Energy-efficient transmission with data sharing

Weiwei Wu, Jianping Wang, Minming Li, Kai Liu, Junzhou Luo
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引用次数: 11

Abstract

In a wireless system, when multiple applications can share data transmitted by rate-adaptive wireless devices, there exists a trade-off between transmission redundancy and energy efficiency. This paper conducts the first theoretical analysis on such a trade-off. We formulate the problem as a bi-objective optimization problem to simultaneously minimize the transmission redundancy and the energy consumption. In the offline setting that the full information is known in advance, we provide optimal algorithms for the bi-objective optimization problem. In the online setting, we provide an online algorithm with proven performance bound to approximate the optimal solution without relying on any assumed distribution or future information. The proposed online algorithm is proved O(ln T)-competitive with respect to transmission redundancy and also O(ln T)-competitive with respect to energy consumption, where T is the number of time slots. That is, the output of the algorithm always approximates the optimal solution within a logarithmic factor over all possible inputs. Our simulation results further validate the efficiency of our online algorithm.
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具有数据共享的节能传输
在无线系统中,当多个应用程序可以共享由速率自适应无线设备传输的数据时,需要在传输冗余和能源效率之间进行权衡。本文首次对这种权衡进行了理论分析。我们将该问题表述为同时最小化传输冗余和能耗的双目标优化问题。在预先知道全部信息的离线环境下,我们给出了双目标优化问题的最优算法。在在线设置中,我们提供了一种在线算法,该算法具有经过验证的性能,可以在不依赖任何假设分布或未来信息的情况下近似最优解。所提出的在线算法在传输冗余度方面具有O(ln T)竞争,在能耗方面也具有O(ln T)竞争,其中T为时隙数。也就是说,算法的输出总是在所有可能输入的对数因子范围内逼近最优解。仿真结果进一步验证了在线算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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