Premium Containerized Off Grid Power Storage System BESS
2、Grade-A Lithium iron phosphate battery
Designed for off-grid scenarios, the premium containerized BESS power storage system seamlessly integrates with solar installations,capturing and storing excess solar energy.
Bloo Power solar BESS system excels in peak shaving and valley filling: storing energy during low-demand periods and releasing it during peak usage.In a rugged container, it offers robust performance for remote areas, industrial sites, or regions with unstable grid access, delivering consistent off-grid power while reducing energy waste.

Parameter
|
System Parameters |
|||
|
Rated AC Power |
500KW | ||
|
AC Access Method (isolation method) |
Three-phase three-wire (without isolation transformer) | ||
| Cell Capacity |
314Ah |
||
| Battery Pack Quantity | 1044KWh | ||
| Rated DC Voltage | 832V | ||
| DC Voltage Range | 650V~949V | ||
| Rated Grid Frequency | 50Hz/60Hz | ||
|
Available Rated Capacity |
Grid-tied peak shaving/off-gird power supply guarantee | ||
| Max Conversion Power | 99.0% | ||
|
Protection |
Over temperature, low temperature charging, over current, short circuit, over voltage, under voltage, DC bus protection, tec. |
||
| SOC Calculation Accuracy | <8% | ||
| System Life | >6OOO cycles@ DOD 8O% | ||
| THDi | <3%(rated power) | ||
| Operating Temperature | -2O℃~65℃ | ||
| Maximum Altitude Allowed | 3000m | ||
| Weight | 20 t | ||
| IP Grade | IP55 | ||
| Container Size | 20 foot | ||
| Relative Humidity | 0 ~ 95%(non-condensing) | ||
| Altitude | 3000m(>3000m Derating) | ||
| Fire Extinguishing System | Perfluorohexanone gas fre extinguishing system+water sprinkler | ||
| Cooling System | Liquid cooling | ||
| Communication Interface/Protocol | RS485, Ethernet, CAN2.0 | ||
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Energy Storage System Hardware Selection and Configuration
Energy Storage Batteries
Energy storage batteries are the core component of energy storage systems. Their selection should be determined based on the project's actual needs and budget. Common energy storage batteries currently on the market include lead-acid batteries, lithium-ion batteries, and flow batteries. Lead-acid batteries, with their mature technology and low cost, are suitable for applications with low power density requirements. Lithium-ion batteries offer high energy density and a long cycle life, but are relatively expensive. Flow batteries, with their scalability and recyclable electrolyte, are suitable for large-scale energy storage projects.
01
Power Storage Converter (PCS)
he power storage converter serves as a bridge between the energy storage battery and the grid, responsible for the charge and discharge conversion of electrical energy. Depending on the application scenario and requirements, different types of PCS can be selected, such as a single-phase two-stage PCS, a three-phase two-stage PCS, or a three-phase single-stage PCS. Factors such as PCS efficiency, reliability, and scalability should also be considered.
02
Battery Management System (BMS)
The BMS monitors, controls, and protects the energy storage batteries, ensuring their safe and stable operation. The BMS should include real-time monitoring, data analysis, fault diagnosis, and alarm functions to support intelligent battery scheduling and optimized management.
03
Power Conditioning Device
Power conditioning devices are used to stabilize the output voltage and frequency of the energy storage system to cope with grid fluctuations and load changes. Depending on the project's specific circumstances, either a grid-connected or off-grid type of power conditioning device can be selected. Grid-connected power conditioning devices must include functions such as automatic generation control (AGC) and automatic voltage control (AVC) to ensure smooth grid access; off-grid power conditioning devices require independent control and management capabilities to ensure system self-sufficiency.
04
System Integration and Monitoring
After the energy storage system's hardware is selected and configured, system integration and monitoring are required. By integrating various hardware devices and software systems, remote monitoring, data analysis, and operational management functions are enabled for the energy storage system. System security, reliability, and ease of use must also be considered.
05
The selection and configuration of energy storage system hardware is critical to ensuring efficient and stable system operation. In actual projects, appropriate hardware should be selected based on specific needs and budget, and then configured and optimized appropriately.

Energy Storage System Equipment Performance Parameter Requirements
1. Energy Density: Energy storage equipment should have high energy density to store more energy within a limited physical space. This will help improve the overall efficiency and performance of the system.
2. Charging and Discharging Efficiency: The equipment's charging and discharging efficiency should be sufficiently high to ensure rapid energy storage and release. Efficient charging and discharging cycles help maintain stable operation of the energy storage system.
3. Power Output: Energy storage equipment should have sufficient power output capacity to meet the system's needs in various scenarios. In particular, the equipment should be able to provide stable power output during periods of heavy grid load or sudden power demand.
4. Cycle Life: The energy storage equipment's cycle life should be sufficiently long to ensure long-term stable operation of the system. The cycle life of the equipment depends on the technology and materials used, so a proven, reliable solution should be selected.
Power Battery Generator With Lifepo4 Highlight :
Large capacity energy storage to meet high demand
Grade-A Lithium iron phosphate battery
Utility scale solar storage
Communication interfaces: RS485,Ethernet,CAN 2.0
Smart MPPT controller and BMS
Reduced initial Investment and lower electricity costs

Energy storage system monitoring and management functions are key to ensuring safe, stable, and efficient operation. They enable real-time monitoring, data analysis, and intelligent management of the energy storage system, providing users with a comprehensive and intuitive monitoring interface and operational experience.
In terms of real-time monitoring, the system uses sensors and hardware devices to collect various energy storage system parameters, such as voltage, current, temperature, and pressure, and transmits this data to the central control room. A large display in the central control room displays these parameters in real time, helping operations and maintenance personnel quickly understand system status.
Customization Policy
OEM & ODM service to satisfy customer's requirements. For OEM service, all our products can do it, Also, our marketing team can design the logo and online posters for free. For ODM service, We can design exclusive products' appearance for you which other customers cannot use or we can manufacture according to your specific technical requirements.
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FAQ
Q: Can you tell me about your payment terms?
A: Usually, 100% payment before producing for sample order. For big order payment, we accept a 30% deposit and 70% balance before delivery. We will provide you with photos of the products and packaging before you make the final payment.
Q: What is the estimated delivery time for your batteries?
A: The delivery time for the batteries ranges from 5 to 25 working days after the receipt of the advance payment. The exact delivery timeline will depend on the products ordered and the quantity of the order.
Q: What is the warranty policy for the battery?
A: The warranty for the battery varies, ranging from 5 to 10 years, depending on the specific model.
Q: Is it possible to customize the size of the battery?
A: Yes, we offer tailored solutions to meet the unique needs of our customers by providing custom-sized batteries to fit their specifications.
Q: Do you manufacture lithium batteries?
A: Yes, our factory specializes in the production of lithium batteries and has been doing for more than 10 years.
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