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Waste Heat Recovery System Applied to a High-Performance Video Card

机译:废热回收系统应用于高性能视频卡

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摘要

This paper presents results given by a waste heat recovery (WHR) system applied to a high-performance video card, as well as average energy generated per hour according to emulation of computer graphics requirements demanded by the user while the card is working. A WHR system includes three phases: (1) waste heat collection, (2) energy conversion and (3) signal conditioning. The analysis of the WHR system is presented. The emulation of waste heat has been generated using electrical resistors as if they were the main components that generate waste heat, mainly the GPU (graphics processing unit), and DDR3 memories. This WHR system has considered the MSI-R4850 video card as a reference, operation temperature of which has an overall range between 60 degrees C -90 degrees C. Thermoelectric generator modules (TEG) are based on the Seebeck effect, and the thermoelectric array used is an important part of the WHR system, which has been constructed based on the locations of the main components to convert waste heat into electrical power. The waste heat recovery process has two treatments: First, once the operating conditions, per GPU and DDR3 memories have been emulated, the energy recovered is measured per component and whole WHR system; the second one measures energy recovered considering the output signal conditioning of the WHR system, which was converted to 5V output through a DC-DC boost converter, while the input voltage operates within a range (0.9V-5V). The energy recovered may be applied to low-power electronic devices, which is a contribution to energy efficiency.
机译:本文介绍了应用于高性能视频卡的废热恢复(WHR)系统给出的结果,以及根据用户在卡工作时用户所需的计算机图形要求的仿真,每小时产生的平均能量。 WHR系统包括三个阶段:(1)废热收集,(2)能量转换和(3)信号调节。提出了对WHR系统的分析。使用电阻器产生废热的仿真,好像它们是产生废热的主要组件,主要是GPU(图形处理单元)和DDR3存储器。该WHR系统已经认为MSI-R4850视频卡作为参考,操作温度在60℃-90摄氏度之间的整体范围内。热电发电机模块(TEG)基于塞贝克效应,以及所用的热电阵列是WHR系统的重要组成部分,其基于主要部件的位置构造,以将废热转换为电力。废热回收过程具有两种处理:首先,一旦仿真了每个GPU和DDR3存储器的操作条件,恢复的能量是每组分和整个WHR系统测量的;考虑到WHR系统的输出信号调节的第二个测量能量恢复,该信号通过DC-DC升压转换器转换为5V输出,而输入电压在范围内(0.9V-5V)。恢复的能量可以应用于低功率电子设备,这是对能效的贡献。

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