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Analysis of Power Management and System Latency in Wireless Sensor Networks

机译:无线传感器网络电力管理与系统延迟分析

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Successful power management in a wireless sensor network requires optimization of the protocols which affect energy-consumption on each node and the aggregate effects across the larger network. System optimization for a given deployment scenario requires an analysis and trade off of desired node and network features with their associated costs. The sleep protocol for an energy-efficient wireless sensor network for event detection, target classification, and target tracking developed at Sandia National Laboratories is presented. The dynamic source routing (DSR) algorithm is chosen to reduce network maintenance overhead, while providing a self-configuring and self-healing network architecture. A method for determining the optimal sleep time is developed and presented, providing reference data which spans several orders of magnitude. Message timing diagrams show, that a node in a five-node cluster, employing an optimal cyclic single-radio sleep protocol, consumes 3% more energy and incurs a 16-s increase latency than nodes employing the more complex dual-radio STEM protocol.
机译:无线传感器网络中的成功电源管理需要优化影响每个节点上的能量消耗的协议以及跨越网络的聚合效果。给定部署方案的系统优化需要分析和折衷所需的节点和网络功能,其相关成本。展示了用于活动检测,目标分类和在桑迪亚国家实验室开发的节能无线传感器网络的睡眠协议。选择动态源路由(DSR)算法以减少网络维护开销,同时提供自我配置和自修复的网络架构。开发和呈现用于确定最佳睡眠时间的方法,提供跨越几个数量级的参考数据。消息时序图显示,五节点集群中的节点采用最佳循环单无线电睡眠协议,能量增加3%,并且比采用更复杂的双无线电干序协议的节点引起16-S增加延迟。

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