论文标题
通过被动光访问网络的能源效率IoT虚拟化
Energy Efficient IoT Virtualization with Passive Optical Access Network
论文作者
论文摘要
在本文中,研究了连接到被动光网络(PON)的物联网的边缘计算平台的能源效率。我们已经开发了混合整数线性编程(MILP)优化模型,该模型优化了Cloudlet和VM的位置和数量,并利用能源效率的路线,目的是最大程度地减少IoT网络和处理功耗。我们的结果表明,在数据处理后流量仍然很高的情况下,即以低流量降低百分比为单位,可以通过巩固这些VM在PON光学线终端(OLT)的位置来降低功耗。另一方面,在较高的交通降低比率下,可以通过将VM放置在较低层节点(继电器)中来实现更好的功率效率。我们的结果表明,使用PON和服务异质VM可以节省多达总功率的19%。基于MILP模型的见解,开发了具有非常可比的MILP效力消耗值的启发式。我们考虑了三种代表不同级别的均质和异质VM CPU需求的情况。观察到启发式结果(17%的节电)与MILP之间的良好达成共识,从而节省了19%的电力。
In this paper, the energy efficiency of edge computing platforms for IoT networks connected to a passive optical network (PON) is investigated. We have developed a mixed integer linear programming (MILP) optimization model, which optimizes the placement and number of the cloudlets and VMs and utilizes energy efficient routes with the objective of minimizing the total IoT network and processing power consumption. Our results show that the power consumption can be reduced by consolidating the placement of these VMs at the PON Optical Line Terminal (OLT) in cases where the traffic volume is still high after data processing, ie at low traffic reduction percentages. On the other hand, at high traffic reduction ratios, better power efficiency can be accomplished by placing VMs in lower layer nodes (relays). Our results indicate that utilizing PONs and serving heterogeneous VMs can save up to 19% of the total power. Based on the MILP model insights, a heuristic is developed with very comparable MILP-heuristic power consumption values. We considered three scenarios that represent different levels of homogeneous and heterogeneous VM CPU demands. Good agreement was observed between the heuristic results (17% power saving) and the MILP which results in 19% power saving.