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市场调查报告书
商品编码
1744432
DC微电网的全球市场的评估:各电压等级,行动方式,各用途,各地区,机会,预测(2018年~2032年)Global DC Microgrid Market Assessment, By Voltage Level [Low, Medium, High], By Operating Mode [Off-Grid Connected, Grid Connected], By Application [Commercial, Industrial, Residential, Utility], By Region, Opportunities and Forecast, 2018-2032F |
全球直流微电网市场规模预计将从2024年的65.6亿美元增至2032年的205.5亿美元,在2025-2032年的预测期内,复合年增长率为15.35%。近年来,由于对再生能源发电解决方案的投资不断增加,该市场呈现显着增长,并且由于未来储能技术的进步,预计未来几年将保持强劲的成长势头。此外,对再生能源与直流微电网组合的投资不断增加,正在提高整体系统效率和成本效益,从而推动市场需求。此外,私营和公共部门正在大力投资分散式能源基础设施,以增强能源覆盖,尤其是在偏远和农村地区,这推动了市场对直流微电网的需求。各国都在努力实现严格的环境法规和净零碳排放目标,这推动了再生能源领域的投资,并为预测期内的直流微电网创造了机会。各国正在大力投资再生能源项目,推动了市场对高品质直流微电网的需求。
例如,根据印度新和再生能源部的报告,到2023年5月,印度的再生能源装置容量将达到179吉瓦,其中太阳能占67吉瓦,风能占43吉瓦。未来几年,由于商业和工业部门对能源的需求高速成长,预计印度将进行大量投资以增加其太阳能装置容量。这一发展趋势正在推动市场对直流微电网部署的需求。
市政和公用事业部门正在部署直流微电网,以增强电网弹性,支援电气化活动并整合分散式能源资源,从而推动市场需求。此外,政府的支持性政策、财政激励措施以及全球电气化活动正在推动直流微电网的普及。
本报告提供全球DC微电网市场相关调查分析,提供市场规模与预测,市场动态,主要企业的形势等资讯。
Global DC microgrid market is projected to witness a CAGR of 15.35% during the forecast period 2025-2032, growing from USD 6.56 billion in 2024 to USD 20.55 billion in 2032. The global DC microgrid market has experienced significant growth in recent years due to the rising investment in renewable energy generation solutions, and upcoming advancements in energy storage technologies are expected to maintain a strong pace of expansion in the coming years. In addition, increasing investment in combining renewable energy with DC microgrids increases the efficiency and cost-effectiveness of the overall system which propels its demand in the market. Additionally, the private and utility sectors are heavily investing in decentralized energy infrastructure to enhance energy access, especially in remote and rural areas which increases the demand for DC microgrids in the market. Countries are looking to meet stringent environmental regulations and net-zero carbon emission goals which drive the investment in renewable energy sectors, thereby creating opportunities for DC microgrids in the forecast period. Countries are investing heavily in renewable projects which is driving the demand for high-quality DC microgrids in the market.
For instance, in May 2023, as per India's Ministry of New and Renewable Energy report, India's installed renewable energy capacity reached 179 GW, of which solar and wind comprised 67 GW and 43 GW. In the coming years, the country is going to invest heavily to increase the solar installed capacity as the demand for energy in commercial and industrial sectors is rising at a high rate. This development increases the demand for the deployment of DC microgrids in the market.
The municipal and utilities sectors are deploying DC microgrids to bolster grid resilience, support electrification initiatives, and integrate distributed energy resources, which drives demand in the market. Moreover, rising supportive government policies, financial incentives, and global electrification efforts are fostering the widespread adoption of DC microgrids.
Developing Efficient Power Distribution Systems in Rural Electrification Amplifying Market Growth
Several countries are investing in the development of efficient power distribution systems in rural electrification which are driving the demand for DC microgrids in the market. Currently, the rural areas lack reliable grid infrastructure and making it challenging for the expansion of power supply. DC microgrids offer a cost-effective and scalable alternative, enabling decentralized power generation and distribution which creates its demand in the market. The rural areas are looking for the adoption of renewable energy sources which drive the demand for DC microgrids for the transmission of storage of renewable energy. Moreover, DC microgrids eliminate unnecessary AC to DC conversions and reduce energy losses and improve efficiency, thereby driving its demand in different applications.
DC microgrids help simplify power infrastructure in remote areas by reducing dependence on complex transmission networks from the main grid. They can easily integrate solar panel systems and battery storage to efficiently electrify institutions, schools, and healthcare centers, even during outages. Furthermore, DC microgrids are easy to maintain and deploy quickly, with lower installation costs, which is why governments in developing nations are increasingly adopting them for rural electrification projects, boosting the market size. Moreover, upcoming advancements in power electronics and smart energy management systems can be seamlessly integrated with DC microgrids, enhancing controllability and efficiency. This makes DC microgrids an ideal solution to meet fluctuating rural energy demands in the coming years.
For instance, in January 2025, the United States Department of Agriculture (USDA) invested over USD 6 billion through several of its programs for the development of renewable energy in rural areas of the United States. The ongoing programmes are Empowering Rural America (New ERA) and Powering Affordable Clean Energy (PACE), with investments in rural communities across 30 US states which will benefit from clean and affordable energy, including solar PV and energy storage. The rising investment in rural electrification drives the demand for microgrids in the market.
Rising Investment in Battery Energy Storage Systems Creating Market Opportunities
The global energy landscape is looking to shifts toward decarbonization and the integration of renewable energy sources in the grids, which leads to rising investment in battery energy storage systems, thereby creating opportunity for the market.
Battery energy storage systems (BESS) can store renewable energy generated during peak production periods and release it when power generation is low or demand is high. Battery products inherently store and supply direct current (DC) for various applications, so integrating microgrids with batteries eliminates the need for frequent power conversions, improving power supply efficiency by 10-15% and reducing costs. The direct integration of microgrids with BESS maximizes system efficiency, creating significant market opportunities for DC microgrids. Furthermore, upcoming technological advancements in battery storage, particularly in lithium-ion and flow batteries, are driving increased investment in the market, boosting demand for efficient DC microgrids.
Furthermore, increased investment in BESS supports grid modernization and resilience both urban and remote areas. Governments and private sector players are recognizing the benefits associated with the BESS investing which leads to channeling the funds into energy storage projects and incentivizing the deployment of advanced microgrid solutions.
For instance, in December 2024, the United States Department of Energy's (DOE) and Loan Programs Office (LPO) committed to funding around USD 584.5 Million to Convergent Energy and Power company to build solar and battery energy storage systems (BESS) in Puerto Rico. This development highlights the government is helping companies build battery energy storage systems which drive the demand for DC microgrids in the coming years.
Medium Voltage Level Dominates the Global DC Microgrid Market
The demand for medium voltage DC microgrids is high due to their unique ability to efficiently integrate with renewable energy sources and modern electronic loads, making this segment dominant in the market. Medium voltage products are compatible with existing appliances and minimize the need for multiple power conversion devices, which lowers energy loss and drives their demand. Medium voltage DC microgrids are highly efficient and align with global sustainability goals by reducing greenhouse gas emissions. Furthermore, the proliferation of solar photovoltaics, battery storage, and electric vehicles further increases the appeal of medium voltage microgrids.
Additionally, medium voltage DC systems can be used in both new developments and retrofits in the commercial sector, as they offer enhanced resiliency and stable power supply. In conclusion, the push for decarbonization and the need for cost-effective, flexible energy solutions are driving the strong global demand for medium voltage DC microgrids.
Asia-Pacific Region Leads the Microgrid Market
The Asia-Pacific region leads the DC microgrid market with the largest market share. This region includes many developing nations that are heavily investing in renewable energy sources and improving power distribution systems, driving the demand for DC microgrids. Rapid industrialization and urbanization in the region require efficient and reliable electricity systems, which will further boost the adoption of DC microgrids during the forecast period. Moreover, DC microgrid equipment facilitates the integration of renewable energy and enhances rural electrification, amplifying demand for DC microgrids on a larger scale.
DC microgrids facilitate the smooth integration of intermittent sources and help in achieving decarbonization targets while providing a stable power supply. Further, some of the developing nations in the region are interested in upgrading their power grids and offering stable and affordable electricity to off-grid and rural regions which helps in increasing the demand for DC microgrids in the region. Also, the increasing demand for electrifying the transportation industry in these nations is likely to be a key driver fueling the market growth over the forecast period.
In April 2025, China's solar capacity installations experienced significant growth in 2024, with utility-scale solar power capacity exceeding 880 gigawatts (GW), according to China's National Energy Administration. This expansion is more than double the 121 GW installed in the United States by the end of 2024. Currently, over 720 GW of solar capacity is under development in China, including approximately 250 GW under construction, nearly 300 GW in pre-construction phases, and 177 GW in announced projects. Notably, the Inner Mongolia region is home to the "Great Solar Wall," a massive project spanning over 250 miles and aiming for an installed capacity of around 100 GW by 2030.
Future Market Scenario (2025 - 2032F)
Massive investments in renewable infrastructure projects across the region are driving the demand for DC microgrids in coming years.
Governments are focusing on modernizing existing facilities power grids fostering the demand for DC microgrids in the forecast period.
The rise of electric vehicles is fuelling demand for DC microgrid-powered charging infrastructure, particularly in urban and off-grid areas boosting DC microgrid demand in the market.
Utility-scale and grid-connected DC microgrids are gaining traction for enhanced resilience and energy access, especially in Asia-Pacific and North America which drives the demand for DC microgrids in the forecast period.
Key Players Landscape and Outlook
DC microgrid manufacturers are implementing various strategic measures to strengthen their market position. They are heavily investing in research and development to enhance energy storage systems, smart grid technologies, and the seamless integration of renewable energy sources, ensuring their solutions meet evolving customer needs and regulatory standards. Additionally, manufacturers are focusing on developing cost-effective, modular, and scalable microgrid products that can be tailored for diverse applications. Product launches, agreements, business expansions, collaborations, and developing technologies are projected to increase competition in the fast-paced market.
For instance, in March 2023, ABB Ltd. decided to invest in direct current microgrid start-up Direct Energy Partners to accelerate energy transformation. The company is entering into a strategic partnership with Direct Energy Partners (DEP) to accelerate the adoption of Direct Current (DC) microgrids in the market. This development helps the company to increase its revenue and global presence in the coming years.
All segments will be provided for all regions and countries covered
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.