市場調查報告書
商品編碼
1577186
到 2030 年大型變頻驅動 (VFD) 市場預測:按類型、額定功率、電壓、應用、最終用戶和地區進行的全球分析Large Scale Variable Frequency Drives Market Forecasts to 2030 - Global Analysis By Type, Power Rating (Low Power Drives, Medium Power Drives and High Power Drives ), Voltage, Application, End User and By Geography |
根據 Stratistics MRC 的數據,2024 年全球大型變頻驅動器 (VFD) 市場規模將達到 23 億美元,預計到 2030 年將達到 33 億美元,預測期內複合年成長率為 6.4%。
大型變頻驅動器(VFD)是一種透過調節施加到大型馬達的電壓和頻率來調節扭矩和速度的電子設備。這些驅動器主要用於工業環境,以最大限度地減少磨損,最大限度地提高馬達性能,並提高泵浦、壓縮機、輸送機和 HVAC 系統的能源效率。它們在各種行業中對於精確控制高功率馬達系統是不可或缺的。
根據國際能源總署 (IEA) 的數據,馬達驅動系統佔全球發電量的 50% 以上。
自動化趨勢
自動化趨勢的上升是大型變頻驅動(VFD)市場的關鍵促進因素。隨著越來越多的行業採用自動化流程來提高效率和生產力,對 VFD 的需求不斷增加。這些驅動器在從製造到 HVAC 系統的各種應用中控制馬達速度方面發揮關鍵作用。最近的一項研究發現,2023 年全球將安裝 553,025 台新工業機器人,這表明自動化的大力推動。這一趨勢預計將持續下去,印度等政府的目標是到 2025 年將製造業對 GDP 的貢獻從 16% 提高到 25%,並進一步推動 VFD 在自動化系統中的採用。
整合複雜度
採用 VFD 通常需要廣泛的技術專業知識,以確保與當前控制系統、馬達和基礎設施的兼容性。該過程可能涉及重新編程、調整和徹底測試,這可能會導致部署期間的停機時間延長。對於技術資源有限的小型企業和產業來說,這種複雜性尤其具有挑戰性。此外,整合過程可能需要大量的時間、金錢和人力資源培訓的初始投資。
快速工業化與都市化
新興國家正在投資基礎設施和工業發展,增加了對變頻器等節能解決方案的需求。這些驅動器對於管理大型建築、工業流程和城市基礎設施計劃的電力消耗至關重要。例如,印度政府宣布計劃在2025年將製造業對GDP的貢獻提高到25%,這可能會加速變頻器的採用。此外,快速都市化的地區越來越關注智慧城市和節能建築,為暖通空調系統、水資源管理和其他城市公共事業中的變頻器創造了新的應用,推動了市場的成長。
對諧波的敏感性
VFD 可能會在電氣系統中引入諧波失真,導致電能品質問題、設備故障和能量損失增加。這些諧波不僅會影響VFD系統本身,還會影響其他連接設備和整個電網。隨著電能品質法規變得更加嚴格,製造商面臨開發 VFD 的挑戰,以最大限度地減少諧波失真,同時保持效率和性能。對額外諧波抑制設備的需求會增加 VFD 安裝的總成本,並可能導致用戶望而卻步。
COVID-19 大流行最初擾亂了大型變頻驅動 (VFD) 市場,導致供應鏈問題和計劃延遲。然而,尋求降低營運成本的產業已加速採用自動化和節能解決方案。這次疫情凸顯了 VFD 遠端監控和控制功能的重要性,並刺激了物聯網驅動器的創新。長期影響將是更注重彈性和靈活的製造程序,從而推動 VFD 的採用。
交流變頻器市場預計將在預測期內成為最大的市場
預計交流變頻器領域將在預測期內佔據市場佔有率。交流變頻器因其多功能性、效率以及與各種馬達的兼容性而在工業應用中受到廣泛青睞。交流變頻器可顯著節省能源、實現精確的速度控制並減少設備的機械應力。交流變頻器在製造、暖通空調和水處理等領域的廣泛應用支撐了其主導地位。交流變頻器技術的不斷進步,包括增加的功率密度和增強的控制演算法,也有助於我們的市場優勢。
中功率驅動器(41kW 至 200kW)預計在預測期內具有最高的複合年成長率
在預測期內,中功率驅動器(41kW至200kW)細分市場預計將以最高複合年成長率成長。中等功率驅動器在性能和成本效率之間提供了良好的平衡,使其適合需要高功率但不需要最高功率等級的各種應用。中型工業營運中對能源效率的日益重視以及新興經濟體製造業的擴張是推動中功率變頻器需求的主要因素。此外,該領域的技術進步(例如改進的控制能力和緊湊的設計)正在增加其對最終用戶的吸引力。
預計亞太地區在預測期內將佔據最大的市場佔有率。這一優勢得益於多種因素,包括快速工業化、收緊能源效率法規以及中國、印度和東南亞國家等國家對基礎設施發展的大量投資。該地區的製造業,特別是汽車、電子和紡織業,是變頻器的主要消費者。政府推廣節能技術的努力以及日益向工業自動化的轉變也有助於該地區的市場領導地位。
預計亞太地區在預測期內將實現最高的複合年成長率。這種快速成長是由加速工業化、都市化以及各部門更加重視能源效率等因素所推動的。印度和中國等國家的製造業和基礎設施正在顯著成長,對變頻器產生了強勁的需求。該地區對智慧製造實踐和工業 4.0 計劃的關注正在推動先進 VFD 技術的採用。此外,節能意識的增強和政府對能源效率的嚴格監管正在推動該地區的市場成長。
According to Stratistics MRC, the Global Large Scale Variable Frequency Drives Market is accounted for $2.3 billion in 2024 and is expected to reach $3.3 billion by 2030, growing at a CAGR of 6.4% during the forecast period. Large scale variable frequency drives (VFDs) are electronic devices that adjust the voltage and frequency applied to large electric motors to regulate their torque and speed. These drives are mainly used in industrial settings to minimize wear, maximize motor performance, and improve energy efficiency in pumps, compressors, conveyors, and HVAC systems. As they provide precise control over high-power motor systems, they are indispensable in several industries.
According to the International Energy Agency (IEA), electric motor-driven systems account for more than 50% of all electricity generated in the world.
Growing trend towards automation
The growing trend towards automation is a significant driver for the large-scale variable frequency drives market. As industries increasingly adopt automated processes to improve efficiency and productivity, the demand for VFDs rises. These drives play a crucial role in controlling motor speeds in various applications, from manufacturing to HVAC systems. According to recent research, 553,025 new industrial robots were installed globally in 2023, indicating a strong push towards automation. This trend is expected to continue, with governments like India aiming to increase manufacturing output contribution to GDP from 16% to 25% by 2025, further driving the adoption of VFDs in automated systems.
Complexity in integration
Incorporating VFDs often requires extensive technical expertise to ensure compatibility with current control systems, motors, and infrastructure. The process may involve reprogramming, adjustments, and thorough testing, which can lead to prolonged periods of downtime during implementation. This complexity can be particularly challenging for smaller businesses or industries with limited technical resources. Additionally, the integration process may require substantial initial investments in terms of time, money, and workforce training.
Rapid industrialization and urbanization
Developing countries are investing in infrastructure and industrial development, and the demand for energy-efficient solutions like VFDs increases. These drives are essential in managing power consumption in large buildings, industrial processes, and urban infrastructure projects. For instance, the Indian government's initiative to increase manufacturing output contribution to GDP to 25% by 2025 is likely to boost VFD adoption. Additionally, the growing focus on smart cities and energy-efficient buildings in rapidly urbanizing areas creates new applications for VFDs in HVAC systems, water management, and other urban utilities, driving market growth.
Sensitivity to harmonics
VFDs can generate harmonic distortions in electrical systems, which can lead to power quality issues, equipment malfunctions, and increased energy losses. These harmonics can affect not only the VFD system itself but also other connected equipment and the overall power grid. As power quality regulations become more stringent, manufacturers face the challenge of developing VFDs that minimize harmonic distortions while maintaining efficiency and performance. The need for additional harmonic mitigation equipment can increase the overall cost of VFD installations, potentially deterring users.
The COVID-19 pandemic initially disrupted the large scale variable frequency drives market, causing supply chain issues and project delays. However, it also accelerated the adoption of automation and energy-efficient solutions in industries seeking to reduce operational costs. The pandemic highlighted the importance of remote monitoring and control capabilities in VFDs, driving innovation in IoT-enabled drives. Long-term impacts include increased focus on resilient and flexible manufacturing processes, benefiting VFD adoption.
The AC drives segment is expected to be the largest during the forecast period
Over the forecasted timeframe, the AC drives segment is anticipated to dominate the market share. AC drives are widely preferred in industrial applications due to their versatility, efficiency, and compatibility with a broad range of motors. They offer significant energy savings, precise speed control, and reduced mechanical stress on equipment. The dominance of AC drives is supported by their extensive use in sectors such as manufacturing, HVAC, and water treatment. The ongoing technological advancements in AC drive technology, including improved power density and enhanced control algorithms, further contribute to their market leadership.
The medium power drives (41kW to 200kW) segment is expected to have the highest CAGR during the forecast period
During the projection period, the medium power drives (41kW to 200kW) segment is expected to grow at the highest CAGR. Medium power drives offer a balance between performance and cost-effectiveness, making them suitable for a wide range of applications that require significant power but not at the highest levels. The growing focus on energy efficiency in mid-sized industrial operations and the expansion of manufacturing sectors in developing economies are key factors driving the demand for medium power drives. Additionally, technological advancements in this segment, such as improved control features and compact designs, are enhancing their appeal to end-users.
During the estimation period, the Asia Pacific region is expected to capture the largest market share. This dominance can be attributed to several factors, including rapid industrialization, increasing energy efficiency regulations, and significant investments in infrastructure development across countries like China, India, and Southeast Asian nations. The region's manufacturing sector, particularly in industries such as automotive, electronics, and textiles, is a major consumer of VFDs. Government initiatives promoting energy-efficient technologies and the ongoing shift towards automation in industries further contribute to the region's market leadership.
The Asia Pacific region is projected to achieve the highest CAGR during the forecast period. This rapid growth is driven by factors such as accelerating industrialization, urbanization, and the increasing focus on energy efficiency across various sectors. Countries like India and China are witnessing substantial growth in manufacturing and infrastructure development, creating a strong demand for VFDs. The region's emphasis on smart manufacturing practices and Industry 4.0 initiatives is boosting the adoption of advanced VFD technologies. Additionally, the growing awareness of energy conservation and stringent government regulations on energy efficiency are propelling market growth in this region.
Key players in the market
Some of the key players in Large Scale Variable Frequency Drives Market include ABB Ltd., Siemens AG, Schneider Electric SE, Danfoss A/S, Rockwell Automation, Inc., Yaskawa Electric Corporation, Mitsubishi Electric Corporation, Fuji Electric Co., Ltd., Eaton Corporation, General Electric Company, Toshiba International Corporation, WEG S.A., Nidec Corporation, Hitachi, Ltd., Johnson Controls International plc, Emerson Electric Co., Honeywell International Inc., and TMEIC.
In April 2024, Schneider Electric SE unveiled the Altivar Process ATV6000 medium voltage drive, designed for large industrial applications up to 10 MW. The drive incorporates AI-based predictive maintenance features.
In March 2024, ABB Ltd. launched the ACS880-17 drive module, designed for large-scale industrial applications with power ranges up to 6000 kW. The new module offers improved energy efficiency and reduced harmonics.
In November 2023, Mitsubishi Electric Corporation introduced the FREQROL-A800 Plus series, featuring advanced vector control and expanded power ranges up to 1500 kW for large industrial applications.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.