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Digital surveillance based on video CODEC System-on-a-Chip (SoC) platforms.

机译:基于视频编解码器片上系统(SoC)平台的数字监视。

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摘要

Today, most conventional surveillance networks are based on analog system, which has a lot of constraints like manpower and high-bandwidth requirements. It becomes the barrier for today's surveillance network development. This dissertation describes a digital surveillance network architecture based on the H.264 coding/decoding (CODEC) System-on-a-Chip (SoC) platform. The proposed digital surveillance network architecture includes three major layers: software layer, hardware layer, and the network layer.;The following outlines the contributions to the proposed digital surveillance network architecture. (1) We implement an object recognition system and an object categorization system on the software layer by applying several Digital Image Processing (DIP) algorithms. (2) For better compression ratio and higher video quality transfer, we implement two new modules on the hardware layer of the H.264 CODEC core, i.e., the background elimination module and the Directional Discrete Cosine Transform (DDCT) module. (3) Furthermore, we introduce a Digital Signal Processor (DSP) sub-system on the main bus of H.264 SoC platforms as the major hardware support system for our software architecture. Thus we combine the software and hardware platforms to be an intelligent surveillance node.;Lab results show that the proposed surveillance node can dramatically save the network resources like bandwidth and storage capacity.
机译:如今,大多数常规监视网络都基于模拟系统,该模拟系统具有很多限制,例如人力和高带宽要求。它成为当今监视网络发展的障碍。本文描述了一种基于H.264编解码系统芯片平台的数字监控网络架构。拟议的数字监视网络体系结构包括三个主要层:软件层,硬件层和网络层。以下概述了对拟议的数字监视网络体系结构的贡献。 (1)通过应用几种数字图像处理(DIP)算法,我们在软件层上实现了对象识别系统和对象分类系统。 (2)为了获得更好的压缩率和更高的视频质量传输,我们在H.264 CODEC核心的硬件层上实现了两个新模块,即背景消除模块和方向离散余弦变换(DDCT)模块。 (3)此外,我们在H.264 SoC平台的主总线上引入了数字信号处理器(DSP)子系统,作为我们软件体系结构的主要硬件支持系统。实验结果表明,所提出的监控节点可以大大节省带宽,存储容量等网络资源。

著录项

  • 作者

    Zhao, Wei.;

  • 作者单位

    Florida International University.;

  • 授予单位 Florida International University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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