Energy Profile Evaluation of a Cyber-Physical System

Elisabete Nakoneczny Moraes, L. Becker
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引用次数: 1

Abstract

In Cyber-Physical Systems (CPS) the operation of electromechanical devices is tightly integrated with the embedded computer system. The diversity of components imply in different profiles of energy consumption. Thereby, it becomes useful to use techniques that can manage the energy consumption. In a previous work, this aspect was modeled using a technique that allows estimating the energy consumption of a battery-powered CPS. In this paper we present a practical implementation of such work, where the peripherals of a mobile robotic system are characterized to compose the energy profile of the system. Conducted experiments measured the electrical currents during a planned navigation of the robot. The results confirm the assumptions assumed by the modeling technique, which proposes a relationship between the embedded computer system and the electromechanical devices, i.e., there is a direct relation between the device's activation and the nature of the software task under execution.
信息物理系统的能量剖面评估
在信息物理系统(CPS)中,机电设备的运行与嵌入式计算机系统紧密结合。组成部分的多样性意味着能源消耗的不同概况。因此,使用能够管理能源消耗的技术变得很有用。在之前的一项工作中,使用一种技术对这方面进行了建模,该技术可以估算电池供电的CPS的能耗。在本文中,我们提出了这种工作的实际实现,其中移动机器人系统的外围设备被表征为组成系统的能量剖面。进行的实验测量了机器人计划导航过程中的电流。结果证实了建模技术的假设,提出了嵌入式计算机系统与机电设备之间的关系,即设备的激活与正在执行的软件任务的性质之间存在直接关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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