Against the sustained growth of AI large models and intelligent computing demand, computing-power and power coordination has become a key subject in the development of the new power system. Establishing the core link connecting green energy and digital intelligent computing power has emerged as the direction of industrial technological evolution.

On June 3, on the opening day of the 19th SNEC PV+ Expo, LISINER joined hands with Alibaba Cloud to officially launch the LISINER GALAXY distributed computing-power and power coordination solution. Focusing deeply on the characteristics of distributed photovoltaic and energy storage sites, the solution adopts lightweight and modular design to support flexible deployment and rapid replication. To date, the solution has been successfully deployed and fully commissioned at LISINER Poyang Zero-Carbon Factory in Jiangxi.
At the launch event, LISINER and Alibaba Cloud Computing Co., Ltd. (hereinafter referred to as Alibaba Cloud) formally signed a cooperation agreement. Leveraging Alibaba Cloud’s full-stack AI technologies and Qwen large model, both parties will jointly explore sustainable pathways for the coordination between intelligent computing and clean energy.

GALAXY 800: Higher, Faster, Stronger
Faced with the challenge that power consumption of single racks for AI computing power has reached the megawatt level, the traditional alternating current power supply architecture has hit its physical limits. LISINER launches the GALAXY 800 technical architecture. Adopting an 800V direct current solution to realize system-level restructuring, it enables distributed computing-power and power coordination to achieve “Higher, Faster, Stronger”:

>> Higher Efficiency: Direct DC-DC power supply lifts end-to-end efficiency above 97.5%, far exceeding the 85-90% of traditional AC solutions. Green power supplies computing power directly without intermediate losses.
>> Faster Response: Deep integration between direct current architecture and energy storage smooths computing power fluctuations and supports millisecond-level power dispatching. Modular deployment shortens delivery cycles and accommodates flexible rollout for distributed scenarios.
>> Greater Value: The solution reduces costs and boosts efficiency at the hardware layer. Current is lowered to 1/15 of that in AC schemes. It frees up data center space and raises AI accelerator density by more than 35%. Meanwhile, green power feeds computing power directly via the GALAXY 800 architecture. The comprehensive utilization rate of distributed photovoltaic and energy storage assets jumps from less than 50% to above 95%, driving asset operation to shift from electricity price management to computing power value operation.
GALAXY 800 serves as a system-level solution for deep integration of distributed energy and intelligent computing scenarios in the AIDC era. Through coordination, it achieves higher comprehensive utilization of distributed photovoltaic and energy storage assets, propelling digital intelligent energy into a new cycle of computing-power and power coordination and delivering greater value.
Benchmark Case: Forward-thinking Practice to Realize a Forward-looking Closed Loop
As the first implemented benchmark of this solution, the LISINER Poyang Zero-Carbon Intelligent Microgrid Project in Jiangxi has completed strategic upgrading from integrated energy management to computing-power and electricity value conversion.

Dr. Cong Wenzhuo, Technical Lead of Computing-Power and Power Coordination at LISINER, stated, “The successful launch of the Poyang project marks the strategic upgrade of distributed photovoltaic and energy storage toward computing-power and electricity value conversion. With in-depth participation of computing power resources, the system not only enriches flexible regulation means inside the microgrid, but also upgrades traditional distributed photovoltaic and energy storage assets into a digital integrated entity featuring dual attributes of power regulation and computing power services. It achieves a leap from hardware integration to deeper digitalization and joint asset value creation. Surplus green power is converted into computing power assets in real time during peak photovoltaic output; the energy storage system delivers millisecond-level support amid grid fluctuations.”
To satisfy practical demands from various industrial parks, enterprise owners and energy investors, the solution supports diversified cooperation models including joint asset construction and existing facility upgrading. It effectively optimizes upfront investment and enables rapid replication and promotion of this high-value business model.
Full-dimensional and All-time Coverage to Consolidate the Intelligent Computing Infrastructure
Intelligent computing centers impose stringent requirements on power quality and power supply continuity. Against the trend of deep integration between intelligent computing and new energy, computing power is evolving into a new type of flexible regulation resource. The newly unveiled GALAXY distributed computing-power and power coordination solution pioneers a full-dimensional and all-time architecture covering equipment level, station level and regional level. With full direct current coupling, it connects the paths of power generation, energy storage and loads. The system supports millisecond-level switching between grid-connected and off-grid modes, ensuring zero-interruption operation of computing power loads during load fluctuations or voltage sags.
Relying on the self-developed SESCLOUD digital intelligent energy platform, the solution realizes integrated dynamic matching between supply and demand. Through flexible dispatching enabled by computing-power and power coordination, the time-space migration characteristics of computing power are transformed into flexible resources for the power grid. While lifting the consumption ratio of green power, it continuously cuts the overall carbon emissions of intelligent computing centers and drives a positive cycle between green computing power and clean energy.

The next growth driver for distributed energy storage lies in higher value density.
As a pioneer, LISINER is proving to the industry with tangible deployed projects that computing-power and power coordination has officially entered a new phase of large-scale commercial application. It enables more new-type energy assets to capture maximum value monetization amid the current industry boom — and LISINER is already at the forefront.
Moving forward, LISINER will continue to advance technological innovation, take the lead in seizing the next development cycle, and redefine value benchmarks for new-type energy assets.