市場調查報告書
商品編碼
1258890
到 2028 年的自動功率因數控制器市場預測——按類型、組件、安裝類型、最終用戶和地區進行的全球分析Automatic Power Factor Controller Market Forecasts to 2028 - Global Analysis By Type, Component, Installation Type, End User and By Geography |
據 Stratistics MRC 預測,2022 年全球自動功率因數控制器市場規模將達到 47.8 億美元,預計 2028 年將達到 70.1 億美元,預計將以復合年增長率增長期間為 6.6%。
自動功率因數控制器是一種編程為在功率因數低於特定水平時自動增加輸出功率的設備。 電力需求正在上升。 此外,低功率因數會給電網和輸電線路帶來過大的壓力,因此越來越需要構建能夠自動改善功率因數的系統。 低功率因數會給電網和輸電線路帶來壓力,因此越來越需要建立一個自動改善功率因數的系統。 此外,工業界對電源管理設備日益增長的需求最終推動了對自動功率因數計的需求。
推動自動功率因數調節器市場增長的主要原因之一是廣泛的最終用戶行業對自動功率因數調節器的需求不斷增加。 該細分市場對電源管理設備的需求強勁,有望推動全球自動功率因數控制器市場的發展。 此外,自動功率因數控制器在商業、製造、商業、軍事和公用事業等行業的應用越來越廣泛,預計將在預測期內推動全球市場的增長。
安裝功率因數控制器會帶來某些額外風險。 當自動功率因數調節器連接到系統時,它會在其電容器和系統的網絡電感之間創建一個並聯諧振電路。 驅動器過壓跳閘和過度電壓失真只是並聯諧振放大附近的波分量可能引起的幾個重要問題。 電機、變壓器和電線的絕緣不良也是一個典型問題。 這些風險可能會限制對自動功率因數控制器的需求。
製造商加大對創新和改進的投資有望為市場提供有利可圖的機會,並進一步加快自動功率因數控制器市場的增長速度。 此外,市場進入者不斷增加的產品發布和其他發展為行業提供了多種增長機會。 此外,工業化和城市化進程加快、基礎設施建設投資增加等因素預計將在預測期內推動整體市場的擴張。
自主功率因數控制器的高維護成本是該行業發展的主要障礙。 即使你修舊的,因為成本高,在經濟上也不劃算。 製造和製造 APFC 面板的成本很高,因為它們需要大電容和電感來進行低頻濾波。 商業和工業設備價格昂貴,必須一次性購買。 高維護成本阻礙了自動功率因數控制器的全球市場。
COVID-19 的爆發對自動功率因數計市場產生了重大影響。 它還對大多數人的總體經濟狀況產生了負面影響,由於人們越來越意識到削減並非絕對必要的項目的預算,導致消費者需求下降。 在整個預測期內,上述因素預計將影響全球自動功率因數控制器市場的增長軌跡。
據估計,活躍的 PFCA 行業將實現利潤豐厚的增長。 商業、製造、軍事和公用事業等各個行業使用有源自動功率因數控制器是促進該行業增長的因素之一。 此外,有源自動功率因數控制器由二極管和晶體管等有源元件組成,使工程師能夠實□□現高達 0.99 的功率因數。 大多數行業都選擇有源自動功率因數控制器,因為它們具有高度精確的功率控制。
在預測期內,公用事業部門預計將以最快的複合年增長率增長。 減少配電系統的功率損耗、增加無功功率以及保護電子設備免受破壞是促進該行業增長的因素。 此外,電力行業正在努力提高功率因數。 此外,隨著時間的推移,工業部門的市場份額有所增加,預計這將推動對 APFC 的需求。
在預測期內,亞太地區預計將佔據最大的市場份額。 自動功率因數調節器市場的擴大主要與中國和印度的發電廠、商業建築等基礎設施建設不斷增加有關,並隨著工業化和城市化進程的加快而進一步加強。 使用自動功率因數控制器來最大限度地減少低效並保持電氣系統中的功率因數增加了對電源管理設備的需求。
預計北美在預測期內的複合年增長率最高。 這是由於該地區有大型公司。 越來越多的住宅和商業基礎設施升級以及新發電廠的建設進一步推動了市場增長。 此外,為提高能源效率而擴大工業設施預計將在預測期內加速擴張。
自動功率因數控制器市場的主要參與者包括:Emerson Electric Co.、Schneider Electric、Navitas Semiconductor Ltd.、ABB、Eaton、General Electric、Oracle、AVEVA Group plc、Fujitsu , Techno Power Systems, Robert Bosch GmbH, Texas Instruments Incorporated, SAP SE, ACPD Services Ltd, Semiconductor Components Industries, L.L.C., Inc.
2022 年 7 月,施耐德電氣的 PowerLogic PFC(前身為 VarSet)低壓因數補償解決方案通過強大的支持物聯網的通信能力增強了一流的低壓電容器組,並為 EcoStruxure Power 架構增加了一個新組件。 這些新的能力為當今的電力系統和能源管理應用提供了機會。
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According to Stratistics MRC, the Global Automatic Power Factor Controller Market is accounted for $4.78 billion in 2022 and is expected to reach $7.01 billion by 2028 growing at a CAGR of 6.6% during the forecast period. An automatic power factor controller is a device that is programmed to automatically boost the output power when the power factor declines under a certain level. Demand for electric power is rising constantly. Also, need to build a system for automatic improvement in the power factor is increasing, as low power factor puts excessive pressure on power grids and transmission lines. This need can be fulfilled by using automatic power factor controllers. There is also an increasing demand for power management devices in the industries; hence ultimately a need for Automatic Power Factor Controller.
One of the primary reasons driving the growth of the automatic power factor controller market is the increased demand for automatic power factor controllers across a wide range of end-user industries. The sector has a significant demand for power management equipment, which is expected to drive the global market for automated power factor controllers. Furthermore, the automatic power factor controller is becoming more extensively adopted in industries such as business, manufacturing, commercial, military, and utilities, which may drive the global market's growth throughout the forecast period.
The installation of the power factor controller poses certain additional risks. When connected to the system, automatic power factor controllers produce a parallel resonance circuit between their capacitors and the system's network inductance. Overvoltage tripping of drives and excessive voltage distortion are just a few of the key concerns that might occur from wave components close to the amplification of the parallel resonance. Another typical problem is insulation failure in motors, transformers, and wires. These risks may limit the demand for automatic power factor controllers.
The increasing investments by manufacturers in innovations and improvement are expected to provide profitable chances for the market, which would further accelerate the growth rate of the automatic power factor controller market. Furthermore, the increasing number of product releases and other developments by market participants provide several growth opportunities within the industry. Additionally, factors such as rising industrialization and urbanisation, combined with an increase in infrastructure development investments, will boost overall market expansion during the projection period.
The high maintenance cost of autonomous power factor controllers is a significant impediment to industry growth. Repairing the old one is not financially advantageous due to its high cost. The cost of creating and manufacturing APFC panels is significant because they require large-capacity capacitors and inductors for low-frequency filtering. Commercial and industrial equipment is expensive and must be purchased once. The global market for automated power factor controllers is being hampered by high maintenance costs.
The outbreak of COVID-19 has a significant influence on the market for automatic power factor controllers. Also, consumer demand has decreased as people have grown more concerned with cutting things that are not absolutely required from their budgets as a result of the epidemic's negative effects on the general economic situation of the majority of people. Throughout the forecast period, the aforementioned factors are expected to have an impact on the growth trajectory of the global market for automatic power factor controllers.
The Active PFCAs segment is estimated to have a lucrative growth. Use of Active Automated Power Factor Controller by various industries such as commercial, manufacturing, military, and utility is one of the factors contributing to the growth of this sector. Furthermore, the Active Automatic Power Factor Controller is made up of active components like as diodes and transistors, which allow engineers to achieve a high power factor of 0.99. As a result of the high precision of power superiority, most industries choose Active Automatic Power Factor Controller.
The utility segment is anticipated to witness the fastest CAGR growth during the forecast period. Decreased power loss in distribution systems, higher reactive power, and the protection of electronic equipment against destruction are all factors that contribute to the sector's growth. Furthermore, the utility industry is dedicated on improve the power factor. Furthermore, the industrial sector has been gaining market share over time, which is expected to drive APFC demand.
Asia Pacific is projected to hold the largest market share during the forecast period. The expansion of the Automatic Power Factor Controller market is primarily related to the increased development of infrastructures such as power plants, commercial buildings, and others in China and India, which, in turn, is bolstered by expanding industrialization and urbanisation. The use of automatic power factor controllers to assist minimise inefficiencies in electric systems and preserve power factor is increasing the demand for power management devices.
North America is projected to have the highest CAGR over the forecast period. This is the circumstance because of the presence of big players in the area. Increasing infrastructure upgrade of residential and commercial structures, as well as the construction of new power plants, is driving market growth further. Furthermore, it is expected that the expansion of industrial facilities to increase energy efficiency will accelerate the expansion over the forecast period.
Some of the key players profiled in the Automatic Power Factor Controller Market include: Emerson Electric Co., Schneider Electric, Navitas Semiconductor Ltd., ABB, Eaton, General Electric, Oracle, AVEVA Group plc, Fujitsu, Techno Power Systems, Robert Bosch GmbH, Texas Instruments Incorporated., SAP SE, ACPD Services Ltd and Semiconductor Components Industries, L.L.C.
In July 2022, The Schneider Electric PowerLogic PFC (formerly VarSet) low voltage power factor correction solution adds a new component to the EcoStruxure Power architecture by enhancing its best-in-class low voltage capacitor bank with robust IoT-enabled communication capabilities. These new proficiencies provide opportunities for today's power systems and energy management applications.
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