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首页> 外文期刊>Instrumentation & Measurement Magazine, IEEE >Improving calibration accuracy of a vibration sensor through a closed loop measurement system
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Improving calibration accuracy of a vibration sensor through a closed loop measurement system

机译:通过闭环测量系统提高振动传感器的校准精度

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A sensor is a transducer whose purpose is to sense (that is, to detect) some characteristic of its environments. It detects events or changes in quantities and provides a corresponding output, generally as an electrical or optical signal. It has been widely used in mechanical engineering, aeronautics and astronautics engineering, industrial control, etc. Sensors play important roles in industries such as manufacturing, where all require the sensor to act as a reliable unit [1], [2]. In practical engineering applications, a sensor is often used for measuring vibrations, including acceleration, velocity, and displacement. It is the primary link in achieving conversion, processing, recording, and storage of information. Therefore, its performance directly influences the reliability and accuracy of the entire system. The calibration for vibration sensors, which need to ascertain sensitivity, frequency response characteristics, amplitude linearity, etc., are required before the measurement is made [3], [4]. Traditionally, an open loop device (in which the excitation signal is adjusted manually and the parameters are recorded manually) is used for sensor calibration. This type of manual calibration generates a large amount of work and active jamming, which results in errors. If a closed loop calibration system can be designed (i.e., the excitation signals are adjusted automatically by devices, and the real time data are sampled and analyzed), it will offer abundant measurement information and analysis methods which can help improve calibration accuracy and efficiency. In this article, we introduce such a closed loop calibration system for vibration sensors.
机译:传感器是一种换能器,其目的是感测(即检测)其环境的某些特征。它检测事件或数量的变化,并提供相应的输出,通常作为电或光信号。它已被广泛用于机械工程,航空航天工程,工业控制等领域。传感器在诸如制造等行业中都扮演着重要的角色,这些行业都要求传感器充当可靠的单元[1],[2]。在实际工程应用中,传感器通常用于测量振动,包括加速度,速度和位移。它是实现信息转换,处理,记录和存储的主要链接。因此,其性能直接影响整个系统的可靠性和准确性。在进行测量之前,需要对振动传感器进行校准,该校准需要确定灵敏度,频率响应特性,幅度线性等[3],[4]。传统上,开环设备(其中手动调整激励信号并手动记录参数)用于传感器校准。这种类型的手动校准会产生大量工作和活动卡纸,从而导致错误。如果可以设计一个闭环校准系统(即由设备自动调整激励信号,并对实时数据进行采样和分析),它将提供丰富的测量信息和分析方法,有助于提高校准精度和效率。在本文中,我们介绍了一种用于振动传感器的闭环校准系统。

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