Performance optimization for a mobile small-unit-operation situational awareness (SUO-SAS) radio network

Y.J. Liu, C. Li, C. Cruz
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引用次数: 4

Abstract

This paper concerns performance optimization using the Taguchi parameter optimization methodology[M.S. Phaadke, May 12 1989] in a network based on SUO-SAS (situational awareness system for small unit operations)-a new state-of-the-art communication system developed by ITT Industries. For the subject experiment, the network consisted of 20 nodes. The nodes are mobile and move in accordance with an operationally relevant scenario based upon a topology provided by DARPA. The scenario specifies the input traffic variations and other noise factors such as message size, message types and mobility. The throughput is the most important performance metric and is selected as the output characteristic. The criterion for throughput optimization amounts to generating as large a throughput as possible. Four crucial parameters associated with the intranet layer and link layer, and an L/sub 9/ orthogonal array are selected for optimization through OPNET modeling and simulation. Parameter optimization yields a 34% improvement in message completion rate and a 35% improvement in system throughput.
移动小单元作战态势感知(sso - sas)无线网络的性能优化
本文涉及使用田口参数优化方法进行性能优化基于SUO-SAS(小单位作战态势感知系统)的网络,这是ITT工业公司开发的最先进的新型通信系统。在主体实验中,网络由20个节点组成。节点是可移动的,并根据DARPA提供的拓扑结构根据操作相关场景移动。该场景指定输入流量变化和其他噪声因素,如消息大小、消息类型和移动性。吞吐量是最重要的性能指标,被选为输出特性。吞吐量优化的标准相当于生成尽可能大的吞吐量。通过OPNET建模和仿真,选择了与内网层和链路层相关的4个关键参数,以及L/sub 9/正交阵列进行优化。参数优化使消息完成率提高34%,系统吞吐量提高35%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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