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Research of aerial imaging spectrometer data acquisition technology based on USB 3.0

机译:基于USB 3.0的航空成像光谱仪数据采集技术研究

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摘要

With the emergence of UAV (unmanned aerial vehicle) platform for aerial imaging spectrometer, research of aerial imaging spectrometer DAS(data acquisition system) faces new challenges. Due to the limitation of platform and other factors, the aerial imaging spectrometer DAS requires small-light, low-cost and universal. Traditional aerial imaging spectrometer DAS system is expensive, bulky, non-universal and unsupported plug-and-play based on PCIe. So that has been unable to meet promotion and application of the aerial imaging spectrometer. In order to solve these problems, the new data acquisition scheme bases on USB3.0 interface.USB3.0 can provide guarantee of small-light, low-cost and universal relying on the forward-looking technology advantage. USB3.0 transmission theory is up to 5Gbps.And the GPIF programming interface achieves 3.2Gbps of the effective theoretical data bandwidth.USB3.0 can fully meet the needs of the aerial imaging spectrometer data transmission rate. The scheme uses the slave FIFO asynchronous data transmission mode between FPGA and USB3014 interface chip. Firstly system collects spectral data from TLK2711 of high-speed serial interface chip. Then FPGA receives data in DDR2 cache after ping-pong data processing. Finally USB3014 interface chip transmits data via automatic-dma approach and uploads to PCbyUSB3.0 cable. During the manufacture of aerial imaging spectrometer, the DAS can achieve image acquisition, transmission, storage and display. All functions can provide the necessary test detection for aerial imaging spectrometer. The test shows that system performs stable and no data lose. Average transmission speed and storage speed of writing SSD can stabilize at 1.28Gbps. Consequently ,this data acquisition system can meet application requirements for aerial imaging spectrometer.
机译:随着用于航空影像光谱仪的无人机平台的出现,航空影像光谱仪DAS(数据采集系统)的研究面临着新的挑战。由于平台的限制和其他因素,航空成像光谱仪DAS需要小巧,低成本和通用性。传统的航空成像光谱仪DAS系统昂贵,体积大,不可通用且基于PCIe的即插即用。因此一直无法满足航空成像光谱仪的推广应用。为了解决这些问题,新的数据采集方案基于USB3.0接口。USB3.0依靠前瞻性的技术优势,可以提供小巧,低成本和通用的保证。 USB3.0传输理论高达5Gbps,GPIF编程接口达到有效理论数据带宽3.2Gbps,USB3.0可以完全满足航空成像光谱仪数据传输速率的需求。该方案使用FPGA和USB3014接口芯片之间的从FIFO异步数据传输模式。首先系统从高速串行接口芯片TLK2711收集光谱数据。然后,FPGA在进行乒乓数据处理后,将数据接收到DDR2缓存中。最后,USB3014接口芯片通过自动dma方法传输数据并上传到PCbyUSB3.0电缆。在航空影像光谱仪的制造过程中,DAS可以实现图像的采集,传输,存储和显示。所有功能都可以为航空成像光谱仪提供必要的测试检测。测试表明,系统性能稳定且没有数据丢失。写入SSD的平均传输速度和存储速度可以稳定在1.28Gbps。因此,该数据采集系统可以满足航空成像光谱仪的应用需求。

著录项

  • 来源
  • 会议地点 Beijing(CN)
  • 作者单位

    Shanghai University, Shanghai 200072,China;

    Key Laboratory of Space Active Opto-Electronics Technology, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083,China,Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083,China;

    Key Laboratory of Space Active Opto-Electronics Technology, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083,China,Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083,China;

    Key Laboratory of Space Active Opto-Electronics Technology, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083,China,Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai 200083,China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    USB3.0; remote sensing technology; data acquisition; imaging spectrometer;

    机译:USB3.0;遥感技术;数据采集​​;成像光谱仪;

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