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Topology Design and Performance Evaluation of Wireless Sensor Network Based on MIMO Channel Capacity

机译:基于MIMO信道容量的无线传感器网络拓扑设计与性能评估

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The Wireless Sensor Network (WSN) uses autonomous sensor nodes to monitor a field. These sensor nodes sometimes act as relay nodes for each other. In this paper, the performance of the WSN using fixed relay nodes and Multiple-Input Multiple-Output (MIMO) technology necessary for future wireless communication is evaluated in terms of the channel capacity of the MIMO system and the number of sensor nodes served by the system. Accordingly, we propose an optimum topology for the WSN backbone named Connected Relay Node Double Cover (CRNDC), which can recover from a single fault, the algorithms (exhaustive search and other two approximation methods) to find the optimum distance to place the relay nodes from sink node, and the height of the sink and relay nodes to be placed by using the pathloss model. The performances of different MIMO-WSN configurations over conventional WSN are evaluated, and the direct relationship between relay position and minimum required channel capacity are discovered.
机译:无线传感器网络(WSN)使用自主传感器节点来监视字段。这些传感器节点有时充当彼此的中继节点。本文根据MIMO系统的信道容量和WSN服务的传感器节点数量,评估了使用固定中继节点和未来无线通信所需的多输入多输出(MIMO)技术的WSN的性能。系统。因此,我们为WSN骨干网提出了一种名为“连接中继节点双覆盖”(CRNDC)的最佳拓扑,该拓扑可以从单个故障中恢复,并通过算法(穷举搜索和其他两种近似方法)来找到放置中继节点的最佳距离。接收节点的距离,以及使用路径损耗模型放置的接收节点和中继节点的高度。评估了传统WSN上不同MIMO-WSN配置的性能,并发现了中继位置和最小所需信道容量之间的直接关系。

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