Wang Lijun, Yan Jia, Han Tao, Deng Dexiang
Electronic Information School, Wuhan University, Wuhan 430072, China.
Faculty of Information Science and Technology, Wenhua College, Wuhan 430074, China.
Sensors (Basel). 2019 May 8;19(9):2126. doi: 10.3390/s19092126.
Based on the connectivity and energy consumption problems in wireless sensor networks, this paper proposes a kind of new network algorithm called the connectivity and energy efficiency (CEE) algorithm to guarantee the connectivity and connectivity probability, and also to reduce the network energy consumption as much as possible. Under the premise that all sensors can communicate with each other in a specific communication radius, we obtained the relationship among the connectivity, the number of sensor nodes, and the communication radius because of the theory of probability and statistics. The innovation of the paper is to maximize the network connectivity and connectivity probability, by choosing which types of sleeping nodes to wake up. According to the node's residual energy and the relative value of distance, the algorithm reduces the energy consumption of the whole network as much as possible, and wakes up the number of neighbor nodes as little as possible, to improve the service life of the whole network. Simulation results show that this algorithm combines the connectivity and the energy efficiency, provides a useful reference value for the normal operation of the sensors networks.
针对无线传感器网络中的连通性和能量消耗问题,本文提出了一种名为连通性与能量效率(CEE)算法的新型网络算法,以保障连通性和连通概率,并尽可能降低网络能量消耗。在所有传感器能在特定通信半径内相互通信的前提下,基于概率与统计理论,我们得出了连通性、传感器节点数量和通信半径之间的关系。本文的创新之处在于,通过选择唤醒哪些类型的休眠节点,使网络连通性和连通概率最大化。该算法根据节点的剩余能量和距离相对值,尽可能降低整个网络的能量消耗,并尽可能少地唤醒邻居节点数量,以提高整个网络的使用寿命。仿真结果表明,该算法兼顾了连通性和能量效率,为传感器网络的正常运行提供了有益的参考价值。