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The convergence of artificial intelligence and robotics into “Physical AI” is ushering in a new era of automation. In a new study, the FERI Cognitive Finance Institute, in collaboration with Fraunhofer IPA, analyzes how this technological megatrend is alleviating the skills shortage and why the true revolution extends far beyond spectacular humanoid prototypes.
Humanity stands at the dawn of a technological transformation that will fundamentally change the economy and society. At the heart of this transformation is the convergence of two megatrends: artificial intelligence and robotics.
While AI has primarily existed in the digital world until now, it is now taking on a physical form. Experts refer to this as “Physical AI” or “Embodied AI”—systems that not only process data but also learn, plan, and act in the physical world.
“Just as electricity transformed almost everything 100 years ago, today I actually have a hard time thinking of an industry that I don’t think AI will transform in the next several years.” — Andrew Ng, Stanford University
The robotic transformation is driven not only by technological trends but also by intense economic and social pressures. In aging societies such as Germany, the labor force is projected to shrink by five million people by 2060. Labor costs are rising steadily, while the cost of robotic systems continues to fall.
In addition, geopolitical tensions and the need for resilient supply chains are forcing companies to shift production back closer to their markets (“reshoring”). In high-wage countries like Germany, however, this is economically feasible only through an extremely high degree of intelligent automation.
The fourth generation of robotics breaks with the traditional paradigm of rigid programming. In the past, every movement of a robot had to be defined in advance with millimeter precision; any deviation caused the system to shut down. Modern, AI-powered systems, on the other hand, learn through observation, data, and simulations.
“I’d like to make a robot that you can take into a factory, where it watches a person doing a job, and figures out how to do that job itself.” — Marc Raibert, Boston Dynamics AI Institute
Through foundation models—similar to the language models behind ChatGPT—robots develop an understanding of their environment and can autonomously plan complex tasks. A real-world example shows that AI-based “pick-and-pack” solutions in logistics can already increase productivity by up to 125% today, as they can handle even completely new, never-before-seen objects.
In the public eye, humanoid robots that score goals or do somersaults often take center stage. However, the study makes it clear: Humanoids are merely the most visible manifestation of a much larger trend. While traditional industrial robotics remains a mature core market and service robotics in logistics and medicine is already experiencing double-digit growth, humanoid robotics is still in an early, capital-intensive pilot phase.
The real disruption is taking place “under the hood”: deep within the value chain, in sensors, semiconductors, software platforms, and data ecosystems.
“Spatial intelligence—AI’s ability to perceive, reason about, and interact with the 3D world—is the scaffolding upon which human cognition is built.” — Fei-Fei Li, World Labs
The competition for dominance in Physical AI is in full swing. While the U.S. leads in software and venture capital and China dominates the global market for industrial robots with a current share of 54%, Europe—and Germany in particular—has an excellent starting position in hardware. Its strengths lie in precision engineering, sensor technology, and decades of process expertise in mechanical engineering. However, to remain competitive in the long term, Germany must integrate this expertise with its own AI software and digital ecosystems.
• Replacement of Human Labor: In rapidly aging societies, automation is not an end in itself, but an urgent necessity.
• Shift in Value Creation: Software and data are becoming the key differentiators; hardware, by contrast, is increasingly interchangeable.
• Growth markets: While industrial robots are experiencing steady growth, professional service robotics (e.g., logistics/medicine) is showing the highest immediate momentum.
• Recommendation for action: Companies should not wait for the perfect “all-purpose robot,” but rather conduct pilot projects in clearly defined areas (use cases) and gain experience. Investors should not be blinded by the hype surrounding “humanoids,” but rather focus on the entire technological ecosystem surrounding Physical AI.
Interested? A short version of the German study „Künstliche Intelligenz meets Robotik“ is available in our download section on this page.