Energy-efficient on-node signal processing for vibration monitoring

V. Ramachandran, Andrea Sanchez Ramirez, B. V. D. Zwaag, N. Meratnia, P. Havinga
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引用次数: 9

Abstract

In recent years, the use of wireless sensor networks for vibration monitoring is emphasized, because of its capability to continuously monitor at hard-to-reach locations of complex machines. Low power consumption is one of the main requirements for the sensor nodes in continuous and long-term vibration monitoring. However, the power consumption of state-of-the-art wireless sensor nodes is significantly increased by wireless radio in continuously transmitting the raw vibration data to the base station. One of the ways to reduce the power consumption is to reduce the duty-cycle of wireless transmission. Accurately processing the vibration data on the sensor node and transmitting only the critical information, such as natural frequency, defective frequency and amplitude of the vibration, will not only reduce the amount of data transmitted but also the duty cycle of the wireless communication. It eventually leads to reduction of total power consumed by the sensor nodes. In this paper the capability of a sensor node to accurately process the real-time vibration data is analyzed and the corresponding power consumption is measured. In particular, impact-based analysis of real-time vibration data is performed by breaking complex signal-processing tasks into manageable segments on the sensor nodes to minimize algorithmic complexity while still meeting real-time deadlines of the algorithm. As a result, it is found that the accuracy of the on-node signal processing is comparable with conventional off-node monitoring methods, whilst reducing total power consumption.
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面向振动监测的节能节点上信号处理
近年来,无线传感器网络用于振动监测受到重视,因为它能够在复杂机器难以到达的位置进行连续监测。低功耗是对传感器节点进行连续、长期振动监测的主要要求之一。然而,由于无线无线电不断地将原始振动数据传输到基站,最先进的无线传感器节点的功耗显着增加。减小无线传输的占空比是降低功耗的方法之一。对传感器节点上的振动数据进行精确处理,只传输振动的固有频率、缺陷频率和幅值等关键信息,不仅可以减少传输的数据量,还可以降低无线通信的占空比。它最终导致传感器节点消耗的总功率的减少。本文分析了传感器节点精确处理实时振动数据的能力,并测量了相应的功耗。特别是,基于冲击的实时振动数据分析是通过将复杂的信号处理任务分解为传感器节点上可管理的部分来实现的,以最大限度地降低算法复杂性,同时仍然满足算法的实时截止日期。结果发现,节点上信号处理的精度与传统的节点外监测方法相当,同时降低了总功耗。
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