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A rearrangement algorithm for scheduled automatic power save delivery of wireless LANs

机译:用于无线LAN的计划自动节能交付的重排算法

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One of the major challenges to integrate the wireless LAN technology into portable devices is the limited battery life. The IEEE 802.11e introduced an advanced architecture to improve 802.11 power saving mechanism, named Scheduled Automatic Power Save Delivery (S-APSD). In S-APSD, the access point negotiates periodical schedules with wireless Stations (STA) to deliver buffered traffic and thus prevents the need to poll for each frame by STAs. In S-APSD, in order to reduce wastage of energy, the AP has to avoid overlapping of Service Periods (SPs). Based on existing scheduled events (SEs), the OAS-APSD (Overlapping Aware S-APSD) and LCS-APSD (Low Complexity S-APSD) were proposed to incrementally select the Service Start Times (SSTs) for the new joining traffic streams (TSs) to minimize the chance of SP overlapping. However, in this scheduling fashion, the resulted power saving performance depends on the joining order of TSs and thus may be unsatisfactory. Therefore, our idea is to rearrange the relative offsets of existing SEs to enlarge the system minimum distance. From numerical results, we find that the proposed scheduling algorithms can provide better power saving.
机译:将无线局域网技术集成到便携式设备中的主要挑战之一是电池寿命有限。 IEEE 802.11e引入了一种先进的体系结构来改进802.11节能机制,称为计划自动节能交付(S-APSD)。在S-APSD中,接入点与无线站(STA)协商定期调度以传递缓冲的流量,从而避免了STA轮询每个帧的需要。在S-APSD中,为了减少能量浪费,AP必须避免服务时段(SP)重叠。基于现有的调度事件(SE),提出了OAS-APSD(重叠感知S-APSD)和LCS-APSD(低复杂度S-APSD)来为新加入的业务流增量选择服务开始时间(SST)( TSs)以最大程度地减少SP重叠的机会。但是,以这种调度方式,节省的功率性能取决于TS的加入顺序,因此可能不令人满意。因此,我们的想法是重新排列现有SE的相对偏移量,以扩大系统的最小距离。从数值结果来看,我们发现所提出的调度算法可以提供更好的节能效果。

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