自动化系统中无线传感器节点的功耗与尺寸最小化

A. Sabry, W. Z. W. Hasan, M. A. Kadir, M. Radzi, S. Shafie
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引用次数: 1

摘要

在开发无线传感器节点(WSN),特别是在自动化应用中,功耗和尺寸的最小化是主要关注的问题。因此,本文提出了一些研究该领域功耗的策略。这些策略提供了预测WSN成本、复杂性和寿命的知识,并为自动化设计人员提供建议,并根据应用程序优化能耗。本文提出了一种无线传感器测量作为功耗评估的精确策略,所提出的方法不仅在成本上更少,而且在复杂性方面也更少,本文提出了一种评估自动化应用中无线传感器节点功耗的方法,通过尝试实验测量以及一套工具来自动化所提出的方法。从MATLAB编程语言代码开始,我们开发算法和节点配置,使模拟传感器信号的处理和分析区域不使用微控制器,而只使用功耗为1+0.3 mWatt的XBee射频模块。为了评估所提出的方法,我们将所提出的方法得到的结果与通过示波器读取得到的结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power consumption and size minimization of a wireless sensor node in automation system application
In developing Wireless Sensor Node (WSN) especially in automation applications, the power consumption and the size minimization are the main concern. Therefore, some strategies have been proposed for investigating the power consumption in this field. These strategies provide knowledge to expect the WSN cost, complexity, and lifetime, as well as to provide recommendations to automation designers and enhance to optimize the energy consumed based on the applications. This paper proposes a wireless sensor measurement as a precise strategy for power consumption evaluation, the proposed method is less not only in cost, but also in terms of complexity, the paper presents an approach for evaluating the power consumption of a wireless sensor node in automation applications by attempting on experimental measurements along with a set of tools to automate the proposed approach. Starting from a MATLAB programming language code, we develop algorithms and node configuration in such a way that the analogue sensor signal, the processing and analysis area accomplished without using microcontroller, but only the XBee RF modules with 1+0.3 mWatt power consumption. In order to evaluate the proposed approach, we compare the results obtained by this proposed method against ones obtained through oscilloscope reading.
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