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Asymptotic Performance of Energy-Aware Multiserver Queueing Systems with Setup Times

机译:具有设置时间的能量感知多功能队列排队系统的渐近性能

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Energy demands of modern datacentres are an immense concern. An intuitive solution is to turn servers off to incur less costs. However, the control problem of when to turn a specific server off, and when to then turn that server back on, is far from trivial. As such, many different authors have modeled this problem as an M/M/C queue where each server can be turned on, with an exponentially distributed setup time, or turned off instantaneously. We analyse this well-established model under the asymptotic regime where the number of servers approaches infinity while the load per server remains fixed and show that not only are many of the control policies in the literature equivalent under this regime, but they are also optimal under any cost function which is non-decreasing in the expected energy cost and response time.
机译:现代数据中心的能源需求是一个巨大的担忧。直观的解决方案是关闭服务器,以产生更少的成本。但是,何时关闭特定服务器的控制问题,以及何时重新转回该服务器,远非微小。因此,许多不同的作者已经将此问题建模为M / M / C队列,其中每个服务器都可以打开,具有指数分布的设置时间,或瞬时关闭。我们在渐近制度下分析了这种成熟的模型,其中服务器的数量接近无限,而每个服务器的负载仍然是固定的,并且不仅在该制度下的文献中的许多控制策略,而且它们也是最佳的任何成本函数都不降低预期的能量成本和响应时间。

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