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An Active Disturbance Rejection Control Approach to Fan Control in Servers

机译:服务器中风扇控制的主动干扰抑制控制方法

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As more and more massive data storage drives are used in super high density, the power used to cool the servers has become an increasingly large component of the total power consumption. Therefore, improving server cooling efficiency has become an essential requirement in data centers. However, because the thermal dynamics of the server system has characteristics such as nonlinearity, significant inter-loop coupling, and continuously fast changing/unknown workload disturbances, these pose huge challenges to control engineers and data center architect engineers. To address the above concerns, this paper presents an active disturbance rejection control (ADRC) based temperature control solution to realize the thermal regulation in a one-unit (1U) server to simultaneously improve fan power consumption efficiency and regulate the server components' temperature to avoid downgraded performance caused by overheating. In this study, an experimental testbed is built and modeled to capture the thermal dynamics of a typical 1U blade server where the thermal characteristics and existing solutions are both systematically evaluated. Performance of the design concept is proved both in simulation and hardware testbed. Experimental results show that, with the proposed control solution, temperature overshoot is greatly eliminated, temperatures are more tightly controlled and the server components' throttling rate are greatly decreased. Furthermore, the proposed method is shown to be able to save up to 22% energy when the temperature set-point is increased.
机译:随着越来越多的海量数据存储驱动器以超高密度使用,用于冷却服务器的电源已成为总功耗中越来越大的组成部分。因此,提高服务器冷却效率已成为数据中心的基本要求。但是,由于服务器系统的热动力学具有诸如非线性,显着的环路间耦合以及持续快速变化/未知的工作负载干扰等特征,因此这些对控制工程师和数据中心架构师构成了巨大挑战。为了解决上述问题,本文提出了一种基于主动抗扰控制(ADRC)的温度控制解决方案,以实现单机(1U)服务器中的热调节,从而同时提高风扇的功耗效率并调节服务器组件的温度,以达到避免由于过热而导致性能下降。在本研究中,构建并建模了一个实验性测试平台,以捕获典型1U刀片服务器的热动力学,在该系统中,系统地评估了热特性和现有解决方案。仿真和硬件测试平台都证明了该设计概念的性能。实验结果表明,采用所提出的控制解决方案,可以大大消除温度过冲,更严格地控​​制温度,并大大降低服务器组件的节流率。此外,当温度设定点升高时,所提出的方法能够节省多达22%的能量。

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