现代电子技术
現代電子技術
현대전자기술
MODERN ELECTRONICS TECHNIQUE
2013年
14期
27-30
,共4页
点模式匹配%卡尔曼滤波%置信度%跟踪算法%多目标跟踪
點模式匹配%卡爾曼濾波%置信度%跟蹤算法%多目標跟蹤
점모식필배%잡이만려파%치신도%근종산법%다목표근종
point matching%Kalman filtering%confidence%tracking algorithm%multi-object tracking
针对复杂背景下多运动目标的跟踪方法不能有效解决遮挡和高速运动等问题,提出一种Kalman预测与点模式匹配相结合的多目标跟踪方法。利用Kalman滤波预测目标在下一帧图像中的位置,以此位置为中心确定目标搜索区域,然后以点模式匹配进行搜索区域和目标模板进行匹配,有效地解决目标的旋转和轻微的遮挡问题。为了提高匹配速度和实时性,在点模式匹配中利用Kalman滤波对目标旋转角度的预测与修正;同时为了保证跟踪的鲁棒性、连续性及准确性,对目标模板的更新采用置信度二级判决门限。实验表明该方法具有较好的实时性,并能够有效地解决遮挡等问题。
針對複雜揹景下多運動目標的跟蹤方法不能有效解決遮擋和高速運動等問題,提齣一種Kalman預測與點模式匹配相結閤的多目標跟蹤方法。利用Kalman濾波預測目標在下一幀圖像中的位置,以此位置為中心確定目標搜索區域,然後以點模式匹配進行搜索區域和目標模闆進行匹配,有效地解決目標的鏇轉和輕微的遮擋問題。為瞭提高匹配速度和實時性,在點模式匹配中利用Kalman濾波對目標鏇轉角度的預測與脩正;同時為瞭保證跟蹤的魯棒性、連續性及準確性,對目標模闆的更新採用置信度二級判決門限。實驗錶明該方法具有較好的實時性,併能夠有效地解決遮擋等問題。
침대복잡배경하다운동목표적근종방법불능유효해결차당화고속운동등문제,제출일충Kalman예측여점모식필배상결합적다목표근종방법。이용Kalman려파예측목표재하일정도상중적위치,이차위치위중심학정목표수색구역,연후이점모식필배진행수색구역화목표모판진행필배,유효지해결목표적선전화경미적차당문제。위료제고필배속도화실시성,재점모식필배중이용Kalman려파대목표선전각도적예측여수정;동시위료보증근종적로봉성、련속성급준학성,대목표모판적경신채용치신도이급판결문한。실험표명해방법구유교호적실시성,병능구유효지해결차당등문제。
Since the muti?object tracking method can not effectively overcome the target covering and high?speed movement in complex background,a new multi?object tracking algorithm based on point matching algorithm and Kalman filtering predic?tion is proposed. The possible position of a moving object in the next frame image is predicted by Kalman filtering. The position is regarded as the search center to determine the object seach region. The matching of the object template and the candidate re?gions is carried out with point matching algorithm to solve the problems of rotation and slight covering of the target. In order to improve the matching speed and real?time performance,the rotation angle of the target is predicted and corrected in the process of point matching by using Kalman filtering. The secondary judgment threshold of confidence is adopted for object template up?date to ensure the tracking robustness,continuity,stability and accuracy. The experimental results show that this approach has better real?time performance and can solve the covering problem effectively.