Utility-Scale Energy Storage for Industrial and Microgrid Projects
The GE2000LH is a containerized battery energy storage system engineered for large-scale commercial, industrial, and microgrid applications.
Built on an advanced 314Ah cell platform, it supports renewable energy integration, diesel generator optimization, and both grid-connected and off-grid operation.

Reliability and Safety
● Semi-solid lithium-iron 314Ah batteries with an advanced combination of solid and liquid electrolyte, which significantly increases the safety and lifespan of the cells.
● Certified according to international industry standards.
● IP55 environmental protection and C4H anti-corrosion performance.
● Multi-level battery protection and fire suppression technology.
High-Efficiency
Operation
● Intelligent liquid cooling for optimal thermal performance.
● Advanced EMS algorithms maximizing energy efficiency.
● Proprietary BMS and EMS platforms tailored to project requirements.
● AI-enabled optimization for dynamic energy management.
Flexible Energy
Management
● Integrated battery storage, PCS, transformer, and STS architecture.
● Easy scalability through parallel system expansion.
● Cloud-based monitoring and rapid fault diagnosis.
● Supports PV AC/DC coupling and ultra-fast on-grid/off-gridswitching (<20 ms).
GridIQ is GEO Energy’s intelligent Energy Management System (EMS), designed to optimize the performance of modern energy assets in real time. By continuously analyzing energy production, consumption, storage, and grid conditions, GridIQ ensures every component of the system operates at maximum efficiency.
The platform intelligently coordinates photovoltaic (PV) systems, Battery Energy Storage Systems (BESS), EV charging infrastructure, and grid interaction to reduce energy costs, increase self-consumption, and maximize return on investment.
With GridIQ, businesses gain complete visibility and intelligent control over their energy assets, enabling smarter decisions, greater flexibility, and a more resilient energy infrastructure.
Self-consumption optimisation
Use more energy from renewable sources and minimise feed-in.
Physical peak shaving
Shave consumption peaks and minimise demand rate costs. The grid connection must be able to supply all loads.
Load control
Consumption optimisation via active connection/disconnection of consumers depending on the energy generated.
Generation control
Consumption optimisation via active connection/disconnection of generators depending on the energy generated in grid operation.
Zero feed-in
Certified fulfilment of grid requirements for not feeding electricity into the utility grid.
Multi-use
Simultaneous use of two applications (SCO & PS RLM, SCO & ToU, PS & ToU).
Charging stationc control
Smart control of multiple charge (set) points and central controls.
Time of use
Time-dependent use of energy features and services.
Forecast-based charging
Depending on the weather forecast, curtailment losses from photovoltaic installations are avoided and self-consumption is optimised.
Direct marketer interface
The PV direct marketer transmits the control signals to the PV installation via the EMS.








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