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On enhancing the energy conservation by ATIM window in wireless sensor networks

机译:通过无线传感器网络中的ATIM窗口增强节能效果

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ATIM (Ad hoc traffic Indication Message) window can be used effectively to enhance the potential energy savings at static sensors nodes during data dissemination in wireless sensor networks. Doze and awake are two states a sensor node may be in during ATIM window. We consider a traditional wireless sensor network system consisting of resource-rich static sink and resource-constrained multiple static sensor nodes forming square grids. Sink may be multi-hop away from the sensor nodes and collects the data from them through multi-hop query-response propagation via shortest path. We consider three kinds of sensor nodes: (1) Target node (2) Intermediate nodes forming the shortest path (3) Idle nodes. The target sensor node and the intermediate sensor nodes are in awake state during one complete query-response process and do not follow ATIM concept for that duration. Each idle sensor node in the grid is strictly bound with ATIM window and is in doze state for maximum time to conserve energy. The sleeping sensor node wakes up at regular interval of time to read the beacon messages. If the message comes from sink, sensor node immediately reads the header part of query packet to check whether it is the intermediate node or the target sensor. The target sensor node further reads the remaining part of query packet and responds back to the sink with data through intermediate sensor nodes forming the shorted path. Sink transfers the collected data to the control station directly.
机译:在无线传感器网络中的数据分发过程中,可以有效地使用ATIM(临时流量指示消息)窗口来增强静态传感器节点上的潜在节能效果。打ze和唤醒是传感器节点在ATIM窗口期间可能处于的两种状态。我们考虑一个传统的无线传感器网络系统,该系统由资源丰富的静态接收器和资源受限的多个静态传感器节点组成,这些节点形成正方形网格。接收器可能距离传感器节点多跳,并通过最短路径通过多跳查询响应传播从传感器节点收集数据。我们考虑三种传感器节点:(1)目标节点(2)形成最短路径的中间节点(3)空闲节点。在一个完整的查询响应过程中,目标传感器节点和中间传感器节点处于唤醒状态,并且在该持续时间内未遵循ATIM概念。网格中的每个空闲传感器节点都严格与ATIM窗口绑定,并且处于休眠状态以最大限度地节省能量。睡眠传感器节点以固定的时间间隔唤醒以读取信标消息。如果消息来自接收器,则传感器节点立即读取查询数据包的标头部分,以检查它是中间节点还是目标传感器。目标传感器节点进一步读取查询数据包的其余部分,并通过形成短路路径的中间传感器节点用数据响应接收器。接收器将收集的数据直接传输到控制站。

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