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A Delay and Load-balancing based Hierarchical Route Planning Method for Transmission Line IoT Sensing and Monitoring applications

机译:传输线物联网传感与监控应用中基于延迟和负载平衡的分层路由规划方法

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The Internet of Things (IoT) have been widely applied into human social activities for a long time. Wireless sensor networks (WSN) are an important part of IoT. WSN consist of a large number of inexpensive micro-sensor nodes deployed in the monitoring area. These nodes form a multi-hop self-organizing network system by wireless communication. To better utilize the limited energy resource, we design a delay and load-balancing based hierarchical route planning method for transmission line IoT sensing and monitoring applications (DLHRP) in WSN. The Algorithm has two sub-mechanisms which are the node clustering strategy and the data forwarding method. Firstly, we propose a node clustering strategy based on energy balancing and energy consumption optimization. It preferentially selects nodes with high residual energy and high traffic load as cluster-head nodes, and then distributes the cluster-head nodes evenly. Next, we present a data forwarding method based on load-balancing to differentiate services and select the appropriate routes for different services according to service priority and delay requirements. The simulation results show that the proposed route planning method can lower the total energy consumption of data transmission and thus extend the life cycle of WSN under the premise of ensuring the delay requirements.
机译:物联网(IoT)长期以来已广泛应用于人类的社会活动中。无线传感器网络(WSN)是物联网的重要组成部分。 WSN由部署在监视区域中的大量廉价微传感器节点组成。这些节点通过无线通信形成多跳自组织网络系统。为了更好地利用有限的能源,我们针对WSN中的传输线IoT传感和监控应用(DLHRP)设计了一种基于延迟和负载平衡的分层路由规划方法。该算法有两个子机制,分别是节点聚类策略和数据转发方法。首先,我们提出了一种基于能量平衡和能耗优化的节点聚类策略。它优先选择具有较高剩余能量和高流量负载的节点作为群集头节点,然后平均分配群集头节点。接下来,我们提出一种基于负载平衡的数据转发方法,以区分服务,并根据服务优先级和延迟要求为不同的服务选择合适的路由。仿真结果表明,该路由规划方法可以在保证时延要求的前提下,降低数据传输的总能耗,从而延长无线传感器网络的生命周期。

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