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Adaptive data sensing rate in ad-hoc sensor networks for autonomous transport application

机译:自主运输应用中的Ad-hoc传感器网络中的自适应数据传感速率

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A novel algorithm for adaptive control of the data sensing rate in wireless ad-hoc sensor networks (WSN) is presented. The WSN is applied to monitor the environmental parameters e.g. temperature and humidity, inside containers for the food transportation. Using the proposed algorithm, each sensor node can control its sensing intervals according to the surrounding environmental conditions. The data sink receives only the required information from data sources, so that the process of data fusion could be optimized by minimizing the overall data transmissions in WSN. In order to approximate the development trend of the environment, a neural network algorithm is used due to its learning capability and flexibility. The algorithm of adaptive sensing rate is tested in a simulation environment and implemented in a refrigerator truck for a food transport purpose. Both the simulation and implementation results show that the algorithm can autonomously concentrate on the problematic situation and efficiently reduce the redundant data measurements.
机译:提出了一种用于无线ad-hoc传感器网络(WSN)中数据传感速率的自适应控制算法。 WSN应用于监测环境参数。温度和湿度,内部容器用于食品运输。使用所提出的算法,每个传感器节点可以根据周围的环境条件控制其感测间隔。数据接收器仅接收来自数据源的所需信息,从而可以通过最小化WSN中的整体数据传输来优化数据融合的过程。为了近似环境的发展趋势,由于其学习能力和灵活性,使用了一种神经网络算法。在仿真环境中测试自适应传感速率的算法,并在冰箱卡车中实现,用于食品运输目的。仿真和实现结果都表明,该算法可以自主集中在有问题的情况下,有效地降低冗余数据测量。

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