
Daimler Buses Ensures Maximum Charging Uptime for Electrified Bus Depots
Delivering maximum reliability and operational visibility for electrified public transport depots.
Daimler Buses Ensures Maximum Charging Uptime for Electrified Bus Depots

The Challenge
Aspublic transport operators across Germany electrify their bus fleets, charging infrastructure reliability becomes mission-critical. Bus depots must ensure vehicles are fully charged and ready tooperate every day, downtime or charging interruptions directly impactpublic transportation services.
Daimler Buses Solutions, the system integrator for charging infrastructure within Daimler Truck, works closely with depot operators who demand highly resilient charging architectures capable of operating even during internet outages. Traditional charging setups rely on a single backend connection,meaning that connectivity disruptions could interrupt charging operations.
Additionally, different depots often use different Charge Point Management Systems (CPMS), like for example Spirii or Greenflux. For Daimler’s service teams, this fragmented landscape created operational complexity, requiring them to monitor multiple backend platforms across their customer base.
The Solution
To address these challenges, Daimler implemented FLEXECHARGE’s broker forking architecture, enabling a redundant and flexible backend setup for EV charging infrastructure.
With broker forking, charging stations connect simultaneously to multiple backend systems, including:
- Primary backend: manages all charging sessions under normal conditions
- Secondary backend: a local or backup system that automatically takes over if connectivity to the primary backend is lost
- Service backend: dedicated to monitoring, diagnostics, and operational tasks
This architecture ensures seamless failover and uninterrupted charging sessions, even in the event of network outages. By mirroring OCPP message sacross systems, the secondary backend can immediately resume controlif the primary backend disconnects, preserving ongoing charging transactions.
Atthe same time, FLEXECHARGE’s platform enables Daimler to centralize operational monitoring. Regardless of which backend a depot operates on, Daimler’s service teams can monitor infrastructure performance through a single dashboard, simplifying fleet-wide operations and improving service efficiency.
Next Steps
As electrification of public transport accelerates, Daimler continues toexpand this resilient architecture across new bus depots.
By combining redundant backend connectivity, operational observability, and flexible integration with multiple CPMS platforms,the solution provides a robust foundation for large-scale fleetcharging.
Going forward, Daimler aims to further scale reliable charging infrastructure to support the growing electrification of buses and commercial vehicles, ensuring that charging networks remain stable, flexible, and ready for the demands of tomorrow’s electric fleets.
Features in Use
Solution & Benefits


Technical Overview
CHARGING HUB
8 x Alpitronic HYC300
MAX CHARGING POWER
2400 kW
GRID CONNECTION
3000 kW
CHARGING LIMIT
1800 kW*
PERFORMANCE PRICE
~45 €/kW
EXPECTED SAVINGS
30.000 € p.a.
Technical Overview
Locations
10
MAX CHARGING POWER
88-400kW per location
GRID CONNECTION
55-160kW per location
SOLAR PANELS
0-120kW per location
7 DC CHARGERS
0-1 per location
58 AC CHARGES
4-24 per location
Technical Overview
Locations
Hotel in Sassenheim
CHARGING STATIONS
10 AC (22 kW) + 3 DC (47 kW)
Energy Management
HARMON-E platform + Grid meter integration
GRID CONNECTIONS
524 kW
MAX CHARGING POWER
360kW
SOLAR CAPACITY
570 kW

“FLEXECHARGE helped us create a highly redundant and reliable charging architecture, ensuring continuous operations even in demanding depot environments.”
Dennis Wagner, Headof Public Charging and Operations Daimler Buses
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