A distributer, energy-aware, utility-based approach for data transport in wireless sensor networks

Wei-Peng Chen, J. Hou, L. Sha, M. Caccamo
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引用次数: 6

Abstract

Distinct from wireless ad hoc networks, wireless sensor networks are data-centric, application-oriented, collaborative, and energy-constrained in nature. In this paper, we formulate the problem of data transport in sensor networks as an optimization problem, with the objective of maximizing the amount of information (utility) collected at sinks, subject to both the channel bandwidth and energy constraints. We then devise a distributed solution of the convex optimization problem, and explore in three directions. First, we devise a simple node capacity estimation method to on-line measure the node capacity. Second, we linearize the energy constraint by properly setting the value of the system lifetime in advance and controlling the data rate of a node so as to sustain its battery lifetime longer than the specified lifetime. Finally, we incorporate the optimization results into routing so as to provide sensors with opportunities to select better routes. The simulation results show that the utility-based approach balances between system utility and system lifetime
无线传感器网络中数据传输的分配器、能量感知、基于效用的方法
与无线自组织网络不同,无线传感器网络本质上是以数据为中心、面向应用、协作和能源限制的。在本文中,我们将传感器网络中的数据传输问题表述为一个优化问题,其目标是在信道带宽和能量约束的情况下,在接收器收集的信息量(效用)最大化。然后,我们设计了凸优化问题的分布式解,并从三个方向进行了探索。首先,我们设计了一种简单的节点容量估计方法来在线测量节点容量。其次,我们通过提前设定适当的系统寿命值和控制节点的数据速率来线性化能量约束,使其电池寿命长于规定的寿命。最后,我们将优化结果结合到路由中,为传感器提供选择更好路由的机会。仿真结果表明,基于效用的方法在系统效用和系统寿命之间取得了平衡
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