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A multichannel and wide suitablity digital control device for liquid-crystal microlens controlled electrically

机译:电控液晶微透镜的多通道宽适应性数字控制装置

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In order to overcome the difficulty in imaging detection of high-speed moving targets under complex environments, and to get more comprehensive image information of the target, there is a urgent need to develop new high-performance optical imaging components. Compared to traditional lenses which have fixed shapes and immutable focal length, liquid-crystal microlens (LCMs) can not only adjust the focal length without changing the external shape, but also realize many practical functions such as swinging focus, spectral selection, depth of field adjustment, etc. The physical properties of spatial electric fields constructed between electrode plates of the LCMs are directly related to the light-field adjusting performances of LCMs, such as the polarity of electric field, the frequency and amplitude of applied voltage signal. In other words, the optical behaviors of LCMs will be affected remarkably by the parameters of driving voltage signal mentioned above. To implement these important functions flexibly and effectively, the driving voltage signal must be powerful and flexible. It had better to have multiple channels to control the direction of swinging focus, with relatively wide variance range to spread spectrum selection range, and with high precision to ensure accurately controlling LCMs. In addition, special waveforms may be required to support special functions of LCMs. Therefore a digital control device, which meet the requirements mentioned above, is designed, and then LCMs with it can realize imaging detection of targets in complex environment.
机译:为了克服复杂环境下高速运动目标成像检测的困难,并获得目标的更全面的图像信息,迫切需要开发新型的高性能光学成像组件。与具有固定形状和不变焦距的传统镜头相比,液晶微透镜(LCM)不仅可以在不改变外形的情况下调节焦距,而且还可以实现许多实用功能,例如摆动焦点,光谱选择,景深LCM电极板之间构建的空间电场的物理特性直接与LCM的光场调节性能有关,例如电场的极性,施加的电压信号的频率和幅度。换句话说,LCM的光学性能将受到上述驱动电压信号的参数的显着影响。为了灵活有效地实现这些重要功能,驱动电压信号必须强大而灵活。最好有多个通道来控制摆动焦点的方向,方差范围相对较大以扩展频谱选择范围,并具有高精度以确保精确控制LCM。另外,可能需要特殊波形来支持LCM的特殊功能。因此,设计了一种满足上述要求的数字控制设备,然后用它的LCM就可以实现复杂环境下目标的成像检测。

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