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服务空间中人的定位与跟踪 被引量:2

Human Localization and Tracking in Service Space
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摘要 针对人与机器人共存的服务空间中人的定位跟踪问题,提出了一种基于分布式激光雷达协作感知的全局定位跟踪方法。分别对各台激光雷达获取的数据进行统计检验,将其分为静态数据和动态数据,利用静态数据完成各台激光雷达的位置标定,实现背景消除。动态数据通过无线网络传送到服务器,将来自同一时刻不同激光雷达的动态数据组成观测数据的一帧,实现数据的同步与融合。对获取的每帧数据进行基于迭代最近点算法的轮廓模型匹配,区分各个目标。采用基于位置-速度的关联门对相邻两帧的检测目标进行关联,实现对各动态目标的跟踪。实验验证了该方法在解决人的定位与跟踪问题的有效性,与基于视觉的定位跟踪方法相比,本系统在定位精度和跟踪成功率上优势明显。 To solve the problem of human localization and tracking in the service space of human-robot coexistence,a novel method based on collaborative perception using distributed laser radars for human tracking is proposed.First,laser data obtained from each of radars is evaluated statistically,separately.All data are divided into static data and dynamic data.Static data are employed to calibrate the laser radars for background subtraction.Dynamic data are then sent to server computer by wireless network.Data from different radars at the same moment are formed into one frame to realize data synchronization and integration.Finally,contour model matching based interative closest point algorithm is implemented on each frame of laser data to distinguish the targets.To realize human tracking,targets between two frames are associated using association gate based on their positions and speeds.Experimental results demonstrate the effectiveness of the proposed method in solving the problem of human localization and tracking.Compared to vision-based tracking methods,the system performs better in terms of localization accuracy and tracking success rate.
出处 《中国激光》 EI CAS CSCD 北大核心 2014年第11期220-226,共7页 Chinese Journal of Lasers
基金 国家自然科学基金(61075092) 山东省自然科学基金(ZR2011FM011)
关键词 传感器 激光雷达 定位跟踪 数据同步与融合 迭代最近点算法 关联门 sensors laser radars localization and tracking data synchronization and integration interative closest point method association gate
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参考文献18

  • 1Lee S I, Jang C S, Kim S H, et al: Issues and implementation of a URC home service robot [C]. The 16th IEEE International Symposium on Robot and Human Interactive Communication, 2007. 570-575.
  • 2钱垄.与人共存环境下服务机器人定位导航技术研究及应用[D].南京:东南大学.2010.14-25.
  • 3Kim M, Kim S, Park S, et al: Service robot for the elderly[J]. IEEE Robotics & Automation Magazine, 2009, 16(1) : 34-45.
  • 4AhnJ H, LeeJ E, Kim J H, aal: Human position estimationin intelligent space for an active information display[C]. 11th International Conference on Control, Automation and Systems, 2011. 1497-1500.
  • 5Bellotto N, Hu H. Multisensor-based human detection and tracking for mobile service robots[J]. IEEE Transactions on Systems, Man, and Cybernetics-Part B: Cybernetics, 2009, 39(1) : 167-181.
  • 6Tan J T C, Arai T. Triple stereo vision system for safety monitoring of human-robot collaboration in cellular manufacturing [ C ]. IEEE International Symposium on Assembly and Manufacturing (ISAM) ,2011. 1- 6.
  • 7Luo R C, Chang N W, Lin S C, et al: Human tracking and following using sensor usion approach for mobile assistive companion robot [ C]. Industrial Electronics (IECON), 35th Annual Conference of IEEE, 2009. 2235-2240.
  • 8Chen C L, Chou C C, Lian F L. Active pedestrian following using laser range finder[C]. IEEE International Conference on Information and Automation, 2011. 690-695.
  • 9Kim H, Chung W, Yoo Y. Detection and tracking of human legs for a mobile service robot [C]. IEEE/ASME International Conference on Advanced Intelligent Mechatronics, 2010. 812- 817.
  • 10胡少兴,陈春朋,张爱武.同步定位及地图创建算法在车载移动测绘系统中的应用[J].中国激光,2012,39(11):156-162. 被引量:13

二级参考文献46

  • 1E.Sobel,J.Douglas,G.Ettinger.3D ladar ATR based on recognition by parts[C].SPIE,2003,5094: 29-40.
  • 2H.Garten,Y.Tal,Y.Swirski et al..Recognition of tanks using laser radar (LADAR) images[C].SPIE,2004,5613: 166-176.
  • 3T.Chevalier,O.Steinvall,H.Larsson.Performance of laser penetration through forest vegetation[C].SPIE,2007,6550: 1-11.
  • 4J.F.Sun,W.Lu,Q.Li et al..Correlation target recognition for laser radar[C].SPIE,2006,6027: 602731.
  • 5J.Neulista,W.Armbruster.Segmentation,classification,and pose estimation of military vehicles in low resolution laser radar images[C].SPIE,2005,5791: 218-225.
  • 6A.Mahalanobis,A.J.Nevel.Performance of multidimensional algorithms for target detection in ladar imagery[C].SPIE,2002,4789: 134-147.
  • 7A.N.Vasile,R.M.Marino.Pose-independent automatic target detection and recognition using 3D laser radar imagery[J].Lincoln Laboratory J.,2005,15(1): 61-78.
  • 8A.E.Johnson,M.Hebert.Using spin images for efficient object recognition in cluttered 3D scenes[J].IEEE Trans.Pattern Anal.,1999,21(5): 433-449.
  • 9P.Besl,N.Mckay.A method for registration of 3D shapes[J].IEEE Trans.Pattern Anal.,1992,14(2): 239-256.
  • 10C.Grnwall,F.Gustafsson,M.Millnert.Ground target recognition using rectangle estimation[J].IEEE Trans.Image Process.,2006,15(11): 3401-3409.

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