세계의 역률 개선 회로 시장 : 무효 전력별, 유형별, 판매 채널별, 용도별, 지역별 예측(-2030년)
Power Factor Correction Market by Reactive Power (0-200 KVAR, 200-500 KVAR, 500 - 1500 KVAR, Above 1500 KVAR), Type (Fixed, Automatic), Sales Channel (Distributors, OEM Direct), Application, & Region - Global Forecast to 2030
상품코드:1555088
리서치사:MarketsandMarkets
발행일:2024년 09월
페이지 정보:영문 239 Pages
라이선스 & 가격 (부가세 별도)
ㅁ Add-on 가능: 고객의 요청에 따라 일정한 범위 내에서 Customization이 가능합니다. 자세한 사항은 문의해 주시기 바랍니다.
한글목차
역률 개선 회로 시장 규모는 2024년 24억 달러에서 2030년 33억 달러로 성장할 것으로 예측되며, 예측 기간 중 CAGR은 5.5%가 될 것으로 보입니다.
역률 개선 회로 시장을 견인하는 두 가지 중요한 요소는 에너지 효율 향상과 저비용 전력 관리입니다. 첫째, 세계 산업과 정부가 전력 시스템의 효율을 개선하는 것 외에도 에너지 낭비를 줄이는 데 관심을 갖고있는 동안 PFC 기술은 전력 사용을 최적화하는 데 필수적인 도구가되었습니다. 둘째, 에너지 비용이 늘어나면서 기업은 이 비용을 줄이는 방법을 모색하고 있습니다. PFC 시스템은 전력 손실을 최소화함으로써 이를 달성하는 데 도움이 되며, 역률 불량과 관련된 처벌의 위험도 줄일 수 있습니다.
조사 범위
조사 대상년도
2021-2030년
기준년
2023년
예측 기간
2024-2030년
대상 단위
금액(달러), 수량(대)
부문
무효전력별, 유형별, 판매채널별, 용도별, 지역별
대상 지역
아시아태평양, 북미, 유럽, 중동, 아프리카, 남미
역률 개선 회로 시장에서 OEM 직접 부문은 2위 점유율을 차지합니다. 이는 상대방 상표 제품 제조업체와 직접적인 접촉이나 관계가 많기 때문입니다. 이 부문은 기계 설비의 제조 단계에 직접 통합되는 에너지 효율적인 솔루션에 대한 수요 증가로 이익을 얻고 있습니다. 직접 채널은 특정 기술 요구 사항을 충족하고 다양한 산업 분야에서 효과적인 전력 관리 및 에너지 절약을 제공하는 맞춤형 고품질 구성 요소를 제공하기 때문에 OEM에 선호됩니다.
200-500KVAR 부문은 무효 전력과 관련하여 역률 개선 회로 시장에서 가장 급성장하는 부문으로 부상할 전망입니다. 이 분야의 가치는 전력 품질 향상과 전력 운영 비용 절감을 보장하는 방식으로 총 전력 부하를 포함한 설비의 높은 무효 전력 요구 사항에 대한 효과적인 솔루션입니다. 게다가 이 KVAR 범위에서 회수 가능한 역률 개선 솔루션은 산업계에서 에너지 효율과 규제 준수의 우선순위가 높아짐에 따라 수요가 급증하고 있습니다.
운영 비용이 증가하고 새로운 에너지 규제와 정책이 등장함에 따라 기업은 전력 품질과 에너지 낭비를 줄이기 시작했습니다. 상용 역률 개선 솔루션은 효율적인 방식으로 전력 부하를 관리하고 장비 수명을 연장하고 역률 불량으로 인한 전력 회사의 벌금을 피하기 위해 적용됩니다.
이것은 에너지 효율을 촉진하는 강력한 규제 프레임 워크와 첨단 기술의 급속한 도입으로 인한 것입니다. 이 지역의 산업 부문은 에너지 비용 상승과 엄격한 환경 규제에 의해 활성화되고 있습니다. 신재생에너지의 통합과 스마트 그리드의 개발에 대한 주목이 높아짐에 따라, 효율적인 전력 관리 수요를 한층 더 추진해, 유럽은 세계 시장에서 주요 주주의 하나가 되고 있습니다.
본 보고서에서는 세계의 역률 개선 회로 시장에 대해 조사했으며, 무효 전력별, 유형별, 판매 채널별, 용도별, 지역별 동향 및 시장 진출기업 프로파일 등을 정리했습니다.
목차
제1장 서론
제2장 조사 방법
제3장 주요 요약
제4장 중요 인사이트
제5장 시장 개요
소개
시장 역학
고객사업에 영향을 주는 동향/혼란
밸류체인 분석
생태계 분석
투자와 자금조달 시나리오
AI/생성형 AI가 역률 개선 회로 시장에 미치는 영향
세계 거시경제 전망
기술 분석
특허 분석
무역 분석
2024-2025년의 주된 회의와 이벤트
가격 분석
관세 및 규제 상황
Porter's Five Forces 분석
주요 이해관계자와 구매 기준
사례 연구 분석
제6장 역률 개선 회로 시장, 무효 전력별
소개
0-200KVAR
200-500KVAR
500-1,500KVAR
1,500 KVAR 이상
제7장 역률 개선 회로 시장, 유형별
소개
자동형
고정형
제8장 역률 개선 회로 시장, 판매 채널별
소개
리셀러
OEM 직접
제9장 역률 개선 회로 시장, 용도별
소개
공업
재생 가능
상업
데이터센터
EV충전
제10장 역률 개선 회로 시장, 지역별
소개
북미
아시아태평양
유럽
중동 및 아프리카
남미
제11장 경쟁 구도
개요
주요 참가 기업의 전략/비책(2020-2024년)
시장 점유율 분석, 2023년
수익 분석(2019-2023년)
브랜드/제품 비교
기업평가와 재무지표, 2024년
기업평가 매트릭스: 주요 진입기업, 2023년
기업평가 매트릭스: 스타트업/중소기업, 2023년
경쟁 시나리오
제12장 기업 프로파일
주요 진출기업
SCHNEIDER ELECTRIC
EATON
GE VERNOVA
ABB
HITACHI ENERGY LTD.
GENTEC
TCI, LLC
POWERSIDE
COS PHI
CONTROLLIX CORPORATION
CIRCUTOR
NEPTUNE INDIA LIMITED
ENERLUX POWER SRL
LIFASA
DUCATI ENERGIA SPA
ORTEA SPA
RTR ENERGIA SRL
POWERCAP CAPACITORS PVT. LTD.
ZEZ SILKO, SRO
TREFFER
기타 기업
SHARDA ELECTRONICS & CO.
YUHCHANG ELECTRIC CO., LTD.
WHATOOP
POWER FACTOR CORRECTION GROUP
CJ ENERGETICS
제13장 부록
JHS
영문 목차
영문목차
The power factor correction market is estimated to grow from USD 3.3 billion by 2030 from an estimated USD 2.4 billion in 2024, at a CAGR of 5.5% during the forecast period. Two important factors that drive the Power Factor Correction market are increasing energy efficiency and low-cost power management. First, while industries and governments across the world are concerned about reducing energy wastage in addition to improving the efficiency of power systems, PFC technologies turn out to be essential tools in optimizing power usage. Secondly, while energy costs are ever increasing, companies look for ways through which this bill can be reduced. A PFC system helps in attaining this by minimizing losses in power and also reduces the risks of penalties associated with poor power factor; hence, it is a good investment across many sectors.
Scope of the Report
Years Considered for the Study
2021-2030
Base Year
2023
Forecast Period
2024-2030
Units Considered
Value (USD), Volume (Units)
Segments
Reactive power, Sales channel, Type, Application
Regions covered
Asia Pacific, North America, Europe, Middle East & Africa, and South America
"OEM Direct segment is the second largest segment of the power factor correction market, by sales channel"
The OEM Direct segment accounts for the second-largest base in the power factor correction market. This is due to a high degree of direct contacts and relationships with original equipment manufacturers. The segment has benefited from increasing demand for energy-efficient solutions that are directly built into the manufacturing stage of making machinery and equipment. The direct channels are preferred by the OEMs as the choice is important because of the offering of custom-made and high-quality components that meet specific technical requirements and ensure effective power management and energy savings in various industrial applications. It has proved to be a major factor for the significant increase in sales for this segment.
"200-500 KVAR is expected to emerge as the fastest-growing segment based on reactive power segment"
The 200-500 KVAR segment is expected to be the fastest-growing segment of the power factor correction market with respect to reactive power, as this segment offers the best balance between cost and efficiency for use in medium to large-scale industrial and commercial applications. The value of this range lies in its effective solution to the high reactive power requirements of facilities with gross electrical loads in a manner that assures improved power quality, together with reduced power operational costs. Moreover, power factor correction solutions retrievable in this KVAR range are in fast-growing demand due to an increased priority for energy efficiency and regulatory compliance in industries.
"Commercial is expected to be the second largest segment based on application"
The commercial segment is expected to rank second in application in the power factor correction market due to rising needs for energy efficiency in commercial buildings and facilities. With an increasing phenomenon of the operational cost increase and new energy regulations and policies coming into the scene, businesses have started looking towards power quality and reduction of energy waste. Commercial power factor correction solutions are applied to manage the electric power load in an efficient way, to increase the lifetime of equipment, and to avoid penalties by utility companies for poor power factor. This explains the reason this segment shows considerable growth and importance in the market.
"Europe is expected to emerge as the third largest region based on power factor correction market"
Europe will emerge as the third-largest market for the global power factor correction market in the forecast period. This can be attributed to the strong regulatory framework promoting energy efficiency and the rapid adoption of advanced technologies. The industrial sector in the region has been fueled by increasing energy costs and stringent environmental regulations. Growing attention toward the integration of renewable energy and development of smart grids further supports efficient power management demand, placing Europe as one of the major shareholders in the global market.
Breakdown of Primaries:
In-depth interviews have been conducted with various key industry participants, subject-matter experts, C-level executives of key market players, and industry consultants, among other experts, to obtain and verify critical qualitative and quantitative information, as well as to assess future market prospects. The distribution of primary interviews is as follows:
By Company Type: Tier 1- 45%, Tier 2- 30%, and Tier 3- 25%
By Designation: C-Level- 35%, Director Levels- 25%, and Others- 40%
By Region: North America- 10%, Europe- 15%, Asia Pacific- 60%, the Middle East & Africa- 10%, and South America- 5%
Note: Others include product engineers, product specialists, and engineering leads.
Note: The tiers of the companies are defined on the basis of their total revenues as of 2023. Tier 1: > USD 1 billion, Tier 2: From USD 500 million to USD 1 billion, and Tier 3: < USD 500 million
The power factor correction market is dominated by a few major players that have a wide regional presence. The leading players in the power factor correction market are Eaton (Ireland), ABB (Switzerland), GE Vernova (US), Schneider Electric (France), and Hitachi Energy Ltd (Switzerland)
Research Coverage:
The report defines, describes, and forecasts the power factor correction market, by reactive power, application, sales channel, type, and region. It also offers a detailed qualitative and quantitative analysis of the market. The report provides a comprehensive review of the major market drivers, restraints, opportunities, and challenges. It also covers various important aspects of the market. These include an analysis of the competitive landscape, market dynamics, market estimates, in terms of value, and future trends in the smart grid market.
Key Benefits of Buying the Report
Increasing investments in energy sector and rising number of renewable energy integration and energy effeciency attributed.
Product Development/ Innovation: The trends such as integration of Internet of Things (IoT) technology with Power Factor Correction (PFC) systems and integration of solid-state switching devices in Power factor correction systems.
Market Development: The global scenario of power factor correction has developed due to a global shift towards energy efficiency solutions, increased adoption of renewable sources like solar and wind power, technological advancements enhancing efficiency, and the growing demand for electric vehicles. These factors collectively propel innovation, creating a dynamic landscape for power factor correction to meet evolving energy demands.
Market Diversification: Market diversification in the power factor correction market is a response to varied energy needs across industries and regions. As power factor correction adoption expands, diverse applications emerge, from various industries to renewable projects. Power factor correction manufacturers diversify their product offerings to cater to the specific requirements of different sectors, fostering market growth and resilience.
Competitive Assessment: In-depth assessment of market shares, growth strategies, and service offerings of leading players like Schnieder Electric (France), Eaton (Ireland), GE Vernova (US), ABB (Switzerland), Hitachi Energy (Switzerland), among others in the power factor correction market.
TABLE OF CONTENTS
1 INTRODUCTION
1.1 STUDY OBJECTIVES
1.2 MARKET DEFINITION
1.3 STUDY SCOPE
1.3.1 MARKET SEGMENTATION AND REGIONAL SCOPE
1.3.2 INCLUSIONS AND EXCLUSIONS
1.3.3 YEARS CONSIDERED
1.4 LIMITATIONS
1.5 UNITS CONSIDERED
1.6 CURRENCY CONSIDERED
1.7 STAKEHOLDERS
2 RESEARCH METHODOLOGY
2.1 RESEARCH DATA
2.1.1 PRIMARY AND SECONDARY RESEARCH
2.2 DATA TRIANGULATION
2.2.1 SECONDARY DATA
2.2.1.1 Key data from secondary sources
2.2.1.2 Key secondary sources
2.2.2 PRIMARY DATA
2.2.2.1 Major primary interview participants
2.2.2.2 Key data from primary sources
2.2.2.3 Key industry insights
2.2.2.4 Breakdown of primaries
2.3 MARKET SIZE ESTIMATION
2.3.1 BOTTOM-UP APPROACH
2.3.2 TOP-DOWN APPROACH
2.3.3 DEMAND-SIDE ANALYSIS
2.3.3.1 Demand-side assumptions
2.3.3.2 Demand-side calculations
2.3.4 SUPPLY-SIDE ANALYSIS
2.3.4.1 Supply-side assumptions
2.3.4.2 Supply-side calculations
2.3.5 GROWTH FORECAST
2.4 RESEARCH ASSUMPTIONS
2.5 RESEARCH LIMITATIONS
2.6 RISK ANALYSIS
3 EXECUTIVE SUMMARY
4 PREMIUM INSIGHTS
4.1 ATTRACTIVE OPPORTUNITIES FOR PLAYERS IN POWER FACTOR CORRECTION MARKET
4.2 POWER FACTOR CORRECTION MARKET, BY REGION
4.3 POWER FACTOR CORRECTION MARKET IN NORTH AMERICA, BY SALES CHANNEL AND TYPE
4.4 POWER FACTOR CORRECTION MARKET, BY SALES CHANNEL
4.5 POWER FACTOR CORRECTION MARKET, BY TYPE
4.6 POWER FACTOR CORRECTION MARKET, BY REACTIVE POWER
4.7 POWER FACTOR CORRECTION MARKET, BY APPLICATION
5 MARKET OVERVIEW
5.1 INTRODUCTION
5.2 MARKET DYNAMICS
5.2.1 DRIVERS
5.2.1.1 Increasing investments in clear energy projects
5.2.1.2 Rising deployment of low-voltage PFC systems in industrial facilities
5.2.2 RESTRAINTS
5.2.2.1 High initial installation cost of PFC systems
5.2.3 OPPORTUNITIES
5.2.3.1 Introduction of incentive schemes by governments for adopting energy-saving technologies