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Solar power plant with a capacity of 4.95 MW and an energy storage system

Case study: 4.95 MW solar power plant with an energy storage system by LK Energy Group. Design, installation, commissioning. Industrial power plant, Ukraine.

Solar power plant with a capacity of 4.95 MW and an energy storage system

An industrial 4.95 MW solar power plant with a 20 MWh battery energy storage system (BESS) in Odesa region — an EPC project by LK Energy. Design, construction, installation and commissioning — carried out in-house, right down to manufacturing the substations at our own plant in Odesa. The plant is in industrial operation.

Project profile

Plant capacity (AC)
4.95 MW
Solar field (DC)
≈6.48 MW — the field is deliberately oversized relative to the grid connection point, so the plant runs at full output for longer
Energy storage system (BESS)
5 MW / 20.064 MWh
Location
Odesa region
LK Energy's role
EPC contractor: design, equipment, construction, commissioning

Equipment

Photovoltaic modules
JA Solar JAM72D42: 630 W — 4,608 units and 640 W — 5,592 units; 10,200 modules in total
Inverters
Deye SUN-110K-G03 — 45 primary + 2 backup units (47 in total)
Energy storage
containerized BESS units totaling 5 MW / 20.064 MWh — peak shaving, operation during hours of high electricity prices, and reserve capacity
Substations and switchgear
packaged KTP (transformer substations), 6 kV RU (switchgear) and panel equipment manufactured in-house by LK Energy (Odesa plant)
КТПГС substations
5 × КТПГС-1250 packaged substations — factory certificates No. 173996–174000

The energy storage system is built on W ENERGY (Wincle Energy Pte. Ltd.) equipment, for which LK Energy is an official dealer — see battery energy storage systems.

Implementation stages

  1. Design. Technical solutions and plant architecture, equipment specification, cost estimate, state expert review of the design.
  2. Construction. Earthworks, installation of mounting structures and modules, installation of inverters, packaged substations and BESS containers.
  3. Commissioning. Testing, grid integration, configuration of generation and storage modes, preparation for commercial operation.
Site overview: the solar field and energy storage containers

Scope of LK Energy's work

  • Equipment procurement and logistics (China and the EU)
  • Manufacturing of substations and panel equipment at our own plant in Odesa
  • Electrical installation and commissioning work by our own crews
  • Plant service and maintenance

See also

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The same approach — for sites from 30 kW

The scale here is 4.95 MW, but the engineering behind it does not depend on capacity. A 30, 100 or 500 kW plant goes through the same route: sizing against actual consumption, design, approvals and grid connection, installation, commissioning, service.

The switchgear side does not change either. The distribution boards, relay protection and automation for this plant were built at our own factory in Odesa — for a 30 kW site they are built by the same production and the same engineering team. This is the part of a plant that decides how it behaves during faults and switching; it is ours, whatever the scale.

What scale does change is the connection point and the equipment list: a 30 kW site connects at 0.4 kV, a megawatt one through its own 6–10 kV substation. The rest of the logic is the same, and we size it from your consumption profile, not your roof area.

Where to go next:

Site photos

Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 1
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 2
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 3
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 4
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 5
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 6
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 7
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 8
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 9
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 10
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 11
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 12
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 13
Solar power plant with a capacity of 4.95 MW and an energy storage system — photo 14
В
В'ячеслав Юрдик
Quality Engineer
Over 1,000 units of equipment accepted at the factory (QC) and 200 electrical installation projects completed under technical supervision.

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