Replace Diesel Generator Runtime With High-Capacity Battery Power
Generator-replacement powerstations provide portable or semi-mobile battery power for tools, equipment, temporary facilities, events and remote operations. The correct system depends on peak load, continuous load, operating hours, charging access and required backup duration.

Can a battery powerstation replace a diesel generator?
Yes, for many applications. High-capacity battery powerstations can entirely replace diesel generators for temporary sites, events, and construction tools. For very heavy continuous loads, they act as a 'hybrid' solution—running the site silently for 80% of the time, and only starting the diesel generator briefly to rapidly recharge the batteries.
Why Reduce Diesel Generator Use?
Operating diesel generators continuously for variable loads is highly inefficient. Generators are often sized for the 'peak' load (like starting a heavy motor), meaning they run at 10-20% capacity for the rest of the day. This leads to fuel waste, excessive carbon emissions, and 'wet stacking' which damages the engine.
Additionally, noise and emission regulations are becoming stricter in urban environments and at night. Delivering diesel to remote sites is expensive and carries environmental risks. Transitioning to battery powerstations eliminates noise, cuts emissions to zero at the point of use, and drastically reduces operational costs.
System Components
Modular elements that build the complete solution.
Camper PRO Range
Portable battery powerstations with 2-5kWh capacity.
Camper Elite Range
High-capacity mobile units delivering up to 10kWh+ with high surge output.
Semi-Mobile BESS
Skid-mounted high-capacity battery storage (50kWh+).
Ideal Applications
Construction Sites
Powering welfare cabins silently overnight and running power tools during the day.
Events and Production
Silent, fume-free power for lighting, sound equipment, and catering vans.
Emergency Operations
Rapid-deploy power for disaster response teams and medical tents.
Remote Telecom
Replacing continuous generator run-time at off-grid cell towers.
Our 6-Step Deployment Process
From initial consultation to final commissioning.
1. Assess
Log the existing generator kVA, average load, and diesel consumption.
2. Analyse
Calculate the required battery capacity to replace the generator's runtime.
3. Design
Select the appropriate powerstation model or hybrid configuration.
4. Configure
Determine how the powerstation will be recharged (Solar, Grid, or Hybrid).
5. Procure and Deploy
Deliver the units to the site for immediate use.
6. Monitor and Optimise
Track fuel savings and battery health over the project lifecycle.
Information We Need to Plan Your System
- Existing generator size (kVA)
- Average and peak loads (kW)
- Daily runtime hours
- Current fuel consumption and cost
- Required mobility (Portable vs Skid-mounted)
- Charging opportunities (Solar / Grid availability)
Technology Comparison
| Option | Best suited for | Main limitation | Typical planning requirement |
|---|---|---|---|
| Diesel Generator | Heavy, continuous 24/7 loads | High fuel/maintenance costs, noisy, emissions | Fuel logistics |
| Battery Powerstation | Variable loads, night-time power, clean environments | Requires recharging source | Load profiling |
| Hybrid System (Bat+Gen) | Off-grid construction, large temporary sites | Higher initial capital cost | Integration controls |
Frequently Asked Questions
Request a Generator Replacement Assessment
Gletscher Energy will review your project requirements and recommend the next technical planning step.
What happens next?
- Engineering review of submitted details
- Initial feasibility assessment
- Direct consultation booking