πŸ‡ΏπŸ‡¦ Western Cape, South Africa Β· Fruit Processing Factory

1MW Solar System for Factory in South Africa: 2MWh BESS Case Study

1MWSolar PV
2MWhBattery Storage
$18,000+/moSaved / Month
32 monthsPayback

Project Background

This fruit processing facility in the Western Cape faced South Africa's load-shedding crisis: scheduled grid blackouts of 4–8 hours daily. Cold storage of perishable fruit could not tolerate interruptions β€” every load-shedding event risked product loss worth more than the facility's monthly energy bill.

The Challenge: Load-Shedding Threatens Perishable Inventory

The factory ran cold storage at -0.5Β°C, processing lines, and packaging equipment. Diesel generators covered outages at $0.52/kWh β€” three times the grid rate. The facility needed a solar power system with battery storage large enough to carry production through load-shedding blocks.

The Solution: 1MW Solar + 2MWh Battery Energy Storage

Mars Solar delivered a megawatt-scale solar power system with a 2MWh BESS. The battery bank is sized to carry the cold storage and critical processing loads through the longest load-shedding blocks. The system charges from solar during the day and from the grid during off-peak windows, discharging during outages and tariff peaks.

Solar PV Capacity1 MW ground-mount + rooftop
Battery Energy Storage2 MWh LFP, containerized
InvertersHybrid, grid-interactive
System TypeGrid-tied + load-shedding backup
Critical load backupCold storage + processing lines
InstallationMars Solar engineers, 6 weeks

Results & ROI

The system eliminates load-shedding losses entirely and cuts monthly energy costs by $18,000+. Solar supplies 65% of daytime production energy. The factory has reported zero inventory loss since commissioning. Against South Africa's rising tariffs, the savings grow every year.

Monthly savings$18,000+
Annual savings$216,000+
Payback period32 months
Solar share of daytime load65%
Inventory losses since installZero

β€œLoad-shedding no longer affects us. The system paid for itself faster than projected as tariffs kept rising.”

β€” Operations Director, Western Cape Fruit Processor

Implementation Timeline

Week 1–2
Load study and load-shedding modeling
Week 3–12
Manufacturing, 72-hour full-load testing
Week 13–18
Shipping and site preparation
Week 19–24
Installation, commissioning, grid sync

Project Gallery

DC cable tray running along the array of a solar system for factory
Factory roof covered by the array of a 1MW solar system for factory
Panorama of the rooftop solar system for factory at commissioning

Solar system for factory: What to Replicate

Factories buy solar for tariff management as much as for volume: the array cuts daytime grid draw, while the battery shaves the evening peak and rides through short outages. A solar system for factory loads is sized from the shift pattern and motor starting currents, not from annual consumption alone. Above 200kW we dispatch 2–4 Mars Solar engineers for installation, commissioning and grid synchronization, so a solar system for factory duty is handed over running, not delivered as a kit. If you are costing a solar system for factory, send us your load profile and your latest electricity or fuel bills β€” we return a sized design, a landed quote and a payback model within 24 hours.

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Free system design and ROI estimate within 24 hours β€” based on your actual electricity bills.