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市場調查報告書
商品編碼
2041926
旋轉式UPS(不斷電系統)市場預測至2034年-按類型、額定功率、應用和地區分類的全球分析Rotary Uninterruptible Power Supply Market Forecasts to 2034 - Global Analysis By Type, Power Rating, Application and By Geography |
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根據 Stratistics MRC 的數據,全球旋轉式 UPS(不斷電系統)市場預計到 2026 年將達到 9 億美元,並在預測期內以 6.9% 的複合年成長率成長,到 2034 年達到 15 億美元。
旋轉式不斷電系統(UPS)是一種先進的電氣設備,旨在確保即使在斷電或電源故障的情況下,也能為關鍵系統提供持續可靠的電源。該系統由一台高速馬達和一個飛輪組成,飛輪用作儲能裝置。它尤其適用於對不斷電系統需求極高的關鍵任務應用,例如資料中心、醫院和工業設施。
根據NAM統計,全球貿易額從2000年的4.8兆美元成長到2017年的12.2兆美元,成長超過一倍。
可靠性和連續性要求
在當今高度依賴技術的世界中,持續運作的需求進一步凸顯了可靠電源解決方案的重要性。這種可靠性在某些應用中尤其關鍵,因為即使是輕微的斷電也可能造成巨大的經濟損失或危及安全。此外,這些系統能夠提供即時、無縫的備用電源,從而滿足這些嚴苛的要求,並推動市場成長。
高成本
與其他UPS技術相比,旋轉式UPS系統通常需要更大的面積和專用安裝空間,導致額外的場地準備成本。此外,為提高旋轉式UPS系統的效率和功能而進行的研發投入也推高了其價格。另外,旋轉式UPS系統的維護和營運成本往往較高,這阻礙了市場成長。
技術進步
對於尋求主動式電源管理解決方案的現代企業而言,遠端監控和預測性維護等智慧功能正變得至關重要。數位控制系統和智慧監控等先進功能的整合,顯著提升了旋轉式UPS系統的整體性能和效率。此外,持續的研發工作致力於提高旋轉式UPS系統對多樣化和動態負載條件的適應性,這也推動了市場擴張。
環境影響
旋轉式UPS系統的環境影響主要體現在其能源消耗。飛輪的旋轉會增加溫室氣體排放,加劇氣候變遷。此外,原料的開採和製造過程也會造成環境污染和棲息地破壞。這些系統還可能含有鉛酸電池等有害物質,阻礙市場成長。
新冠疫情的感染疾病
新冠疫情對旋轉式不斷電系統(UPS)市場造成了負面影響,供需兩端都面臨挑戰。全球供應鏈中斷,尤其是在製造業和運輸業,導致UPS系統的生產和交付延遲。此外,遠距辦公的興起降低了對某些關鍵基礎設施的即時需求,進一步加劇了UPS市場的停滯。
在預測期內,數位旋轉式印刷領域預計將佔據最大佔有率。
數位旋轉式UPS預計將佔據最大的市場佔有率,這主要得益於將先進的數位控制系統整合到傳統旋轉式UPS設計中的技術,從而提升了整體性能和可靠性。透過整合數位智慧,這些UPS系統能夠動態適應不斷變化的負載條件,確保精準高效的供電。此外,先進的診斷功能支援預測性維護,最大限度地減少停機時間,進一步推動了該細分市場的成長。
在預測期內,資料中心領域預計將呈現最高的複合年成長率。
預計資料中心領域在預測期內將呈現最高的複合年成長率,因為它構成了現代資訊技術基礎設施的支柱,需要高度可靠且持續的電源供應來保護關鍵運作並防止資料遺失。這些系統即使在斷電情況下也能確保無縫電源切換。此外,旋轉式UPS能夠處理高功率且波動較大的負載,這與資料中心常見的可變電源需求相匹配,從而推動了該領域的成長。
在預測期內,亞太地區佔據了最大的市場佔有率,這主要得益於快速的工業化、都市化以及對可靠電力基礎設施日益成長的需求。包括中國、印度、日本和韓國在內的亞太國家,正經歷資料中心建設、工業成長和技術進步的蓬勃發展。此外,這些國家快速的能源傳輸能力和處理高容量負荷的能力是建立抗災基礎設施的關鍵組成部分,進一步推動了該地區的成長。
預計在預測期內,北美將實現最高的複合年成長率,這主要得益於技術創新和對可靠電源解決方案的迫切需求。該地區匯聚了ABB有限公司、Schneider Electric公司、通用電氣公司和海泰克電氣等行業領導者。此外,對永續性和減少環境影響的重視正在推動UPS領域儲能和轉換技術的創新,進一步促進該地區的成長。
According to Stratistics MRC, the Global Rotary Uninterruptible Power Supply (UPS) Market is accounted for $0.9 billion in 2026 and is expected to reach $1.5 billion by 2034 growing at a CAGR of 6.9% during the forecast period. A rotary uninterruptible power supply (UPS) is a sophisticated electrical device designed to ensure continuous and reliable power supply to critical systems in the event of an electrical outage or disturbance. The system consists of a high-speed electric motor connected to a flywheel, which acts as an energy storage device. They are particularly suitable for mission-critical applications where uninterrupted power is essential, such as data centers, hospitals, and industrial facilities.
According to NAM, world trade has more than doubled from USD 4.8 trillion in 2000 to USD 12.2 trillion in 2017.
Reliability and continuity requirements
The need for continuous uptime in today's technology-dependent world has heightened the significance of reliable power solutions. This reliability is particularly crucial in applications where even the briefest power interruption can result in significant financial losses or compromise safety. In addition, they excel at meeting these stringent demands by offering instantaneous and seamless power backup during electrical disturbances or outages, which propels market growth.
High cost
Rotary UPS systems typically have larger physical footprints compared to other UPS technologies, requiring dedicated space for installation, which results in additional expenses related to site preparation. The research and development costs associated with improving the efficiency and functionality of rotary UPS systems further add to their high price. Moreover, the maintenance and operational costs of rotary UPS systems are usually higher, which hinders the market size.
Technological advancements
Smart functionalities, including remote monitoring and predictive maintenance capabilities, are becoming essential for modern businesses seeking proactive power management solutions. The integration of advanced features, such as digital control systems and intelligent monitoring, enhances the overall performance and efficiency of rotary UPS systems. Further, ongoing research and development efforts focus on improving the adaptability of rotary UPS systems to diverse and dynamic load conditions, which boosts market expansion.
Environmental impact
The environmental impact of rotary UPS systems is their energy consumption, which involves the rotation of a flywheel, leading to increased greenhouse gas emissions and contributing to climate change. The extraction of the raw materials and the manufacturing processes can result in environmental pollution as well as habitat destruction. Therefore, these systems may contain hazardous materials such as lead-acid batteries or other toxic substances, which impede market growth.
Covid-19 Impact
The COVID-19 pandemic has had negative impacts on the Rotary Uninterruptible Power Supply (UPS) market, introducing challenges that affected both supply and demand aspects. Disruptions in the global supply chain, particularly in the manufacturing and transportation sectors, led to delays in the production and delivery of UPS systems. Additionally, the shift towards remote work reduced immediate demand for certain types of critical infrastructure, further hampering the UPS market.
The digital rotary segment is expected to be the largest during the forecast period
The digital rotary segment is estimated to hold the largest share due to a technology that integrates advanced digital control systems with the traditional rotary UPS design, enhancing overall performance and reliability. By integrating digital intelligence, these UPS systems can dynamically adjust to changing load conditions, ensuring precise and efficient power delivery. Moreover, they provide enhanced diagnostic capabilities, enabling predictive maintenance and minimizing downtime, which is boosting this segment's expansion.
The data centers segment is expected to have the highest CAGR during the forecast period
The data centers segment is anticipated to have highest CAGR during the forecast period due to the fact that they serve as the backbone of modern information technology infrastructure and require highly reliable and continuous power to safeguard critical operations and prevent data loss. These systems ensure seamless power transitions during electrical disturbances. Furthermore, the rotary UPS's ability to handle large and dynamic loads aligns with the variable power demands typically encountered in data centers, thereby driving segment growth.
Asia Pacific commanded the largest market share during the extrapolated period owing to rapid industrialization, increasing urbanization, and a growing demand for reliable power infrastructure. Countries in Asia-Pacific, including China, India, Japan, and South Korea, are witnessing a surge in data center construction, industrial growth, and technological advancements. In addition, its capacity for rapid energy transfer and ability to handle large loads make it a crucial component of disaster-resilient infrastructure, which is propelling the growth of this region.
North America is expected to witness highest CAGR over the projection period, owing to technological innovation and the critical need for reliable power solutions. This region is home to some of the key players, such as ABB Ltd., Schneider Electric SE, General Electric Company, and Hitec Electric. Additionally, the focus on sustainability and reduced environmental impact is leading to innovations in energy storage and conversion technologies within the UPS sector driving this region's expansion.
Key players in the market
Some of the key players in the Rotary Uninterruptible Power Supply (UPS) Market include Hitec Holdings, Rolls Royce Holdings, Hitzinger, Piller Power System, IEM Power System, Power Systems & Control, ABB, Vycon, Thycon, Powerthru, Ausonia and Falcon Electric, Inc.
In January 2024, ABB announced that it has agreed to acquire Canadian company Real Tech, a leading supplier of innovative optical sensor technology that enables real-time water monitoring and testing.
In December 2023, ABB has signed an agreement with UK-based gravity energy storage firm Gravitricity to explore how hoist expertise and technologies can accelerate the development and implementation of gravity energy storage systems in former mines.