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Performance Evaluation of Hybrid Channel Assignment for Wireless Sensor Networks

机译:无线传感器网络混合信道分配的性能评估

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Data transmission in Wireless Sensor Networks (WSNs) is physically constrained by interference, throughput, latency and many other physical phenomena. We propose a distributed hybrid algorithm to perform the selection of communication channels in such a way that overall throughput, latency, energy and overhead are improved. A tree structure is built out from the sink, in order to elect sensors with the highest degree of connectivity as parents, and sensors with the lowest degree of connectivity as leaves. A set of parents and leaves are assigned to a single fixed channel. Specific sensors, called mediators, are assigned to several orthogonal channels. So, they can switch dynamically to the static channels of parents for collecting the data. This allows the data to be efficiently propagated in parallel on multiple channels from parent to mediator to parent towards the sink. We compare the results obtained with those for single and multiple channels by taking sink throughput, broadcast latency, energy consumption and routing overhead as performance criteria. We show that our method provides better results.
机译:无线传感器网络(WSN)中的数据传输在物理上受到干扰,吞吐量,延迟和许多其他物理现象的限制。我们提出一种分布式混合算法,以提高整体吞吐量,等待时间,能源和开销的方式执行通信信道的选择。从接收器中构建树状结构,以选择具有最高连接度的传感器作为父级,并选择具有最低连接度的传感器作为树叶。一组父母和叶子被分配给单个固定通道。称为介体的特定传感器被分配给几个正交通道。因此,他们可以动态切换到父母的静态渠道以收集数据。这允许数据在从父对象到中介者再到父对象到接收器的多个通道上并行高效传播。我们将接收器吞吐量,广播延迟,能耗和路由开销作为性能标准,将获得的结果与单通道和多通道的结果进行比较。我们证明了我们的方法可以提供更好的结果。

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