Abstract

In the past, robots can only do simple walking, but now robots can perform complex actions such as running, attacking and automatically standing up after falling to the ground. The humanoid robot competition is very interesting and has great significance for the study. The speed and accuracy of robots in domestic competitions still need to be improved. In this article, a design scheme of a small humanoid fighting robot based on the target recognition algorithm is proposed. In this article, a design scheme of a small humanoid fighting robot based on the target recognition algorithm is proposed, for the case where the mobile robot has a low recognition rate in a complicated working environment. In this article, based on the matching of single colour features, the matching of shapes is added to more accurately identify the target. In addition, visual information added to achieve information fusion, the algorithm is simpler and can achieve positioning more quickly and effectively. The humanoid robot is to detect different states of the target, and needs to measure the target, trajectory of the target and analyse the target motion. In the era of popular 5G networks, it is hoped that in the future, robots that use 5G networks for communication can be designed, so that robots can be remotely controlled anytime and anywhere. There will be more kinds of robots entering our lives, which will promote the construction and application of smart homes and smart cities.

Highlights

  • International Journal of Advanced Robotic SystemsThe following articles have been retracted by the Publishers of International Journal of Advanced Robotic Systems

  • Humanoid robots generally refer to robots with human shapes and one or more capabilities, and research on this has made good progress

  • The research of humanoid robots began from the walking mechanism, and people began to study the vision of humanoid robots, making robots more and more like humans

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Summary

International Journal of Advanced Robotic Systems

The following articles have been retracted by the Publishers of International Journal of Advanced Robotic Systems. Research on sports planning and stability control of humanoid robot table tennis. Design of small humanoid fighting robot based on target recognition algorithm. Design of basketball robot based on behavior-based fuzzy control. Design and implementation of badminton robot perception and control system. Research on attack and defence control of martial arts arena robot based on kinodynamics.

Introduction
System structure design
Software application design
Visual image processing
Saturation value g
Simplification and establishment of humanoid robot model
Head Body Shoulders Arms Legs Feet
Autonomous fighting robot software system
Target recognition of object nodes
Robot user control
Fight robot software implementation
Target state judgement
Fighting robot running bionic trajectory
Target Positioning
Conclusion
Full Text
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