SDN-Enabled Value-Based Traffic Management Mechanism in Resource-Constrained Sensor Devices

Melchizedek I. Alipio, Alex Gyran A. Co, M. Hilario, Christian Miguel C. Pama
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引用次数: 2

Abstract

Transmission of data among constrained wireless sensor devices is critical due to its limited resources such as power, bandwidth, memory, and processing. These data, generated from sensing different physical events with diverse traffic types, have to reach their destinations with a specific Quality of Service (QoS) requirement. With the increasing usage of sensors in the various Internet of Things applications, there is a need to address the resource allocation for handling these critical data while satisfying their respective QoS requirements. In this work, we implemented a Value-based Utility traffic management mechanism using Software Defined Networking (SDN) to cope with QoS requirement in constrained sensor devices. The SDN-enabled mechanism ensures that the demands of sensor data are satisfied by managing traffic while allocating queue resources among flows through a centralized controller, which utilizes network packet statistics. We evaluated the performance of the proposed mechanism in a simple and low-cost OpenFlow testbed with various sensor devices having different QoS requirements. Results show that each wireless sensor device achieved the level of satisfaction based on their required resource network utility.
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资源受限传感器设备中基于sdn的价值流量管理机制
受约束的无线传感器设备之间的数据传输至关重要,因为它的资源有限,如功率、带宽、内存和处理。这些数据是通过感知具有不同流量类型的不同物理事件而生成的,必须具有特定的服务质量(QoS)要求才能到达目的地。随着传感器在各种物联网应用中的使用越来越多,需要解决处理这些关键数据的资源分配问题,同时满足其各自的QoS要求。在这项工作中,我们使用软件定义网络(SDN)实现了基于价值的实用流量管理机制,以应对受限传感器设备中的QoS需求。sdn支持的机制通过集中的控制器(利用网络数据包统计)来管理流量,同时在流之间分配队列资源,从而确保传感器数据的需求得到满足。我们在具有不同QoS要求的各种传感器设备的简单低成本OpenFlow测试平台上评估了所提出机制的性能。结果表明,每个无线传感器设备都达到了基于其所需资源网络效用的满意程度。
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