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首页> 外文期刊>Journal of Sound and Vibration >Design and analysis of fractional order seismic transducer for displacement and acceleration measurements
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Design and analysis of fractional order seismic transducer for displacement and acceleration measurements

机译:用于位移和加速度测量的分数次震动传感器的设计与分析

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摘要

Seismic transducers are widely used for measurement of displacement, velocity, and acceleration. This paper presents the design of seismic transducer in the fractional domain for the measurement of displacement and acceleration. The fractional order transfer function for seismic displacement and acceleration transducer are derived using Grunwald-Letnikov derivative. Frequency response analysis of fractional order seismic displacement transducer (FOSDT) and fractional order seismic acceleration transducer (FOSAT) are carried out for different damping ratio with the different fractional order, and the maximum dynamic measurement range is identified. The results demonstrate that fractional order seismic transducer has increased dynamic measurement range and less phase distortion as compared to the conventional seismic transducer even with a lower damping ratio. Time response of FOSDT and FOSAT are derived analytically in terms of Mittag-Leffler function, the effect of fractional behavior in the time domain is evaluated from the impulse and step response. The fractional order system is found to have significantly reduced overshoot as compared to the conventional transducer. The fractional order seismic transducer design proposed in this paper is illustrated with a design example for FOSDT and FOSAT. Finally, an electrical equivalent of FOSDT and FOSAT is considered, and its frequency response is found to be in close agreement with the proposed fractional order seismic transducer. (c) 2018 Elsevier Ltd. All rights reserved.
机译:地震换能器广泛用于测量位移,速度和加速度。本文介绍了分数域的地震换能器的设计,以测量位移和加速度。使用Grunwald-Letnikov衍生物来得出地震位移和加速度传感器的分数级传递函数。分数阶震动位移换能器(FOSDT)和分数阶地震加速度换能器(FOSAT)的频率响应分析进行了不同的分数阶的不同阻尼比,识别最大动态测量范围。结果表明,与常规地震换能器相比,分数阶震动换能器的动态测量范围和相位畸变较少,即使具有较低的阻尼比。在Mittag-Leffler函数方面,FOSDT和FOSAT的时间响应是从Mittag-Leffler函数进行的,从脉冲和步骤响应评估时域中的分数行为的效果。与传统换能器相比,发现分数阶系统显着降低过冲。本文提出的分数阶地震换能器设计用FOSDT和FOSAT的设计示例说明。最后,考虑了FOSDT和FOSAT的电气量值,并且发现其频率响应与所提出的分数阶地震换能器密切一致。 (c)2018年elestvier有限公司保留所有权利。

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