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一种基于广域运动图像通过云计算和图形处理单元进行多移动目标跟踪的实时高性能计算架构

A Real-Time High Performance Computation Architecture for Multiple Moving Target Tracking Based on Wide-Area Motion Imagery via Cloud and Graphic Processing Units.

作者信息

Liu Kui, Wei Sixiao, Chen Zhijiang, Jia Bin, Chen Genshe, Ling Haibin, Sheaff Carolyn, Blasch Erik

机构信息

Intelligent Fusion Technology, Germantown, MD 20876, USA.

Department of Computer and Information Sciences, Temple University, Philadelphia, PA 19122, USA.

出版信息

Sensors (Basel). 2017 Feb 12;17(2):356. doi: 10.3390/s17020356.

Abstract

This paper presents the first attempt at combining Cloud with Graphic Processing Units (GPUs) in a complementary manner within the framework of a real-time high performance computation architecture for the application of detecting and tracking multiple moving targets based on Wide Area Motion Imagery (WAMI). More specifically, the GPU and Cloud Moving Target Tracking (GC-MTT) system applied a front-end web based server to perform the interaction with Hadoop and highly parallelized computation functions based on the Compute Unified Device Architecture (CUDA©). The introduced multiple moving target detection and tracking method can be extended to other applications such as pedestrian tracking, group tracking, and Patterns of Life (PoL) analysis. The cloud and GPUs based computing provides an efficient real-time target recognition and tracking approach as compared to methods when the work flow is applied using only central processing units (CPUs). The simultaneous tracking and recognition results demonstrate that a GC-MTT based approach provides drastically improved tracking with low frame rates over realistic conditions.

摘要

本文首次尝试在基于广域运动图像(WAMI)检测和跟踪多个移动目标的实时高性能计算架构框架内,以互补方式将云与图形处理单元(GPU)相结合。更具体地说,GPU与云移动目标跟踪(GC-MTT)系统应用了基于前端网络的服务器,以执行与Hadoop的交互以及基于统一计算设备架构(CUDA©)的高度并行计算功能。所引入的多个移动目标检测和跟踪方法可扩展到其他应用,如行人跟踪、群体跟踪和生活模式(PoL)分析。与仅使用中央处理器(CPU)应用工作流程的方法相比,基于云和GPU的计算提供了一种高效的实时目标识别和跟踪方法。同时进行的跟踪和识别结果表明,基于GC-MTT的方法在实际条件下以低帧率提供了显著改进的跟踪效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f89/5336014/eaf32270d37f/sensors-17-00356-g001.jpg

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