The design and realization of a videoconference system based on international recommendation are introduced in this paper, and the hardware implementation of video codec based on ITU-T H. 261 is briefly discussed. Fur...The design and realization of a videoconference system based on international recommendation are introduced in this paper, and the hardware implementation of video codec based on ITU-T H. 261 is briefly discussed. Furthermore, the buffer control method and the adaptive control strategy for quantization are proposed, which are adaptive and robust. This system can be operated under the transmission rate ranging from 128kb/s to 2Mb/s. With these strategies for the videoconference system, the high quality image is obtained. The time delay of the system is about half a second.展开更多
基于可见光通信技术设计了一种视频传输装置。该装置直接将CCD摄像头输出的模拟信号作为输入信号,结合发射端与接收端的高频响应元件,实现了短距离的可见光视频传输。该装置电路响应速度高,传输100 k Hz^200 k Hz方波信号时仍无明显失...基于可见光通信技术设计了一种视频传输装置。该装置直接将CCD摄像头输出的模拟信号作为输入信号,结合发射端与接收端的高频响应元件,实现了短距离的可见光视频传输。该装置电路响应速度高,传输100 k Hz^200 k Hz方波信号时仍无明显失真。经对比测试,传输的视频色彩丰富、细节清晰,同有线方式传输的视频相比差别较小。展开更多
基金the High Technology Research and Development Programme of China
文摘The design and realization of a videoconference system based on international recommendation are introduced in this paper, and the hardware implementation of video codec based on ITU-T H. 261 is briefly discussed. Furthermore, the buffer control method and the adaptive control strategy for quantization are proposed, which are adaptive and robust. This system can be operated under the transmission rate ranging from 128kb/s to 2Mb/s. With these strategies for the videoconference system, the high quality image is obtained. The time delay of the system is about half a second.
文摘基于可见光通信技术设计了一种视频传输装置。该装置直接将CCD摄像头输出的模拟信号作为输入信号,结合发射端与接收端的高频响应元件,实现了短距离的可见光视频传输。该装置电路响应速度高,传输100 k Hz^200 k Hz方波信号时仍无明显失真。经对比测试,传输的视频色彩丰富、细节清晰,同有线方式传输的视频相比差别较小。