May. 26, 2026
From North America to Europe, from SouthEast Asia to Africa, Solareast's liquid-cooled containerized energy storage systems, stacked industrial and commercial energy storage systems, and high-voltage industrial and commercial BESS systems are operating stably in thousands of factories, warehouses, and commercial buildings, helping users save on electricity costs every day and reducing tens of thousands of tons of carbon emissions annually.

In the 2010s, energy storage focused primarily on basic technology research and development, with limited application scenarios. At this time, some began to consider: the electricity generated by solar power could not be used up during the day, but was unavailable at night… Thus, a seed of "energy storage" was planted in a Chinese new energy company—SolarEast·Luoyang Energy Storage was born.
"SolarEast" symbolizes hope, "Luoyang" carries a thousand-year-old manufacturing heritage, and "energy storage" is the answer for the future. The combination of these three elements has given rise to a clear mission: to ensure that every ray of sunshine is utilized and every unit of clean electricity has a purpose.
A difficult but correct path: independently developing liquid-cooled temperature control systems and modular BESS architecture, focusing on industrial and commercial energy storage system solutions. Ten years later, SolarEast has become a benchmark in the energy storage field, integrating "technology + manufacturing + service."
"Energy is the lifeblood of industry and commerce; we cannot compromise on it," said Mia Wu, Deputy General Manager of SolarEast Luoyang Energy Storage and Head of International Projects, at an international exhibition. "What we want to do is not just sell batteries, but provide reliable, intelligent, and sustainable energy security for every factory, every warehouse, and every commercial building."
Stepping into the SolarEast Luoyang Energy Storage R&D Center, engineers rarely just calculate based on blueprints; they spend more time building realistic "user power consumption models": simulating the power load of small factories, simulating voltage fluctuations during the start-up and shutdown of supermarket freezers, and simulating the operating status of photovoltaic and energy storage systems in off-grid scenarios. They meticulously examined every detail: Could the BESS seamlessly support simultaneous operation of air conditioners, charging stations, and water heaters? Could the inverter respond within 20 milliseconds to a sudden drop in grid voltage?
These seemingly trivial details were of paramount importance to the engineers at SolarEast·Luoyang Energy Storage.
In 2024, Luoyang Energy Storage's independently developed 3.34MWh containerized liquid-cooled BESS was shipped to the United States, becoming one of the first large-capacity commercial and industrial energy storage products in the industry to adopt full liquid-cooled thermal management technology. This system seamlessly integrates with high-voltage solar systems and hybrid inverters. The liquid-cooling technology precisely controls the cell temperature difference within ±2℃, increasing battery life by 20%, and enabling stable full-power operation even in 40℃ high-temperature environments.
During acceptance testing, electrical engineers at the US factory remarked, "Having tried many brands of energy storage systems, Luoyang Energy Storage's liquid-cooled solution is the quietest and has the highest heat dissipation efficiency. Placed against the factory wall, it's almost imperceptible that it's running." This is precisely what SolarEast aimed for: not to flaunt technical specifications, but to make energy management reliable, quiet, and worry-free.
Luoyang Energy Storage never sells cookie-cutter "standard products." Every commercial and industrial energy storage system solution stems from a deep understanding of the user's real-world electricity usage scenarios.
In California, a large logistics warehouse faced high peak electricity prices. Luoyang Energy Storage deployed a 140kWh stacked energy storage system for it, coupled with four hybrid inverters, to achieve "peak shaving and valley filling"—charging during low electricity prices and automatically discharging during high electricity price periods. The system adopts a flexible modular design, consisting of four 35kWh stacked modules, each expandable based on a 5kWh unit. Adding photovoltaics or expanding battery capacity in the future is as simple as building with blocks.
The warehouse operations manager reported: "Previously, we had to shut down some equipment during peak electricity demand. Now, the energy storage system automatically switches power, directly reducing electricity costs by about 30%. We are planning to connect rooftop solar panels to create a truly zero-carbon warehouse."
In Germany, the energy transition is accelerating, but the volatility of renewable energy is causing headaches for businesses. SolarEast·Luoyang Energy Storage implemented a 215kWh high-voltage BESS system for the company, working in conjunction with Deye hybrid inverters and photovoltaic panels. The system intelligently assesses grid conditions: storing surplus photovoltaic power during normal times and automatically releasing it during peak hours; in the event of a grid outage, it switches to islanded mode within milliseconds, firmly safeguarding the power supply to critical equipment.
The electrical manager of the German factory commented: "Having tried many energy storage products, Luoyang Energy Storage understands industrial scenarios best. It's not just a simple external battery; it's more like an integral part of the factory's energy system—obedient, intelligent, and stable."
To earn this recognition, Mia Wu and her engineering team spend years in the laboratory, simulating extreme environments such as -20°C, desert heat, and high humidity and salt spray, repeatedly refining the system's stability.
As the Deputy General Manager of Luoyang Energy Storage, head of international projects, and representative for the European market, Mia Wu's work goes far beyond business negotiations. Leading an international team, she acts as a reliable "energy steward" for her clients, handling everything from project surveying and solution design to certification and compliance and localized delivery.
"Every country has different grid rules, pricing mechanisms, and safety standards," says Mia Wu. "We can't use a single solution for everything." "What we do is customize the most suitable commercial and industrial energy storage solutions for each client." During the implementation of the 215kWh project in Germany, Mia Wu's team spent three months communicating with the local grid company to ensure the system fully complied with the stringent standards of the German market. For the 140kWh project in California, USA, she led her team to shorten the project cycle by 40%. A long-term US distributor commented: "Mia is not just a salesperson, but also a technical consultant and overall project coordinator. If you have any problems, you can always find a reliable solution with her." Mia Wu's professionalism and reliability have long been a microcosm of SolarEast Luoyang Energy Storage's internationalization: professional, efficient, and trustworthy.
What makes the team even prouder than certifications are the actual feedback from users:
* Japanese farmer: After installing the Luoyang Energy Storage system, my greenhouse crops have never been damaged by power outages again.
* South African grocery store owner: Before, there were power outages for several hours every day, and the diesel generator was noisy and smelly. Now it's quiet and saves money, reducing electricity bills by more than half.
* Australian retired couple: Storing electricity during the day and using it at night saves more than two thousand Australian dollars a year.
These voices from different countries converge on one meaning: SolarEast Luoyang Energy Storage makes every kilowatt-hour more valuable.
If you ask users of SolarEast Luoyang Energy Storage what this brand means to them——
Some say that the remote intelligent monitoring platform allows them to view charge and discharge curves in real time, estimate revenue, and receive fault warnings, like 24/7... A dedicated energy steward on duty 24/7;
Some say that when engineers come to debug, they patiently explain every parameter and clean up the site before leaving—this meticulousness is rare;
Others say that what touches them most is... "Keeping Promises": Promised delivery dates are never delayed, promised battery life is never compromised, and promised after-sales response is never late.
This trust isn't built on advertising; it's the result of Luoyang Energy Storage's decade-long, step-by-step commitment.
Today, SolarEast·Luoyang Energy Storage's BESS has taken root in over 30 countries and regions worldwide: from logistics warehouses in California, USA, to factories in Bavaria, Germany; from fishing villages on SouthEast Asian islands to desert farms in the Middle East, Luoyang Energy Storage is becoming a trusted energy partner for global industrial and commercial users.
In 2026, SolarEast launched its new generation of full-scenario intelligent energy storage platform, deeply integrating AI algorithms with battery management. Based on electricity price forecasts, weather data, and user electricity consumption habits, it automatically optimizes charging and discharging strategies to maximize the return on every kilowatt-hour.
"Our original aspiration has never changed." "Mia Wu said, 'SolarEast Luoyang Energy Storage is more than just a name; it's a responsibility—to ensure that every ray of sunshine is not wasted and that every kilowatt-hour of clean electricity has a purpose. As an international window, I want the world to know: SolarEast embodies not only manufacturing speed but also the warmth of service.'" SolarEast Luoyang Energy Storage—Ensuring Every Kilowatt-Hour of Clean Energy Has a Home
The story of Luoyang Energy Storage is actually quite simple: Centered on BESS, focusing on industrial and commercial energy storage system solutions, safeguarding every kilowatt-hour of clean electricity globally.
It began with a simple question: Can we prevent sunshine from being wasted?
The answer is: Yes.
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May. 26, 2026
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