Smart power-saving mode for IEEE 802.11 wireless LANs

D. Qiao, K. Shin
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引用次数: 112

Abstract

Static PSM (power-saving mode) schemes employed in the current IEEE 802.11 implementations could not provide any delay-performance guarantee because of their fixed wakeup intervals. In this paper, we propose a smart PSM (SPSM) scheme, which directs a wireless station to sleep/wake up according to an "optimal" sequence, such that the desired delay performance is guaranteed with minimum energy consumption. Instead of constructing the sequence directly, SPSM takes a unique two-step approach. First, it translates an arbitrary user-desired delay performance into a generic penalty function. Second, it provides a generic algorithm that takes the penalty function as the input and produces the optimal station action sequence automatically. This way, the potentially-complicated energy-consumption-minimization problem subject to delay-performance constraints is simplified and solved systematically. Our simulation results show that, with a two-stair penalty function, SPSM achieves delay performance similar to the BSD (bounded slowdown) protocol under various scenarios, but always with less energy consumption, thanks to its capability to adapt to changes in the response-time distribution. Moreover, because of SPSM's two-step design feature, it is more flexible than BSD in the sense of being able to meet arbitrary user-desired delay requirement, e.g., providing soft delay-bound guarantees with power penalty functions.
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IEEE 802.11无线局域网的智能省电模式
当前IEEE 802.11实现中采用的静态PSM(省电模式)方案由于其固定的唤醒间隔而不能提供任何延迟性能保证。在本文中,我们提出了一种智能PSM (SPSM)方案,该方案根据“最优”顺序指导无线站休眠/唤醒,从而以最小的能量消耗保证所需的延迟性能。SPSM不直接构造序列,而是采用独特的两步方法。首先,它将用户期望的任意延迟性能转换为通用惩罚函数。其次,提出了一种以罚函数为输入,自动生成最优站位动作序列的通用算法;从而简化并系统地解决了受延迟性能约束的潜在复杂的能耗最小化问题。仿真结果表明,在两级惩罚函数下,SPSM在各种场景下都能获得与BSD(有界减速)协议相似的延迟性能,但由于它具有适应响应时间分布变化的能力,因此总是以更少的能耗实现。此外,由于SPSM的两步设计特性,它比BSD更灵活,可以满足任意用户期望的延迟需求,例如,提供带有功率惩罚函数的软延迟约束保证。
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