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Communication performance optimisation requires minimising variance

机译:通信性能优化需要最大限度地减少方差

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The cost of communication in message-passing systems can only be computed based on a large number of low-level details. Consequently, the only architectural measure they naturally suggest is a first-order one, latency. We show that a second-order property, the standard deviation of the delivery times is also of interest. Most importantly, the average performance of a large communication system depends not only on the average performance of its components, but also on the standard deviation of these performances. In other works, building a high-performance system requires components that are themselves performing high-performance, but their performance must also have small variance. We illustrate this effect using distributions of the BSP g parameter. Lower bounds in the time per unit transfer of communication in large system can be derived from data measured over single links.
机译:消息传递系统中的通信成本只能基于大量的低级详细信息来计算。因此,他们自然建议的唯一架构度量是一阶延迟。我们显示了一个二阶属性,即传递时间的标准偏差也很有趣。最重要的是,大型通信系统的平均性能不仅取决于其组件的平均性能,还取决于这些性能的标准偏差。在其他工作中,构建高性能系统需要组件本身具有高性能,但是它们的性能也必须有很小的差异。我们使用BSP g参数的分布来说明这种效果。在大型系统中,每单位通信传输时间的下限可以从在单个链路上测得的数据得出。

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