Motion
Simulators
Dynamic motion systems for simulation, research
and
training.
Entertainment > Simulators
Realistic Motion. Maximum Immersion.
BEC Robotics develops robotic motion simulators that combine industrial robotics, real-time motion control and simulation technology. Precise synchronization between the virtual environment and the motion platform ensures realistic motion cues and highly immersive simulation experiences.
From entertainment applications and research platforms to training systems and custom motion concepts, robotic simulation systems provide a flexible foundation for demanding motion-based applications.
Advanced Robotic
& Vehicle Motion Simulators
Explore our research-backed robot motion platforms, custom vehicle simulators, and specialized kinematic systems. Engineered for precision, our simulators deliver immersive environments for advanced training, product development, and entertainment.
Robot Motion Simulators
BEC motion simulators combine robotic motion platforms with integrated cockpits and projection systems to create immersive simulation environments. The projection dome is mounted directly to the robotic platform, allowing users to experience synchronized motion and virtual worlds simultaneously.
Applications range from entertainment experiences and research projects to advanced training environments.
Vehicle Simulators
Robotic motion systems can be combined with realistic operator cabins and simulation software to reproduce the behavior of trucks, construction equipment and special vehicles.
These systems provide realistic motion feedback for training, product development, research and human factors studies while eliminating the need for physical prototypes or test vehicles.
Custom Motion Systems
BEC Robotics develops custom motion systems and specialized kinematics for applications beyond conventional simulator technologies.
Examples include continuously rotating multi-axis gimbal systems, high-dynamic linear motion platforms, transportable container-based simulators and custom motion architectures designed for unique simulation and research requirements.
Research and Training Expertise
BEC Robotics understands the unique requirements of research institutions, universities and training organizations. Beyond motion platform development, we support customers with system integration, real-time control, safety concepts and custom engineering solutions tailored to demanding simulation environments.
From feasibility studies and concept development to commissioning and long-term operation, BEC Robotics helps transform simulation concepts into reliable and repeatable systems.
Whether you are developing a research platform, training simulator or custom motion system, BEC Robotics can support your project from concept to operation..
Project
Proven robotics installations for theme parks, events, and attractions, including robot rides and interactive systems.
Related Services
Explore our wide range of interactive robot rides, immersive attractions, and advanced entertainment systems designed to deliver thrilling and unforgettable experiences for theme parks and events worldwide.
Robot Rides
Custom robot roller coasters and VR ride systems for theme parks and entertainment venues. DIN/CSEI/ASTM certified. Sale and rental available.
Interactive Robotics
A standard system does not fit your requirements? You want to realize a new idea with robotics support? Here you can find more information about customers for whom we have developed individual systems.
Frequently Asked Questions
Answers on safety standards, ride systems, integration, and entertainment robotics project execution.
BEC Robotics develops robotic motion simulators for research, training, entertainment, and product development. Solutions include robot motion simulators with integrated projection systems, vehicle simulators for trucks and construction equipment, custom operator cabins, and specialised multi-axis motion systems for demanding simulation applications.
BEC robotic motion simulators combine industrial robots, real-time motion control, and simulation technology. Precise synchronisation between the motion platform, virtual environment, projection systems, VR, and operator controls delivers realistic motion cues for highly immersive simulation and training.
Compared to conventional Stewart platform (hexapod) simulators, industrial robot-based motion systems offer a larger motion workspace, greater flexibility, and the ability to perform overhead and inverted movements. They can also combine rotational and linear motion to reproduce highly dynamic movement profiles for advanced research, training, and simulation applications.
Yes. BEC's simulator platforms integrate with VR headsets, projection systems and mixed reality systems. Precise synchronisation between the robot's physical motion and the VR visual environment creates highly convincing immersive experiences.
HiL simulation places a human operator inside the simulation loop, where their real-time inputs affect the simulated system's behaviour and the simulation responds in real time. Combined with realistic motion feedback, HiL simulation supports product development, operator training, human factors research, and validation without requiring physical prototypes.
BEC motion simulators support a wide range of research, development, testing, and training applications. Custom robotic motion platforms enable universities, research institutes, industrial partners, and technology developers to validate new concepts, study human-machine interaction, and evaluate complex systems in a safe, repeatable, and highly controlled environment.
Yes. In addition to robotic motion simulators, BEC develops custom motion systems and specialised kinematics for unique simulation and research applications. Solutions include continuously rotating multi-axis gimbal systems, high-dynamic linear motion platforms, transportable container-based simulators, and customer-specific motion architectures engineered for demanding technical requirements.
Yes. BEC's robot-based simulation platforms can achieve motion profiles and orientations — including inverted and overhead positions — that traditional hexapod platforms cannot access. This enables advanced research scenarios requiring unusual movement envelopes.
BEC provides pre-project consultancy, motion cueing analysis, workspace simulation, and concept development support. Clients can engage BEC early in the project to assess technical feasibility, define the motion platform architecture, and develop a realistic implementation plan and budget.
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