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Design of Predictive and Dynamic Energy-Efficient Mechanisms for IEEE 802.16e

机译:IEEE 802.16e的预测和动态节能机制的设计

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Three predictive and dynamic sleep time planning (PDSTP) energy-efficient mechanisms are proposed in this paper to simultaneously improve energy efficiency and packet delay for IEEE 802.16e. To estimate the time instant when a mobile station (MS) should wake up for receiving downlink packets, a prediction method is designed. With the predicted time instant, an MS is then allowed to sleep as much as possible using multiple maximum sleep intervals followed by a smaller sleep interval before the predicted time instant. After the predicted time instant, a few smaller sleep intervals with a trend of constant level (CL), exponential decrease (ED), or linear decrease (LD) can be further arranged. To react to the outlier of prediction, exponential increase for sleep intervals can be extended. The combination of the aforementioned designs then forms our three proposed mechanisms, namely, PDSTP-CL, PDSTP-ED, and PDSTP-LD. Via simulations, we show that PDSTP-CL not only performs better than PDSTP-ED and PDSTP-LD under general situations but also outperforms the standard sleep mode operation of the type-I power saving class (PSC-I) in IEEE 802.16e and the exponential sleep time backoff mechanism (ESTBM) in the literature in terms of energy efficiency and packet delay.
机译:本文提出了三种预测性和动态睡眠时间计划(PDSTP)节能机制,以同时提高IEEE 802.16e的能源效率和数据包延迟。为了估计移动台(MS)应当醒来以接收下行链路分组的时刻,设计了一种预测方法。在具有预测的时刻的情况下,然后允许MS使用多个最大睡眠间隔尽可能多的睡眠,然后在预测的时刻之前使用较小的睡眠间隔。在预测的时刻之后,可以进一步安排一些较小的睡眠间隔,这些间隔具有恒定水平(CL),指数下降(ED)或线性下降(LD)的趋势。为了对预测的异常值做出反应,可以延长睡眠间隔的指数增长。然后,上述设计的组合形成了我们提出的三种机制,即PDSTP-CL,PDSTP-ED和PDSTP-LD。通过仿真,我们表明PDSTP-CL不仅在一般情况下比PDSTP-ED和PDSTP-LD表现更好,而且还优于IEEE 802.16e和I型节能类(PSC-I)的标准睡眠模式操作。就能量效率和数据包延迟而言,文献中的指数睡眠时间退避机制(ESTBM)。

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