Lithium iron phosphate energy storage system BESS
Li-ioncontainerizedfor solar applications

Lithium iron phosphate energy storage system - BESS - Dowei Electric - Li-ion / containerized / for solar applications
Lithium iron phosphate energy storage system - BESS - Dowei Electric - Li-ion / containerized / for solar applications
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Characteristics

Battery type
lithium iron phosphate, Li-ion
Other characteristics
containerized, for solar applications, compact, outdoor, three-phase, with inverter, air-cooled, liquid-cooled, high-capacity, cabinet, AC output, fan cooled
Voltage

Max.: 1,401 V

Min.: 960 V

Energy capacity

Max.: 4,000 kWh

Min.: 1,000 kWh

Description

• IEC62619/UL1973/UL9540A/UN3536, NEMA
• ISO 9001, KEMA, CESI, CE, TUV, UL, ASTA
• Seismic design, ETGI-1.020, IEEE Std 693, NCh2369
• Structural design, ASTM A325, ANSI/AISC 360, AWS D1.1
• High altitude correction per IEC & IEEE, 1000 ~ 5000m
• Modular design and flexible configuration on power and energy
• Pre-assembled, pre-tested, easy to- expend and easy-to-service

Energy Storage System (BESS – Battery Energy Storage System)

A Battery Energy Storage System (BESS) is an energy storage solution that stores electrical energy in batteries and releases it when required. It enables better integration of renewable energy, improves grid stability, provides backup power, and supports peak-load management.

A typical BESS installation combines:

Battery System + Battery Management System (BMS) + Power Conversion System (PCS) + Energy Management System (EMS) + MV Transformer + MV Switchgear

1. Main Functions of BESS
Energy Time Shifting

Stores electricity when energy is cheap or abundant and supplies it during high-demand periods.

Example:
·Solar Power (Daytime)
·Battery Charging
·Evening Peak Demand
·Battery Discharging

Peak Shaving
·Reduces maximum demand by supplying stored energy during peak load periods.

Benefits:
·Lower electricity demand charges
·Reduced transformer loading
·Improved grid efficiency
·Renewable Energy Integration

BESS compensates for renewable energy fluctuations:
·Solar output variation
·Wind power fluctuations
·Cloud shading effects

It helps provide a smoother power output to the grid.
·Grid Support
·BESS can provide:
·Frequency regulation
·Voltage support
·Reactive power compensation
·Black start capability
·Spinning reserve replacement

2. Main Components of BESS

1) Battery System
·The energy storage core.
Common battery technologies:

Lithium Iron Phosphate (LFP)
·Most common for large-scale BESS.
Advantages:
·High safety
·Long cycle life
·Good thermal stability

Nickel Manganese Cobalt (NMC)
Advantages:
·Higher energy density
·Compact size
Applications:
·Mobile and space-limited systems

2) Battery Management System (BMS)
Monitors and protects battery cells.
Functions:
·Cell voltage monitoring
·Temperature monitoring
·State of Charge (SOC)
·State of Health (SOH)
·Cell balancing
·Fault protection

3) Power Conversion System (PCS)
Converts:
·Battery DC Power
·AC Grid Power
·and vice versa.
Functions:
·Battery charging
·Battery discharging
·Active power control
·Reactive power control
Typical PCS ratings:
·50 kW to several MW per unit

4) Energy Management System (EMS)
The control platform that manages:
·Charging/discharging schedules
·Grid commands
·Renewable integration
·Energy optimization
·Remote monitoring

5) MV Transformer
Connects the BESS to the medium-voltage grid.
Typical:
·Battery/PCS Output
·400 V–690 V AC
·MV Transformer
·6.6 kV–35 kV Grid

6) MV Switchgear
Provides:
·Isolation
·Protection
·Switching control
Includes:
·RMU
·VCB switchgear
·Protection relays
·Surge arresters

3. Typical BESS Ratings
·Power Rating: 100 kW – 500 MW+
·Energy Capacity: 200 kWh – GWh scale
·Battery Voltage: Hundreds of volts to 1500 V DC
·Grid Connection: LV / MV / HV
·Response Time: Milliseconds
·Operating Life: 10–20 years
·Cycle Life: 3,000–10,000+ cycles

4. Types of BESS Applications

A.) Utility-Scale BESS
Capacity:
·10 MW–500 MW+
Applications:
·Grid balancing
·Renewable integration
·Frequency control

B.) Commercial & Industrial (C&I) BESS
Applications:
·Factory peak shaving
·Backup power
·Demand management
·Microgrids

C.) Residential BESS
Applications:
·Solar self-consumption
·Home backup
·Energy independence

D.) Renewable Hybrid BESS
Combined with:
·Solar PV
·Wind turbines
·Hydropower
Example:
PV Plant
+
BESS
+
MV Transformer Station

Dispatchable renewable power plant

In a modern power system, a BESS acts as a flexible energy buffer—absorbing excess electricity when available and delivering power when needed—to improve renewable energy integration, grid stability, and energy efficiency.
*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.