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Evaluating the performability of tactical communications networks

机译:评估战术通信网络的性能

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Tactical communications networks are multihop wireless networks in which switches and endpoints are mobile nodes. In a tactical environment, system performance degrades when switching nodes and/or communication links fail to operate. Fast algorithms for performance analysis are desirable for optimizing the network in a timely fashion. Further, tactical networks commonly use preemptive priorities to achieve low blocking probabilities for high-priority calls when the loss of equipment in the battlefield is not trivial. This paper discusses three measures and analytical algorithms for the performability evaluation of a two-tier tactical communications network where preemptive priority service discipline is employed and traffic is divided into multiple classes to provide multiple grades of service. Each class of traffic has its distinct characteristics, such as average call-arrival rate, average call-holding time, and service priority. The three performability measures are devised to evaluate the impact of nodes/links failures on system performance. Experiments show that the preemption does provide robust service for higher priority traffic. The techniques for performability evaluation presented in this paper may also be useful in other rapidly deployable networks, where mobility, communication efficiency, and computational complexity for adapting the network to unpredictable environments are of significant concern.
机译:战术通信网络是多跳无线网络,其中的交换机和端点是移动节点。在战术环境中,当交换节点和/或通信链路无法运行时,系统性能会降低。需要用于性能分析的快速算法,以便及时优化网络。此外,当战场上的装备损失不小时,战术网络通常使用抢占式优先权来实现高优先权呼叫的低阻塞概率。本文讨论了两层战术通信网络的性能评估的三种方法和分析算法,该网络采用抢占式优先服务准则,并将流量分为多个类别以提供多种等级的服务。每种流量都有其独特的特征,例如平均呼叫到达率,平均呼叫保持时间和服务优先级。设计了三种性能度量来评估节点/链接故障对系统性能的影响。实验表明,抢占确实为较高优先级的流量提供了强大的服务。本文介绍的用于性能评估的技术在其他快速可部署的网络中也可能有用,在这些网络中,移动性,通信效率和使网络适应不可预测的环境的计算复杂性是至关重要的。

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