logo

Search

Active Power Filter Market

Active Power Filter Market Size, Share & Analysis Report By Type (Shunt Active Power Filters, Series Active Power Filter, Hybrid Active Power Filter), By Application (Harmonics Mitigation, Reactive Power Compensation, Voltage Regulation, Power Factor Correction), By Phase (Single Phase, Three Phase), By End-User Industry (Manufacturing, Healthcare, Commercial, Automotive, Oil and Gas, Others), and Geography (North America, Europe, Asia-Pacific, Middle East and Africa, South and Central America), 2021 - 2031

Report ID : 3087 | Publisher ID : Transpire | Published : 2024-12-30 | Pages : 269

Licence Type
$ 3500
$ 5250
$ 7000

Why Choose Us

  • Customized tailored solution
  • Expert Driven Insights
  • 24×7 analyst support
  • Uncompromising Quality

Global Active Power Filter market is estimated to reach $2450.7 Million by 2031; growing at a CAGR of 7.1% from 2024 to 2031.

The Global Active Power Filter market is a crucial component of the power electronics industry, focusing on enhancing the quality of power in various electric networks. Active filters play a vital role in mitigating spikes, reactive power, and other interferences that commonly affect electric systems. The growing demand for these solutions underscores the importance of power quality in ensuring operational efficiency across industries worldwide. As businesses increasingly rely on sensitive electronic equipment, the need for active power filters capable of delivering clean and stable energy will continue to rise, emphasizing the significance of this market.

Active power filters are dynamic systems that target distortions and harmonics in electrical currents, providing real-time solutions to power quality issues. Unlike passive filters, active power filters actively track electrical currents and inject counteractive signals to neutralize distortions instantly. This proactive approach makes them particularly valuable in environments where high-quality power supply is critical, such as manufacturing facilities, data centers, hospitals, and renewable energy sectors. The expansion of the Global Active Power Filter market is expected as industries seek ways to enhance power quality, especially in emerging industrialized regions and urban areas experiencing infrastructure growth and increasing demand for reliable power solutions. The integration of digital technology and artificial intelligence into active power filters will further revolutionize their capabilities, enabling predictive maintenance, real-time monitoring, and adaptability to complex grid conditions. As the emphasis on clean energy grows globally, active power filters will become indispensable in ensuring efficient and stable power systems across various sectors, highlighting their essential role in the evolving landscape of power management.

GROWTH FACTORS 

The Global Active Power Filter market is poised for significant growth in the coming years due to the increasing demand for improved power quality and efficiency across various industries worldwide. Active power filters play a crucial role in maintaining stability in power distribution systems by reducing harmonic effects, enhancing voltage regulations, and improving the reliability of power systems. With the rise in industrial units, particularly in emerging economies, there is a growing focus on reducing energy wastage and enhancing operational efficiency, driving the demand for active power filters.

Moreover, the shift towards renewable energy sources such as solar and wind power is further fueling the growth of the Global Active Power Filter market. While renewable energy sources are essential for a sustainable future, they can sometimes cause voltage fluctuations and instabilities in the grid, which can be effectively mitigated by active power filters. Continuous technological innovations in materials, design, and digital control systems are making active power filters more effective and accessible, leading to their increased adoption across various sectors like telecommunications, healthcare, and data centers. Despite challenges such as high initial investment costs and lack of awareness, the market for active power filters is expected to expand as countries invest in smart grid infrastructure and energy-efficient technologies to meet the growing demand for stable and reliable power.

MARKET SEGMENTATION 

By Type  

The Global Active Power Filter market is poised for growth in the coming years, driven by the increasing focus on innovation and the growing demand for reliable power quality solutions. Active power filters play a crucial role in enhancing energy efficiency, reducing electrical disturbances, and ensuring a smooth power supply in various industrial, commercial, and residential applications. The market is segmented into Shunt Active Power Filters, Series Active Power Filters, and Hybrid Active Power Filters, with the Shunt Active Power Filters segment holding the highest market share in 2023, valued at approximately 688.4 million USD. These filters are in high demand for their ability to reduce harmonic distortions and improve power quality in both high and low-voltage systems, making them essential for energy-intensive industries. The Series Active Power Filters segment, valued at around 242.8 million USD in 2023, also shows significant market potential, especially in industries where power disturbances can lead to equipment failure. Hybrid filters, combining features of both active shunt and active series power filters, are emerging as a solution to the complex challenges of power quality management in high-load environments. The future growth of the Global Active Power Filter market is expected to be driven by trends such as smart grid development, increasing integration of renewable energy sources, and the ongoing deployment of electric vehicle infrastructure. As industries continue to prioritize stable power systems and energy efficiency, the demand for active power filters is set to rise, positioning the market for substantial growth in the years to come.

By Application  

In the context of active type, the market for power filters has demonstrated exciting growth potential particularly due to its essential role in the enhancement of both quality and efficiency of power in all applications. Further elaboration is given to the submarket area based on application, where the power filter is used for harmonic mitigation, compensation of reactive power, regulation of voltage, and power factor correction. All these areas of application convey specific needs in the sector of electrical and power systems making active filters relevant not only in the current but also power management landscapes in the future. The most important application in this market is the minimization of harmonic distortion, crucial for smoother operations and minimal energy losses. Reactive power compensation is another significant segment, growing with the increased need for stabilizing power flow in electrical systems. Voltage regulation and power factor correction are also key aspects witnessing growing demand as industries invest in efficiency and reliability. With the global active power filter market catering to the rising need for power quality solutions, it is poised to boom and become an integral part of electrical systems worldwide, meeting both present and future demands sustainably.

By Phase 

The global market for active power filters is poised for strong growth in the foreseeable future, driven by the increasing demand for effective power management systems and energy conservation initiatives worldwide. These filters play a crucial role in reducing harmonic disturbances that can disrupt electrical equipment, ensuring the quality and stability of power distribution in industries and commercial establishments. The market is divided into single-phase and three-phase filters, with single-phase filters commonly used in smaller applications and three-phase filters designed for industrial and larger commercial facilities with higher power demands. As industries strive for energy efficiency and sustainability, the demand for active power filters is expected to rise, leading to advancements in filter technology and improved power management systems. With the ongoing developments in technology and the rising focus on energy conservation, active power filters are set to become a key component of modern power infrastructure, supporting global efforts towards efficient and reliable power management systems.

By End-User  

The Global Active Power Filter Market is poised for growth as industries focus on enhancing power quality and energy efficiency. Originally viewed as a secondary market, active power filters have now become essential in minimizing power disturbances and improving the reliability of electrical systems. These filters play a crucial role in reducing harmonic distortions and preventing equipment malfunctions, ultimately saving costly energy. With the integration of more complex technologies, the demand for active power filters is expected to rise, particularly in sectors like healthcare. The healthcare industry, with a revenue value of approximately 116.2 million USD in 2023, requires stable power to ensure uninterrupted patient care with the increasing use of advanced equipment. Other industries such as manufacturing, automotive, oil and gas, and commercial sectors are also adopting active power filters to enhance stability, prevent downtime, and improve productivity. As energy efficiency gains prominence, active power filters will continue to be in demand across various sectors, driving the growth of the global market.

REGIONAL ANALYSIS 

The growing demand for efficient power solutions globally is expected to drive significant growth in the Global Active Power Filter market. As the world industrializes and urbanizes rapidly, particularly in developing regions, the focus on reliable energy systems becomes increasingly critical. The market is segmented by geography into North America, Europe, Asia-Pacific, South America, and the Middle East & Africa, each with unique characteristics and demands that outline opportunities and challenges within the industry.

In North America, countries like the US, Canada, and Mexico are investing in advanced power filtration systems to meet the growing demand for active power filters in commercial and industrial applications. The region is technologically advanced and constantly innovating, leading the way in sustainable energy management. In Europe, countries such as the UK, Germany, and France are focused on reducing carbon emissions and improving energy efficiency, driving the demand for active power filters to comply with stricter regulatory frameworks. Asia-Pacific presents a significant opportunity for the market, with countries like China and India investing heavily in infrastructure and power management systems to meet the growing demand for power. South America and the Middle East & Africa also offer growth opportunities as they address power quality issues through the adoption of active power filters.

KEY INDUSTRY PLAYERS

The Global Active Power Filter (APF) market is gaining importance as industries and businesses seek sustainable solutions to address power quality challenges. Active Power Filters play a crucial role in reducing electrical disturbances such as harmonics and voltage fluctuations, leading to improved efficiency in power systems. The need to minimize energy wastage, enhance electrical efficiency, and support environmental initiatives is accelerating industrialization, driving the demand for APF solutions. Large industrial ventures are increasingly recognizing the significance of APF solutions as even minor electrical disturbances can result in significant productivity losses and equipment damage. As enterprises worldwide strive to reduce their carbon footprint, the APF market is poised for substantial growth.

Technological advancements and a growing emphasis on energy efficiency are expected to propel rapid growth in the Global Active Power Filter market in the coming years. Leading companies like Schneider Electric SE, TDK Electronics AG, InPhase Power Technologies Private Limited, and Enerdoor are continuously innovating to meet the evolving needs of modern industries. These companies are focused on optimizing the reliability, durability, and adaptability of APF product lines to cater to the increasing demands in sectors such as manufacturing, healthcare, data centers, and digital environments. The demand for high-performance electrical components in digitized industries will drive the future infrastructure of the APF market, creating a competitive landscape with new entrants and established brands investing in research and development to stay ahead. The market dynamics are further shaped by the global shift towards green energy and stricter regulatory standards, making APF solutions an essential tool for various sectors looking to comply with regulations and enhance their energy profiles. As companies and governments continue to invest in upgrading infrastructure, the adoption of Active Power Filters is expected to increase, positioning them as a critical component of future energy strategies and sustainable industrial development.

REPORT SCOPE AND SEGMENTATION

Attributes

Details

Market Size By 2031

USD 2,450.7 Million

Growth Rate

CAGR of 7.1%

Forecast period

2024 - 2031

Report Pages

250+

By Type

  • Shunt Active Power Filters
  • Series Active Power Filter
  • Hybrid Active Power Filter

By Application

  • Harmonics Mitigation
  • Reactive Power Compensation
  • Voltage Regulation
  • Power Factor Correction

By Phase 

  • Single Phase
  • Three Phase

By End User Industry 

  • Manufacturing
  • Healthcare
  • Commercial
  • Automotive
  • Oil and Gas
  • Others

By Region

  • North America (U.S., Canada, Mexico)
  • Europe (UK, Germany, France, Switzerland, Belgium, Rest of Europe)
  • Asia-Pacific (China, Japan, India, South Korea, Rest of Asia-Pacific)
  • Latin America (Brazil, Argentina, Chile, Rest of Latin America)
  • Middle East and Africa (UAE, Saudi Arabia, South Africa, Rest of Middle East And Africa)

Key Market Players

  • Schneider Electric SE
  • TDK Electronics AG
  • InPhase Power Technologies Private Limited
  • Enerdoor
  • Eaton Corporation
  • Fuji Electric Co., Ltd.
  • Danfoss
  • DELTA Electronics
  • GE Grid Solutions, LLC
  • Toshiba International Corporation
  • Comsys AB
  • Schaffner Holding AG
  • SineTamer Power Private Limited
  • Sinexcel Electric Co., Ltd.
  • Powerside

 

  1. Executive’s Summary

1.1. The Top Performing Segments

1.2. Key Trends Summarized

1.3. Pricing Outlook

1.4. Strategic Insights

1.5. Who are the Key Players in the Market?

SECTION I: QUALITATIVE ANALYSIS

  1. Market Introduction and Scope

2.1. Definition

2.2. Report Segmentation & Scope

2.3. Regional & Country Level Coverage

2.4. Why you need this report?

  1. Research Methodology

3.1. Research Process

3.2. Primary and Secondary Research

3.2.1. Primary Research

3.2.2. Secondary Research

3.3. Market Size estimation

3.3.1. Sample Size (Demand-Supply, Company Product type, Designations, Region)

3.3.2. Sources

3.4. Assumptions & Exclusions

  1. Market Dynamics

4.1. Introduction

4.2. Drivers

4.2.1. Driver 1

4.2.2. Driver 2

4.3. Restraint

4.3.1. Restraint 1

4.3.2. Restraint 2

4.4. Opportunities

4.4.1. Opportunities 1

4.4.2. Opportunities 2

4.5. Challenges

4.5.1. Challenges 1

4.6. Market & Technological Trends

4.6.1. Trend 1

4.6.2. Trend 2

4.6.3. Trend 3

4.6.4. Trend 4

4.7. COVID 19 Impact

4.7.1. Impact on overall industry

4.7.2. Economic Impact

4.7.3. Impact on the supply chain

4.7.4. Price Variation of Key Raw Material

4.7.5. Production Concerns

4.7.6. Cash Flow Constraints

4.7.7. Impact on Import/Export

4.7.8. Impact on Market Demand

4.7.9. Impact due to restriction/lockdown

4.7.10. Consumer Sentiments

  1. Market Factor Analysis

5.1. Supply/Value Chain Analysis

5.2. Porter’s Five Forces Model

5.2.1. Bargaining Power of Suppliers

5.2.2. Bargaining Power of Buyers

5.2.3. Threat of New Entrants

5.2.4. Threat of Substitutes

5.2.5. Intensity of Rivalry

5.3. Regulatory Outlook

5.4. Patent Trends Analysis

5.5. Market PESTEL Analysis

5.6. Market SWOT Analysis

5.7. Current & Future Technological Innovations

 

SECTION II: QUANTITATIVE ANALYSIS

  1. Global Active Power Filter Market Analysis

6.1 Global Market Overview

6.2 Global Active Power Filter Market Estimates & Forecast Value (USD Million) & Volume (Units)

  1. Global Active Power Filter Market, By Type (USD Million), Market Estimates & Forecast Value (USD Million) & Volume (Units)

7.1. Introduction

7.2. Shunt Active Power Filters

7.2.1. Global Active Power Filter Size: Market Estimates & Forecast, By Shunt Active Power Filters, 2021-2031

7.3. Series Active Power Filter

7.3.1. Global Active Power Filter Market Size: Market Estimates & Forecast, By Series Active Power Filter, 2021-2031

7.4. Hybrid Active Power Filter

7.4.1. Global Active Power Filter Market Size: Market Estimates & Forecast, By Hybrid Active Power Filter, 2021-2031

  1. Global Active Power Filter, By Application (USD Million), Market Estimates & Forecast Value (USD Million) & Volume (Units)

8.1. Introduction

8.2. Harmonics Mitigation

8.2.1. Global Active Power Filter Market Size: Market Estimates & Forecast, By Harmonics Mitigation, 2021-2031

8.3. Reactive Power Compensation

8.3.1. Global Active Power Filter Size: Market Estimates & Forecast, By Reactive Power Compensation, 2021-2031

8.4. Voltage Regulation

8.4.1. Global Active Power Filter Size: Market Estimates & Forecast, By Voltage Regulation, 2021-2031

  1. Global Active Power Filter, By Phase (USD Million), Market Estimates & Forecast Value (USD Million) & Volume (Units)

9.1. Introduction

9.2. Single Phase

9.2.1. Global Active Power Filter Market Size: Market Estimates & Forecast, By Single Phase, 2021-2031

9.3. Three Phase

9.3.1. Global Active Power Filter Market Size: Market Estimates & Forecast, By Three Phase, 2021-2031

  1. Global Active Power Filter, By End-User Industry (USD Million), Market Estimates & Forecast Value (USD Million) & Volume (Units)

10.1. Introduction

10.2. Manufacturing

10.2.1. Global Active Power Filter Market Size: Market Estimates & Forecast, By Manufacturing, 2021-2031

10.3. Healthcare

10.3.1. Global Active Power Filter Market Size: Market Estimates & Forecast, By Healthcare, 2021-2031

10.4. Commercial

10.4.1. Global Active Power Filter Market Size: Market Estimates & Forecast, By Commercial, 2021-2031

  1. Global Active Power Filter Market, By Region (USD Million) & Volume (Units)

11.1. Introduction

11.2. North America

11.2.1. Market Estimates & Forecast, By Country, 2021-2031

11.2.2. Market Estimates & Forecast, By Type, 2021-2031

11.2.3. Market Estimates & Forecast, By Application, 2021-2031

11.2.4. Market Estimates & Forecast, By Phase, 2021-2031

11.2.5. Market Estimates & Forecast, By End-User Industry, 2021-2031

11.2.9 US

11.2.9.1. Market Estimates & Forecast, By Type, 2021-2031

11.2. 9.2. Market Estimates & Forecast, By Application, 2021-2031

11.2. 9.3. Market Estimates & Forecast, By Phase, 2021-2031

11.2. 9.4. Market Estimates & Forecast, By End-User Industry, 2021-2031

11.2.10. Canada

11.2.11. Mexico

11.3. Europe

11.3.1. UK

11.3.2. Germany

11.3.3. France

11.3.4. Italy

11.3.5. Spain

11.3.6. Austria

11.3.7. Belgium

11.3.8. Poland

11.3.9. Romania

11.3.10. Turkey

11.3.11. Rest of Europe

11.4. Asia-Pacific

11.4.1. China

11.4.2. Japan

11.4.3. India

11.4.4. Australia

11.4.5. South Korea

11.4.6. Indonesia

11.4.7. Rest of Asia-Pacific

11.5. Middle East & Africa

11.6. South & Central America

11.6.1. Brazil

11.6.2 Argentina

11.6.2. Rest of South & Central America

  1. Global Active Power Filter Market Competition, by Players

12.1 Global Active Power Filter Market Revenue and Share by Players (2021-2024)

12.2 Market Concentration Rate

12.2.1 Top 3 Active Power Filter Players Market Share

12.2.2 Top 5 Active Power Filter Players Market Share

  1. Company Profiles

13.1. Schneider Electric SE

13.1.1. Company Overview

13.1.2. Main Business / Business Overview

13.1.3. Product Category

13.1.4. Financial Overview

13.1.5. SWOT Analysis

13.1.6. Key Developments

13.2. InPhase Power Technologies Private Limited

13.3. Eaton Corporation

13.4. Danfoss

13.5. GE Grid Solutions, LLC

13.6. Comsys AB

13.7. SineTamer Power Private Limited

13.8. Powerside

13.9. TDK Electronics AG

13.10. Enerdoor

13.11. Fuji Electric Co., Ltd.

13.12. DELTA Electronics

13.13. Toshiba International Corporation

13.14. Schaffner Holding AG

13.15. Sinexcel Electric Co., Ltd.

 

  • Schneider Electric SE
  • TDK Electronics AG
  • InPhase Power Technologies Private Limited
  • Enerdoor
  • Eaton Corporation
  • Fuji Electric Co., Ltd.
  • Danfoss
  • DELTA Electronics
  • GE Grid Solutions, LLC
  • Toshiba International Corporation
  • Comsys AB
  • Schaffner Holding AG
  • SineTamer Power Private Limited
  • Sinexcel Electric Co., Ltd.
  • Powerside

n/a

Frequently Asked Questions

Global Active Power Filter market is valued at $1760.6 million in 2024.

Top players operating in the Active Power Filter industry includes Schneider Electric SE, TDK Electronics AG, InPhase Power Technologies Private Limit

Global Active Power Filter market is estimated to reach $2450.7 million by 2031.

Global Active Power Filter market is estimated to grow with a CAGR of 7.1% from 2024 to 2031.