Part No. QLabs Virtual QBot Platform
QLabs Virtual QBot Platform is a digital twin of the QBot robot for mobile robotics education using MATLAB/Simulink and Python.
QLabs Virtual QBot Platform
Virtual platform for distance and blended undergraduate mobile robotics courses
QLabs Virtual QBot Platform is a fully instrumented, dynamically accurate virtual twin of a QBot Platform, to enrich your lectures and lab activities for your distance and online mobile robotics course.
QLabs Virtual QBot Platform is a fully instrumented, dynamically accurate virtual twin of a QBot Platform. It behaves in the same way as physical hardware and can be measured and controlled using MATLAB®/Simulink® and Python™.
QLabs Virtual QBot Platform can enrich your lectures and activities in traditional labs, or bring credible, authentic, industry-aligned, and academically oriented lab experiences into your distance and online mobile robotics course.
Same as the physical QBot Platform, the virtual system features a differential drive platform equipped with odometric, inertial, visual, and ranging sensors for robotic applications such as self-localization, path planning, state estimation, control, visual servoing, multiagent collaboration and more.
| Specifications |
|
| App Download & Access to Subscription | Quanser Academic Portal |
| App OS Compatibility | Microsoft Windows 10 or Later |
| Required Software | Curriculum designed for MATLAB and Simulink R2022a or later, with Python 3 compatibility |
| Minimum Specifications | • Intel Core Ultra 5, Intel Core i5, Ryzen 5 • 8GB RAM • Intel Iris Xe or Arc integrated GPU |
| Recommended Specifications | • Intel Core Ultra 7, Intel Core i7, Ryzen 7 • 16GB RAM • Intel Arc integrated GPU, or discrete GPU (e.g. NVIDIA GeForce RTX 3050) |
| Recommended Research Specifications | • Intel Core Ultra 7, Intel Core i7, Ryzen 7 • 32GB RAM • Discrete GPU (e.g. NVIDIA GeForce RTX 3050) |
Academically appropriate
High-fidelity, credible lab experiences equivalent to use of physical lab equipment
Comprehensive Resources
Industry-aligned curriculum mapped to popular mobile robotics courses
Open access
Full access to system through MATLAB®/Simulink® and Python™
Scalable
12-month, multi-seat subscription
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