首页> 外文期刊>Journal of Field Robotics >Team SNU's Control Strategies for Enhancing a Robot's Capability: Lessons from the 2015 DARPA Robotics Challenge Finals
【24h】

Team SNU's Control Strategies for Enhancing a Robot's Capability: Lessons from the 2015 DARPA Robotics Challenge Finals

机译:SNU团队增强机器人能力的控制策略:2015 DARPA机器人挑战赛总决赛的教训

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents the technical approaches used and experimental results obtained by Team SNU (Seoul National University) at the 2015 DARPA Robotics Challenge (DRC) Finals. Team SNU is one of the newly qualified teams, unlike 12 teams who previously participated in the December 2013 DRC Trials. The hardware platform THORMANG, which we used, has been developed by ROBOTIS. THORMANG is one of the smallest robots at the DRC Finals. Based on this platform, we focused on developing software architecture and controllers in order to perform complex tasks in disaster response situations and modifying hardware modules to maximize manipulability. Ensuring stability and modularization are two main keywords in the technical approaches of the architecture. We designed our interface and controllers to achieve a higher robustness level against disaster situations. Moreover, we concentrated on developing our software architecture by integrating a number of modules to eliminate software system complexity and programming errors. With these efforts on the hardware and software, we successfully finished the competition without falling, and we ranked 12th out of 23 teams. This paper is concluded with a number of lessons learned by analyzing the 2015 DRC Finals.
机译:本文介绍了SNU团队(首尔国立大学)在2015年DARPA机器人挑战赛(DRC)决赛中使用的技术方法和获得的实验结果。 SNU团队是新晋合格的团队之一,与之前参加2013年12月DRC试用的12个团队不同。我们使用的硬件平台THORMANG是由ROBOTIS开发的。 THORMANG是DRC决赛中最小的机器人之一。基于此平台,我们专注于开发软件体系结构和控制器,以便在灾难响应情况下执行复杂的任务,并修改硬件模块以最大程度地提高可操作性。确保稳定性和模块化是体系结构技术方法中的两个主要关键词。我们设计了接口和控制器,以在灾难情况下达到更高的鲁棒性水平。此外,我们专注于通过集成许多模块来消除软件系统的复杂性和编程错误,从而开发我们的软件体系结构。通过这些硬件和软件方面的努力,我们成功地完成了比赛,并且不失优劣,在23个团队中排名第12。通过分析2015年DRC决赛,总结了许多经验教训。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号