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Energy Consumption Analysis in Adaptive Wireless Sensor Networks

机译:自适应无线传感器网络中的能耗分析

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WSNs are characterized by lossy wireless links and severely resource constrained nodes in terms of energy availability and computation capability. Among the resource constraints, energy is probably the most crucial one since sensor nodes are typically battery powered, which limits the operating time of the sensor network. Hence, energy efficiency plays a major role in the design of wireless sense network protocols. In many of these networks, RF operations are sensors’ highest energy-consuming task, and thus, any potential waste must be minimized. In this paper, we discuss how adjusting the node transmission power (PTX) allows them to comply with energy constraints without impacting quality of service, based on experimental data. We show that PTX has a strong impact (near to 20%) on both the energy consumed by the nodes and the quality/reliability of the communication links. Finally, we propose a methodology to optimize PTX according to link quality metric by taking advantage of the physical energy consumption behaviour analysis.
机译:在能量可用性和计算能力方面,WSN的特点是无线链路有损且资源受到严重限制。在资源限制中,能源可能是最关键的一种,因为传感器节点通常由电池供电,这限制了传感器网络的运行时间。因此,能效在无线传感网络协议的设计中起着重要作用。在许多这样的网络中,RF操作是传感器的最大耗能任务,因此,必须将任何潜在的浪费降到最低。在本文中,我们讨论了如何调整节点的传输功率(P TX )根据实验数据,使他们能够遵守能源限制,而不会影响服务质量。我们证明P TX 对节点消耗的能量和通信链路的质量/可靠性都有很大的影响(接近20%)。最后,我们提出了一种优化P的方法 TX 通过利用物理能耗行为分析,根据链路质量度量。

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