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市場調查報告書
商品編碼
1744395
全球資料中心電源基礎設施市場按資料中心類型、應用、電源架構、配電、電源和組件分類的分析與預測(2025-2035 年)Global Data Center Power Infrastructure Market: Focus on Data Center Type, Application, Power Architecture, Distribution, Power Supply, Component and Region - Analysis and Forecast, 2025-2035 |
預計2024年資料中心電力基礎設施市場規模將達189.283億美元。
預計到 2035 年,市場規模將達到 1,019.014 億美元,複合年成長率為 15.90%。對雲端處理、人工智慧 (AI) 和資料儲存解決方案不斷成長的需求正在推動該市場的成長。隨著產業數位化的提高,對強大、擴充性且節能的資料中心電力基礎設施市場的需求正在迅速成長。此外,對資料中心永續性、能源效率和再生能源來源整合的日益關注,進一步促進了資料中心電力基礎設施市場的成長。智慧配電單元 (PDU) 等電源管理創新也有望在滿足現代資料中心日益成長的電力需求方面發揮關鍵作用。
主要市場統計數據 | |
---|---|
預測期 | 2025-2035 |
2025年評估 | 233億美元 |
2035年的預測 | 1019億美元 |
複合年成長率 | 15.9% |
資料中心電力基礎設施市場專注於開發和部署先進的電力解決方案,以滿足日益成長的數位服務、雲端運算和資料儲存需求。隨著資料中心成為全球數位經濟的核心,對高效、擴充性和可靠電力系統日益成長的需求推動了資料中心電力基礎設施市場的發展。關鍵組件對於確保無縫運作並最大限度地降低能耗至關重要。隨著產業致力於永續性,人們越來越重視整合再生能源來源、提高電力效率和最佳化能源管理,以滿足營運需求和環境目標。數位技術的日益普及以及人工智慧、巨量資料和物聯網的擴展進一步推動了全球資料中心對強大且永續的電力基礎設施的需求。
對產業的影響
資料中心電力基礎設施市場對多個領域的產業有著重大影響,包括技術、通訊和能源。隨著資料中心的擴展以支援對雲端服務、人工智慧和資料儲存日益成長的需求,對可靠、擴充性和高效的電力基礎設施的需求至關重要。資料中心電力基礎設施市場正在推動配電系統和電氣元件的進步,以確保持續和最佳化的電力供應,並支援關鍵資訊服務的不間斷運作。隨著數位生態系統的發展,它正在改變我們的營運方式,增加了對能夠處理高負載同時消耗更少能源的電力基礎設施的需求。資料中心電力基礎設施的成長正在推動電源管理的創新,提高營運效率,並使企業能夠滿足現代資料密集型應用日益成長的能源需求。
資料中心電源基礎設施市場的主要參與者包括戴爾公司、惠普企業發展有限公司、超微電腦公司、博伊德、IEIT 系統有限公司、華為技術有限公司、思科主要企業公司、施耐德電氣、Vertiv 集團公司、伊頓、Rittal Pvt. Ltd.、NetApp、Arista Networks、Modine 和三菱電機公司。這些公司透過策略夥伴關係、技術創新和研發投資增強了自身實力。他們持續專注於提供可靠、高效和擴充性的電源解決方案,以滿足對資料處理、儲存和管理功能日益成長的需求,從而推動資料中心電源基礎設施市場的成長。
資料中心電力基礎設施市場細分:
細分一:依資料中心類型
主機代管和零售資料中心引領市場(按資料中心類型)
按資料中心類型分類,主機託管和零售資料中心預計將主導資料中心電力基礎設施市場,因為它們在支援企業和雲端工作負載方面發揮著重要作用。這些設施需要先進的電力基礎設施解決方案,以確保高可用性、擴充性和能源效率。由於對空間和功率密度的需求不斷成長,主機託管和零售資料中心為智慧配電單元和強大冷卻技術的採用提供了重要機會。隨著企業擴大將其IT基礎設施需求外包,這些資料中心將繼續引領電力基礎設施投資和創新,塑造資料中心電力基礎設施市場的未來格局。
細分 2:另一個
傳統與非人工智慧資料中心的市場領導者(按應用)
預計傳統和非人工智慧資料中心將在資料中心電力基礎設施市場中佔據主導地位,這得益於其在傳統運算和儲存服務領域的長期存在和持續需求。這些資料中心需要可靠且有效率的電力系統來支援各種企業應用程式、雲端服務和傳統工作負載。儘管以人工智慧為重點的設施正在興起,但傳統資料中心的數量和多樣性確保了對配電單元等電力基礎設施解決方案的持續投資。配電單元在業務永續營運和資料管理中發揮關鍵作用,是短期內推動資料中心電力基礎設施市場成長的關鍵產品。
細分三:依電源架構
48V DC 機架級電源單元 (PSU) 架構憑藉其高效能、擴充性以及與現代高密度 IT 設備的兼容性,預計將在資料中心電源基礎設施市場佔據主導地位。該架構透過降低電源轉換損耗和簡化機架內的配電,提高了能源效率並降低了冷卻要求。
隨著資料中心擴大部署高效能運算和人工智慧工作負載,48V 直流機架級電源 (PSU) 提供了可靠且經濟高效的解決方案來滿足這些需求。 48V 直流機架級電源的日益普及正在影響下一代資料中心的設計,並成為資料中心電源基礎設施市場發展的關鍵驅動力。
細分四:依功率分佈
密集型引領市場(按分佈)
密集型配電預計將主導資料中心電力基礎設施市場,因為它能夠有效管理大規模電源並簡化基礎設施管理。這種方法可以統一管理電源,提高可靠性並降低資料中心的營運複雜性。
隨著資料中心規模的不斷擴大以及對強大電源管理解決方案的需求持續成長,集中式配電在最佳化能源利用、延長系統運作和支援冗餘策略方面具有優勢。集中式配電的廣泛採用使其成為現代資料中心設計的首選方案,推動了資料中心電源基礎設施市場的成長。
細分五:按電源
市場領先的機架級(電源獨立)
機架級電源預計將在資料中心電力基礎設施市場佔據主導地位,因為它們能夠直接向各個伺服器機架提供精準高效的電力傳輸。這種方法允許在機架層級進行獨立的電源管理,從而提高靈活性、簡化維護並增強冗餘性。
隨著資料中心變得越來越密集和複雜,機架級電源能夠滿足擴充性和高可用性要求,對現代資料中心的運作至關重要。隨著這類電源的普及,資料中心電力基礎設施市場正在不斷創新和投資電力基礎設施解決方案,以滿足不斷變化的IT需求。
細分 6:按組件
市場領先的配電和管理(按組件)
在資料中心電力基礎設施市場中,配電和管理系統預計將在組件方面引領市場。這些系統包括配電單元 (PDU)、開關設備、電路斷流器以及能夠精確控制和最佳化電力使用的智慧監控解決方案。
隨著資料中心變得越來越複雜,先進的配電和管理對於維持運作、提高能源效率和支援擴充性至關重要。電力基礎設施在維持營運連續性方面發揮關鍵作用,是推動資料中心電力基礎設施市場成長的關鍵組成部分。
細分7:按地區
在強力的法規環境、技術進步和資料中心開發大量投資的推動下,北美有望引領資料中心電力基礎設施市場。
美國和加拿大在採用節能電力系統、模組化基礎設施和可再生能源整合方面處於領先地位,以滿足資料中心電力基礎設施市場日益成長的需求。強大的公私合作、電力管理技術的創新以及對高效能運算日益成長的需求,正在推動該地區佔據市場主導地位。北美專注於提高電力可靠性、降低營運成本和增強擴充性,使其成為塑造資料中心電力基礎設施市場未來的關鍵切入點。
資料中心電力基礎設施市場的最新趨勢
需求——促進因素、限制因素、機會
市場促進因素:數據消費增加
隨著資料儲存、處理和傳輸需求的持續成長,資料消費量的不斷成長成為資料中心電力基礎設施市場的主要驅動力。雲端服務、串流平台、巨量資料分析和物聯網 (IoT) 的興起,導致全球資料量大幅成長。隨著企業和消費者在日常業務中越來越依賴數位技術,對強大的資料中心基礎設施來管理、儲存和處理這些資料的需求也日益成長。
多個行業案例展現了不斷成長的數據消費量正在如何影響資料中心電力基礎設施市場。亞馬遜網路服務 (AWS)、微軟 Azure 和谷歌雲端等雲端服務供應商已擴展其資料中心網路,以滿足日益成長的儲存和處理能力需求。這些公司正在投資高容量不斷電系統(UPS)、智慧配電單元 (PDU) 和節能冷卻系統,以支援日益成長的工作負載。此外,由於對即時資料傳輸和儲存的持續需求,支援電子商務、串流媒體和通訊等行業的資料中心的能源需求正在激增。
此外,隨著數據消費量預期持續成長,資料中心電力基礎設施市場的成長潛力依然巨大。人工智慧 (AI)、機器學習和 5G 網路等新技術的快速普及將進一步推動對高效能資料中心的需求。隨著數據量的不斷成長,對節能、可擴展且永續的解決方案的需求也將進一步成長。數據消費的持續成長將對資料中心電力基礎設施市場產生持久影響,推動創新,並打造更具永續和彈性的資料中心電力系統。
市場挑戰:前期投資高
高昂的前期資本投入仍是資料中心電力基礎設施市場的主要限制因素。建造和升級電力系統(包括不斷電系統(UPS)、配電單元 (PDU)、能源儲存解決方案和冷卻系統)的前期成本可能相當高昂。這些投資對於確保可靠、擴充性且高效的營運至關重要,尤其是在資料中心服務需求持續成長的背景下。許多公司必須投入大量資金來滿足其基礎設施需求和永續性目標,這可能會減緩或限制資料中心容量的擴張,尤其是對於規模較小的營運商和新興市場的營運商而言。
超大規模資料中心營運商已在全球基礎設施上投資了數十億美元,包括節能和可再生能源系統。雖然此類投資在節能和永續性方面具有長期效益,但高昂的初始成本可能會成為小型營運商進入資料中心電力基礎設施市場的障礙。此外,營運商如果希望升級現有設施以滿足日益成長的運算能力和永續性標準需求,在獲得此類大規模基礎設施升級所需的資金方面可能會面臨巨大的財務障礙。
此外,資金籌措和技術解決方案的創新或許可以減輕高額前期投資的影響。隨著電力基礎設施變得更加模組化和可擴展,營運商可以逐步部署解決方案,從而降低前期成本。此外,更具成本效益和能源密度的技術的開發以及可再生能源選擇的擴展或許可以減少長期資本支出。這些進步或許能夠使市場參與者,尤其是中小型業者和區域營運商,進入或擴大其在資料中心產業的影響力。
市場機會:邊緣運算的成長
邊緣運算的成長為資料中心電力基礎設施市場創造了巨大的機會。隨著越來越多的資料處理發生在網路邊緣而非密集型資料中心,對在局部、高效的電力基礎設施的需求日益成長。邊緣運算能夠實現更快的資料處理速度和更低的延遲,但它也拉近了資料中心與最終用戶的距離,並要求資料中心在最佳化的電力系統上運行,以適應不斷變化的工作負載。這些分散式系統需要高彈性和高能源效率,以支援多樣化的邊緣應用,從而催生了對專用電力基礎設施解決方案的強勁市場需求。
例如,IBM 一直處於將邊緣運算與人工智慧解決方案結合的前沿。 IBM 的邊緣運算系統正在部署到偏遠地區,以支援製造業、物流業和農業產業。這些系統需要強大且具彈性的電力基礎設施,以便在傳統電網接取受限的環境中處理即時數據和分析。
此外,邊緣運算在資料中心電力基礎設施市場的未來潛力巨大。隨著各行各業持續將邊緣運算應用於即時應用,對局部電力基礎設施的需求將持續成長。這一趨勢將推動能夠支持此類分散式設施的節能模組化電力系統的進一步創新。開發更智慧、可擴展且可在邊緣快速部署的電力解決方案,將是滿足日益成長的邊緣運算需求的關鍵。此外,隨著這些邊緣資料中心的節能意識不斷增強,也有機會整合再生能源來源和先進的能源儲存系統,以進一步最佳化電力消耗並減少對環境的影響。
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產品/創新策略:資料中心電源基礎設施市場細分於幾個關鍵方面,為了解數位基礎設施不斷發展的格局提供了見解。按資料中心類型分類,包括超大規模資料中心、主機託管和零售資料中心、企業資料中心以及其他配置,每種配置都可滿足不同的營運和電源需求。按應用分類,資料中心可分為傳統資料中心、非人工智慧資料中心和人工智慧資料中心。電源架構分為 DC12V、DC48V 和 DC400V 以上機架電源架構。電源架構分為密集型和分散式系統,可提供靈活的電源管理方法。
此外,電源組件可分為機架級電源、交流電-直流電源、直流-直流電源、基礎架構層電源系統以及交流和直流電源選項,所有這些組件均可確保高效的能源傳輸。最後一類包括關鍵配電元件,例如PDU、智慧/計量PDU、匯流排系統、ATS和開關設備,這些元件對於資料中心的配電管理和可靠運作至關重要。這些細分市場反映了隨著資料中心基礎設施的不斷發展和調整,市場多樣化且不斷變化的需求。
成長/行銷策略:資料中心電力基礎設施市場正在快速成長。它為現有和新興市場參與者提供了巨大的機會。本部分涵蓋的策略包括併購、產品推出、合作夥伴關係/協作、業務擴張和投資。產品開發是企業維持和鞏固其市場地位的主要策略。
競爭策略:本研究分析和介紹的主要企業概況涵蓋資料中心和電力基礎設施領域的專家。此外,全面的競爭格局(包括夥伴關係、協議和聯盟)有望幫助讀者了解市場中尚未開發的收益空間。
市場估計和預測
該研究利用廣泛的二手資訊,如公認的出版物、著名作者的報導、白皮書、公司年度報告、目錄、主要資料庫等,對資料中心電力基礎設施市場進行全面、技術、市場導向和商業性研究,以收集有用和有效的資訊。
市場工程的過程涉及市場統計、市場規模/預測、市場分解、數據三角測量等計算。 (此類定量數據處理的方法將在後續章節中解釋。)進行初步研究是為了收集有關市場細分類型和主要企業的行業趨勢的資訊,並檢驗市場數據。
主要市場參與企業及競爭格局
在資料中心電力基礎設施市場中介紹的公司是根據從領先專家收集的資訊選出的,這些專家分析了公司的覆蓋範圍、產品系列和市場滲透率。
本報告研究了全球資料中心電力基礎設施市場,並概述了市場以及資料中心類型、應用、電力架構、配電、電源、組件和地區的趨勢,以及參與市場的公司概況。
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Data Center Power Infrastructure Market Overview
The data center power infrastructure market was valued at $18,928.3 million in 2024 and is projected to reach $101,901.4 million by 2035, growing at a CAGR of 15.90%. The increasing demand for cloud computing, artificial intelligence (AI), and data storage solutions has been driving this market growth. As industries continue digitizing, the need for robust, scalable, and energy-efficient data center power infrastructure market has expanded rapidly. Additionally, the rising focus on sustainability, energy efficiency, and the integration of renewable energy sources in data centers has been further contributing to the data center power infrastructure market's growth. Innovations in power management, such as intelligent power distribution units (PDUs), are also expected to play a key role in meeting the growing power demands of modern data centers.
KEY MARKET STATISTICS | |
---|---|
Forecast Period | 2025 - 2035 |
2025 Evaluation | $23.30 Billion |
2035 Forecast | $101.90 Billion |
CAGR | 15.9% |
Market Introduction
The data center power infrastructure market focuses on developing and deploying advanced power solutions to meet the growing demand for digital services, cloud computing, and data storage. Data center power infrastructure market has been driven by the increasing need for efficient, scalable, and reliable power systems as data centers become central to the global digital economy. Key components are essential to ensure seamless operations while minimizing energy consumption. As the industry moves toward sustainability, there is a significant emphasis on integrating renewable energy sources, improving power efficiency, and optimizing energy management to meet both operational demands and environmental goals. The growing adoption of digital technologies and the expansion of AI, big data, and IoT further drive the need for robust and sustainable power infrastructure in data centers worldwide.
Industrial Impact
The industrial impact of the data center power infrastructure market is significant across multiple sectors, such as technology, telecommunications, and energy. As data centers expand to support the increasing demand for cloud services, artificial intelligence, and data storage, the need for reliable, scalable, and efficient power infrastructure becomes essential. The data center power infrastructure market is driving advancements in power distribution systems and electrical components to ensure continuous and optimized power delivery, thereby supporting the uninterrupted operation of critical data services. As digital ecosystems evolve, the demand for power infrastructure that can handle higher loads while reducing energy consumption has been reshaping operational practices. The growth in data center power infrastructure has been promoting innovation in power management, improving operational efficiency, and ensuring that businesses meet the rising energy demands of modern data-intensive applications.
The companies involved in the data center power infrastructure market include key industry players such as Dell Inc., Hewlett Packard Enterprise Development LP, Super Micro Computer, Inc., Boyd, IEIT SYSTEMS CO., LTD., Huawei Technologies Co., Ltd., Cisco Systems, Inc., Schneider Electric, Vertiv Group Corp., Eaton, Rittal Pvt. Ltd., NetApp, Arista Networks, Inc., Modine, and Mitsubishi Electric Corporation. These companies have been enhancing their capabilities through strategic partnerships, technological innovations, and investments in research and development. Their continuous focus on providing reliable, efficient, and scalable power solutions has been driving the growth of the data center power infrastructure market, supporting the increasing demand for data processing, storage, and management capabilities.
Data Center Power Infrastructure Market Segmentation:
Segmentation 1: by Data Center Type
Colocation and Retail Data Centers to Lead the Market (by Data Center Type)
Colocation and retail data centers are expected to dominate the data center power infrastructure market by data center type, driven by their widespread adoption and critical role in supporting enterprise and cloud workloads. These facilities require advanced power infrastructure solutions to ensure high availability, scalability, and energy efficiency. Due to their growing demand for space and power density, colocation and retail data centers present substantial opportunities for the deployment of intelligent power distribution units and robust cooling technologies. As businesses increasingly outsource their IT infrastructure needs, these data center types will continue to lead investment and innovation in power infrastructure, shaping the future landscape of the data center power infrastructure market.
Segmentation 2: by Application
Conventional and Non-AI Data Centers to Lead the Market (by Application)
Conventional and non-AI data centers are expected to dominate the data center power infrastructure market by application, driven by their established presence and ongoing demand for traditional computing and storage services. These data centers require reliable and efficient power systems to support various enterprise applications, cloud services, and legacy workloads. Despite the rise of AI-focused facilities, the volume and diversity of conventional data centers ensure continued investment in power infrastructure solutions such as power distribution units. Their critical role in business continuity and data management positions them as key contributors to data center power infrastructure market growth in the foreseeable future.
Segmentation 3: by Power Architecture
The 48 V DC rack-level power supply unit (PSU) architecture is expected to dominate the data center power infrastructure market by power architecture, driven by its efficiency, scalability, and compatibility with modern high-density IT equipment. This architecture reduces power conversion losses and simplifies power distribution within racks, improving energy efficiency and reducing cooling requirements.
As data centers increasingly adopt high-performance computing and AI workloads, the 48 V DC rack-level PSU offers a reliable and cost-effective solution to meet these demands. Its growing adoption has been influencing the design of next-generation data centers, making it a key driver in the evolution of data center power infrastructure market.
Segmentation 4: by Distribution
Centralized to Lead the Market (by Distribution)
Centralized power distribution is expected to dominate the data center power infrastructure market by distribution type, owing to its efficiency in managing large-scale power delivery and simplifying infrastructure management. This approach enables consolidated control over power sources, enhances reliability, and reduces operational complexity in data centers.
As data centers continue to scale and require robust power management solutions, centralized distribution offers advantages in optimizing energy use, improving system uptime, and supporting redundancy strategies. Its widespread adoption positions it as a preferred choice for modern data center designs, driving growth in the data center power infrastructure market.
Segmentation 5: by Power Supply
Rack Level to Lead the Market (by Power Supply)
The rack-level power supply is expected to dominate the data center power infrastructure market by power supply type due to its ability to provide targeted and efficient power delivery directly to individual server racks. This approach enhances flexibility, simplifies maintenance, and improves redundancy by allowing independent power management at the rack level.
As data centers increase in density and complexity, rack-level power supplies support scalability and high availability requirements, making them essential for modern data center operations. Their growing adoption has been driving innovation and investment in power infrastructure solutions tailored to meet evolving IT demands in the data center power infrastructure market.
Segmentation 6: by Component
Power Distribution and Management to Lead the Market (by Component)
Power distribution and management systems are expected to dominate the data center power infrastructure market by component, driven by their critical role in ensuring reliable and efficient delivery of electricity throughout the facility. These systems encompass power distribution units (PDUs), switchgear, circuit breakers, and intelligent monitoring solutions that enable precise control and optimization of power usage.
As data centers grow in complexity, the need for advanced power distribution and management becomes essential to maintain uptime, improve energy efficiency, and support scalability. Their prominence in maintaining operational continuity positions them as key components driving growth in the data center power infrastructure market.
Segmentation 7: by Region
North America is expected to lead the data center power infrastructure market, supported by its robust regulatory environment, technological advancements, and significant investments in data center development.
The U.S. and Canada are at the forefront of adopting energy-efficient power systems, modular infrastructure, and renewable energy integration to meet growing demand in the data center power infrastructure market. Strong collaboration between public and private sectors, innovation in power management technologies, and rising requirements for high-performance computing have been driving the region's market dominance. North America's emphasis on improving power reliability, reducing operational costs, and enhancing scalability positions it as a key player in shaping the future of data center power infrastructure market.
Recent Developments in the Data Center Power Infrastructure Market
Demand - Drivers, Limitations, and Opportunities
Market Drivers: Rising Data Consumption
Rising data consumption is a major driver in the data center power infrastructure market, as the demand for data storage, processing, and transmission continues to grow. The proliferation of cloud services, streaming platforms, big data analytics, and the Internet of Things (IoT) has significantly increased the amount of data generated worldwide. As businesses and consumers rely more on digital technologies for daily operations, the need for robust data center infrastructures to manage, store, and process this data becomes increasingly critical.
Several industry instances highlight how rising data consumption has been influencing the data center power infrastructure market. Cloud service providers such as Amazon Web Services (AWS), Microsoft Azure, and Google Cloud have been expanding their data center networks to meet the growing demand for storage and processing power. These companies have been investing in high-capacity uninterruptible power supplies (UPS), intelligent power distribution units (PDUs), and energy-efficient cooling systems to support the increasing workloads. Additionally, data centers that support industries such as e-commerce, media streaming, and telecommunications have been experiencing rapid growth in energy demand due to the constant need for real-time data delivery and storage.
Furthermore, the potential for growth in the data center power infrastructure market remains strong as data consumption is expected to continue increasing. The rapid adoption of new technologies such as artificial intelligence (AI), machine learning, and 5G networks will further drive the demand for high-performance data centers. As the volume of data expands, the need for power-efficient, scalable, and sustainable solutions will become even more critical. The continued rise in data consumption will have a lasting impact on the data center power infrastructure market, driving innovation and leading to more sustainable and resilient power systems for data centers.
Market Challenges: High Initial Investment
High initial investment remains a significant restraint in the data center power infrastructure market. The upfront costs associated with building and upgrading power systems, such as uninterruptible power supplies (UPS), power distribution units (PDUs), energy storage solutions, and cooling systems, can be substantial. These investments are required to ensure reliable, scalable, and energy-efficient operations, particularly as the demand for data center services continues to rise. Many companies must allocate significant capital to meet both the infrastructure needs and sustainability goals, which may delay or limit the expansion of data center capacity, especially for smaller operators or those in emerging markets.
Hyperscale data center operators have invested billions into their global infrastructures, including energy-efficient and renewable power systems. While these investments offer long-term benefits in terms of energy savings and sustainability, the high initial costs could be a barrier to entry for smaller players in the data center power infrastructure market. Additionally, operators seeking to upgrade existing facilities to meet rising demand for computing power and sustainability standards may encounter significant financial hurdles in securing the necessary funding for such large-scale infrastructure upgrades.
Furthermore, the potential for innovation in financing and technology solutions may reduce the impact of high initial investments. As power infrastructure becomes more modular and scalable, operators could deploy solutions incrementally, lowering upfront costs. Furthermore, the development of more cost-efficient and energy-dense technologies, along with greater availability of renewable energy options, could help reduce long-term capital expenditures. These advancements could enable more players in the market, especially smaller and regional operators, to enter or expand their presence in the data center industry.
Market Opportunities: Growth of Edge Computing
The growth of edge computing presents a significant opportunity in the data center power infrastructure market. As more data processing occurs at the edge of networks rather than centralized data centers, the demand for localized, high-efficiency power infrastructure grows. Edge computing allows for faster processing of data and lower latency, but it requires data centers to be closer to end users and to operate with optimized power systems to handle fluctuating workloads. These decentralized systems must be highly resilient and energy-efficient to support the diverse range of edge applications, creating a strong market demand for specialized power infrastructure solutions.
For instance, IBM has been at the forefront of combining edge computing with AI-powered solutions. IBM's edge computing systems are increasingly being deployed in remote areas to support manufacturing, logistics, and agriculture industries. These systems require robust and resilient power infrastructure to handle real-time data processing and analytics in environments with limited access to traditional power grids.
Furthermore, the future potential of edge computing in the data center power infrastructure market is vast. As industries continue to adopt edge computing for real-time applications, the demand for localized power infrastructure will continue to rise. This trend will encourage further innovation in energy-efficient, modular power systems capable of supporting these distributed facilities. The development of smarter, more scalable power solutions that could be deployed rapidly across edge locations will be key to meeting the growing demands of edge computing. Additionally, as these edge data centers become more energy-conscious, opportunities will emerge for integrating renewable energy sources and advanced energy storage systems to optimize power consumption further and reduce environmental impact.
How can this report add value to an organization?
Product/Innovation Strategy: The data center power infrastructure market is segmented across several critical dimensions, providing insights into the evolving landscape of digital infrastructure. By data center type, the market includes hyperscale data centers, colocation and retail data centers, enterprise data centers, and other configurations, each addressing different operational and power requirements. In terms of application, the market is divided into conventional and non-AI data centers and AI data centers. The power architecture segmentation covers 12V DC, 48V DC, and 400V +- DC rack power architectures. The power supply architecture is classified into centralized and distributed systems, which offer flexible approaches to power management.
Further, power supply components are categorized into rack-level power, AC-DC, DC-DC, and infrastructure-level power systems, as well as AC and DC supply options, all of which ensure efficient energy provision. The final segmentation includes key power distribution elements such as PDUs, intelligent/metered PDUs, busbar systems, ATS, and switchgear, which are essential for managing power distribution and ensuring reliable operations in data centers. These segments reflect the diverse and evolving needs of the market as data center infrastructure continues to grow and adapt.
Growth/Marketing Strategy: The data center power infrastructure market has been growing at a rapid pace. The market offers enormous opportunities for existing and emerging market players. Some of the strategies covered in this segment are mergers and acquisitions, product launches, partnerships and collaborations, business expansions, and investments. The strategies preferred by companies to maintain and strengthen their market position primarily include product development.
Competitive Strategy: The key players in the data center power infrastructure market analyzed and profiled in the study include professionals with expertise in the data center and power infrastructure domain. Additionally, a comprehensive competitive landscape such as partnerships, agreements, and collaborations are expected to aid the reader in understanding the untapped revenue pockets in the market.
Research Methodology
Factors for Data Prediction and Modelling
Market Estimation and Forecast
This research study involves the usage of extensive secondary sources, such as certified publications, articles from recognized authors, white papers, annual reports of companies, directories, and major databases to collect useful and effective information for an extensive, technical, market-oriented, and commercial study of the data center power infrastructure market.
The market engineering process involves the calculation of the market statistics, market size estimation, market forecast, market crackdown, and data triangulation (the methodology for such quantitative data processes is explained in further sections). The primary research study has been undertaken to gather information and validate the market numbers for segmentation types and industry trends of the key players in the market.
Primary Research
The primary sources involve industry experts from the data center power infrastructure market and various stakeholders in the ecosystem. Respondents such as CEOs, vice presidents, marketing directors, and technology and innovation directors have been interviewed to obtain and verify both qualitative and quantitative aspects of this research study.
The key data points taken from primary sources include:
Secondary Research
This research study of the data center power infrastructure market involves the usage of extensive secondary research, directories, company websites, and annual reports. It also makes use of databases, such as Hoovers, Bloomberg, Businessweek, and Factiva, to collect useful and effective information for an extensive, technical, market-oriented, and commercial study of the global market. In addition to the aforementioned data sources, the study has been undertaken with the help of other data sources and websites, such as IRENA and IEA.
Secondary research was done in order to obtain crucial information about the industry's value chain, revenue models, the market's monetary chain, the total pool of key players, and the current and potential use cases and applications.
The key data points taken from secondary research include:
Key Market Players and Competition Synopsis
The companies that are profiled in the data center power infrastructure market have been selected based on inputs gathered from primary experts who have analyzed company coverage, product portfolio, and market penetration.
Some of the prominent names in this data center power infrastructure market are:
Companies not part of the aforementioned pool have been well represented across different sections of the report (wherever applicable).
Scope and Definition