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Adaptive Packetization for Conversational Video Service over IEEE 802.11 WLANs with Hidden Terminals

机译:带有隐藏终端的IEEE 802.11 WLAN上的会话视频服务自适应打包

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摘要

For IEEE 802.11-based wireless local area networks (WLANs), due to inherent random access mechanisms, it is very challenging to provision video services, which are subject to very stringent quality-of-service (QoS) constraints. Collision and fading are two main sources of packet loss in WLANs and as such, both are affected by the packetization at the medium access control (MAC) layer. While a larger packet is preferred to balance protocol header overhead, a shorter packet is less vulnerable to packet loss due to channel fading errors or staggered collisions in the presence of hidden terminals. In this paper, we exploit estimate of collision probabilities to adapt packetization for video frames. We first show analytically that the effective throughput is a unimodal function of packet size when considering both channel fading and staggered collisions. We then design an additive increase and multiplicative decrease (AIMD) packetization strategy which adjusts the MAC-layer packet size based on local estimate of staggered collision probability. It is demonstrated that the proposed approach can greatly improve the effective throughput of WLAN and reduce video frame transfer delay.
机译:对于基于IEEE 802.11的无线局域网(WLAN),由于固有的随机访问机制,提供视频服务非常困难,因为视频服务受到非常严格的服务质量(QoS)约束。冲突和衰落是WLAN中数据包丢失的两个主要来源,因此,两者都受到媒体访问控制(MAC)层中数据包化的影响。虽然最好使用较大的数据包来平衡协议标头开销,但较短的数据包由于存在信道隐蔽终端或信道衰落错误或交错冲突而不太容易遭受数据包丢失。在本文中,我们利用冲突概率的估计来适应视频帧的打包。我们首先通过分析表明,当同时考虑信道衰落和交错冲突时,有效吞吐量是数据包大小的单峰函数。然后,我们设计了一个加减乘减(AIMD)打包策略,该策略基于交错碰撞概率的局部估计来调整MAC层数据包大小。实践证明,该方法可以大大提高WLAN的有效吞吐量,减少视频帧的传输延迟。

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