ENERGY STORAGE TO MEET THE NEEDS OF LARGE-SCALE SOLAR, WIND AND UNINTERRUPTIBLE POWER SUPPLAY (UPS) PROJECTS

CONTAINER FOR SOLAR POWER PLANT

 

For power plants in the design phase:

 

Utilizes BESS - Battery Energy Storage Systems

Cooling system for battery preservation

 

Model C9-1MS-768-EPV 1 MWdc

Basic characteristics:

- Battery bank: LiFePo4 1MWdc

- Total storage capacity: 1.29 MWdc

- Operational storage capacity: 1 MWdc

- Battery protection reserve: 290 kWdc

- MPPT inputs; direct to solar panels

- Adjustable output power up to 300 kWac

- Three-phase inverter with 34.5 kV transformer

- On-grid operation on the MV network

Model C12P-2MS-768-EPV 2 MWdc

Basic characteristics:

- Battery bank: LiFePo4 1MWdc

- Total capacity: 2,580 MWdc

- Operational capacity: 2 MWdc

- Protection reserve: 580 kWdc

- MPPT inputs; Direct connection to solar panels

- Adjustable output power up to 600 kWac

- Three-phase inverter with 34.5 kV transformer

- On-grid operation

 

 

 

CONTAINER FOR SOLAR POWER PLANT

 

For power plants built using the conventional model:

 Cooling system for battery preservation.

 

Model C12-1MS-768-EAC 1,000 kWcc

Basic characteristics:

- Battery bank: LiFePo4 1,000 kWcc

- Total capacity: 1,290 kWcc

- Operational capacity: 1,000 kWcc

- Protection reserve: 290 kWcc

- BESS - Battery Energy Storage Systems

- AC input directly from the 34.5 kV MV grid

- Adjustable output power up to 300 kWac

- Three-phase inverter with 34.5 kV transformer

- On-grid operation

 

Model C15P-1MS-768-EAC 2,000 kWcc

Basic characteristics:

- Battery bank: LiFePo4 2,000 kWcc

- Total capacity: 2,580 kWcc

- Protection reserve: 580 kWcc

- Operational capacity: 2,000 kWcc kWcc

- BESS - Battery Energy Storage Systems

- AC input directly from the 34.5 kV medium voltage grid

- Adjustable output power up to 600 kWac

- Three-phase inverter with 34.5 kV transformer

- On-grid operation

CONTAINER FOR WIND FARM

 

For plants already built using the conventional model:

Cooling system for battery preservation.

 

The BESS - Battery Energy Storage Systems for wind farms is the control center to be installed to manage the entire system for storing and supplementing energy generation.

 

Operating model of the Container Center

 

The BESS can be programmed for several functions:

 

- Minimum starting energy

- Total or supplemental energy generation

- Container entry sequence

- Maximum energy injected into the grid

- Preferred generation schedule

- The container is taken out of operation at its load limit

- Each container receives and supplies energy to the MT (Metric Transmission) system

- There are no limits to the number of containers that can be connected

- The storage system is 100% modular

 

For higher storage capacities, see the Very High Power Energy System column below.

 

 

Very high power energy system

 

The association of several DC storage containers for high loads can be optimized for various operating models as follows:

» Storage for solar power plant

» Storage for wind power plant

» Peak-hour storage

» Continuous generation storage

» Generator set storage

» Off-grid backup storage

 

Example: 10 MWdc storage for solar power plant

Basic characteristics:

- 4 Battery containers: LiFePo4 2.5 MWdc

- 1 Container for current management and inversion

- Total capacity: 12.9 MWdc

- Protection reserve: 2.9 MWdc

- Operational capacity: 10 MWdc

- BESS - Battery Energy Storage Systems for solar power plant

- AC charging directly from the 34.5 kV MV grid

- Output connected directly to the 34.5 kV MV grid

- Adjustable output power up to 3 MWac

- Scheduling for preferred hours

 

Short break power system (on and off grid)

Can be programmed for peak hours.

 

Model C12P-1MOFG-768-EAC 1 MWdc

Basic characteristics:

 

- Battery bank: LiFePo4 1MWdc

- Total capacity: 1,290 MWdc

- Operational capacity: 1 MWdc

- Protection reserve: 290 kWdc

- Battery charging with mains power

- Automatic off/on/off-grid switching

- Maximum output power of 200 kWac

- Automatic return to the grid after 15s of stability

- Three-phase inverter with 127/220 V or 220/380 V output

 

Model C12P-2.5MOFG-768-EAC 2.5 MWdc

Basic characteristics:

- Battery bank: LiFePo4 1MWdc

- Total capacity: 3,225 MWdc

- Operational capacity: 2.5 MWdc

- Protection reserve: 725 kWdc

- Battery charging with mains power

- Automatic off/on/off-grid switching

- Maximum output power of 500 kWac

- Automatic return to the grid after 15s of stability

 

On-grid power system (connected full-time)

 

Model C9P-1MIG-768-EAC 1 MWdc

Basic characteristics:

 

- Battery bank: LiFePo4 1MWdc

- Total capacity: 1,290 MWdc

- Operational capacity: 1 MWdc

- Protection reserve: 290 kWdc

- Battery charging with mains power

- Three-phase AC input directly from the mains

- Maximum output power of 200 kWac

- Three-phase inverter with 127/220 V or 220/380 V output

- Full-time grid-connected operation

 

Model C9P-2.5MIG-768-EAC 2.5 MWdc

Basic characteristics:

- Battery bank: LiFePo4 1MWdc

- Total capacity: 3,225 MWdc

- Operational capacity: 2.5 MWdc

- Protection reserve: 725 kWcc

- Battery charging using mains power

- Three-phase AC input directly from the mains

- Maximum output power of 500 kWac

- Three-phase inverter with 127/220 V or 220/380 V output

- Full-time grid-connected operation

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SCHIMIDT GAZZAFFI

 

         Consultoria & Engenharia

 

LARGE STORAGE

 

Solar power plant

Wind power plant

Self-generating plant

Vehicle charging system

Backup for hospitals

Backup for supermarkets

Powerful uninterruptible power supply (UPS) systems

Power generation for supermarkets

Power generation for mansions

Power generation for farms

Power generation for isolated islands

Power generation for mining companies

 

 

POSSIBLE OPERATING TOPOLOGIES:

 

1 - Solar power plant with storage and continuous generation (day and night) on-grid

2 - Wind power plant with storage and continuous generation (generates 24 hs/day) on-grid

3 - Isolated solar power plant with continuous generation (generates day and night)

4 - Isolated wind power plant with continuous generation (generates day and night)

5 - Solar power plant with storage and possible grid supplementation (if necessary)

6 - Storage Bank: grid + batteries: Uninterrupted power (UPS)

7 - On-grid storage banks for grid equalization

8 - Diesel generator with storage: 3 hours of diesel and 21 hours of battery power.

9 - Isolated solar power plant with diesel supplementation: Secure day and night power

10 - Various hybrid configurations to meet specific needs.