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DC 栏位语言
dc.contributor.author陈其莹en_US
dc.contributor.authorChi-Ying Chenen_US
dc.contributor.author张文钟en_US
dc.contributor.authorWen-Thong Changen_US
dc.date.accessioned2014-12-12T02:29:40Z-
dc.date.available2014-12-12T02:29:40Z-
dc.date.issued2004en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#GT009213526en_US
dc.identifier.urihttp://hdl.handle.net/11536/69690-
dc.description.abstract近年由于电脑科技的进步,使得视讯监控系统广泛的布建在生活周遭。然而在现今的监控系统平台架构下,因系统的运作机制并非相当完善,如欲达到监控的目的,需要大量的人力及时间。以目前的系统架构而言,取像设备、监控中心、监控人员三者大都位于同一区域,也就是说监控人员需要在监控中心存取影像档案。另外为了判断是否有异常现象发生,监控人员需要不间断的观看相机影像,当有事件发生时,再以人工设定的方式进行录影的动作。另外当系统提供多个相机影像时,观看相机的选取需透过人工设定的方式达成。由上可知整个系统架构所提供的人机互动性并不高,往往需要人工设定才能执行相关的动作。
有鉴于监控平台运作方式的不完善,因此我们提出即时互动式监控系统来加以解决。在即时互动式监控系统架构下,存在着Client/Server的概念,Server端负责影像资料的收集,监控人员可透过Client端的程式向Server端存取监控影像,达到远端档案存取的功能。另外因为我们在Client端加入物件定位及手势辨识等影像处理,使Client可对监控影像进行影像处理的动作,进而将运算结果回报给Server端,Server端再依Client端的回报讯息进行相对应的处理。Client/Server的分散式架构搭配相关的影像处理,使系统达到自动录影机制、自动相机切换机制、远端档案存取功能。
zh_TW
dc.description.abstractDue to the dramatic advances of the computer technology, surveillance systems are widely accepted and used. However, a huge amount of human resources and time are required to monitor these systems due to the lack of a completely operational mechanism. Specifically, for the current model, capture devices, the surveillance center, and the surveillance personnel have to be at the same location to accomplish the task. In other words, the surveillance personnel must always stay in the surveillance center to look at the monitors closely in order to see whether an abnormal event occurs or not. When an abnormal event occurs, the surveillance personnel have to manually turn on the recording devices. If multiple cameras are present, the surveillance personnel also have to manually switch between different cameras. From the above, it is not hard to conclude that the level of human-machine interaction for this model is not high enough. It requires lots of manual settings.
To overcome this major drawback, in this paper, a real-time interactive surveillance system is proposed. In this model, the client/server concept is put in practice. The server system is responsible for collecting visual data from various types of cameras. Thus, the surveillance personnel can remotely acquire these collected data with the use of the client system. Moreover, because the object positioning and the gesture recognition techniques are added to the client system, the client system is able to process the acquired image data. When detecting an abnormal event, the client can inform the server about it. The server in turn can react to the event according to the pre-defined rules. The proposed distributed client/server architectures in conjunction with the image processing capabilities provide the surveillance system with the abilities to automatically record, switch between cameras, and access files remotely.
en_US
dc.language.isozh_TWen_US
dc.subject即时zh_TW
dc.subject分散式zh_TW
dc.subject互动式zh_TW
dc.subject辨识zh_TW
dc.subject影像zh_TW
dc.subject定位zh_TW
dc.subjectreal-timeen_US
dc.subjectdistributeden_US
dc.subjectinteractiveen_US
dc.subjectrecognitionen_US
dc.subjectimageen_US
dc.subjectpositioningen_US
dc.title分散式即时互动Client/Server影像辨识系统zh_TW
dc.titleReal-Time Interactive Client/Server Distributed Image Recognition Systemen_US
dc.typeThesisen_US
dc.contributor.department电信工程研究所zh_TW
显示于类别:Thesis


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