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Dynamic Adaptation of the User Data Flow to the Changing Data Rates in VHF Networks: An Exploratory Study

机译:VHF网络中用户数据流对不断变化的数据速率的动态适应:一项探索性研究

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The adaptation of tactical systems to either message outbursts of user-behavior or unpredictable network changes is a necessary condition to guarantee the robustness of the system. However, both events are likely to occur simultaneously in military scenarios, in case of which the system can use multilayer control loops to adapt its store-and-forward mechanism. This paper is a part of a wide investigation to evaluate the robustness and solve the related issues of tactical systems. Our architecture implements the store-and-forward mechanism with a hierarchical queuing model of the message, IP packet, and radio buffer. In this study, we want to solve the data overflow in memory -constrained devices such as radio buffer caused due to data outbursts, eventually, leading to packet loss. In order to mitigate radio buffer overflow, we introduce a control point to dequeue the packets from the packet handler to the radio buffer. Our system adds an Inter- Packet- Interval (IPI) to control the admission into the radio buffer. IPI is computed using the nominal link data rate compiled by the radio together with buffer metrics such as the occupancy and threshold. We discuss experimental results from a VHF network suggesting that our cross-layer IPI allows better control of the buffer usage thereby increasing the system robustness to ever-changing link data rates in the network.
机译:战术系统适应用户行为的消息爆发或不可预测的网络变化是保证系统健壮性的必要条件。但是,这两种事件都可能在军事场景中同时发生,在这种情况下,系统可以使用多层控制回路来调整其存储转发机制。本文是评估鲁棒性并解决战术系统相关问题的广泛研究的一部分。我们的体系结构使用消息,IP数据包和无线缓冲区的分层排队模型来实现存储转发机制。在这项研究中,我们要解决由于数据突发而导致内存受限的设备(如无线电缓冲区)中的数据溢出,最终导致数据包丢失。为了减轻无线电缓冲区的溢出,我们引入了一个控制点,以使数据包从数据包处理程序中出队到无线电缓冲区。我们的系统添加了分组间间隔(IPI),以控制对无线缓冲区的访问。 IPI是使用无线设备编译的标称链路数据速率以及诸如占用率和阈值之类的缓冲区度量来计算的。我们讨论了VHF网络的实验结果,表明我们的跨层IPI可以更好地控制缓冲区使用,从而提高系统对网络中不断变化的链路数据速率的鲁棒性。

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