Design and Implementation of BIOLOID Humanoid Robot

Hilberto Ayala, Yujian Fu
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引用次数: 4

Abstract

Research in humanoid robot design and implementation is quite challenging due to the complexity of the system and multiple objects involved. Stability, gait generation, navigation and object detection and recognition are all key factors in the humanoid robot design. Researchers in humanoid robot design has put dramatic efforts on one aspect and made assumption on many other aspects. Humanoid robot research involves challenge issues of stability of motion, body movement, navigation, in addition to the issues of path generation, object detection, collision avoidance in the wheeled robots. Rooted from the previous experimental study of wheeled robotics systems, the research project of BIOLOID humanoid robot was started on Fall 2013 and supported by Title III Strengthening Grant Program (HBGI) (DAAD17-02-C-0113). In this paper, we give an overview of the project design and implementation of BIOLOID humanoid robot, including hardware architecture, firmware design and device management, in an overall perspective research work of the motion planning of humanoid robots. In addition, a wide discussion of the issues we faced and challenges of research work is presented, with the results of the current on-going progress. This work will cover the overall hardware architecture, model based system design and behavior analysis using a systematic approach. The work is implemented on a soccer game scenario with a goalie and an offender role. This project has demonstrated a successful development process of collaborative humanoid robotics on a complex research and education platform of BIOLOID using a software engineering approach. Design and Implementation of BIOLOID Humanoid Robot
仿生人形机器人的设计与实现
由于系统的复杂性和涉及的对象多,仿人机器人的设计与实现具有很大的挑战性。稳定性、步态生成、导航和目标检测与识别都是仿人机器人设计中的关键因素。仿人机器人的研究人员在一个方面下了很大的功夫,在许多方面做了假设。人形机器人的研究除了涉及轮式机器人的路径生成、目标检测、碰撞避免等问题外,还涉及运动稳定性、身体运动、导航等挑战问题。基于之前轮式机器人系统的实验研究,BIOLOID类人机器人的研究项目于2013年秋季启动,由Title III加强资助计划(HBGI) (DAAD17-02-C-0113)资助。本文从仿人机器人运动规划研究工作的整体角度,概述了BIOLOID仿人机器人的方案设计与实现,包括硬件架构、固件设计和设备管理。此外,对我们面临的问题和研究工作的挑战进行了广泛的讨论,并提出了当前正在进行的进展的结果。这项工作将涵盖整体硬件架构,基于模型的系统设计和使用系统方法的行为分析。这项工作是在一个足球游戏场景中实现的,其中有一个守门员和一个罪犯角色。本项目利用软件工程方法,在BIOLOID的复杂研究和教育平台上展示了协作类人机器人的成功开发过程。仿生人形机器人的设计与实现
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