首页> 外文会议>International Symposium on Quality Electronic Design >Integration of Minimum Energy Point Tracking and Soft Real-Time Scheduling for Edge Computing
【24h】

Integration of Minimum Energy Point Tracking and Soft Real-Time Scheduling for Edge Computing

机译:边缘计算的最小能点跟踪和软实时调度的集成

获取原文

摘要

In the upcoming Internet of Things era, reducing energy consumption of embedded processors is highly desired. Minimum Energy Point Tracking (MEPT) is one of the most efficient methods to reduce both dynamic and static energy consumption of a processor. Previous works proposed a variety of MEPT methods over the past years. However, none of them incorporate their algorithms with practical real-time operating systems, although edge computing applications often require low energy task execution with guaranteeing real-time properties. The difficulty comes from the time complexity for identifying MEP and changing voltages, which often prevents real-time task scheduling. This paper proposes an approximated MEPT algorithm, which reduces the complexity of identifying MEP down to that of Dynamic Voltage and Frequency Scaling (DVFS). We also propose a task scheduling algorithm, which adjusts processor performance to the workload, and provides a soft real-time capability to the system. With these two methods, MEPT became a general task, and the operating system stochastically adjusts the average response time of a processor to be equal to a specified deadline. The experiments using a fabricated test chip show that the energy loss induced by the proposed algorithm is only 0.5% at most, and the algorithm does not sacrifice the fundamental real-time properties.
机译:在即将到来的东西互联网中,非常需要降低嵌入式处理器的能耗。最小能点跟踪(Mept)是减少处理器的动态和静态能耗的最有效方法之一。以前的作品提出了过去几年的各种方法。然而,它们都没有与实际实时操作系统合并其算法,但是边缘计算应用程序通常需要低能量任务执行,保证实时属性。难度来自识别MEP和改变电压的时间复杂度,这通常防止实时任务调度。本文提出了一种近似的Mept算法,其降低了将MEP识别到动态电压和频率缩放(DVFS)的复杂性。我们还提出了一种任务调度算法,它将处理器性能调整为工作负载,并为系统提供软实时功能。通过这两种方法,Mept成为一般任务,操作系统随机调整处理器的平均响应时间等于指定的截止日期。使用制造的测试芯片的实验表明,所提出的算法引起的能量损失最多仅为0.5%,并且该算法不会牺牲基本的实时性质。

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