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Model for variable-bit-rate video transmission over an ATM network

机译:通过ATM网络进行可变比特率视频传输的模型

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Abstract: The transmission of video over variable bit rate channels is a challenging problem. The requirements for an acceptable video quality are typically negotiated between the application layer and the network. The encoder of a variable bit rate video application can adjust several of its parameters to meet the requirements of the network. The main aim is to decrease the loss, delay variation. Network resources have to be properly assigned to meet a required service request. Network buffers need to be controlled carefully, since buffers are responsible for delay and loss distribution. On the other hand, during video transmission, the state of buffers at the encoder output, and decoder input are also very important. Since a buffer overflow or underflow indicates inappropriate resource distribution, it is essential to know when and how buffer overflow and underflows occur. The proposed research is based on the encoder and decoder buffer boundary definitions introduced in Nguyen et al. 97. The bit rate of the video is adjusted so that the encoder and decoder buffers neither overflow or underflow at any instance during the transmission. This is guaranteed by estimating the state of the decoder buffer at a fixed frame rate, which in turn is derived for the variable channel rates for the duration of transmission. Both the encoder and decoder buffer fullness information is used as a feedback to the encoder. The encoder, upon receiving this state information adjusts the bit rate for the subsequent frames. This research uses the analytically proven boundaries for the variable bit rate encoder and decoder provided and the behavior is simulated using several video sequences. Simulation results provide a better understanding of the boundary definitions and their practical applications. In addition to understanding the dynamic behavior in terms of the bit rates, this investigation also addresses the impact of the changes in the frame rate and other scalability factors controlled by the encoder. The results show that the boundary definitions, which in turn are used for rate control of the encoder and decoder, improve the quality of the video received. !20
机译:摘要:通过可变比特率通道传输视频是一个具有挑战性的问题。通常,在应用层和网络之间协商对可接受的视频质量的要求。可变比特率视频应用程序的编码器可以调整其一些参数,以满足网络的要求。主要目的是减少损耗,延迟变化。必须正确分配网络资源以满足所需的服务请求。网络缓冲区需要仔细控制,因为缓冲区负责延迟和损耗分配。另一方面,在视频传输期间,编码器输出和解码器输入处的缓冲区状态也非常重要。由于缓冲区上溢或下溢表明资源分配不当,因此必须知道何时以及如何发生缓冲区上溢和下溢。拟议的研究基于Nguyen等人介绍的编码器和解码器缓冲区边界定义。 97.调整视频的比特率,以便编码器和解码器在传输过程中的任何时候都不会缓冲上溢或下溢。通过以固定的帧速率估计解码器缓冲区的状态,可以保证这一点,该帧速率又是在传输期间针对可变信道速率得出的。编码器和解码器缓冲区充满度信息均用作对编码器的反馈。编码器在接收到此状态信息后,会调整后续帧的比特率。这项研究使用了经过分析证明的可变比特率编码器和解码器边界,并使用多个视频序列对行为进行了仿真。仿真结果更好地了解了边界定义及其实际应用。除了了解比特率方面的动态行为外,本研究还解决了帧速率变化和编码器控制的其他可伸缩性因素的影响。结果表明,边界定义反过来用于编码器和解码器的速率控制,可以提高接收到的视频的质量。 !20

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