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Energy Efficiency in Multihop Wireless Networks with Unreliable Links

机译:链路不可靠的多跳无线网络的能效

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Due to the increasing number of wireless devices, the issue of energy efficiency that requires high data rate with reliability has spawned tremendous research interests in recent years. In wireless networks, major problemthat needs to be addressed is that multihop transmission, though requiring lower transmit power, incurs more circuit energy consumption than that of single-hop transmission and leads to more bit errors. Thus we are motivated to study the energy efficiency of multihop wireless networks with unreliable links, where such a problem is even more serious. Specifically, with a flat Rayleigh fading channel, our network model jointly considers the transmit energy and circuit energy, and characterizes the unreliability caused by the wireless nature with the assumption of probabilistic links. Based on that, we formulate our problems of energy consumption normalized by the source-destination (S-D) path loss, and derive the optimal set of signal-to-noise ratios in each hop to minimize the normalized energy consumption. In addition, our theoretical results exhibit a clear relation between the normalized energy consumption and the delay constraint, and meanwhile disclose the crucial impact that the circuit energy has on the monotonicity of the normalized energy consumption. More specifically, we find that the normalized total energy consumption with the delay constraint decreases as the number of hops increases when the number of hops is small, and increases as the number of hops increases when it is large. Extensive simulations confirm the theoretical results. Our findings shed light on the design, implementation, and operation of real-world energy-efficient multihop wireless networks.
机译:由于无线设备的数量不断增加,近年来要求高数据速率和可靠性的能效问题引起了巨大的研究兴趣。在无线网络中,需要解决的主要问题是多跳传输尽管需要较低的发射功率,但比单跳传输要消耗更多的电路能量,并导致更多的误码。因此,我们有动机去研究链路不可靠的多跳无线网络的能效,而这种问题甚至更为严重。具体来说,在平坦的瑞利衰落信道下,我们的网络模型共同考虑了发射能量和电路能量,并通过概率链路的假设来表征由无线性质引起的不可靠性。在此基础上,我们制定了通过源-目标(S-D)路径损耗归一化的能耗问题,并得出了每一跳中最佳的信噪比集合,以最大程度地减少了归一化的能耗。此外,我们的理论结果表明归一化能耗与时延约束之间有着明确的关系,同时揭示了电路能量对归一化能耗的单调性的关键影响。更具体地,我们发现,当跳数较小时,具有延迟约束的归一化总能耗随着跳数的增加而减小,而当跳数大时,随着跳数的增加而增加。大量的仿真证实了理论结果。我们的发现为现实世界中高效节能的多跳无线网络的设计,实施和运行提供了启示。

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