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Architectural Opportunities for Novel Dynamic EMI Shifting(DEMIS)

机译:新型动态EMI移位的建筑机会(DEMIS)

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Processors emit non-trivial amounts of electromagnetic radiation, creating interference in frequency bands used by wireless communication technologies such as cellular, WiFi and Bluetooth. We introduce the problem of in-band radio frequency noise as a form of electromagnetic interference (EMI) to the computer architecture community as a technical challenge to be addressed. This paper proposes the new idea of Dynamic EMI Shifting (DEMIS) where architectural and/or compiler changes allow the EMI to be shifted at runtime. DEMIS processors dynamically move the interference from bands used during communication to other unused frequencies. Unlike previous works that leverage static techniques, DEMIS dynamically targets specific frequency bands; the type of techniques used here are only possible from an architectural perspective. This paper is also the first to provide insights in the new area of dynamic EMI shifting by evaluating several platforms and showing the EMI is sensitive to many architectural and compilation parameters. Our evaluation over real systems shows a decrease of in-band EMI ranging from 3 to 15 dB with less than a 10% average performance impact. A 15dB EMI reduction for LTE can represent over 3x bandwidth improvement for EMI bound communication.
机译:处理器发出非平凡的电磁辐射量,在蜂窝,WiFi和蓝牙等无线通信技术使用的频带中产生干扰。我们将带内射频噪声的问题介绍为计算机架构社区的电磁干扰(EMI)的形式作为要解决的技术挑战。本文提出了动态EMI移位(DEMIS)的新思想,其中架构和/或编译器更改允许EMI在运行时移位。 DEMIS处理器动态地移动与其他未使用频率通信期间使用的频带的干扰。与利用静态技术的以前的作品不同,DEMIS动态针对特定频段;这里使用的技术类型仅是架构的视角。本文也是第一个通过评估多个平台并显示EMI对许多架构和编译参数来敏感的动态EMI转换新领域的见解。我们对真实系统的评估显示,带内EMI的减少范围为3至15 dB,平均性能影响低于10%。 LTE的15dB EMI降低可以代表EMI绑定通信的3x带宽改进。

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