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Dynamic performance of ALOHA-type VSAT channels: a simulation study

机译:ALOHA型VSAT频道的动态性能:仿真研究

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A simulation study is presented of the dynamic behavior of ALOHA-type protocols used in interactive-data very small aperture terminal (VSAT) networks. A simulation model for quantitative evaluation of random access channel stability in terms of the transient response to a traffic overload pulse is described, and the usefulness of a single performance measure called backlog fall time is established. The variation of backlog fall time with selectable protocol parameters (such as average retransmission delay for nonadaptive systems or retransmission backoff policy parameters for adaptive systems) is investigated, for example, for ALOHA and selective reject ALOHA channels. A methodology for joint optimization of steady-state and dynamic performance based on obtaining contours of average delay versus backlog fall time over the variation range of selectable protocol parameters is outlined and demonstrated. It is shown that, generally speaking, a suitable operating point is easily identified from these contours because they exhibit a characteristic knee region in which both delay and fall time are close to the minimum values that can be independently obtained.
机译:对交互式数据超小孔径终端(VSAT)网络中使用的ALOHA类型协议的动态行为进行了仿真研究。描述了一种用于对流量过载脉冲的瞬态响应进行定量评估随机访问信道稳定性的仿真模型,并建立了一种称为积压下降时间的性能指标的有用性。例如,针对ALOHA和选择性拒绝ALOHA信道,研究了积压下降时间随可选协议参数(例如,非自适应系统的平均重传延迟或自适应系统的重传退避策略参数)的变化。概述和演示了一种基于稳态的动态性能联合优化的方法,该方法基于在可选协议参数的变化范围内获得平均延迟与积压下降时间的等值线。从图中可以看出,通常可以从这些轮廓中轻松找到合适的工作点,因为它们具有特征性的拐点区域,其中延迟和下降时间均接近可以独立获得的最小值。

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