首页> 外文期刊>Microprocessors and microsystems >PowerTap: All-digital power meter modeling for run-time power monitoring
【24h】

PowerTap: All-digital power meter modeling for run-time power monitoring

机译:PowerTap:用于运行时功率监控的全数字功率计建模

获取原文
获取原文并翻译 | 示例
           

摘要

The power consumption is a key metric to design computing platforms. In particular, the variety and complexity of current applications fueled an increasing number of run-time power-aware optimization solutions to dynamically trade the computational power for the power consumption. In this scenario, the online power monitoring methodologies are the core of any power-aware optimization, since the incorrect assessment of the run-time power consumption prevents any effective actuation. This work proposesPowerTap, an all-digital power modeling methodology for designing online power monitoring solutions. In contrast with state-of-the-art solutions,PowerTapadds domain-specific constraints to the data-driven power modeling problem.PowerTapidentifies the power model iteratively to balance the accuracy error of the power estimates and the complexity of the final monitoring infrastructure. As a representative use-case, we employed a complex hardware multi-threaded SIMD processor, also considering different operating clock frequencies. The RTL implementation of the identified power model targeting anXilinx Artix 7 XC7A200T FPGAhighlights an accuracy error within 1.79% with an area overhead of 9.95% (LUT) and 3.87% (flip flops) and an average power overhead of 12.17 mW regardless of the operating conditions, i.e., number of software threads and operating frequency.
机译:功耗是设计计算平台的关键指标。特别地,当前应用的多样性和复杂性推动了越来越多的运行时功耗感知优化解决方案,以动态地将计算能力与功耗进行交换。在这种情况下,在线电源监控方法是任何功耗感知优化的核心,因为对运行时功耗的不正确评估会阻止任何有效的启动。这项工作提出了PowerTap,一种用于设计在线电源监控解决方案的全数字电源建模方法。与最先进的解决方案相比,PowerTapadds对数据驱动的功率建模问题具有特定于域的约束。PowerTap迭代地识别功率模型,以平衡功率估计的精度误差和最终监控基础架构的复杂性。作为一个有代表性的用例,我们使用了一个复杂的硬件多线程SIMD处理器,同时考虑了不同的工作时钟频率。针对AnXilinx Artix 7 XC7A200T FPGA的已确定功率模型的RTL实现突出显示了1.79%的精度误差,面积开销为9.95%(LUT)和3.87%(触发器),平均功率开销为12.17 mW,无论操作条件如何,即软件线程数和工作频率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号