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A FPGA-based Low-latency Multi-channel Video Network Transmission System Design

机译:基于FPGA的低延迟多通道视频网络传输系统设计

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Based on FPGA-based real-time video data transmission and coding-decoding technology, this paper realized automatic PAL and NTSC modulation recognition with four-channel AV analog signal as the input. After BT.656 digital video signals were compressed at high compression ratio, long-distance transmission of video signals was realized through GPHY gigabit Ethernet. Uncompressed by the receiver terminal, data reached YCbCr422 through BT.656 and then were output at VGA in RGB format and at HDMI in high-definition format. four-channel AV signals were put under parallel processing, which gave full play to high concurrency of FPGA and high real-time data-handling capacity. Compared with traditional video network transmission system, latency was reduced from about 500ms to 200ms to realize low-latency multi-channel video signal network transmission based on FPGA.
机译:基于基于FPGA的实时视频数据传输和编码解码技术,本文实现了自动PAL和NTSC调制识别,具有四通道AV模拟信号作为输入。在BT.656数字视频信号以高压缩比压缩之后,通过GPHY千兆以太网实现视频信号的长距离传输。通过接收器终端未压缩,数据通过BT.656到达YCBCR422,然后以RGB格式和高清格式的HDMI以VGA输出。四通道AV信号进行了平行处理,这使得FPGA的高并发性和高实时数据处理能力充分发挥作用。与传统视频网络传输系统相比,延迟从约500ms降至200ms,以实现基于FPGA的低延迟多通道视频信号网络传输。

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