Microprocessor-based adaptive thermal control for an air-cooled computer CPU module

C. Lundquist, V. Carey
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引用次数: 16

Abstract

This paper summarizes an exploration of design strategies for a microprocessor-based adaptive thermal control system for heat-dissipating computer CPU modules. The thermal control system contains a cold plate with an air-cooled base mode and a thermo-electric heat pump element that can boost cooling performance when needed. The microprocessor programming includes models of the heat transfer in the cold plate and the thermal performance of the thermo-electric heat pump and the fan coolers. The microprocessor is programmed to compare the thermal control system model predictions to the existing operating conditions. The results of this comparison are used to facilitate control of the cooling system and to provide fault detection during its operation. This paper reports the progress of an ongoing study that will explore different ways that the computational capability of the processor can be used to minimize power consumption while maintaining adequate processor temperature control over broadly varying operating conditions. The investigation also explores the merits of different strategies for incorporating fault detection features into the microprocessor programming to enhance the reliability and robustness of the system.
基于微处理器的气冷计算机CPU模块自适应热控制
本文综述了一种基于微处理器的散热计算机CPU模块自适应热控制系统的设计策略。热控制系统包含一个风冷基础模式的冷板和一个热电热泵元件,可以在需要时提高冷却性能。微处理器编程包括冷板传热模型、热电热泵和风扇冷却器的热性能模型。对微处理器进行编程,将热控制系统模型预测与现有运行条件进行比较。这种比较的结果用于冷却系统的控制,并在其运行过程中提供故障检测。本文报告了一项正在进行的研究的进展,该研究将探索不同的方法,利用处理器的计算能力来最小化功耗,同时在广泛变化的操作条件下保持足够的处理器温度控制。研究还探讨了将故障检测功能纳入微处理器编程的不同策略的优点,以提高系统的可靠性和鲁棒性。
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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