市场调查报告书
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分散式能源管理系统市场规模、份额和成长分析:按组件、最终用途、应用、地区 - 产业预测,2024-2031 年Distributed Energy Resource Management System Market Size, Share, Growth Analysis, By Component (Software, Hardware), By End Use (Commercial, Industrial), By Application (Solar PV units, Wind generation units), By Region - Industry Forecast 2024-2031 |
2022年全球分散式能源管理系统市场规模将为4.2503亿美元,预测期内(2024-2031年)复合年增长率为21.8%,从2023年的5.1769亿美元增长到2031年的2,058.74美元到2020 年将达到100 万。
全球分散式能源管理系统(DERMS)市场是一个不断发展且快速扩张的领域。 DERMS 旨在管理各种再生能源来源(例如太阳能、风能和水力发电)与传统电网的整合。随着对清洁能源的需求不断增加以及减少碳排放的努力,DERMS 已成为现代能源管理的重要组成部分。 DERMS 市场的主要驱动力之一是分散式能源 (DER) 利用率的不断提高。这些资源,包括屋顶太阳能电池板、小型风力发电机和能源储存系统,提供了经济高效且可靠的电力供应,特别是在偏远地区。此外,强调电网现代化以提高抵御自然灾害和网路威胁的能力也有助于市场成长。 DERMS 对于优化可再生能源的使用、平衡即时能源供需以及提高电网稳定性和可靠性至关重要。然而,市场面临一些挑战,包括初始安装成本高以及 DERMS 技术缺乏标准化。管理多个分散式能源并将其整合到电网的复杂性也给营运商带来了挑战。儘管存在这些挑战,DERMS 市场仍然存在巨大的成长机会。这包括对能源储存解决方案的需求增加、分析和机器学习的进步以及智慧电网技术的更多采用。
Global Distributed Energy Resource Management System Market size was valued at USD 425.03 million in 2022 and is poised to grow from USD 517.69 million in 2023 to USD 2058.74 million by 2031, at a CAGR of 21.8% during the forecast period (2024-2031).
The Global Distributed Energy Resource Management System (DERMS) Market is an evolving and rapidly expanding sector. DERMS are designed to manage the integration of various renewable energy sources-such as solar, wind, and hydropower-with traditional power grids. As the demand for clean energy grows and the push to reduce carbon emissions intensifies, DERMS have become essential for modern energy management. One of the main drivers of the DERMS market is the increasing use of distributed energy resources (DERs). These resources, including rooftop solar panels, small wind turbines, and energy storage systems, offer a cost-effective and reliable power supply, particularly in remote areas. Additionally, the emphasis on grid modernization to improve resilience against natural disasters and cyber threats is contributing to market growth. DERMS are crucial for optimizing renewable energy use and balancing real-time energy demand and supply, which enhances grid stability and reliability. However, the market faces several challenges, such as the high initial costs of installation and the lack of standardization among DERMS technologies. The complexity of managing and integrating multiple DERs into the grid also presents difficulties for operators. Despite these challenges, there are significant growth opportunities in the DERMS market. These include the rising demand for energy storage solutions, advancements in analytics and machine learning, and the increasing adoption of smart grid technologies.
Top-down and bottom-up approaches were used to estimate and validate the size of the global Distributed Energy Resource Management System market and to estimate the size of various other dependent submarkets. The research methodology used to estimate the market size includes the following details: The key players in the market were identified through secondary research, and their market shares in the respective regions were determined through primary and secondary research. This entire procedure includes the study of the annual and financial reports of the top market players and extensive interviews for key insights from industry leaders such as CEOs, VPs, directors, and marketing executives. All percentage shares split, and breakdowns were determined using secondary sources and verified through Primary sources. All possible parameters that affect the markets covered in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analyzed to get the final quantitative and qualitative data.
Global Distributed Energy Resource Management System Market Segmental Analysis
Global Distributed Energy Resource Management System Market is segmented based on offering, application, end user and region. Based on offering, the market is segmented into Software (Analytics, Management & control and VPP Software), hardware, and Services. Based on application, the market is segmented into Solar pv units, wind generation units, energy storage system and others. By end user it is segmented into residential, commercial, industrial Based on region, the market is segmented into North America, Europe, Asia Pacific, South America and Middle East and Africa.
Drivers of the Global Distributed Energy Resource Management System Market
The global emphasis on reducing carbon emissions and moving towards sustainable energy has significantly boosted the adoption of renewable energy sources. Distributed Energy Resource Management Systems (DERMS) are essential for integrating and optimizing these distributed energy resources, ensuring the efficient use of renewable energy. The demand for DERMS solutions is driven by the need to effectively manage various energy sources. For instance, a utility company employing DERMS can oversee and regulate a network of distributed solar panels and wind turbines, ensuring optimal power generation and maintaining grid stability.
Restraints in the Global Distributed Energy Resource Management System Market
The DERMS market encounters challenges related to the intricate regulatory environment and policy frameworks that govern the integration and operation of distributed energy resources. Diverse regulations across regions, along with the need to adhere to grid codes and standards, can create obstacles for implementing DERMS. Regulatory uncertainties and slow policy development further impede the widespread adoption of DERMS solutions. For instance, shifts in net metering policies or interconnection requirements can affect the economic viability and feasibility of DERMS projects, complicating their deployment and integration.
Market Trends of the Global Distributed Energy Resource Management System Market
Demand response involves adjusting electricity usage based on supply conditions or price signals. Increasingly, DERMS platforms are integrating demand response capabilities to enhance the management of distributed energy resources and support grid stability. These systems enable real-time monitoring of energy demand and supply, facilitating demand response programs and dynamic pricing schemes. For instance, a DERMS can automatically decrease electricity consumption across multiple residential buildings during peak demand periods, helping to stabilize the grid and prevent blackouts.