嵌入式处理器的体系结构探索

V. V. K. Lakshmi, Arindam Mukherjee, B. Joshi
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引用次数: 1

摘要

在本文中,我们将讨论“低功耗”计算在生物医学系统中的新兴应用,包括超低能耗和低产热的嵌入式可植入设备,以及低功耗但高性能的嵌入式计算平台,这些平台可以实时处理从传感器和植入物收集的大量数据集。我们将讨论嵌入式平台的功率和实时性能需求。我们将概述开发和分析生物医学基准套件的路径,并确定选定应用程序的计算和数据特征-包括可植入设备和外部便携式数据处理平台。本文还将深入探讨可用于设计绿色生物医学计算平台的不同处理器微架构的仿真和设计空间探索工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Architecture exploration for embedded processors
In this paper we will discuss the emerging application of “low-power” computing in bio-medical systems, both for ultra-low-energy and low heat producing embedded implantable devices, as well as for low power dissipation but high performance embedded computing platforms which process the large data sets collected from the sensors and implants in real-time. We will discuss the power and real-time performance requirements of the embedded platforms. We will outline the path to developing and analyzing bio-medical benchmark suite and identify the computational and data characteristics of a selected application - both for implantable devices and for external portable data processing platforms. This paper will also include an in-depth look at available simulation and design space exploration tools for different processor micro-architectures which can be used to design the green bio-medical computation platform.
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