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High speed data acquisition system for computer tomographic imaging instrumentation

机译:用于计算机层析成像仪器的高速数据采集系统

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摘要

Monitoring solid-gas flow in terms of flow visualization and mass flow rate (MFR) measurement is essential in industrial processes. Optical tomography provides a method to view the cross sectional image of flowing materials in a pipeline conveyor. Important flow information such as flow concentration profile, flow velocity and mass flow rate can be obtained without the need to invade the process vessel. The utilization of powerful computer together with expensive Data Acquisition System (DAQ) as the processing device in optical tomography systems has always been a norm. However, the advancements in silicon fabrication technology nowadays allow the fabrication of powerful Digital Signal Processors (DSP) at reasonable cost. This allows the technology to be applied in optical tomography system to reduce or even eliminate the need of personal computer and the DAQ. The DSP system was customized to control the data acquisition of 16x16 optical sensors (arranged in orthogonal projection) and 23x23 optical sensors (arranged in rectilinear projections) in 2 layers (upstream and downstream). The data collected was used to reconstruct the cross sectional image of flowing materials inside the pipeline, velocity profile measurement and mass flow rate measurement. The mass flow rate result is sent to a Liquid Crystal Display (LCD) display unit for display. For image display purpose, the reconstructed image was sent to a personal computer via serial link. This allows the use of a laptop to display the cross sectional image besides performing any other tasks such as data logging.
机译:根据流量可视化和质量流量(MFR)测量来监控固体气体流量在工业过程中至关重要。光学层析成像技术提供了一种查看管道输送机中流动物料横截面图像的方法。无需侵入过程容器即可获得重要的流量信息,例如流量浓度曲线,流速和质量流速。强大的计算机与昂贵的数据采集系统(DAQ)一起用作光学层析成像系统中的处理设备一直是常态。但是,当今硅制造技术的进步允许以合理的成本制造功能强大的数字信号处理器(DSP)。这使得该技术可以应用于光学层析成像系统中,以减少甚至消除对个人计算机和DAQ的需求。定制了DSP系统,以控制2层(上游和下游)中的16x16光学传感器(以正交投影布置)和23x23光学传感器(以直线投影布置)的数据采集。收集的数据用于重建管道内部流动材料的横截面图像,速度分布测量和质量流量测量。质量流率结果将发送到液晶显示器(LCD)显示单元进行显示。为了图像显示,将重建的图像通过串行链接发送到个人计算机。除了执行任何其他任务(如数据记录)外,这还允许使用便携式计算机显示横截面图像。

著录项

  • 作者

    Abdul Rahim Ruzairi;

  • 作者单位
  • 年度 2007
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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