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Using Multiple Input, Multiple Output Formal Control to Maximize Resource Efficiency in Architectures

机译:使用多输入多输出形式控制来最大化架构中的资源效率

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摘要

As processors seek more resource efficiency, they increasingly need to target multiple goals at the same time, such as a level of performance, power consumption, and average utilization. Robust control solutions cannot come from heuristic-based controllers or even from formal approaches that combine multiple single-parameter controllers. Such controllers may end-up working against each other. What is needed is control-theoretical MIMO (multiple input, multiple output) controllers, which actuate on multiple inputs and control multiple outputs in a coordinated manner. In this paper, we use MIMO control-theory techniques to develop controllers to dynamically tune architectural parameters in processors. To our knowledge, this is the first work in this area. We discuss three ways in which a MIMO controller can be used. We develop an example of MIMO controller and show that it is substantially more effective than controllers based on heuristics or built by combining single-parameter formal controllers. The general approach discussed here is likely to be increasingly relevant as future processors become more resource-constrained and adaptive.
机译:随着处理器寻求更高的资源效率,他们越来越需要同时针对多个目标,例如性能水平,功耗和平均利用率。鲁棒的控制解决方案不能来自基于启发式的控制器,也不能来自结合了多个单参数控制器的形式化方法。这样的控制器可能最终会彼此对抗。需要的是理论控制的MIMO(多输入多输出)控制器,该控制器可在多个输入上启动并以协调方式控制多个输出。在本文中,我们使用MIMO控制理论技术来开发控制器,以动态调整处理器中的架构参数。据我们所知,这是该领域的第一项工作。我们讨论了可以使用MIMO控制器的三种方式。我们开发了一个MIMO控制器的示例,并表明它比基于启发式或通过组合单参数形式控制器构建的控制器更加有效。随着未来的处理器变得越来越受资源约束和自适应,此处讨论的通用方法可能越来越重要。

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