ROAug 8

Epically Powerful: An open-source software and mechatronics infrastructure for wearable robotic systems

arXiv:2511.050339.1h-index: 7Has Code
Predicted impact top 28% in RO · last 90 daysOriginality Incremental advance
AI Analysis

This infrastructure lowers the barrier for researchers to develop and deploy custom wearable robotic systems, and is also applicable to other robotics domains using quasi-direct drive actuators, single-board computers, and sensors.

This paper introduces Epically Powerful, an open-source robotics infrastructure designed to simplify the development and deployment of wearable robotic systems. It manages communication, clocking, actuator commands, visualization, and sensor data, while also offering hardware selection guides and example controllers.

Epically Powerful is an open-source robotics infrastructure that streamlines the underlying framework of wearable robotic systems - managing communication protocols, clocking, actuator commands, visualization, sensor data acquisition, data logging, and more - while also providing comprehensive guides for hardware selection, system assembly, and controller implementation. Epically Powerful contains a code base enabling simplified user implementation via Python that seamlessly interfaces with various commercial state-of-the-art quasi-direct drive (QDD) actuators, single-board computers, and common sensors, provides example controllers, and enables real-time visualization. To further support device development, the package also includes a recommended parts list and compatibility guide and detailed documentation on hardware and software implementation. The goal of Epically Powerful is to lower the barrier to developing and deploying custom wearable robotic systems without a pre-specified form factor, enabling researchers to go from raw hardware to modular, robust devices quickly and effectively. Though originally designed with wearable robotics in mind, Epically Powerful is broadly applicable to other robotic domains that utilize QDD actuators, single-board computers, and sensors for closed-loop control.

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