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Using optimum transmission range to design energy efficient systems for the neuRFon/spl trade/ Netform

机译:利用最佳传输范围为设计神经义/拼接贸易/ Netform设计节能系统

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NeuRFon/spl trade/ Netform is a sensor network made up of very low cost, low power, wireless devices (neuRFon/spl trade/ devices) that are relatively static, and are pervasively deployed throughout the environment. In this paper, we are interested in finding the relationship between the optimum one-hop transmission distance and the transceiver device parameters that will minimize the total system energy. Our analysis assumes that the individual neuRFon/spl trade/ devices do not have power control and therefore will transmit at a common range. Our results show that the optimum one-hop transmission distance is independent of the physical network topology, the number of transmission sources, and the total transmission distance. It only depends on the propagation environment and the device parameters. The implications and usefulness of this result on present day transceiver devices are also discussed.
机译:Neurfon / SPL贸易/ Netform是一种由非常低成本,低功耗,无线设备(Neurfon / SPL贸易/设备)构成的传感器网络,具有相对静态的,并且在整个环境中普遍部署。 在本文中,我们有兴趣找到最佳的单跳传输距离和收发器设备参数之间的关系,以最大限度地减少总系统能量。 我们的分析假设各个神经缩合/拼接贸易/设备没有功率控制,因此将在公共范围内传输。 我们的结果表明,最佳的单跳传输距离与物理网络拓扑,传输源的数量和总传输距离无关。 它只取决于传播环境和设备参数。 还讨论了这一结果对现今收发器设备的影响和实用性。

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