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市場調查報告書
商品編碼
1617181
2030 年電源管理系統市場預測:按組件、技術、應用、最終用戶和地區進行的全球分析Power Management System Market Forecasts to 2030 - Global Analysis By Component (Hardware, Software and Services), Technology, Application, End User and By Geography |
根據Stratistics MRC預測,2024年全球電源管理系統市場規模將達到66.7億美元,預計2030年將達到111.3億美元,預測期內複合年成長率為8.9%。
電源管理系統是硬體和軟體工具的集合,旨在監控、控制和最佳化組織和系統中電力的產生、分配和消耗。它提供發電源、電池儲存和配電網路的即時資料和自動控制,確保高效能能源利用、提高可靠性並降低成本。 PMS 平衡電力負載、管理電池儲存並整合替代能源,最終提高能源效率並支援永續性目標。
美國能源資訊署(EIA)預計,與2022年相比,2030年全球石油需求預計將成長3%至10%,2050年將成長6%至42%。
工業化、都市化進展
隨著城市的擴張,對可靠、高效和永續的電力管理解決方案的需求不斷增加,以支持基礎設施、製造、交通和住宅需求。 PMS 有助於最佳化能源使用、減少浪費、管理尖峰負載並確保電網穩定性。此外,工業成長需要採用智慧電網和自動化等先進技術,這依賴PMS來提高營運效率、整合可再生能源並滿足監管能源標準,以幫助市場支持擴張。
網路安全問題
PMS 網路容易受到資料外洩、系統操縱和服務中斷等網路攻擊,使關鍵基礎設施面臨風險。這些系統通常控制關鍵的能源網路,因此妥協可能導致大規模停電、經濟損失和安全風險。潛在的網路威脅增加了對增強安全措施的需求,導致 PMS 部署的成本、複雜性和延遲增加,最終阻礙市場成長。
擴大智慧電網和物聯網技術的採用
智慧電網可以實現能源發行的即時監控、自動化和最佳化,從而提高電網的可靠性和效率。物聯網整合可以從連接的設備持續收集資料,以增強各部門的決策和能源管理。這些技術可幫助 PMS 最佳化能源消耗、整合再生能源來源並降低營運成本。智慧電網和物聯網的結合正在推動 PMS 市場的成長,特別是在都市區和工業領域,因為工業和公用事業都在尋求提高能源效率和減少浪費。
整合複雜度
PMS 整合的複雜性源自於需要同步不同的能源來源、現有基礎設施和各種軟體工具。舊有系統、缺乏標準化和多樣化的能源網路使得整合變得困難,並且需要大量的技術專業知識和客製化。這種複雜性通常會導致更長的實施時間和更高的成本。此外,整合過程會擾亂日常業務並需要頻繁的系統更新。所有這些都增加了風險並阻礙了快速廣泛的採用,從而阻礙了市場的成長。
COVID-19 的影響
COVID-19 大流行擾亂了電源管理系統市場,導致生產延遲、供應鏈中斷以及基礎設施計劃投資減少。然而,向遠端工作的轉變、對數位基礎設施的依賴增加以及對能源效率日益成長的需求導致對 PMS 解決方案的需求激增。可再生能源、電動車和資料中心等領域的市場不斷成長,公司專注於最佳化能源使用和降低成本。疫情後的復甦和對永續性的關注正在推動市場的持續擴張。
預計負載預測場將在預測期內達到最大值。
預計負載預測領域將在整個預測期內獲得最大的市場佔有率。電源管理系統利用先進的演算法和資料分析來預測未來的能源需求,在負載預測應用中發揮關鍵作用。這些系統分析歷史消費資料、天氣狀況和其他影響因素,以做出準確的預測。該系統提高了電網穩定性,提高了效率,支援更好地規劃高峰需求期,並最終支援永續能源管理並降低營運風險。
預計通訊業在預測期內的複合年成長率最高
預計通訊業在預測期內複合年成長率最高。通訊領域的 PMS 提供高效率的能源分配、監控和控制,以維持不間斷的服務。它還有助於電池管理、負載平衡和備用電源解決方案,這對於維持網路執行時間至關重要。通訊PMS 還支援遠端監控、預測性維護和能耗分析,確保通訊業者在快速發展的數位環境中具有高可靠性、擴充性和永續性。
在快速工業化、都市化和不斷成長的能源需求的推動下,亞太地區預計將在預測期內創下最大的市場佔有率。中國、印度和日本等主要市場正在採用 PMS 解決方案來提高能源效率、整合可再生能源並提高電網穩定性。對智慧城市、電動車和永續能源解決方案的日益關注正在進一步推動市場擴張。政府措施、基礎設施開發和可再生能源計劃投資也促進了該地區 PMS 市場的成長,使其成為全球能源轉型的關鍵參與者。
由於對能源效率、永續性和電網現代化的需求不斷增加,預計北美在預測期內的複合年成長率最高。在可再生能源、電動車和智慧電網技術的大量投資的推動下,美國和加拿大引領市場。能源效率指令和環境政策等監管支持進一步支持市場成長。此外,PMS 也被用來最佳化能源消耗、降低成本並提高運作可靠性,使北美成為 PMS 發展的關鍵地區。
According to Stratistics MRC, the Global Power Management System Market is accounted for $6.67 billion in 2024 and is expected to reach $11.13 billion by 2030 growing at a CAGR of 8.9% during the forecast period. A power management system is a set of hardware and software tools designed to monitor, control, and optimize the generation, distribution, and consumption of electrical power in an organization or system. It ensures efficient energy use, enhances reliability, and reduces costs by providing real-time data and automated control over power generation sources, storage, and distribution networks. PMS balances power loads, manage battery storage, and integrate alternative energy sources, ultimately improving energy efficiency and supporting sustainability goals.
According to the U.S. Energy Information Administration (EIA), the global oil demand is expected to rise between 3% and 10% by 2030 and 6% and 42% by 2050, compared to 2022.
Increasing industrialization and urbanization
As cities expand, the demand for reliable, efficient, and sustainable power management solutions rises to support infrastructure, manufacturing, transportation, and residential needs. PMS help optimize energy use, reduce waste, and manage peak loads, ensuring grid stability. Moreover, industrial growth necessitates the adoption of advanced technologies like smart grids and automation, which rely on PMS to improve operational efficiency, integrate renewable energy, and meet regulatory energy standards, thereby boosting market expansion.
Cybersecurity concerns
PMS networks are vulnerable to cyber-attacks, including data breaches, system manipulation, and service disruptions, which can compromise critical infrastructure. As these systems often control vital energy grids, a breach can lead to widespread power outages, financial losses, and safety risks. The potential for cyber threats raises the need for enhanced security measures, leading to higher costs, complexity, and delays in PMS deployment, ultimately hampering market growth.
Growing adoption of smart grids and IoT technologies
Smart grids enable real-time monitoring, automation, and optimization of energy distribution, improving grid reliability and efficiency. IoT integration allows for continuous data collection from connected devices, enhancing decision-making and energy management across various sectors. These technologies help PMS to optimize energy consumption, integrate renewable energy sources, and reduce operational costs. As industries and utilities seek to enhance energy efficiency and reduce waste, the combination of smart grids and IoT is propelling the growth of the PMS market, particularly in urban and industrial sectors.
Complexity of integration
The complexity of integrating PMS arises from the need to synchronize diverse energy sources, existing infrastructure, and various software tools. Legacy systems, lack of standardization, and diverse energy grids make integration challenging, requiring significant technical expertise and customization. This complexity often leads to longer deployment times and higher costs. Additionally, the integration process can disrupt daily operations and require frequent system updates, all of which hamper the market growth by increasing risks and inhibiting quick, widespread adoption.
Covid-19 Impact
The covid-19 pandemic disrupted the power management system market, causing delays in production, supply chain disruptions, and reduced investments in infrastructure projects. However, the shift toward remote work, increased reliance on digital infrastructure, and the growing need for energy efficiency led to a surge in demand for PMS solutions. The market saw growth in sectors such as renewable energy, electric vehicles, and data centers, as organizations focused on optimizing energy usage and reducing costs. Post-pandemic recovery and a focus on sustainability are driving continued market expansion.
The load forecasting segment is expected to be the largest during the forecast period
The load forecasting segment is predicted to secure the largest market share throughout the forecast period. Power management systems play a crucial role in load forecasting applications by utilizing advanced algorithms and data analytics to predict future energy demand. These systems analyze historical consumption data, weather conditions, and other influencing factors to generate accurate forecasts. It enhances grid stability, improves efficiency, and aids in better planning for peak demand periods, ultimately supporting sustainable energy management and reducing operational risks.
The telecommunications segment is expected to have the highest CAGR during the forecast period
The telecommunications segment is anticipated to witness the highest CAGR during the forecast period. PMS in telecommunications ensure efficient energy distribution, monitoring, and control to maintain uninterrupted services. They also help in battery management, load balancing, and backup power solutions, which are critical for maintaining network uptime. PMS in telecommunications also support remote monitoring, predictive maintenance, and energy consumption analytics, ensuring high reliability, scalability, and sustainability for telecom operators in a rapidly evolving digital landscape.
Asia Pacific is expected to register the largest market share during the forecast period driven by rapid industrialization, urbanization, and increasing energy demands. Key markets like China, India, and Japan are adopting PMS solutions to enhance energy efficiency, integrate renewable energy sources, and improve grid stability. The growing focus on smart cities, electric vehicles, and sustainable energy solutions is further propelling market expansion. Government initiatives, infrastructure development, and investments in renewable energy projects also contribute to the region's PMS market growth, positioning it as a key player in the global energy transition.
North America is projected to witness the highest CAGR over the forecast period due to increasing demand for energy efficiency, sustainability, and grid modernization. The United States and Canada are leading the market, driven by significant investments in renewable energy, electric vehicles, and smart grid technologies. Regulatory support, such as energy efficiency mandates and environmental policies, further fuel market growth. Additionally, adopting PMS to optimize energy consumption, reduce costs, and enhance operational reliability, making North America a key region for PMS development.
Key players in the market
Some of the key players profiled in the Power Management System Market include Siemens, Schneider Electric, General Electric (GE), ABB Group, Eaton Corporation, Rockwell Automation, Mitsubishi Electric, Honeywell Corporation, Emerson Electric, Cisco Systems, Panasonic Corporation, IBM Corporation, Delta Electronics, Yokogawa Electric, NXP Semiconductors, Renesas Electronics, Texas Instruments, Broadcom, Maxim Integrated and Infineon Technologies.
In November 2024, IBM Corporation launched IBM Maximo Renewables, a cutting-edge solution designed to optimize the management of renewable energy assets such as solar, wind, and battery storage systems. This platform offers real-time asset performance monitoring, predictive maintenance, and actionable insights, helping organizations maximize energy generation while minimizing downtime.
In October 2024, Honeywell unveiled the new Smart Grid Management System, a cutting-edge Power Management System (PMS) designed to enhance the efficiency, resilience, and sustainability of energy distribution. Leveraging advanced technologies such as artificial intelligence (AI) and machine learning (ML), the system aims to optimize grid operations, improving how utilities manage and distribute power, particularly during times of peak demand.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.