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October 1, 2016899 citations

ANYmal - a highly mobile and dynamic quadrupedal robot

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MHMarco HutterETH ZurichCGChristian GehringUnion Bank of SwitzerlandDJDominic JudETH Zurich

Key Points

  • The aim is to introduce ANYmal, a quadrupedal robot optimized for mobility and dynamic performance in real-world scenarios.
  • Developed a robot with compliant joint modules and integrated electronics for enhanced torque control and robustness.
  • Conducted performance tests to evaluate the robot's torque control bandwidth, disturbance rejection, and impact robustness.
  • Performed experiments to assess walking gaits, trotting speeds, and maneuverability on steep surfaces.
  • Achieved a torque control bandwidth of over 70 Hz, indicating high responsiveness.
  • Demonstrated full-speed running requiring less than 280 W, providing an autonomy of over 2 hours.
  • Successfully performed dynamic maneuvers including trotting and stair crawling.

Abstract

This paper introduces ANYmal, a quadrupedal robot that features outstanding mobility and dynamic motion capability. Thanks to novel, compliant joint modules with integrated electronics, the 30 kg, 0.5 m tall robotic dog is torque controllable and very robust against impulsive loads during running or jumping. The presented machine was designed with a focus on outdoor suitability, simple maintenance, and user-friendly handling to enable future operation in real world scenarios. Performance tests with the joint actuators indicated a torque control bandwidth of more than 70 Hz, high disturbance rejection capability, as well as impact robustness when moving with maximal velocity. It is demonstrated in a series of experiments that ANYmal can execute walking gaits, dynamically trot at moderate speed, and is able to perform special maneuvers to stand up or crawl very steep stairs. Detailed measurements unveil that even full-speed running requires less than 280 W, resulting in an autonomy of more than 2 h.

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Cite This Study

Hutter et al. (2016) studied this question.

synapsesocial.com/papers/6a090fb674a93f402dd3a758https://doi.org/10.1109/iros.2016.7758092
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