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Access Point Buffer Management for Power Saving in IEEE 802.11 WLANs

机译:接入点缓冲区管理,用于节省IEEE 802.11 WLAN

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It is crucial to save power and prolong the runtime of mobile stations (STAs) in wireless local area networks (WLANs). In an infrastructure WLAN, a STA cannot be connected until it is associated with an access point (AP), which is responsible for buffering frames for all the associated STAs operating in the power saving mode. Hence, efficient memory utilization is critical for an AP to accommodate as many power-saving STAs as possible. The basic power management (BPM) scheme introduced in the IEEE 802.11 standard achieves power saving by allowing STAs not engaging in data delivery to operate in doze mode, but it does not consider the efficient use of the memory in the AP. To tradeoff power consumption for memory usage, we present an AP-priority timer-based power management (APP-TPM) scheme and develop a novel model for stochastic analysis of the proposed scheme. Based on this model, the probability distributions of the numbers of frames buffered at the AP and the average numbers of frames buffered at the AP are obtained. Moreover, a power-aware buffer management scheme (PBMS), which is based on the derived statistics, is proposed to accommodate as many STAs as possible given a fixed amount of memory in the AP while maintaining low power consumption. Simulation results show that the proposed scheme performs better than BPM in terms of memory usage in the AP.
机译:节省功率并延长无线局域网(WLAN)中移动站(STA)的运行时间至关重要。在基础设施WLAN中,只有将STA与接入点(AP)关联后,STA才能连接,该接入点负责为以节能模式运行的所有关联STA缓冲帧。因此,有效的内存利用率对于AP容纳尽可能多的节能STA至关重要。 IEEE 802.11标准中引入的基本电源管理(BPM)方案通过允许不参与数据传递的STA在打ze模式下运行而实现了节能,但它没有考虑到AP中内存的有效利用。为了权衡功耗与内存使用量,我们提出了一种基于AP优先级计时器的电源管理(APP-TPM)方案,并为该方案的随机分析开发了一种新型模型。基于该模型,获得在AP处缓冲的帧数的概率分布和在AP处缓冲的平均帧数。此外,提出了一种基于派生统计信息的功率感知缓冲区管理方案(PBMS),以在AP内存固定的情况下尽可能多地容纳STA,同时保持低功耗。仿真结果表明,该方案在AP的内存使用方面比BPM更好。

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