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Public Transport
Public Transport

SOLUTIONS FOR PUBLIC TRANSPORT

The future of mobility depends on shifting passenger and freight traffic from roads to railways. However, aging public infrastructure requires urgent modernization to meet today's growing demands for environmental action, digitalization, accessibility, and reliable daily operations.

Drees & Sommer partners with public transport organizations to build efficient, resilient, and future-proof infrastructure. We deliver comprehensive project management, taking responsibility for your builds from strategic consulting and design right through to final construction.

Our services cover the entire spectrum of project and engineering management. We combine all relevant technical and construction disciplines under one coordinated management system. This enables us to efficiently deliver complex modernization and new construction projects in public freight and passenger transport. We turn ideas into added value through targeted workshops and rapid proof-of-concepts, ranging from AI readiness to scalable use cases. 

The interplay of stakeholders in the public transport sector

We help our clients confidently plan and execute complex infrastructure, operational, and modernization projects. We ensure your technical and organizational frameworks are ready for the future, guiding you from the initial strategic roadmap to the final build.

Who we support:

  • Public Transit Operators: Operators face the challenge of modernizing their services and infrastructure, securing operational stability, and making local transit, such as buses, streetcars, or subways, more attractive.
  • Rail Operators: Rail operators offer mobility solutions to travelers as the public face for passengers. This includes setting up schedules, organizing vehicle rotations, and running trips through a central control system. They also handle complex operational, workshop, and maintenance requirements.
  • Rail Infrastructure Operators: Rail infrastructure operators must maintain, modernize, expand, and operate tracks and stations under strict quality standards. They manage modernization primarily during ongoing operations.
  • Regional Rail Authorities: Regional rail authorities are responsible for a reliable, accessible, and environmentally-friendly mobility network. They manage its quality, procurement, and strategic development. These authorities handle the planning, organization, and financing of regional train traffic.
  • Vehicle Manufacturers: Rail vehicle and bus manufacturers require efficient locations, workshops, and processes for large vehicle programs, alongside modern maintenance and service concepts.

The mobility sector must meet strict legal requirements for environmental and climate protection. This requirement asks operators to adopt cleaner technologies and alternative vehicle systems. Both local and long-distance transport must adapt. Today, many railway lines and buses still run on diesel. To reduce CO2 emissions, operators must replace diesel engines with hydrogen technology or electric drives.

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Urbanization demands advanced mobility solutions. Passenger and freight transport must increasingly shift from road to rail.  

This essential shift supports international climate targets. By 2030, railway infrastructure must increase significantly – which requires massive investments in infrastructure.

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Operators must modernize real estate and transport facilities to ensure smooth operation. Modern travelers demand more comfort and infrastructure, such as shops for everyday needs. Unfortunately, new vehicle concepts often clash with existing infrastructure and workshops. We bridge the gap between facilities and modern mobility demands.

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Your Benefits

End-to-end expertise — from concept to completion 

  • Modernize infrastructure: Through expert project and construction management, backed by tailored site and infrastructure strategies. 

  • Standardize maintenance and production sustainably: With a focus on optimizing workshops, manufacturing facilities, transit depots, and their surrounding spaces. 

  • Future-proof institutional clients: Through strategic consulting, organizational development, and digital transformation.

ReferencesThese public transport projects might interest you.
Press

Into the Future with Digital Railways: DB InfraGO AG Upgrades the Scandinavian-Mediterranean Corridor to Modern Control and Signaling Systems

The European Train Control System (ETCS) is the core element of the digital transformation of Germany’s rail transportation networks: it controls trains digitally and improves the efficiency of railway tracks. © DB InfraGO AG (‘Digital Rail Germany’)

Hamburg/Kiefersfelden/Freilassing, Germany, January 13, 2026. The German section of the Scandinavian-Mediterranean Corridor (‘ScanMed’), about 4,500 kilometers long in total, is one of the most important railroad tracks in Europe. The central north-south route links Denmark to Austria and connects important metropolitan areas from Scandinavia to the Mediterranean corridor. DB InfraGo is the infrastructure firm of the German national railway company Deutsche Bahn AG (DB). With the aim of strengthening efficiency, safety and cooperation in European rail transport, Deutsche Bahn’s infrastructure manager is equipping the rail line with the European Train Control System (ETCS) and modern railroad control technology. The experts of Drees & Sommer SE support DB InfraGO with their expertise in multi-project coordination, and deadline and risk management. The consulting company specializes in real estate and infrastructure projects.

The ScanMed corridor is one of Germany’s largest digital transformation projects, with over 30,000 control units and a comprehensive number of digital control centers and technical facilities. The ETCS expansion along this central axis not only reinforces German rail infrastructure: “The upgrade also improves cooperation with European rail transport companies,” says André Schulz, who has overall responsibility for the ScanMed project management office. “The goal is to standardize technical interfaces between trains and infrastructure throughout Europe, and so to ensure interoperability,” he adds. This also increases operational safety and, together with other modern technologies, boosts operational capacity in the medium term due to shorter signal headways, while also reducing the number of outdoor facilities.

Digital Systems for More Efficient Railroad Operations 

The train control system ETCS replaces traditional lineside signals with in cab digital displays. A centralized control center monitors the positions of the trains in real time, gives operating instructions and can precisely control the capacity utilization of individual sections of track. This allows the network to be used more efficiently without compromising on safety. In addition to ETCS, modern signaling technology and the integrated control and operating system form the backbone of the digital equipment.

André Schulz explains: “Modern interlocking systems are gradually replacing older types of system. They transmit control commands via fiber optic cable to switches and signals and communicate through standardized, IP-based interfaces. This means that, in future, components from different manufacturers can be combined in one system. In this way, we promote competition between providers. In a long-term perspective, this will result in more cost-efficient and future-proof solutions.“

Collaboration across Sectors as a Key Success Factor

To ensure that mammoth projects – such as the modernization of the ScanMed corridor – succeed, DB InfraGo is relying more and more on cross-sector partnership models. Through the ‘Digital Rail Germany’ program, the industry is pooling its knowledge to create a digitally interconnected rail network from many individual technical solutions. Drees & Sommer project head Nils Johannsen and his team monitor the compliance with deadlines, coordinate subprojects and ensure a smooth interaction between all trades. The infrastructure expert comments: “Collaboration brings enormous added value if the government, research institutes, industrial firms and transport companies are involved in the project at an early stage. Their broad spectrum of expertise delivers viable solutions in terms of technical feasibility, cost efficiency and political acceptability.”

In his view, managing the project is challenging. “Having many partners means many interfaces. A careful and proper coordination between participants and subprojects is indispensable. So, we support the project management office and the project team with deadline monitoring and risk management services, and we coordinate internal processes. This enhances transparency and very much helps ensure that also large-scale projects, such as the ScanMed corridor, can be completed on time,” the project manager continues.

Leveraging Lessons Learned for Future Projects

The ScanMed project is scheduled to be completed by the end of 2035. Knowledge gained from the project can then be incorporated directly into the planning and implementation of further projects. Nils Johannsen points out: “Every infrastructure project has different framework conditions, but a lot of experience can be transferred. Thorough documentation and the analysis of project workflows are essential for this purpose. In this way, we are able to continuously develop our approaches.“

Let's talk. 

We’re happy to help.

Saskia Meynhardt

Head of Public Transport

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