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Generalize 3D model of energy consumption for deploying nodes in Sensor Network

机译:概括能耗的3D模型以在Sensor Network中部署节点

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Wireless Sensor Networks (WSN) provide network access for mobile users. Therefore, most traffic flows in WSNs are to and from the sensor node and base station of the networks without wired connection. Power consumption is one of the most important issue in the sensor network. Energy constraints have a significant impact on the design and operation of wireless sensor networks. This paper describes a mathematical model for the power consumption of mobile node in wireless sensor networks. A wireless sensor network having multiple BSs (data sink nodes)and mobile nodes are considered. Each source node must send all its locally generated data to the other nodes and vice -versa. To maximize mobile node's lifetime, it is essential to have optimum monitored region and radio range of each source node of WSNs. To find an optimal solution a mathematical model, which is proposed for optimal power consumption in terms of ratio of whole energy of sensor nodes to energy consumption speed of sensor nodes in any area should be constant. Through extensive simulation of the model we achieved the results of the model which is shown below and implies that this model has excellent performance and provides a near-optimal solution.
机译:无线传感器网络(WSN)为移动用户提供网络访问。因此,WSN中的大多数业务流是在没有有线连接的情况下往返于网络的传感器节点和基站的。功耗是传感器网络中最重要的问题之一。能量限制对无线传感器网络的设计和运行有重大影响。本文描述了无线传感器网络中移动节点功耗的数学模型。考虑具有多个BS(数据宿节点)和移动节点的无线传感器网络。每个源节点必须将其所有本地生成的数据发送到其他节点,反之亦然。为了最大化移动节点的寿命,必须具有最佳的WSN的每个源节点的受监视区域和无线电范围。为了找到最佳解决方案,提出了一个数学模型,该模型应针对任何区域中传感器节点的总能量与传感器节点的能量消耗速度之比的最佳功耗而保持恒定。通过对该模型的广泛仿真,我们获得了如下所示的模型结果,这表明该模型具有出色的性能并提供了接近最佳的解决方案。

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