Sector: Defense
Autonomous power for defense operations.
Reduced logistical dependence and greater energy resilience.
In a defense-sector deployment, it was necessary to guarantee a continuous power supply for critical systems while reducing dependence on diesel fuel and minimizing the risks associated with its transport and supply.
- Location: Confidential
- Model: NEB20
- Units: 50

The challenge: Critical energy with high logistical dependence.
Operations require a constant power supply for communications, security, and operational infrastructure.
Exclusive reliance on diesel generators involves:
- Continuous dependence on fuel supply
- High logistical costs (transportation, storage, and protection)
- Operational risks associated with convoys
- Detectable acoustic and thermal signature
The solution:
Hybrid system for energy independence
Nomad Solar Energy has deployed the Nomad Energy Box 20 model configured as a power generation system.
This enables:
- Significantly reduce diesel dependence
- Reduce the need for fuel convoys
- Ensure energy stability in critical operations
- Operate with a low acoustic signature
- Reduce visible and thermal emissions


Results
- Lower logistical exposure and reduced operational risk
- Greater energy autonomy during deployment
- Operational continuity without interruptions
- Reduced total cost of ownership (TCO) associated with fuel
- Improved discreet operational capability
“Mobile solar power vs. diesel generator
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Diesel generator Nomad Hybrid Solar
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Energy instability Continuous energy stability
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Fuel logistics dependency Structural fuel reduction
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Variable and volatile energy cost Optimized energy cost
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High emissions Silent and clean energy
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Constant maintenance Greater operational resilience
Hybrid solar energy is consolidating itself as an efficient alternative to the diesel generator.
Mobile energy
for critical operations
Hybrid solar energy is emerging as a real alternative to diesel generators in defense, enabling greater autonomy, lower logistical risk, and higher operational efficiency.
