IPA in the loop: Control design for throughput regulation in computer processors

Xinwei Chen, Y. Wardi, S. Yalamanchili
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引用次数: 7

Abstract

A new technique for performance regulation in event-driven systems, recently proposed by the authors, consists of an adaptive-gain integral control. The gain is adjusted in the control loop by a real-time estimation of the derivative of the plant-function with respect to the control input. This estimation is carried out by Infinitesimal Perturbation Analysis (IPA). The main motivation comes from applications to throughput regulation in computer processors, where to-date, the testing of the proposed control technique has been assessed by simulation. The purpose of this paper is to report on its implementation on Intel's Haswell microprocessor, and compare its performance to that obtained from cycle-level, full system simulation environment. The intrinsic contribution of the paper to the Workshop on Discrete Event Systems is in describing the process of taking an IPA-based design and simulation to a concrete implementation, thereby providing a bridge between theory and applications.
环路中的IPA:计算机处理器吞吐量调节的控制设计
最近,作者提出了一种新的事件驱动系统性能调节技术,该技术由自适应增益积分控制组成。增益在控制回路中通过实时估计植物函数相对于控制输入的导数来调整。这种估计是由无穷小摄动分析(IPA)进行的。主要动机来自计算机处理器吞吐量调节的应用,到目前为止,所提出的控制技术的测试已通过模拟进行评估。本文的目的是报告其在Intel的Haswell微处理器上的实现,并将其性能与在周期级全系统仿真环境下获得的性能进行比较。本文对离散事件系统研讨会的内在贡献在于描述了将基于ipa的设计和模拟用于具体实现的过程,从而在理论和应用之间提供了一座桥梁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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