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Adaptive source rate control for wireless video conferencing

机译:无线视频会议的自适应源速率控制

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Abstract: Hybrid ARQ schemes can yield much better throughput and reliability than static FEC schemes for the transmission of data over time-varying wireless channels. However these schemes result in higher delay. They adapt to the varying channel conditions by retransmitting erroneous packets, this results in variable effective data rates for current PCS networks because the channel bandwidth is constant. Hybrid ARQ schemes are currently being proposed as the error control schemes for real-time video transmission. The standardization process is on-going in ITU, MPEG-4 and wireless ATM forum. The important issue is how to ensure low delay while taking advantage of the high throughput and reliability that these schemes provide for. In this paper we propose an adaptive source rate control (ASRC) protocol which can work together with the hybrid ARQ error control schemes to achieve efficient transmission of real-time video with low delay and high reliability. The ASRC scheme adjusts the source rate based on the channel conditions, the transport buffer occupancy and the delay constraints. It optimizes the video quality by dynamically changing both the number of the forced update (intracoded) macroblocks and the quantization scale used in a frame. The number of the forced update macroblocks used in a frame is first adjusted according to the allocated source rate. This reduces the fluctuation of the quantization scale with the change in the channel conditions during encoding so that the uniformity of the video quality is improved. The simulation results show that the proposed ASRC protocol performs very well for both slow fading and fast fading channels. !18
机译:摘要:混合ARQ方案可以产生比静态FEC方案产生更好的吞吐量和可靠性,用于通过时变无线信道传输数据。然而,这些方案导致更高的延迟。它们通过重新传输错误数据包来适应变化的信道条件,这导致当前PCS网络的可变有效数据速率,因为信道带宽是恒定的。目前正在提出混合ARQ方案作为实时视频传输的错误控制方案。标准化进程正在ITU,MPEG-4和无线ATM论坛中进行。重要问题是如何确保低延迟,同时利用这些方案提供的高吞吐量和可靠性。在本文中,我们提出了一种自适应源速率控制(ASRC)协议,其可以与混合ARQ误差控制方案一起工作,以实现具有低延迟和高可靠性的实时视频的高效传输。 ASRC方案根据信道条件,传输缓冲区占用和延迟约束来调整源速率。它通过动态地改变强制更新(Intracoded)宏块的数量和帧中使用的量化刻度来优化视频质量。首先根据分配的源速率调整帧中使用的强制更新宏块的数量。这降低了在编码期间的信道条件的变化的量化刻度的波动,从而改善了视频质量的均匀性。仿真结果表明,所提出的ASRC协议对于慢衰落和快速衰落通道非常好。 !18

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