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Case study · Humanitarian hub · Monguno, Borno State

Solar hybrid power for a humanitarian hub in Monguno

A 73.5 kWp Victron, Fronius and BYD system with 462 kWh of storage for a humanitarian hub in Monguno, built around the array already on the roof.

Solar

73.5 kWp

Battery storage

462 kWh

Air conditioners

About 34

Commissioned

Nov 2024

Victron, Fronius and BYD power room at a humanitarian hub in Monguno

The Victron, Fronius and BYD power room in Monguno.

What it powers at the humanitarian hub in Monguno

The hub has offices and guest rooms for humanitarian staff. It runs about 34 air conditioners, plus water heaters, kitchen equipment, fridges and freezers, lighting and internet.

How we split the loads

We wired the hub into two circuits, so the things that matter most never go off.

Critical loads: always on

Lights, fans, computers, internet, fridges and security run on the battery 24 hours a day.

Heavy loads: smart control

Air conditioners, water heaters and kitchen equipment switch off when the battery drops to 40% and come back on at 60%.

What we did

✓  Kept the 66 kWp array already on the roof
✓  Added 12 new JinkoSolar bifacial panels
✓  Built the power room around 6 Victron Quattro inverters, a Fronius Eco inverter, 9 Victron MPPTs and 30 BYD batteries
✓  Joined the old and new parts into one system built for harsh conditions. This was the first hub we handed over.

Full equipment list

•  73.5 kWp: 66 kWp existing JA Solar panels plus 12 × JinkoSolar 625 Wp bifacial panels
•  6 × Victron Quattro 15 kVA inverter-chargers
•  1 × Fronius Eco 27 kW PV inverter
•  9 × Victron MPPT charge controllers (8 × 250/100, 1 × 450/100)
•  462 kWh storage: 30 × BYD Premium LVL 15.4 kWh
•  Off-grid AC and DC coupled system with generator backup
•  Remote monitoring on Victron VRM

Brands used: Victron · Fronius · BYD · JinkoSolar · JA Solar

How the load control works

We sorted every circuit in the hub with the client's technical team. Critical loads sit on the battery circuit and never go off. Heavy loads sit on a separate, controlled circuit. The system runs everything from full battery down to 40%. At 40%, it switches the heavy loads off and waits for the next morning sun. At 60%, it turns them back on. The generators stay as a manual backup, so the hub team can see and manage how much energy the hub uses.

Running a facility on generators?

Tell us about your loads. We'll visit, measure and size a system that keeps the important things on.

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