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Adaptive sensing for energy-efficient manufacturing system and process monitoring

机译:用于节能制造系统和过程监控的自适应感应

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摘要

Continued advancement in telecommunication and computing power has accelerated the use of wireless sensors in monitoring of a wide range of manufacturing systems and processes. In most scenarios wireless sensors sample and transmit measured data continuously at a fixed sampling rate. This is a suboptimal method of operation from the perspectives of data and power management. Continuous sampling and transmission limits the service life of the wireless sensors and sensor networks because of the limited energy storage capacity of the power source. Furthermore, high rate sampling of process related signals that only exhibit high frequency characteristics for short durations interspersed with long durations of low frequency content leads to data redundancy and processing overheads. To address these limitations this paper presents an adaptive sensing technique consisting of a novel adaptive sampling algorithm that dynamically adjusts the data sampling rate to reduce data redundancy and improve energy efficiency. Experimental evaluation of this technique on data microprocessor based wireless sensor node confirms the validity of this adaptive and reconfigurable sensing method.
机译:电信和计算能力的不断提高,已加快了无线传感器在监视各种制造系统和过程中的使用。在大多数情况下,无线传感器以固定的采样率连续采样和传输测量数据。从数据和电源管理的角度来看,这是次优的操作方法。由于电源的能量存储能力有限,连续采样和传输限制了无线传感器和传感器网络的使用寿命。此外,对过程相关信号的高速率采样仅在短时间段内表现出高频特性,并散布着长时间的低频内容,这导致数据冗余和处理开销。为了解决这些限制,本文提出了一种自适应感测技术,该技术由一种新颖的自适应采样算法组成,该算法可动态调整数据采样率以减少数据冗余并提高能源效率。在基于数据微处理器的无线传感器节点上对该技术进行的实验评估证实了这种自适应且可重新配置的传感方法的有效性。

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