面向任务的wsn基于效用的联合传感器选择与拥塞控制

H. Rowaihy, Matthew P. Johnson, S. Eswaran, D. Pizzocaro, A. Bar-Noy, T. L. Porta, A. Misra, A. Preece
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引用次数: 9

摘要

以任务为中心的无线传感器网络环境通常具有多个任务同时运行的特点。单个任务竞争受约束的资源,因此需要两个级别的资源中介算法。首先,必须结合传感器属性和任务需求,将不同的传感器分配给不同的任务。因此,各种数据路由上的传感器数据速率必须动态调整,以共享可用的无线带宽,特别是当链路遇到流量拥塞时。在本文中,我们研究了增量修改传感器-任务匹配过程的启发式方法,以纳入运输能力约束或可行任务效用值的变化。
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Utility-based joint sensor selection and congestion control for task-oriented WSNs
Task-centric wireless sensor network environments are often characterized by the simultaneous operation of multiple tasks. Individual tasks compete for constrained resources and thus need resource mediation algorithms at two levels. First, different sensors must be allocated to different tasks based on the combination of sensor attributes and task requirements. Subsequently, sensor data rates on various data routes must be dynamically adapted to share the available wireless bandwidth, especially when links experience traffic congestion. In this paper we investigate heuristics for incrementally modifying the sensor-task matching process to incorporate changes in the transport capacity constraints or feasible task utility values.
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