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Direction-based adaptive data propagation for heterogeneous sensor mobility

机译:基于方向的自适应数据传播,可实现异构传感器的移动性

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We consider sensor networks where the sensor nodes are attached on entities that move in a highly dynamic, heterogeneous manner. To capture this mobility diversity we introduce a new network parameter, the direction-aware mobility level, which measures how fast and close each mobile node is expected to get to the data destination (the sink). We then provide local, distributed data dissemination protocols that adaptively exploit the node mobility to improve performance. In particular, "high" mobility is used as a low cost replacement for data dissemination (due to the ferrying of data), while in the case of "low" mobility either (a) data propagation redundancy is increased (when highly mobile neighbors exist) or (b) long-distance data transmissions are used (when the entire neighborhood is of low mobility) to accelerate data dissemination toward the sink. An extensive performance comparison to relevant methods from the state of the art demonstrates significant improvements, i.e. latency is reduced by even four times while keeping energy dissipation and delivery success at very satisfactory levels.
机译:我们考虑传感器网络,其中传感器节点连接到以高度动态,异构方式移动的实体上。为了捕获这种移动性多样性,我们引入了一个新的网络参数,即方向感知移动性级别,该参数测量每个移动节点到达数据目的地(接收器)的速度和距离。然后,我们提供本地分布式数据分发协议,这些协议可自适应地利用节点移动性来提高性能。特别地,“高”移动性被用作数据分发的低成本替代品(由于数据传送),而在“低”移动性的情况下,要么(a)增加了数据传播冗余度(当存在高度移动的邻居时) )或(b)使用长距离数据传输(当整个邻域具有低移动性时)可加快向宿的数据分发。与现有技术中的相关方法进行的广泛性能比较显示出了显着的改进,即延迟降低了四倍,同时使能量耗散和传递成功保持在非常令人满意的水平。

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