参考文献/References:
[1] MOHANAD B,OTHMAN O K,KYAW K H,et al. Automated daily human activity recognition for video surveillance using neural network[C]//IEEE International Conference on Smart Instrumentation,Measurement and Applications. Putrajaya,Malaysia,2017.
[2]CHEN X,QING L B,HE X H,et al. From eyes to face synthesis:a new approach for human-centered smart surveillance[J]. IEEE access,2018,6(1):14567-14575.
[3]陈娟,应骏,王健,等. 一种基于帧间差与图像分割的运动目标分割方法[J]. 上海师范大学学报(自然科学版),2017,46(2):242-246.
CHEN J,YING J,WANG J,et al. A method of moving object segmentation based on inter frame difference and graph cuts[J]. Journal of Shanghai normal university(natural sciences edition),2017,46(2):242-246.(in Chinese)
[4]刘玉婷,席庆彪,刘慧霞. 一种基于帧间差的快速UAV运动目标检测方法[J]. 计算机仿真,2014,31(7):36-40.
LIU Y T,XI Q B,LIU H X. A method for UAV moving target detection based on inter frame difference[J]. Computer simulation,2014,31(7):36-40.(in Chinese)
[5]张水发,张文生,丁欢,等. 融合光流速度与背景建模的目标检测方法[J]. 中国图象图形学报,2011,16(2):236-243.
ZHANG S F,ZHANG W S,DING H,et al. Background modeling and object detecting based on optical flow velocity field[J]. Journal of image and graphics,2011,16(2):236-243.(in Chinese)
[6]毕国玲,续志军,陈涛,等. 基于随机聚类的复杂背景建模与前景检测算法[J]. 物理学报,2015,64(15):701-712.
BI G L,XU Z J,CHEN T,et al. Complex background model and foreground detection based on random aggregation[J]. Acta physica sinica,2015,64(15):701-712.(in Chinese)
[7]TOBIAS S,VOLKER E,THOMAS S.Robust local optical flow for feature tracking[J]. IEEE access,2018,6(1):1377-1387.
[8]GE Z D,CHANG F L,LIU H B.Multi-target tracking based on Kalman filtering and optical flow histogram[C]//Chinese Automation Congress. Jinan,China,2017.
[9]KEREM S,ANDREA R,RAFFAELE C,et al. FPGA-based hardware implementation of real-time optical flow calculation[J]. IEEE transactions on circuits and systems for video technology,2018,28(1):206-216.
[10]LIU Z,CHAN S C,WANG C,et al. Multi-view articulated human body tracking with textured deformable mesh model[C]//IEEE International Symposium on Circuits and Systems. Lisbon,Portugal,2015.
[11]XU Y H,YE M,TIAN Z H,et al. Locally adaptive combining colour and depth for human body contour tracking using level set method[J]. IET computer vision,2014,8(4):316-328.
[12]LIU Z,LIN Z C,WEI X,et al. A new model-based method for multi-view human body tracking and its application to view transfer in image-based rendering[J]. IEEE transactions on multimedia,2018,20(6):1321-1334.
[13]SANJAY S,DAYANG R B,SUZIAH B S,et al. A study of stochastic algorithms for 3D articulated human body tracking[C]//IEEE Second International Conference on Image Information Processing. Shimla,India,2013.
[14]GUPTA M,BEHERA L,VENKATESH K S,et al. A robust visual human detection approach with UKF-based motion tracking for a mobile robot[J]. IEEE systems journal,2015,9(4):1363-1375.
[15]LEE K H,HWANG J N,OKOPAL G,et al. Ground-moving-platform-based human tracking using visual SLAM and constrained multiple kernels[J]. IEEE transactions on intelligent transportation systems,2016,17(12):3602-3612.
[16]APIDET B,NATTHA J,HIROSHI S.A system for detection and tracking of human movements using RSSI signals[J]. IEEE sensors journal,2018,18(6):2531-2544.
[17]LI D,JIANG D H,BAO R,et al. Moving object tracking method based on improved Lucas-Kanade sparse optical flow algorithm[C]//International Smart Cities Conference. Wuxi,China,2017.
[18]SEONG H S,RHEE C E,LEE H J.A novel hardware architecture of the Lucas-Kanade optical flow for reduced frame memory access[J]. IEEE transactions on circuits and systems for video technology,2016,26(6):1187-1199.
[19]XIU C B,CHAI Z H,HE H Y,et al. Improved Camshift tracking method based on the edge suppression[C]//29th Chinese Control and Decision Conference. Chongqing,China,2017.
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