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Energy Efficiency Analysis of Multistage Cooperation in Sensor Networks

机译:传感器网络多阶段合作的能效分析

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Wireless sensor networks demand the implementation of energy-aware transmission protocols. Recently, cooperative protocols have been suggested for use in sensor networks since they typically require less transmit power than the direct transmission for the same error probability. For sensor networks with short range transmissions, however, the energy consumed in receiving transmissions from cooperative partners may exceed that of transmission energy when using cooperation. Hence it is not clear if such implementation is energy efficient. The objective of this work is to study energy efficiency of multistage cooperative networks that accounts for both the transmission reliability in terms of outage probability and the total network energy consumed (including the transmit as well as receive energy) to achieve this performance. We analyze the effect of node density, network topology and the number of cooperation stages on the energy efficiency of multistage relay networks using numerical results. With respect to serial equidistant network topology, we observe that the largest energy efficiency is obtained with three cooperation stages and just few relays in the medium SNR range while it is best to allocate five cooperation stages and large number of relays when transmit SNR is low. It is also observed that uniform relay distribution, a more practical approach in many scenarios, can improve energy efficiency of sensor network with five cooperation stages and large number of relays.
机译:无线传感器网络要求实现能量感知传输协议。近来,已经建议在传感器网络中使用协作协议,因为对于相同的错误概率,协作协议通常比直接传输需要更少的传输功率。但是,对于具有短距离传输的传感器网络,使用合作伙伴时从合作伙伴接收传输所消耗的能量可能会超过传输能量。因此,尚不清楚这种实施是否是节能的。这项工作的目的是研究多级合作网络的能效,该能效既要考虑中断概率的传输可靠性,也要考虑达到该性能所需的总网络能量(包括传输和接收能量)。我们使用数值结果分析了节点密度,网络拓扑结构和协作级数对多级中继网络能效的影响。关于串行等距网络拓扑,我们观察到,在中等SNR范围内,通过三个协作级和仅几个中继即可获得最大的能效,而当发射SNR低时,最好分配五个协作级和大量的中继。还可以观察到,在许多情况下,更均匀的中继分布是一种更实用的方法,它可以通过五个协作阶段和大量的中继来提高传感器网络的能效。

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