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An expert system for real-time traffic management in wireless local area networks

机译:无线局域网中实时流量管理的专家系统

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The paper explores delay-based congestion and flow control and the offloading of real-time traffic from wireless local area networks (WLANs) to mobile cellular networks (MCNs) in multihomed devices. The control system developed is based on an embedded hierarchical expert system. It adjusts transceivers' traffic flow(s) for prevailing network conditions to achieve application-dependent delay and throughput limits. In wireless networks, delay and throughput depend on the packet size, packet transmission interval, and node connection density. Therefore, the controller on the destination node monitors average one-way delay and the change of one-way delay of the incoming traffic. On this basis, it adjusts the packet size and transmission interval of the source node by transmitting a control command to the source. If the prevailing level of traffic in the network exceeds its capacity despite of the control actions taken, devices prepare for developed asynchronous offloading of traffic to another access network. The control model was validated via simulation of Voice over Internet Protocol (VoIP) traffic in the OMNeT++ network simulator. The results demonstrate that the expert system developed is able to regulate packet sizes to match the prevailing application-dependent optimum and transfer traffic to another network if the network exceed its capacity no matter the control actions taken. Although this work is motivated mainly by issues of congestion and flow control of WLAN systems and the simulations and results were prepared for the IEEE 802.1 1b system, the approach and techniques are not limited to these systems, but they are applicable for other packet switched access networks (PSANs), too.
机译:本文探讨了基于延迟的拥塞和流量控制,以及将实时流量从无线局域网(WLAN)转移到多宿主设备中的移动蜂窝网络(MCN)。开发的控制系统基于嵌入式分层专家系统。它针对主要网络条件调整收发器的业务流,以实现与应用有关的延迟和吞吐量限制。在无线网络中,延迟和吞吐量取决于数据包大小,数据包传输间隔和节点连接密度。因此,目标节点上的控制器监视平均单向延迟和传入流量的单向延迟变化。在此基础上,它通过向源发送控制命令来调整源节点的数据包大小和传输间隔。如果尽管采取了控制措施,但网络中的主要流量水平仍超过其容量,则设备将为向另一接入网络进行流量的异步卸载做好准备。通过在OMNeT ++网络模拟器中模拟Internet协议语音(VoIP)流量来验证控制模型。结果表明,开发的专家系统能够调节数据包大小,以匹配当前依赖于应用程序的最佳值,并且无论网络采取了何种控制措施,都可以将流量传输到另一个网络。尽管这项工作主要是受WLAN系统的拥塞和流量控制问题推动的,并且为IEEE 802.1 1b系统准备了仿真和结果,但方法和技术并不限于这些系统,而是适用于其他分组交换访问网络(PSAN)。

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