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Optimal link control of WSN considering the network activity interference with stochastic geometry theory

机译:随机几何理论的网络活动干扰对WSN的最优链路控制

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Wireless Sensor Network(WSN) has become a hot topic in recent years. However, WSN's application areas still been limited beacase of the constrained energy. Traditionally, using the minimal transmitting power of sensor node by k-hop interference model is a popular way. However, network activity was not considered. In this paper, we derived a normal transmitted power level using network activity aware interference with stochastic geometry theory. For network performance improvement, active nodes with the enhanced transmitted power dynamically select suitable values of data-rate relying on channel state information (CSI). Experiments results show that our proposed strategy can improve the energy efficiency of WSNs.
机译:无线传感器网络(WSN)已成为近年来的热门话题。但是,由于能源有限,WSN的应用领域仍然受到限制。传统上,通过k-hop干扰模型使用传感器节点的最小发射功率是一种流行的方法。但是,未考虑网络活动。在本文中,我们使用网络活动感知干扰和随机几何理论推导了正常发射功率水平。为了提高网络性能,具有增强的发射功率的活动节点将根据信道状态信息(CSI)动态选择合适的数据速率值。实验结果表明,本文提出的策略可以提高无线传感器网络的能效。

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