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Utility-Based Bandwidth Adaptation in Mission-Oriented Wireless Sensor Networks

机译:面向任务的无线传感器网络中基于实用程序的带宽自适应

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This article develops a utility-based optimization framework for resource sharing by multiple competing missions in a mission-oriented wireless sensor network (WSN) environment. Prior work on network utility maximization (NUM) based optimization has focused on unicast flows with sender-based utilities in either wireline or wireless networks. In this work, we develop a generalized NUM model to consider three key new features observed in mission-centric WSN environments: i) the definition of the utility of an individual mission (receiver) as a joint function of data from multiple sensor sources; ii) the consumption of each sender's (sensor) data by multiple missions; and iii) the multicast-tree-based dissemination of each sensor's data flow, using link-layer broadcasts to exploit the "wireless broadcast advantage" in data forwarding. We show how a price-based, distributed protocol (WSN-NUM) can ensure optimal and proportionally fair rate allocation across multiple missions, without requiring any coordination among missions or sensors. We also discuss techniques to improve the speed of convergence of the protocol, which is essential in an environment as dynamic as the WSN. Further, we analyze the impact of various network and protocol parameters on the bandwidth utilization of the network, using a discrete-event simulation of a stationary wireless network. Finally, we corroborate our simulation-based performance results of the WSN-NUM protocol with an implementation of an 802.11b network.
机译:本文开发了一种基于实用程序的优化框架,用于面向任务的无线传感器网络(WSN)环境中的多个竞争任务共享资源。基于网络实用程序最大化(NUM)的优化的先前工作集中于有线或无线网络中基于发送者的实用程序的单播流。在这项工作中,我们开发了一个通用的NUM模型,以考虑在以任务为中心的WSN环境中观察到的三个关键新功能:i)将单个任务(接收方)的效用定义为来自多个传感器源的数据的联合函数; ii)多个任务消耗每个发送者(传感器)的数据; iii)使用链路层广播来利用数据转发中的“无线广播优势”,以基于多播树的方式传播每个传感器的数据流。我们将展示基于价格的分布式协议(WSN-NUM)如何确保跨多个任务的最优且成比例的公平费率分配,而无需任务或传感器之间进行任何协调。我们还将讨论提高协议收敛速度的技术,这在像WSN这样动态的环境中至关重要。此外,我们使用固定无线网络的离散事件模拟来分析各种网络和协议参数对网络带宽利用率的影响。最后,我们通过802.11b网络的实施来证实WSN-NUM协议基于仿真的性能结果。

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