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Adaptive delay-constrained resource allocation in mobile edge computing for Internet of Things communications networks

机译:用于物联网通信网络的移动边缘计算中的自适应延迟约束资源分配

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摘要

The traffic burden at each node in Internet-of-Things (IoT) communication networks becomes prohibitively high especially when involving exhaustive computation. Mobile edge computing (MEC) makes this complicated computation feasible while alleviates the traffic burden by providing the corresponding node with powerful computing resources through wireless transmission between the node and the MEC for offloading computation. However, the transmission via the varying wireless channel requires considerable energy consumption and imposes delay. In this paper, we study the trade-off between the energy consumption and the delay performance in IoT network due to the offloading computation and the wireless communication. An optimization problem involving the offloading ratio for MEC as unknown parameter is established by minimizing the total energy consumption subject to a delay constraint. The problem is then solved by analyzing the convexity of the cost function and the constraint. Moreover, the scaling law of both energy cost and delay performance of IoT networks is investigated with respect to the number of nodes employing the MEC. It is discovered that the delay performance decreases in the logarithm with increasing the number of nodes while the energy cost grows linearly with the increase of the number of nodes. Numerical simulations verifying the performances of the proposed method in the studied IoT networks with MEC are provided.
机译:互联网上的每个节点的交通负担(IOT)通信网络变得非常高,特别是在涉及详尽的计算时。移动边缘计算(MEC)使得这种复杂的计算可行,同时通过在节点与MEC之间的无线传输来减轻具有强大的计算资源的相应节点来减轻交通负担来卸载计算。然而,通过变化无线信道的传输需要相当大的能量消耗并施加延迟。在本文中,我们研究了由于卸载计算和无线通信导致的能耗与IOT网络延迟性能之间的权衡。通过最小化受延迟约束的总能量消耗来建立涉及MEC作为未知参数的卸载比的优化问题。然后通过分析成本函数和约束的凸起来解决问题。此外,关于采用MEC的节点的数量,研究了能量成本和IOT网络延迟性能的缩放规律。发现延迟性能随着节点数量的增加而增加,而能量成本随着节点数量的增加而延长。提供了验证使用MEC的研究IOT网络中提出的方法的性能的数值模拟。

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