Improved method for precise shaft angle oscillation and angular velocity measurement: (With simultaneous sampling of other analog signals using NI DAQ Cards)

Richard Schreiber
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引用次数: 1

Abstract

This paper deals with the possibilities of simultaneous sampling of analog data acquired by sigma/delta converters (used on NI DSA cards) and the ways of synchronization with angular velocity and position values measured by IRC sensors. In the past, a measurement system with two 8 channel DSA cards was developed. This system has provided to be reliable. However, the accuracy of the shaft angle measurements was to be found of lower accuracy, but still considered adequate for the purpose of induction motor fault diagnostics. The angular position is measured with the use of an IRC sensor, where the actual absolute angle is sampled synchronously with all other channels with sampling frequency in the order of tens of kilosamples per second. During more advanced experiments, the currently used method had shown limitations (lower resolution, problems with velocity calculation). To solve this problem, a new improved method, based on a combination of commonly known angular position and velocity measurement, is proposed. The performance is evaluated by simulations. Some common methods for precise measurements of angular velocity and angular speed oscillations are briefly described, along with their advantages and disadvantages. The simulation results of the proposed method are compared with the method currently used. The possible implementation of the proposed new measurement method with the use of the existing hardware is discussed.
改进的轴角振荡和角速度精确测量方法:(使用NI DAQ卡同时采样其他模拟信号)
本文讨论了对NI DSA卡上的sigma/delta转换器采集的模拟数据进行同步采样的可能性,以及与IRC传感器测量的角速度和位置值同步的方法。过去,开发了一种采用2张8通道DSA卡的测量系统。这个系统已被证明是可靠的。然而,轴角测量的精度被发现精度较低,但仍被认为足以用于感应电机故障诊断。使用IRC传感器测量角度位置,其中实际绝对角度与所有其他通道同步采样,采样频率为每秒数十千次。在更高级的实验中,目前使用的方法显示出局限性(分辨率较低,速度计算存在问题)。为了解决这一问题,提出了一种新的改进方法,即结合已知的角位置和速度测量方法。通过仿真对其性能进行了评价。简要介绍了一些常用的精确测量角速度和角速度振荡的方法,以及它们的优缺点。仿真结果与现有方法进行了比较。讨论了利用现有硬件实现所提出的新测量方法的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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