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首页> 外文期刊>International journal of embedded and real-time communication systems >Optimal Power Management System in Embedded Devices by using Novel Scheduling Algorithm
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Optimal Power Management System in Embedded Devices by using Novel Scheduling Algorithm

机译:新型调度算法的嵌入式设备最优电源管理系统

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摘要

Recently, Android is being integrated and applied to various embedded systems because of good characteristics like open source, a wide connective range, multitasking, and secure communications. Most of the modern embedded designers have been focused on system performance while reducing operating power consumption. However, increasing the performance level inevitably increases power consumption. In this article, an optimal power management (OPM) system is proposed for embedded systems using a novel scheduling algorithm. It can control the operating power consumption of open source platforms (Raspberry-PI, Parallella, and Arduino) supported hardware devices (ZynqBerry, ZynqParallela, and ArduZynq). The proposed OPM system uses the scheduling algorithm based on the functionality of optimization and their tasks. Moreover, the proposed OPM system provides the low or high frequency to the devices upon receiving the low frequency and high frequency request from the devices. The simulation result is calculated in terms power consumption, maximum operating frequency and hardware utilization.
机译:最近,由于具有良好的特性(如开源,广泛的连接范围,多任务处理和安全通信),Android正在集成并应用于各种嵌入式系统。大多数现代嵌入式设计人员一直将重点放在系统性能上,同时降低了工作功耗。但是,提高性能水平不可避免地会增加功耗。在本文中,提出了一种使用新型调度算法的嵌入式系统最佳电源管理(OPM)系统。它可以控制开源平台(Raspberry-PI,Parallella和Arduino)支持的硬件设备(ZynqBerry,ZynqParallela和ArduZynq)的运行功耗。提出的OPM系统使用基于优化功能及其任务的调度算法。此外,提出的OPM系统在从设备接收到低频和高频请求时向设备提供低频或高频。仿真结果是根据功耗,最大工作频率和硬件利用率来计算的。

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