Sandringham Private Game Reserve – Main Lodge
SOLAR
801.04 KWp
Inverters
1 200 kW
About the Project
The Main Lodge at Sandringham Private Game Reserve required a large-scale hybrid system to support high daytime and evening energy consumption. SolarXgen installed a 801.04 kWp solar array with 1 200 kWh battery storage, ensuring uninterrupted operations for guests, lodge facilities, and essential services.
This system combines high-quality Sigen Hybrid solar panels and inverters to deliver reliable, sustainable energy, reducing reliance on the grid while optimising operational efficiency across the lodge.
KWP SOLAR
kw Inverters
Feasibility & Design
We analysed energy loads and operational patterns to create a system capable of supporting high-demand lodge operations.
Procurement & Logistics
All equipment was sourced from trusted suppliers, and delivery was carefully scheduled to minimise disruption at the lodge.
Installation & Commissioning
SolarXgen installed and commissioned the system to ensure the hybrid solution delivers both solar and stored energy efficiently.
Monitoring & Maintenance
The system is fully monitored to maintain peak performance and ensure consistent energy delivery for the lodge.
Sustainable, Reliable Energy for High-Demand Operations
The Sandringham Homestead system delivers a consistent and dependable energy supply for both residential and operational needs. By combining solar generation with battery storage, the homestead enjoys uninterrupted power for daily activities, essential services, and operational requirements.
Uninterrupted power
Solar and battery system ensures critical operations run without interruption.
Energy cost savings
Reduced reliance on expensive diesel or grid energy.
Enhanced operational resilience
Supports reserve operations in all conditions.
MWh of Clean Energy
kWp – Installed Capacity
Power Your Remote Facility Efficiently
SolarXgen provides hybrid solar and battery solutions designed to keep remote sites operational and sustainable.
Hybrid Solar Solutions for Reliable Operations
Optimised for energy independence, these systems reduce costs and improve reliability.
✔ Lower operational energy expenses
✔ Maintain operations during grid outages
✔ Improve sustainability performance
✔ Strengthen long-term energy resilience
