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Efficient router node deployment for ZigBee based Internet of Things network using Physarum optimization algorithm

机译:使用Physarum优化算法的基于ZigBee的物联网网络的高效路由器节点部署

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The resource constraint is one of the top issues in the Internet of Things network. All activity in the network node should be carefully designed and managed to support the resource efficiency of the network. Hence, an energy efficient transceiver like ZigBee is popularly used as the infrastructure for the Internet of Things edge network. This paper presents our method for efficient ZigBee router node deployment which minimizes the number of communication hop in ZigBee based network in an area of implementation. The method aims to construct a ZigBee network tree topology with the minimum number of ZigBee routers while providing communication service to all points of interest. We use a virtual grid to transform the problem into a graph problem. The Physarum optimization algorithm is used to determine the minimum number and the position of the routers, according to the gateway and point of interest locations. The validation to the method is carried out using Matlab simulation. The simulation result shows that the algorithm can successfully meet the requirement with the accuracy level of as low as 93.64%. It also shows that there is a tradeoff between degree of accuracy and computation time. The increase in grid spacing will increase the computation time exponentially, while the increase in the number of point of interest will increase the computation time linearly.
机译:资源约束是物联网网络中的首要问题之一。应仔细设计和管理网络节点中的所有活动,以支持网络的资源效率。因此,像ZigBee这样的节能收发器被普遍用作物联网边缘网络的基础架构。本文介绍了我们的有效ZigBee路由器节点部署方法,该方法可在实现区域中最大程度地减少基于ZigBee的网络中的通信跳数。该方法旨在以最少的ZigBee路由器数量构造ZigBee网络树拓扑,同时为所有关注点提供通信服务。我们使用虚拟网格将问题转换为图问题。根据网关和兴趣点位置,使用Physarum优化算法确定路由器的最小数量和位置。该方法的验证是使用Matlab仿真进行的。仿真结果表明,该算法能够以93.64 \%的准确度成功满足要求。它还表明,在准确度和计算时间之间要进行权衡。网格间距的增加将成倍增加计算时间,而关注点数量的增加将线性增加计算时间。

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