Group 1: Core Insights - China is steadily advancing its "dual carbon" goals, with the construction of a new power system dominated by renewable energy becoming the core path for energy transition [1] - The intersection of the digital technology revolution, represented by artificial intelligence, and the urgent demand for computing power presents unprecedented challenges for the energy system in terms of safety, greenness, and economic viability [1] - The energy sector is undergoing a profound transformation from "product thinking" to "systemic thinking" to address the "impossible triangle" of ensuring reliable electricity while balancing low-carbon transition and economic efficiency [1] Group 2: Computing Power Demand - Global computing power is expected to grow nearly tenfold from 2020 to 2030, with data centers projected to consume 1500 TWh of electricity annually, equivalent to the annual electricity consumption of approximately 500 million households in China [2] - The demand for computing power is evolving traditional data centers into a "new load monster," characterized by high power and strong fluctuations during peak usage [2][4] Group 3: Energy Transition Requirements - The transition to green energy necessitates not only "more electricity" but also "more economical, stable, and cleaner electricity," highlighting the structural misalignment between the pace of computing power growth and the infrastructure development of the power grid [6] - The industry is re-evaluating the role of advanced intelligent data centers (AIDC) within the energy system, with "green electricity direct connection" emerging as a frequently discussed solution [6] Group 4: Solutions and Innovations - A comprehensive green electricity direct connection system solution for AIDC has gained significant attention, based on 10 GWh of operational assets and practical experience across various scenarios [7] - The newly launched AIDC high-voltage direct current storage product, "Ronghe Xuanwu 2.0DC," features rapid power response capabilities and can provide dynamic capacity increase and long-duration backup power [9] - The upgraded "Ronghe Yinglong 5.0" and "Enprime-C Plus" 6.25 MWh grid-connected storage systems are designed to meet the urgent demand for large-scale clean electricity while reducing carbon footprints and electricity costs [9] Group 5: Future Outlook - AIDC, equipped with green electricity direct connection capabilities, is evolving from a mere "data center" to a "computing power plant," becoming a flexible consumer and producer in the new power system [12] - The challenge of solving the energy "impossible triangle" is not only a technical competition but also a test of industry understanding and strategic endurance [12] - Companies that truly comprehend the essence of power systems and excel in transforming data into value will be best positioned to build a secure, green, and economical energy infrastructure in the face of the surging demand for computing power [12]
从“机房”到“算力电厂”,如何破局AIDC能源“不可能三角”?
Zhong Guo Neng Yuan Wang·2026-01-06 08:16