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Exploration of ring oscillator based temperature sensors network accuracy on FPGA

机译:FPGA上基于环形振荡器的温度传感器网络精度的探索

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摘要

During the last decades, technology scaling in reconfigurable logic devices enabled implementing complicated designs which results in higher power density and on-chip temperature. Since higher operating temperature of chips is a critical problem in electronics devices, thermal management techniques are highly required. To provide a thermal map of reconfigurable logic devices, a network of sensors is needed. In this work, a ring-oscillator-based temperature sensor is used to create a sensor network. Then, a design space exploration is done among several sensor networks with the various sensor configurations including different ring oscillator length, the number of sensors in the examined network and various sampling time. We propose three criteria for exploring and comparing the efficiency of sensors network based on the thermal overhead and also measurement accuracy and precision among plenty of configurations on the Virtex-6 FPGA.
机译:在过去的几十年中,可重构逻辑器件的技术扩展使实现复杂的设计成为可能,从而导致更高的功率密度和片上温度。由于芯片的较高工作温度是电子设备中的关键问题,因此非常需要热管理技术。为了提供可重配置逻辑设备的热图,需要一个传感器网络。在这项工作中,使用基于环形振荡器的温度传感器来创建传感器网络。然后,在具有不同传感器配置的几个传感器网络之间进行设计空间探索,包括不同的环形振荡器长度,所检查网络中的传感器数量以及不同的采样时间。我们提出了三个标准,以基于热开销以及在Virtex-6 FPGA上的大量配置中的测量精度和精度来探索和比较传感器网络的效率。

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