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Hardware Efficient Hybrid Encoder for Video Surveillance Application

机译:用于视频监控应用的硬件高效混合编码器

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Extensive use of digital multimedia has led to the development of advance video processing techniques for development of multimedia applications. Application such as video surveillance requires 247 recording and streaming. So, the bandwidth and storage costs become significant. With introduction of video streaming over internet, where different kinds of end users request same content with different available bandwidth, it requires scalable video coding (SVC). These challenges can be overcome by developing new techniques to reduce redundancy in subsequent frames and to improve the coding efficiency. In this paper, overlapping weighted linear sum (OWLS) pre-processing method and its hardware architecture are proposed. It is implemented using field progrmmable gate array (FPGA) and the application specific integrated circuit (ASIC) is also developed using TSMC180nm technology standard cell library. Results show improvement in terms of power and area as compared to the existing work. In motion compensated temporal filtering (MCTF), wavelet transform is implemented by temporal filters. Architecture for 5/3 Lifting MCTF is also implemented and compared with baseline H.264 video codec. Simulation results show that the average peak signal to noise ratio (PSNR) improvement is 2.36 dB. The MCTF design using 5/3 Lifting filter is synthesized for Virtex-5 FPGA and compared with the existing close-loop architecture with better performance.
机译:广泛利用数字多媒体导致开发用于开发多媒体应用的推进视频处理技术。视频监控等应用需要247次录制和流。因此,带宽和存储成本变得显着。随着Internet的视频流引入,不同类型的最终用户请求具有不同可用带宽的相同内容,需要可伸缩的视频编码(SVC)。通过开发新技术可以克服这些挑战以减少后续帧中的冗余并提高编码效率。在本文中,提出了重叠的加权线性和(OWL)预处理方法及其硬件架构。它是使用现场Progmable栅极阵列(FPGA)和应用程序特定集成电路(ASIC)实现的,也使用TSMC180NM技术标准单元库进行开发。结果显示与现有工作相比的电力和面积的改进。在运动补偿时间滤波(MCTF)中,小波变换由时间滤波器实现。 5/3升降MCTF的架构也与基线H.264视频编解码器进行了实施。仿真结果表明,平均峰值信噪比(PSNR)改善为2.36 dB。使用5/3提升滤波器的MCTF设计为Virtex-5 FPGA合成,与现有的闭环架构相比,具有更好的性能。

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