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Load sensitive topology control: Towards minimum energy consumption in dense ad hoc sensor networks

机译:负载敏感的拓扑控制:在密集的ad hoc传感器网络中实现最低能耗

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Sensor networks are usually composed of tiny and resource constraint devices, which make energy conservation a vital concern of their design and deployment. Reducing energy consumption has been addressed through different aspects till now. Topology Control (TC) is a well-known approach which tries to determine transmission ranges of nodes to optimize their energy utilization while keeping some network properties like connectivity. However, in current TC schemes, the transmission range of each node is mostly accounted as the exclusive estimator for its energy consumption while ignoring the amount of data it sends or relays. In this paper, we deliberately reformulate the problem of topology control, regarding both network load and transmission range parameters. Our approach is particularly formulated for dense sensor networks with one or more base stations. The problem is considered in three different environmental conditions and then, proper mathematical relations are presented to find the optimum solutions. Finally, we show the advantages of our proposal through experiments.
机译:传感器网络通常由微小且资源受限的设备组成,这使节能成为其设计和部署的关键问题。迄今为止,已经通过不同方面解决了降低能耗的问题。拓扑控制(TC)是一种众所周知的方法,它试图确定节点的传输范围以优化其能量利用率,同时保留某些网络属性(如连接性)。但是,在当前的TC方案中,每个节点的传输范围大多被视为其能耗的唯一估算器,而忽略了其发送或中继的数据量。在本文中,我们针对网络负载和传输范围参数故意重新设计了拓扑控制问题。我们的方法专为具有一个或多个基站的密集传感器网络制定。在三个不同的环境条件下考虑该问题,然后提出适当的数学关系以找到最佳解决方案。最后,我们通过实验展示了我们建议的优势。

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