Energy and Timing Constrained System Reward Maximization on Wireless Networks

Jiayu Gong, Xiliang Zhong, Chengzhong Xu
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引用次数: 5

Abstract

Power efficiency is an important design issue in embedded devices with limited power supplies. In this paper, we study a reward-based packet scheduling problem in wireless environments. We consider a general scenario in which a transmitter communicates with multiple receivers periodically. To guarantee timely transmission of data, each packet is associated with a delay constraint. The periodic data streams have different importance levels, power functions, and levels of data sizes. The more data a transmitter delivers, the more rewards it obtains. Our objective is to develop schemes that selectively transmit data streams of different data sizes at different transmission rates to maximize the system reward under given time and energy constraints. We show that this problem is NP-hard and develop a dynamic programming algorithm for the optimal solution in pseudo-polynomial time. A fast polynomial-time heuristic approach is presented to achieve close approximation. Simulation results demonstrate that the proposed heuristic approach can achieve a significant improvement over other approaches adapted from existing studies at a small runtime overhead.
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无线网络能量和时间约束下的系统奖励最大化
在电源有限的嵌入式设备中,电源效率是一个重要的设计问题。本文研究了无线环境下基于奖励的分组调度问题。我们考虑一个一般的场景,其中一个发射器周期性地与多个接收器通信。为了保证数据的及时传输,每个数据包都有一个延迟约束。周期数据流具有不同的重要级别、幂函数和数据大小级别。发射器传送的数据越多,获得的奖励就越多。我们的目标是开发方案,以不同的传输速率有选择地传输不同数据大小的数据流,以在给定的时间和能量限制下最大化系统奖励。我们证明了这个问题是np困难的,并开发了一个在伪多项式时间内求解最优解的动态规划算法。提出了一种快速的多项式时间启发式逼近方法。仿真结果表明,所提出的启发式方法在较小的运行时开销下,比现有研究中采用的其他方法取得了显著的改进。
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