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A System-On-Chip platform for Earth and Planetary Laser Spectrometers

机译:地球和行星激光光谱仪的片上系统平台

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This paper discusses the building of a fully digital, Adaptive Tunable LAser Spectrometer (ATLAS) electronics/software platform for Earth and Planetary applications. Adaptive in this context refers to the real time analysis of the recorded spectra and using that information to continuously and autonomously optimize spectrometer performance if necessary/desirable. We discuss the results of rapid prototyping and how those results fed into design specifications for a new platform built with Zynq System-On-Chip (SoC) technologies from Xilinx. Existing TLS designs are limited to the extent that they employ analog implementations of filter, modulation/demodulation and phase sensitive detection circuitries. For our platform these functions are realized in the digital realm, allowing precise, reversible changes during instrument testing, integration and even after launch, all without the risk generally involved in physically removing hardware from a flight payload.
机译:本文讨论了用于地球和行星应用的全数字自适应可调谐激光光谱仪(ATLAS)电子/软件平台的构建。在本文中,自适应是指对记录的光谱进行实时分析,并在必要/需要时使用该信息连续自动地优化光谱仪的性能。我们讨论了快速原型制作的结果,以及这些结果如何用于采用Xilinx的Zynq片上系统(SoC)技术构建的新平台的设计规范中。现有的TLS设计受到以下限制:它们采用滤波器,调制/解调和相位敏感检测电路的模拟实现。对于我们的平台,这些功能是在数字领域中实现的,从而允许在仪器测试,集成甚至发射后进行精确,可逆的更改,而这些操作通常都不会涉及从飞行有效载荷中物理移除硬件所带来的风险。

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