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Characterizing an image intensifier in an full-field range image system

机译:在全视场图像系统中表征图像增强器

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摘要

We are developing a high precision full-field range imaging system. An integral component in this system is an image intensifier, which is modulated at frequencies up to 100 MHz. The range measurement precision is dictated by the image intensifier performance, in particular, the achievable modulation frequency, modulation depth, and waveform shape. By characterizing the image intensifier response, undesirable effects can be observed and quantified with regards to the consequence on the resulting range measurements, and the optimal operating conditions can be selected to minimize these disturbances. The characterization process utilizes a pulsed laser source to temporally probe the gain of the image intensifier. The laser is pulsed at a repetition rate slightly different to the image intensifier modulation frequency, producing a continuous phase shift between the two signals. A charge coupled device samples the image intensifier output, capturing the response over a complete modulation period. Deficiencies in our measured response are clearly identifiable and simple modifications to the configuration of our electrical driver circuit improve the modulation performance.
机译:我们正在开发高精度的全视场成像系统。该系统中不可或缺的组件是图像增强器,它可以在高达100 MHz的频率下进行调制。范围测量精度取决于图像增强器的性能,特别是可达到的调制频率,调制深度和波形形状。通过表征图像增强器的响应,就可观察到的不希望有的影响和量化结果范围测量的结果而言,可以选择最佳操作条件以最大程度地减少这些干扰。表征过程利用脉冲激光源来临时探测图像增强器的增益。激光脉冲的重复频率与图像增强器调制频率略有不同,从而在两个信号之间产生连续的相移。电荷耦合器件对图像增强器输出进行采样,以捕获整个调制周期内的响应。可以清楚地识别出我们所测得的响应中的缺陷,对我们的电气驱动器电路的配置进行简单的修改就可以改善调制性能。

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