment and higher implementation costs might result from incompatibilities with current equipment, communication protocols, and protection mechanisms that present difficulties during installation and commissioning.
  • Regulatory and Standards Compliance: Manufacturers and suppliers of HV FCL may face entry-level obstacles due to their compliance with industry standards and regulatory regulations. Particularly in areas with strict regulatory regimes, the lack of standardised certification procedures, testing techniques, and performance benchmarks may breed confusion and impede market expansion.
  • Risk Aversion and Reliability Concerns: When it comes to implementing new technologies that may have an influence on the safety and reliability of the grid, utilities and grid operators are frequently risk-averse. HV FCLs may be cautiously adopted or expensively purchased because to concerns about their dependability, longevity, and long-term performance, particularly in mission-critical applications.
  • Lack of Education and Awareness: Key stakeholders, like as utility executives, grid operators, and system planners, may not be fully informed about or aware of HV FCL technology, which could limit market expansion. To dispel misconceptions and scepticism regarding the efficacy of HV FCLs and to illustrate how they improve grid resilience, efficiency, and dependability, education and outreach initiatives are required.
  • Rival Technologies and Alternatives: In some situations, HV FCLs may be replaced by more practical methods of fault current limiting, such as dynamic brake resistors, superconducting fault current limiters (SFCLs), and grid reinforcement techniques. Adoption of HV FCLs in the market may be impacted by competition from these other technologies, as well as their own benefits and cons.
  • Economic Uncertainty and Market Volatility: Investment decisions and project funding for HV FCL deployments can be influenced by economic factors such as changes in energy prices, regulatory policies, and geopolitical conflicts. The short- to medium-term demand for HV FCLs may be impacted by grid modernization project delays or cancellations brought on by economic uncertainty and market volatility.

Global High Voltage Fault Current Limiter Market Segmentation Analysis

The Global High Voltage Fault Current Limiter Market is Segmented on the basis of Technology Type, End-User Industry, Geography

High Voltage Fault Current Limiter Market Segmentation Analysis

By Technology Type

  • Superconducting Fault Current Limiters (SFCLs): SFCLs efficiently restrict fault currents in electrical power systems by employing superconducting materials.
  • Resistive fault current limiters: RFCLs, use resistive materials to dissipate energy in order to limit fault currents.

By End-User Industry

  • Utilities: In order to improve the stability and dependability of electrical grids, utilities and grid operators frequently employ HV FCLs. They lessen equipment damage, stop cascade failures, and shorten outages when fault circumstances arise.
  • Industrial Sector: To safeguard vital equipment, preserve process continuity, and guarantee operational safety, industrial facilities—such as manufacturing plants, petrochemical complexes, and mining operations—use HV FCLs.
  • Renewable Energy: To manage the variability and intermittency of renewable generation and improve grid stability, the integration of renewable energy sources, such as wind and solar, into the grid necessitates the use of HV FCLs.

By Geography

  • North America: United States: A major market for HV FCLs, the U.S. contains a sizable component of the largest interconnected electrical grid in the world.
  • Europe: Germany: A significant market for HV FCLs, Germany is a pioneer in the implementation of renewable energy and system upgrading.
  • Asia-Pacific Region: China: One of the biggest markets for HV FCLs is China, with its vast electrical infrastructure and quickly growing economy.

Key Players

The major players in the High Voltage Fault Current Limiter Market are:

  • ABB Ltd.
  • Siemens AG
  • General Electric Company
  • Mitsubishi Electric Corporation
  • SuperGrid Institute
  • Nexans SA
  • Applied Materials, Inc.
  • AMSC (American Superconductor Corporation)
  • Zenergy Power plc
  • Hitachi, Ltd.

Report Scope

REPORT ATTRIBUTESDETAILS
STUDY PERIOD

2020-2030

BASE YEAR

2023

FORECAST PERIOD

2024-2030

HISTORICAL PERIOD

2020-2022

UNIT

Value (USD Billion)

KEY COMPANIES PROFILED

ABB Ltd., Siemens AG, General Electric Company, Mitsubishi Electric Corporation, SuperGrid Institute, Nexans SA, Applied Materials, Inc., AMSC (American Superconductor Corporation), Zenergy Power plc, Hitachi, Ltd

SEGMENTS COVERED
  • Technology Type
  • End-User Industry
  • Geography
CUSTOMIZATION SCOPE

Free report customization (equivalent up to 4 analyst’s working days) with purchase. Addition or alteration to country, regional & segment scope

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Research Methodology of Verified Market Research:

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Reasons to Purchase this Report:

• Qualitative and quantitative analysis of the market based on segmentation involving both economic as well as non-economic factors
• Provision of market value (USD Billion) data for each segment and sub-segment
• Indicates the region and segment that is expected to witness the fastest growth as well as to dominate the market
• Analysis by geography highlighting the consumption of the product/service in the region as well as indicating the factors that are affecting the market within each region
• Competitive landscape which incorporates the market ranking of the major players, along with new service/product launches, partnerships, business expansions and acquisitions in the past five years of companies profiled
• Extensive company profiles comprising of company overview, company insights, product benchmarking and SWOT analysis for the major market players
• The current as well as the future market outlook of the industry with respect to recent developments (which involve growth opportunities and drivers as well as challenges and restraints of both emerging as well as developed regions
• Includes an in-depth analysis of the market of various perspectives through Porter’s five forces analysis
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Frequently Asked Questions

High Voltage Fault Current Limiter Market was valued at USD 1.5 Billion in 2023 and is projected to reach USD 7.75 Billion by 2030, growing at a CAGR of 9.26% during the forecast period 2024-2030.

High Voltage Fault Current Limiter Market driven by growing focus on grid reliability, increasing renewable energy integration, and stringent safety regulations.

The major players in the global High Voltage Fault Current Limiter Market are ABB Ltd., Siemens AG, General Electric Company, Mitsubishi Electric Corporation, SuperGrid Institute, Nexans SA, Applied Materials, Inc., AMSC (American Superconductor Corporation), Zenergy Power plc, Hitachi, Ltd.

The Global High Voltage Fault Current Limiter Market is segmented on the basis of Technology Type, End-User Industry, And Geography.

The sample report for the High Voltage Fault Current Limiter Market can be obtained on demand from the website. Also, the 24*7 chat support & direct call services are provided to procure the sample report.

1. Introduction
· Market Definition
· Market Segmentation
· Research Methodology

2. Executive Summary
· Key Findings
· Market Overview
· Market Highlights

3. Market Overview
· Market Size and Growth Potential
· Market Trends
· Market Drivers
· Market Restraints
· Market Opportunities
· Porter’s Five Forces Analysis

4. High Voltage Fault Current Limiter Market, By Technology Type
• Superconducting Fault Current Limiters (SFCLs)
• Resistive Fault Current Limiters (RFCLs)

5. High Voltage Fault Current Limiter Market, By End-User Industry
• Utilities
• Industrial Sector
• Renewable Energy

6. Regional Analysis
North America
• Mexico
Europe
• United Kingdom
• Germany
• France
• Italy
Asia-Pacific
• China
• Japan
• India
• Australia
• Latin America
• Brazil
• Argentina
• Chile
Middle East and Africa
• South Africa
• Saudi Arabia
• UAE

7. Market Dynamics
• Market Drivers
• Market Restraints
• Market Opportunities
• Impact of COVID-19 on the Market

8. Competitive Landscape
• Key Players
• Market Share Analysis

9. Company Profiles
• ABB Ltd.
• Siemens AG
• General Electric Company
• Mitsubishi Electric Corporation
• SuperGrid Institute
• Nexans SA
• Applied Materials, Inc.
• AMSC (American Superconductor Corporation)
• Zenergy Power plc
• Hitachi, Ltd.

10. Market Outlook and Opportunities
• Emerging Technologies
• Future Market Trends
• Investment Opportunities

11. Appendix
• List of Abbreviations
• Sources and References

Report Research Methodology

Research methodology

Verified Market Research uses the latest researching tools to offer accurate data insights. Our experts deliver the best research reports that have revenue generating recommendations. Analysts carry out extensive research using both top-down and bottom up methods. This helps in exploring the market from different dimensions.

This additionally supports the market researchers in segmenting different segments of the market for analysing them individually.

We appoint data triangulation strategies to explore different areas of the market. This way, we ensure that all our clients get reliable insights associated with the market. Different elements of research methodology appointed by our experts include:

Exploratory data mining

Market is filled with data. All the data is collected in raw format that undergoes a strict filtering system to ensure that only the required data is left behind. The leftover data is properly validated and its authenticity (of source) is checked before using it further. We also collect and mix the data from our previous market research reports.

All the previous reports are stored in our large in-house data repository. Also, the experts gather reliable information from the paid databases.

expert data mining

For understanding the entire market landscape, we need to get details about the past and ongoing trends also. To achieve this, we collect data from different members of the market (distributors and suppliers) along with government websites.

Last piece of the ‘market research’ puzzle is done by going through the data collected from questionnaires, journals and surveys. VMR analysts also give emphasis to different industry dynamics such as market drivers, restraints and monetary trends. As a result, the final set of collected data is a combination of different forms of raw statistics. All of this data is carved into usable information by putting it through authentication procedures and by using best in-class cross-validation techniques.

Data Collection Matrix

PerspectivePrimary ResearchSecondary Research
Supplier side
  • Fabricators
  • Technology purveyors and wholesalers
  • Competitor company’s business reports and newsletters
  • Government publications and websites
  • Independent investigations
  • Economic and demographic specifics
Demand side
  • End-user surveys
  • Consumer surveys
  • Mystery shopping
  • Case studies
  • Reference customer

Econometrics and data visualization model

data visualiztion model

Our analysts offer market evaluations and forecasts using the industry-first simulation models. They utilize the BI-enabled dashboard to deliver real-time market statistics. With the help of embedded analytics, the clients can get details associated with brand analysis. They can also use the online reporting software to understand the different key performance indicators.

All the research models are customized to the prerequisites shared by the global clients.

The collected data includes market dynamics, technology landscape, application development and pricing trends. All of this is fed to the research model which then churns out the relevant data for market study.

Our market research experts offer both short-term (econometric models) and long-term analysis (technology market model) of the market in the same report. This way, the clients can achieve all their goals along with jumping on the emerging opportunities. Technological advancements, new product launches and money flow of the market is compared in different cases to showcase their impacts over the forecasted period.

Analysts use correlation, regression and time series analysis to deliver reliable business insights. Our experienced team of professionals diffuse the technology landscape, regulatory frameworks, economic outlook and business principles to share the details of external factors on the market under investigation.

Different demographics are analyzed individually to give appropriate details about the market. After this, all the region-wise data is joined together to serve the clients with glo-cal perspective. We ensure that all the data is accurate and all the actionable recommendations can be achieved in record time. We work with our clients in every step of the work, from exploring the market to implementing business plans. We largely focus on the following parameters for forecasting about the market under lens:

  • Market drivers and restraints, along with their current and expected impact
  • Raw material scenario and supply v/s price trends
  • Regulatory scenario and expected developments
  • Current capacity and expected capacity additions up to 2027

We assign different weights to the above parameters. This way, we are empowered to quantify their impact on the market’s momentum. Further, it helps us in delivering the evidence related to market growth rates.

Primary validation

The last step of the report making revolves around forecasting of the market. Exhaustive interviews of the industry experts and decision makers of the esteemed organizations are taken to validate the findings of our experts.

The assumptions that are made to obtain the statistics and data elements are cross-checked by interviewing managers over F2F discussions as well as over phone calls.

primary validation

Different members of the market’s value chain such as suppliers, distributors, vendors and end consumers are also approached to deliver an unbiased market picture. All the interviews are conducted across the globe. There is no language barrier due to our experienced and multi-lingual team of professionals. Interviews have the capability to offer critical insights about the market. Current business scenarios and future market expectations escalate the quality of our five-star rated market research reports. Our highly trained team use the primary research with Key Industry Participants (KIPs) for validating the market forecasts:

  • Established market players
  • Raw data suppliers
  • Network participants such as distributors
  • End consumers

The aims of doing primary research are:

  • Verifying the collected data in terms of accuracy and reliability.
  • To understand the ongoing market trends and to foresee the future market growth patterns.

Industry Analysis Matrix

Qualitative analysisQuantitative analysis
  • Global industry landscape and trends
  • Market momentum and key issues
  • Technology landscape
  • Market’s emerging opportunities
  • Porter’s analysis and PESTEL analysis
  • Competitive landscape and component benchmarking
  • Policy and regulatory scenario
  • Market revenue estimates and forecast up to 2027
  • Market revenue estimates and forecasts up to 2027, by technology
  • Market revenue estimates and forecasts up to 2027, by application
  • Market revenue estimates and forecasts up to 2027, by type
  • Market revenue estimates and forecasts up to 2027, by component
  • Regional market revenue forecasts, by technology
  • Regional market revenue forecasts, by application
  • Regional market revenue forecasts, by type
  • Regional market revenue forecasts, by component

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