Perceive
Capture environment, signals, and change in real time.
Phone: +49 341 97856760
E-mail: info@generative-robotics.de
Web: www.generative-robotics.de
Amtsgericht Leipzig · HRB 45775
Aleksej Tokarev, Andreas Ciborius, Thomas Schröter
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E-mail: info@generative-robotics.de
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At Generative Robotics, Aleksej Tokarev leads overall technical architecture — from optimizing the hardware of robotic systems and connecting robotics and IoT components to developing autonomous software platforms.
Aleksej Tokarev is a computer scientist with long-standing experience in SCADA systems, machine-to-machine communication, and autonomous technologies. Early on, he worked on autonomous driving projects and accompanied their development to market maturity — at a time when autonomous mobility was not yet a mainstream topic.
As founder and CEO of Security Robotics, he develops autonomous security systems from the first concept phase through to productive deployment with customers. He brings this combination of technical depth, systems thinking, and operational implementation to Generative Robotics as CTO.
In addition, Aleksej serves as a lecturer at the Berufsakademie, supporting the training of future computer scientists.
At Generative Robotics, Andreas Ciborius leads strategy, business development, and customer relationships. He brings the network, operational depth, and direct market access to security companies, authorities, and critical-infrastructure operators.
Andreas Ciborius is an entrepreneur, investor, and founder with more than 20 years of experience in services, personnel deployment, security, technology, and robotics. He is a specialist for integrated security solutions and critical infrastructure.
Since 2006, he has developed modern security and service concepts for companies, authorities, and critical-infrastructure clients — with a focus on scalable, technology-based solutions. This work produced nationwide company structures with multiple locations and a strong network of specialists, technology, and operational expertise.
Through daily work in demanding security environments, he knows the weaknesses, challenges, and requirements of modern customer structures — experience he brings to Generative Robotics as a founder.
Early on, he recognized the importance of digitalization, AI, and robotics for the security industry. Since 2019, he has integrated autonomous systems into real deployment scenarios; from 2021, productively with customers — for site monitoring, hazard prevention, and intelligent support of operational security processes.
Today, he combines classical security expertise with AI-supported video analytics, autonomous robot systems, and digital control-room solutions — with the goal of creating sustainable, efficient, and future-proof solutions for companies, authorities, and critical infrastructure.
At Generative Robotics, Thomas Schröter leads software engineering — from AI integration through real-time data to IT architecture. He develops the technological foundation on which GR systems perceive, understand, decide, and act.
Thomas is a software engineer and technical generalist with over 20 years of experience building complex, cross-platform systems. His focus is on combining scalable software architectures, modern AI, and production-grade real-time applications.
In recent years, he has developed and integrated AI systems for real robotics applications, built backend and frontend architectures, and delivered production-grade systems for autonomous security solutions.
This combination of software architecture, AI, and operational systems development forms the technological basis of Generative Robotics.
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Phone: +49 40 30997990
Email: genrob@loerke-pr.com
Leipzig / Europe, June 24, 2026 — The technology industry is following with interest the first steps of Generative Robotics (GR) GmbH, founded in Leipzig on June 1, 2026. Behind GR are computer scientist and hardware engineer Aleksej Tokarev, entrepreneur Andreas Ciborius (CIBORIUS Group since 2006), and software engineer Thomas Schröter. They aim to introduce adaptive, generative robotic systems from Germany that meaningfully support people in nearly all areas of life — from industry and business to services and healthcare through to everyday private life.
“Generative Robotics positions itself as a long-term relevant, independent technology company in the European robotics ecosystem,” the founders state their vision. “We develop robotics in Germany — for Europe and the global market. This enables technological sovereignty and increases the resilience of infrastructures, companies and societies.”
In developing their first proprietary autonomous mobile robot (AMR — GR01), the founders and their teams draw on deep industry knowledge and extensive experience from years of deploying market-standard autonomous, AI-controlled technologies.
Generative Robotics will present itself at the international leading trade fair of the security industry “security essen” from September 22 to 25, 2026.
Loerke PR Hamburg
Email: loerke@loerke-pr.com
Phone: 040/30997990
Email: hello@generative-robotics.de
Phone: +49 341 97856760
Founded in 2026 — Generative Robotics develops autonomous mobile robotic systems (AMR) for security applications, critical infrastructure and industrial environments.
Our systems are designed to strengthen operational resilience, support NIS-2 relevant security requirements, and enable continuous monitoring of complex environments through autonomous intelligence.
Developed in Germany. Built for international deployment in mission-critical environments.
Generative Robotics develops autonomous mobile robotics platforms (AMR) for security, inspection and industrial applications.
Our focus is on robust, scalable systems that operate reliably in real-world environments and enhance the operational resilience of safety-critical infrastructure.
Developed in Germany and designed for global deployment from day one, our systems help organizations improve efficiency, coverage and security in complex operational settings.
We combine robotics engineering, artificial intelligence and operational security expertise into an integrated system approach for autonomous physical systems.
Our goal is to reduce dependency on continuous human presence in repetitive, complex and security-critical processes by augmenting them with autonomous systems.
Rising regulatory requirements such as NIS-2, increasing operational complexity and persistent workforce shortages are accelerating demand for autonomous systems in security and infrastructure environments.
Autonomous robotics is becoming a key technology for resilient, scalable and continuous operations in the physical world.
Built for real-world mission-critical performance
Designed for continuous operation in demanding environments
Driven by real-world use cases
Focused on stability in critical infrastructure contexts
We develop autonomous
mobile robotics for physical environments
Day One — GENERATIVE Robotics, founded in June 2026.
Global Solution Engineered in Germany
One Robotic Foundation
Generative Robotics develops autonomous mobile robotics platforms (AMR) for demanding deployment environments.
Generative Robotics
Decades of expertise in security infrastructure, autonomous robotics, AI, and software architecture — united to make physical systems intelligent.
Hardware engineering and overall technical architecture — from hardware, robotics/IoT connectivity to autonomous software platforms.
Strategy, business development, and market access to security companies, authorities, and critical-infrastructure operators.
Software engineering — from AI integration and real-time data to IT architecture.
AI becomes actionable
Many critical operations still rely on repeated human presence. We believe the physical world can be controlled autonomously through software.
Capture environment, signals, and change in real time.
Recognize situations, derive patterns, and interpret context.
Hypotheses, decisions, and proposed actions.
Autonomous, safe & scalable. Locally or across a fleet.
AI for the physical world
With Physical AI, artificial intelligence acts in the real world. It enables systems that operate reliably in dynamic environments.
Autonomous systems that work in real environments.
Systems respond to situations instead of rigid prescriptions.
Reliable systems that operate without permanent human presence.
Stay in touch
Interested in Generative Robotics? We look forward to connecting and sharing progress from development.
For the Physical World