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A joint energy- and QoS-aware routing mechanism for WMNs using software-defined networking paradigm

机译:使用软件定义的网络范例的WMN的能量和QoS感知联合路由机制

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Providing energy conservation together with the quality of service (QoS) becomes more challenging in wireless mesh networks. A promising way to achieve this goal is to design a routing mechanism that takes both energy and QoS into account. On the other hand, software-defined networking (SDN) is an emerging network paradigm which separates the control plane from the data plane and facilitates a high level of programmability and manageability. In this paper, we propose FACOR, a novel SDN-based routing mechanism which aims at minimizing the energy consumption while providing a certain level of QoS for multimedia applications in wireless mesh networks. This technique is essentially suitable for battery-operated mesh nodes with solar panels. To obtain optimal paths, FACOR first estimates the cost of each network link using a fuzzy logic system. The fuzzy part takes parameters related to the quality of service and the energy in order to calculate the cost of the links. The routing problem is then formulated as an integer linear programming (ILP) model. Since ILP is NP-complete, we propose an ant colony optimization-based algorithm to solve the model. The proposed method is implemented in the well-known OpenDayLight controller and strictly follows a modular design for the sake of efficiency. Simulation results confirm the effectiveness of our mechanism which achieves a gain of about 17% and 10% in terms of network lifetime and PSNR, respectively, compared to other methods.
机译:在无线网状网络中,提供节能与服务质量(QoS)一起变得更具挑战性。实现此目标的一种有前途的方法是设计一种同时考虑能量和QoS的路由机制。另一方面,软件定义网络(SDN)是新兴的网络范例,它将控制平面与数据平面分离,并促进了高度的可编程性和可管理性。在本文中,我们提出了FACOR,这是一种新颖的基于SDN的路由机制,旨在最小化能耗,同时为无线网状网络中的多媒体应用提供一定水平的QoS。该技术本质上适用于带有太阳能电池板的电池供电的网格节点。为了获得最佳路径,FACOR首先使用模糊逻辑系统估算每个网络链路的成本。模糊部分采用与服务质量和能量有关的参数,以计算链接的成本。然后将路由问题表述为整数线性规划(ILP)模型。由于ILP是NP完全的,因此我们提出了一种基于蚁群优化的算法来求解该模型。所提出的方法在著名的OpenDayLight控制器中实现,并且出于效率的考虑严格遵循模块化设计。仿真结果证实了我们机制的有效性,与其他方法相比,该机制在网络寿命和PSNR方面分别实现了约17%和10%的增益。

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