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Energy Storage System Solution for Peaking Shaving (On-Grid)
Our energy storage system adopts modular system configuration and supports multi-mode operation, which improves investment returns, can achieve peak-valley time shifting, staggered power consumption, and relieve grid pressure. It is suitable for industrial and commercial electricity prices, large peak-valley price differences, and high grid continuity requirements. It can be used as an emergency backup power supply and is also suitable for microgrid scenarios. It meets the needs of industrial and commercial energy conservation, carbon reduction, and green development. It's an ideal for application scenarios such as factories, residential areas, shopping centers, hospitals, and hotels.
Depending on the grid load, we can adjust peaks and valleys in a timely manner to save electricity costs, relieve grid pressure, and significantly improve power reliability and energy quality. At the same time, we manage the risk of rising energy prices, generate additional revenue from renewable sources, and reduce environmental impact. Our integrated solution addresses your multiple needs.
Safe and Reliable
The use of lithium iron phosphate batteries is safer and more reliable
Modular Design
The modular design makes installation and operation very convenient.
Real-time Control
Real-time control and dispatch, participating in the optimization of power grid operation
Support Microgrid
Support microgrid operation and improve power supply reliability
Model | GMP500 | GMP625 | GMP1000 |
DC side parameters | |||
Working voltage range | 580~1000V | 580~1000V | 580~1000V |
Full load voltage range | 625~950V | 625~950V | 625~950V |
Maximum DC current | 200A*4 | 200A*5 | 200A*8 |
Communication side parameters | |||
Maximum AC power | 550kW | 687kW | 1100kW |
Rated AC power | 500kW | 625kW | 1000kW |
Rated AC current | 180A*4 | 180A*5 | 180A*8 |
Rated AC voltage | 400V,3W+PE/3W+N+PE | 400V,3W+PE/3W+N+PE | 400V,3W+PE/3W+N+PE |
Rated AC frequency | 50/60Hz±5Hz | 50/60Hz±5Hz | 50/60Hz±5Hz |
General | |||
System protection | IP21 (indoor); IP55 (Outdoor) | IP21 (indoor); IP55 (Outdoor) | IP21 (indoor); IP55 (Outdoor) |
Noise | < 78dB | < 78dB | < 78dB |
Cooling | Air cooling | Air cooling | Air cooling |
Communication interface | RS485/CAN/Ethernet | RS485/CAN/Ethernet | RS485/CAN/Ethernet |
Weight | 660kg (indoor); 800kg (outdoor) | 740kg (indoor); 900kg (outdoor) | 1180kg (indoor); 1310kg (outdoor) |
Ambient temperature | -30 ℃~60 ℃ | -30 ℃~60 ℃ | -30 ℃~60 ℃ |
Dimension(mm) | 1200 * 1000 * 2100mm (indoor); 1350 * 1000 * 2100mm (outdoor) | 1200 * 1000 * 2100mm (indoor); 1350 * 1000 * 2100mm (outdoor) | 1200 * 1000 * 2100mm (indoor); 1350 * 1000 * 2100mm (outdoor) |
Decoupled Cluster Management Architecture
Each DC-side module connects to an independent battery cluster, with the AC-side enabling unified power dispatch and intelligent control. This decoupled design prevents performance bottlenecks between clusters, allowing modular clusters to optimize power distribution through adaptive scheduling algorithms.
Grid-Class Reliability with Isolation Design
Integrated power-frequency isolation transformer ensures exceptional surge immunity and safety standards—ideal for microgrids requiring seamless off-grid operation.
Intelligent Monitoring & Adaptive Management
Powered by our in-house intelligent management system, the PCS enables real-time monitoring of parallel units, supporting predictive fault detection, remote diagnostics, and dynamic load balancing to minimize O&M complexity.
Fault-Tolerant Redundancy Design
Single-cluster failure redundancy: Remaining modules maintain continuous operation to mitigate customer losses.
DC-side independent management: Adopts "one cluster, one control" strategy (no parallel connections), eliminating cell inconsistency risks from loop currents.