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A simulation study on a high-speed slotted ring access mechanism with dynamically adaptive slot sizes

机译:具有动态自适应时隙大小的高速时隙环接入机制的仿真研究

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摘要

Two access mechanisms complementary in performance are the token ring and the slotted ring. While the token ring outperforms the slotted ring for long messages, the latter performs significantly better for short messages. The paper shows that the factor that causes this difference is the number of tokens on the ring. It proposes a new network design in which the number of tokens has been made adaptive, resulting in a network that can be made to behave like both the token ring and the slotted ring, or anything in between, i.e. it performs optimally for any given message length. The paper presents first simulation results that show the performance gain that is achieved by using this principle. Further, it introduces a new priority mechanism in which an upper bound for the access delay of high priority messages is guaranteed
机译:在性能上互补的两种访问机制是令牌环和开槽环。对于长消息,令牌环的性能优于开槽环,而对于短消息,令牌环的性能明显更好。该论文表明,导致这种差异的因素是环上令牌的数量。它提出了一种新的网络设计,其中令牌的数量已自适应,从而可以使网络的行为类似于令牌环和开槽环,或两者之间的任何行为,即,它对于任何给定消息均表现最佳长度。本文介绍了第一个仿真结果,该结果显示了使用此原理可获得的性能增益。此外,它引入了一种新的优先级机制,其中保证了高优先级消息的访问延迟的上限。

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