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PASA: power adaptation for starvation avoidance to deliver wireless multimedia

机译:PASA:用于销售避免销售无线多媒体的功率适应

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In recent years, there has been an increasing interest to deliver multimedia services over wireless ad hoc networks. Due to the existence of hidden terminal and absence of central control, the medium access control protocol as used in the ad hoc networks may lead to channel capture, where some flows monopolize the channel while others suffer from starvation. As a consequence, the system throughput and fairness are greatly degraded. After showing that static power control leads to channel capture, we propose and study a distributed dynamic power control scheme termed "power adaptation for starvation avoidance" (PASA), which dynamically adjusts the transmission power of a node so as to avoid starvation. PASA is shown to be effective in breaking channel captures, hence improving short-term fairness among contending flows. It is simple, fully autonomous and requires no communication overhead. Via extensive simulations, we show that our power control algorithm achieves much better fairness without compromising system throughput through better spatial reuse. Our experiments with video sequences transmitting over different network topologies show that PASA achieves much better video quality with lower start-up delay and buffer requirement.
机译:近年来,通过无线临时网络提供多媒体服务越来越兴趣。由于隐藏终端和缺乏中央控制的存在,所用的媒体访问控制协议可以导致信道捕获,其中一些流量垄断通道,而其他流量遭受饥饿。因此,系统吞吐量和公平性极大地降级。在显示静态功率控制导致信道捕获之后,我们提出并研究了称为“饥饿避免”(PASA)的分布式动态功率控制方案(PASA),其动态调整节点的传输功率,以避免饥饿。 PASA被证明是有效的破碎通道捕获,因此提高了竞争流程中的短期公平。它简单,完全自主,不需要通信开销。通过广泛的模拟,我们表明我们的电源控制算法在不影响更好的空间重用的情况下实现更好的公平性,而不会影响系统吞吐量。我们的实验,通过不同网络拓扑传输的视频序列表明,PASA实现了更好的视频质量,较低的启动延迟和缓冲要求。

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