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Performance evaluation of a satellite-switched variable-frame TDMA system

机译:卫星切换可变帧TDMA系统的性能评估

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In satellite-switched time-division multiple access (SS/TDMA) systems, the demand assignment control is a suitable scheme for the bursty packets to enhance the capacity efficiency. In the system, by applying the demand assignment scheme, the minimum transmission time could be achieved by the efficient time slot assignment algorithm. According to a given traffic matrix, the minimum transmission time cannot exceed the fixed TDMA frame duration. The spare time may be left at the end of the TDMA frame as the growth space for the future needs. To increase the system efficiency, the spare time could be reduced. In this paper, a demand assignment protocol with a variable frame is proposed for the system. The Markov chain model is applied to analyze the system performance on throughput, balking probability and packet delay. Performance comparison with the previous presented protocol, the proposed protocol could show a simple control technique and the efficient performance results in the system. It is a suitable candidate to be employed in the satellite networks to provide communication between the satellite and earth stations. (c) 2004 Elsevier GmbH. All rights reserved.
机译:在卫星交换时分多址(SS / TDMA)系统中,需求分配控制是用于突发数据包以提高容量效率的合适方案。在系统中,通过应用需求分配方案,可以通过有效的时隙分配算法来实现最小的传输时间。根据给定的流量矩阵,最小传输时间不能超过固定的TDMA帧持续时间。空闲时间可以留在TDMA帧的末尾,作为将来需求的增长空间。为了提高系统效率,可以减少空闲时间。本文提出了一种具有可变框架的需求分配协议。马尔可夫链模型用于分析系统在吞吐量,阻止概率和数据包延迟方面的性能。与先前提出的协议进行性能比较,所提出的协议可以显示一种简单的控制技术和系统中的有效性能结果。在卫星网络中采用它来提供卫星和地球站之间的通信是一个合适的候选人。 (c)2004 Elsevier GmbH。版权所有。

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