The 2026 Photovoltaic Energy Storage Coordinated Application Innovation and Development Conference was held on September 18th in Chuzhou, Anhui Province. Tianhe Energy Storage was invited to attend and deliver a keynote speech on "2026 Tianhe Energy Storage Network Construction Practice and AIDC Exploration". The speech focused on the application of network type energy storage in AIDC scenarios and provided a systematic sharing, presenting Tianhe Energy Storage's energy storage technology roadmap for the AI computing age from trend analysis, scenario challenges to global integration solutions.
AIDC outbreak: Electricity demand doubles, power supply challenges severe
As of 2024, the global data center power consumption has reached 400 TWh, with the United States, Europe, and China accounting for approximately 85% of the total. It is expected that by 2030, the global data center electricity consumption will reach 945TWh, doubling compared to 2024, with a growth rate more than four times that of other industries. AIDC is driving explosive growth in data center power consumption.
2026光储协调应用创新发展大会9月18日在安徽滁州召开。天合储能受邀出席,发表《2026天合储能构网实践与AIDC探索》主题演讲,围绕构网型储能在AIDC场景的应用展开系统分享,从趋势研判、场景挑战到全域融合方案,完整呈现了天合储能面向AI算力时代的储能技术路线图。
AIDC爆发:电力需求翻倍,供电挑战严峻
截至2024年全球数据中心电力消耗已达400TWh,美国、欧洲和中国合计占比约85%。预计到2030年,全球数据中心用电量将达到945TWh,相比2024年翻倍,增长率是其他行业的4倍以上。AIDC正在推动数据中心电力消耗爆发式增长。
Tianhe Energy Storage pointed out that the continuous increase and severe fluctuations in AIDC load power pose four challenges to the power supply system:
Energy shortage and rising costs - Electricity expenses account for 50% of the operation and maintenance costs of data centers, and the speed of power grid planning and construction cannot keep up with the power density requirements of AI computing centers;
Unstable power supply and easy collapse of the power grid - a large number of power electronic converters are connected, resulting in a decrease in system inertia, and microgrids are prone to collapse when the mains power is abnormal;
天合储能指出,AIDC负载功率的持续攀升与剧烈波动,让供电系统面临四重挑战:
能源短缺,成本攀升——电费支出占数据机房运维成本的50%,电网规划建设速度跟不上AI算力中心的功率密度需求;
供电不稳,电网易溃——大量电力电子变流器接入导致系统惯量降低,市电异常时微电网极易崩溃;
Power consumption surges and efficiency is low - the traditional "medium voltage low voltage direct current" multi-level conversion architecture has high losses, and cables are on the edge of heating and combustion;
Load fluctuation, electricity sensitivity - The fluctuation of AI training load ranges from microsecond level transient impact to minute level energy gap, which is a multidimensional war.
Global integration solution: end-to-end reconstruction from power grid to chip
功耗激增,效率低下——传统“中压-低压-直流”多级变换架构损耗大,线缆处于发热燃烧边缘;
负载波动,电能敏感——AI训练负载的波动从微秒级瞬态冲击到分钟级能量缺口,是一场多维度战争。
全域融合方案:从电网到芯片的端到端重构
The core highlight of the speech is the AIDC global integration solution created by Tianhe Energy Storage, which reconstructs energy flow from the grid to chips; Define a new efficiency benchmark from transmission to consumption.
On the source storage side, Tianhe Energy Storage has launched a grid based system solution that adapts to AIDC scenarios to create four core technologies: pulse tolerant battery cells support fast pulse discharge, ensuring that cycle life is not affected; The efficiency enhanced DC cabin supports rapid response to load fluctuations, achieving ultra-high efficiency and super overload; The networked PCS suppresses broadband oscillations, improves system resilience, and achieves zero sensing adaptive control and full range voltage reconstruction; Electronic collaborative EMS achieves second level high-precision load prediction, coordinated scheduling of hundreds of PCS clusters, real-time management of millions of cell data, and millisecond level power response control.
On the distribution side, Tianhe Energy Storage has launched a high-density and efficient distribution solution, using an integrated square warehouse as the carrier, integrating the under research 800V HVDC high-efficiency power supply (efficiency 98.5%) and wind liquid fusion refrigeration technology, achieving rapid deployment of AIDC distribution side, PUE<1.15, and TCO reduction of 20%. The degree of prefabrication of the plan is greater than 60%, which shortens the TTM by 30% compared to traditional computer rooms, and helps in the construction of green and minimalist parks.
演讲的核心亮点,是天合储能打造的AIDC全域融合方案——从电网到芯片,重构能源流;从传输到消纳,定义效率新基准。
源储侧,天合储能推出构网型系统解决方案,适配AIDC场景打造四大核心技术:脉冲耐受型电芯支撑快速脉冲式放电,确保循环寿命不受影响;效能加强型直流舱支持负载波动快速响应,实现超高效率与超强过载;构网型PCS抑制宽频振荡,提高系统韧性,实现零感知自适应控制与全范围电压重构;电算协同型EMS实现秒级高精度负载预测、百台PCS集群协同调度、百万级电芯数据实时管理与毫秒级功率响应控制。
配荷侧,天合储能推出高密高效配电方案,以集成化方仓为载体,融合在研800V HVDC高效供电(效率98.5%)与风液融合制冷技术,实现AIDC配电侧快速部署、PUE<1.15及TCO降低20%。方案预制化程度>60%,相比传统机房TTM缩短30%,助力绿色极简园区建设。
Based globally, driven by technological innovation, leading the way in storage
At the end of the speech, Tianhe Energy Storage concluded the entire article with six key words: "based on the world, technological innovation, leading the way in storage, diverse needs, solutions, and value for the future". From the global practice of grid based energy storage to the system level solution output of AIDC scenarios, Tianhe Energy Storage is extending the capability boundary of "energy storage supporting the power grid" to a new dimension of "energy storage empowering computing power", providing a reusable path reference for the value leap of the photovoltaic energy storage industry in the era of computing power synergy.
立足全球,技术创新,引领先储
演讲尾声,天合储能以“立足全球、技术创新、引领先储、多元需求、解决方案、价值未来”六个关键词收束全篇。从构网型储能的全球实践,到AIDC场景的系统级方案输出,天合储能正在将“储能支撑电网”的能力边界延伸至“储能赋能算力”的新维度,为光储产业在算电协同时代的价值跃升提供了可复用的路径参考。
(Using AI translation)
(使用AI翻译)