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Effect of slot size on TDMA performance in presence of per slot overhead

机译:存在每个时隙开销时,时隙大小对TDMA性能的影响

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摘要

The problem of optimum slot size in the time division multiplexing (TDM) scheme in the presence of per slot overhead is addressed. Per slot overhead occurs in a variety of network structures. Messages are assumed to be of random length, so they may need to be segmented into several slots, and are assumed to be arriving according to a Poisson process. Optimum slot is derived as a function of input rate, message length distribution, overhead per slot, and number of stations. It is also shown how one will be penalized by deviating from this optimum slot size. Guidelines are provided on how to assign unequal slot sizes in cases where different stations have different traffic characteristics. It is shown that this is a cumbersome nonlinear optimization programming problem in general, which reduces to a Kuhn-Tucker optimization programming problem in light traffic situations.
机译:解决了在存在每个时隙开销的情况下的时分复用(TDM)方案中的最佳时隙大小的问题。每个插槽的开销发生在各种网络结构中。假定消息的长度是随机的,因此可能需要将消息分段为几个时隙,并假定消息是根据泊松过程到达的。最佳时隙是根据输入速率,消息长度分布,每个时隙的开销和站数得出的。还显示了如何通过偏离此最佳插槽大小而受到惩罚。提供了有关在不同站点具有不同流量特性的情况下如何分配不相等时隙大小的指南。结果表明,这通常是一个繁琐的非线性优化规划问题,在交通拥挤的情况下,它可以简化为Kuhn-Tucker优化规划问题。

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