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Stability-constrained optimization for energy efficiency in polling-based wireless networks

机译:基于轮询的无线网络中能量效率的稳定性受限优化

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A wireless device's energy can be saved by putting it into the sleeping mode (power saving mode, PSM) or decreasing its transmission power (transmission power control, TPC) which prolongs the packet transmission time. However, decreasing one's transmission power would prevent others from transmitting their packets. Clearly, there are complex interactions when each tries to optimize its own energy efficiency. Therefore, in this paper we are considering the problem of optimizing the energy efficiency for all wireless devices in the network with the constraint that they are all stable. In particular, we consider the polling-based MAC protocols with phase grouping and mobile grouping schedules, and we employ both the PSM and TPC to save the energy. We have formulated stability-constrained optimization problems for them, and have proposed an iterative algorithm to compute the optimal power allocations for the wireless devices. We have conducted a lot of experiments to validate the accuracy of the algorithm and to evaluate the gains in the energy efficiency for the two schedules. The mobile grouping schedule is found to be much more energy efficient than the PG schedule, especially when the downlink traffic is higher than the uplink traffic. We have also studied the impact of the optimized schedules on the delay performance.
机译:通过将无线设备置于睡眠模式(省电模式,PSM)或降低其传输功率(传输功率控制,TPC)可以节省无线设备的能量,从而延长了数据包的传输时间。但是,降低一个人的传输功率将阻止其他人传输其数据包。显然,当每个人都试图优化自己的能源效率时,会有复杂的相互作用。因此,在本文中,我们考虑了在网络中所有所有无线设备均稳定的约束条件下优化能量效率的问题。特别是,我们考虑将基于轮询的MAC协议与相位分组和移动分组调度一起考虑,并且我们同时使用PSM和TPC来节省能源。我们为它们制定了稳定性受限的优化问题,并提出了一种迭代算法来计算无线设备的最佳功率分配。我们进行了许多实验,以验证算法的准确性并评估两个计划的能效收益。发现移动分组调度比PG调度具有更高的能源效率,尤其是当下行链路流量高于上行链路流量时。我们还研究了优化计划对延迟性能的影响。

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