Košťál Kristián, Bencel Rastislav, Ries Michal, Trúchly Peter, Kotuliak Ivan
Faculty of Informatics and Information Technologies, Slovak University of Technology in Bratislava, 842 16 Bratislava, Slovakia. kristian.kostal@stuba.
Faculty of Informatics and Information Technologies, Slovak University of Technology in Bratislava, 842 16 Bratislava, Slovakia.
Sensors (Basel). 2019 Apr 19;19(8):1880. doi: 10.3390/s19081880.
Wireless Local Area Network (WLAN) infrastructure is a dominant technology for direct access to the Internet and for cellular mobile data traffic offloading to WLANs. Additionally, the enterprise infrastructure can be used to provide functionality for the Internet of Things and Machine to Machine scenarios. This work is focused on improvements of radio resources control scalability similar to mobile networks via handover between cells. We introduce an improved IEEE 802.11 architecture utilizing Software-Defined Networks (SDNs). The proposed architecture allows communications during device movements without losing a quality of service (QoS). The fast seamless handover with QoS enables efficient usage of radio resources in large networks. Our improvements consist of integrating wireless management to OpenFlow protocol, separating encryption and decryption from an access point. In parallel, this feature as a side effect unloads processing at the Access Points (APs). Finally, the functionality of architecture design and scalability was proven by Colored Petri Nets (CPNs). The second proof of our concept was performed on two scenarios. The first scenario was applied to a delay sensitive use case. The second scenario considers a network congestion in real world conditions. Client's mobility was integrated into both scenarios. The design was developed to demonstrate SDN WLAN architecture efficiency.
无线局域网(WLAN)基础设施是直接接入互联网以及将蜂窝移动数据流量卸载到WLAN的主导技术。此外,企业基础设施可用于为物联网和机器对机器场景提供功能。这项工作专注于通过小区间切换来改进类似于移动网络的无线资源控制可扩展性。我们引入了一种利用软件定义网络(SDN)的改进型IEEE 802.11架构。所提出的架构允许在设备移动期间进行通信而不损失服务质量(QoS)。具有QoS的快速无缝切换能够在大型网络中高效利用无线资源。我们的改进包括将无线管理集成到OpenFlow协议中,将加密和解密与接入点分离。同时,此功能作为副作用减轻了接入点(AP)的处理负担。最后,通过有色Petri网(CPN)证明了架构设计的功能和可扩展性。我们概念的第二个验证在两个场景中进行。第一个场景应用于对延迟敏感的用例。第二个场景考虑现实世界条件下的网络拥塞。客户端的移动性被整合到这两个场景中。该设计旨在展示SDN WLAN架构的效率。