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P-EdgeCoolingMode: an agent-based performance aware thermal management unit for DVFS enabled heterogeneous MPSoCs

机译:P-EdgeCoolingMode:基于代理的性能感知型热管理单元,用于启用了DVFS的异构MPSoC

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摘要

Thermal cycling, as well as spatial and thermal gradient, affects the lifetime reliability and performance of heterogeneous Multi-Processor Systems-on-Chips (MPSoCs). Conventional temperature management techniques are not intelligent enough to cater for performance, energy efficiency as well as the operating temperature of the system. In this study, the authors propose a light-weight novel thermal management mechanism (P-EdgeCoolingMode) in the form of intelligent software agent, which monitors and regulates the operating temperature of the CPU cores to improve the reliability of the system while catering for performance requirements. P-EdgeCoolingMode is capable of pro-actively monitoring performance and based on the user's demand the agent takes necessary action, making the proposed methodology highly suitable for implementation on existing as well as conceptual Edge devices utilising heterogeneous MPSoCs with dynamic voltage and frequency scaling (DVFS) capabilities. They validated the authors' methodology on the Odroid-XU4 MPSoC and Huawei P20 Lite (HiSilicon Kirin 659 MPSoC). P-EdgeCoolingMode has been successful in reducing the operating temperature while improving performance and reducing power consumption for chosen test cases than the state-of-the-art. For applications with demanding performance requirement P-EdgeCoolingMode has been found to improve the power consumption by 30.62% at the most in comparison to existing state-of-the-art power management methodologies.
机译:热循环以及空间和热梯度会影响异构多芯片芯片系统(MPSoC)的寿命可靠性和性能。常规的温度管理技术不够智能,无法满足性能,能效以及系统的工作温度。在这项研究中,作者以智能软件代理的形式提出了一种轻巧的新型热管理机制(P-EdgeCoolingMode),该机制可以监视和调节CPU内核的工作温度,从而在满足性能的同时提高系统的可靠性。要求。 P-EdgeCoolingMode能够主动监视性能,并根据用户的需求采取必要的措施,从而使所提出的方法非常适合在利用动态电压和频率缩放(DVFS)的异构MPSoC的现有以及概念性Edge设备上实施)功能。他们在Odroid-XU4 MPSoC和华为P20 Lite(HiSilicon Kirin 659 MPSoC)上验证了作者的方法。与最新技术相比,P-EdgeCoolingMode已成功降低了工作温度,同时提高了所选测试用例的性能并降低了功耗。对于性能要求苛刻的应用程序,与现有的最新电源管理方法相比,已发现P-EdgeCoolingMode最多可将功耗降低30.62%。

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