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Power-Saving Mechanism for IEEE 802.11 Clients in a Multicast Multimedia Streaming Network

机译:组播多媒体流网络中IEEE 802.11客户端的节能机制

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Wireless LAN multicast is a suitable mechanism for multimedia streaming because of its bandwidth efficiency. However, wireless multicast has several problems in terms of power efficiency. In this study, we analyze the power efficiency of multicast in IEEE 802.11 networks and show that multicast increases the power consumption of clients significantly irrespective of whether the clients join multicast groups or not. The main reason is that IP multicast packets are transferred as broadcast frames in IEEE 802.11 networks. To improve power efficiency, we propose a new multicast streaming mechanism. Our work is strongly motivated by Flexible Multicast Service (FMS), which is a new IEEE 802.11 standard. FMS permits access points (APs) to transmit multicast frames in more than one delivery traffic indication message (DTIM) interval, which allows clients to wake up at alternate DTIM intervals, rather than every DTIM. However, our analysis proved that FMS is not an optimal mechanism in terms of power efficiency. We propose a new mechanism that provides more power-efficient multicast multimedia streaming, without delay or throughput penalty. Our method focuses on how to reduce the number of unnecessary frames received by clients. The key idea is to stagger the transmission timing to let clients avoid receiving unnecessary frames. We evaluate the mechanism by comprehensive analysis and simulations. The results show that the mechanism achieves significant power savings in wireless LAN multicast networks.
机译:由于无线局域网的带宽效率高,它是一种适用于多媒体流的合适机制。但是,无线多播在功率效率方面存在几个问题。在这项研究中,我们分析了IEEE 802.11网络中多播的功率效率,并表明,无论客户端是否加入多播组,多播都会显着增加客户端的功耗。主要原因是IP多播数据包在IEEE 802.11网络中作为广播帧进行传输。为了提高电源效率,我们提出了一种新的组播流机制。灵活多播服务(FMS)是我们的新工作,它是一种新的IEEE 802.11标准。 FMS允许访问点(AP)在一个以上的传递流量指示消息(DTIM)间隔中传输多播帧,这使客户端可以以替代的DTIM间隔而不是每个DTIM唤醒。但是,我们的分析证明,就电源效率而言,FMS并不是最佳机制。我们提出了一种新机制,该机制可提供更节能的多播多媒体流,而不会造成延迟或吞吐量损失。我们的方法着重于如何减少客户端接收到的不必要帧的数量。关键思想是错开传输时间,以使客户端避免接收不必要的帧。我们通过综合分析和模拟来评估该机制。结果表明,该机制在无线LAN多播网络中实现了显着的节能。

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