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The resolution of the parallax image is inversely proportional to the view number in the horizontal direction for the traditional autostereoscopic display based on a parallax barrier. To balance the resolution in the vertical and horizontal directions, two parallax interleaved barriers are designed. The liquid crystal display panel provides the synthetic image with square pixel units, and the pixels in a unit are distributed to different horizontal views. Two parallax interleaved barriers work together to modulate pixels in vertical and horizontal directions. 3D display with uniform resolution and low crosstalk is demonstrated.  相似文献   
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以2,4,6-三羟基苯乙酮为原料,碳酸二甲酯(DMC)为甲基化试剂,K2CO3为催化剂,在无相转移催化剂条件下,通过控制反应条件选择性合成了包括花椒油素在内的3种芳甲醚,它们的结构经红外光谱、1H NMR及13C NMR确证.一、二、三取代产物的产率分别为64%、50%、82%.  相似文献   
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水上溢油光谱作为高光谱遥感目标识别与分类的参考依据,在溢油识别与厚度区分等方面具有重要的研究意义。通过测量厚度范围为1.0~127μm间的轻柴油的20组光谱曲线,计算其反射率光谱曲线随厚度变化的特征,并利用db4小波对反射率数据进行处理,突出光谱奇异性及其位置与奇异值随油膜厚度变化的特征。在研究范围内的油膜光谱反射率高于水体,但反射率值与油膜厚度间无固定增减关系。在其厚度小于6μm时反射率光谱曲线无明显特征,厚度大于6μm后在388nm附近存在区别于水体的反射峰特征且随厚度增加特征愈加突出。油膜光谱小波分析后的细节系数在388~393nm内表现出明显的奇异性,并且奇异位置随厚度增加向短波方向移动、奇异极值增大。研究证实了小波分析在确定油膜光谱特征位置与变化研究中的积极作用,并发现了紫外-可见光短波范围内的光谱特征,为紫外遥感进行溢油识别提供了科学依据。  相似文献   
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A distortion correction method for the elemental images of integral imaging(Ⅱ) by utilizing the directional diffuser is demonstrated. In the traditional Ⅱ, the distortion originating from lens aberration wraps elemental images and degrades the image quality severely. According to the theoretical analysis and experiments, it can be proved that the farther the three-dimensional image is displayed from the lens array, the more serious the distortion is. To analyze the process of eliminating lens distortion, one lens and its corresponding elemental image are separated from the traditional Ⅱ. By introducing the directional diffuser, the aperture stop of the separated optical system changes from the eye's pupil to the lens. In terms of contrast experiments, the distortion of the improved display system is corrected effectively. In the experiment, when the distance between the reconstructed image and lens array is equal to 120 mm, the largest lens distortion is decreased from 46.6% to 3.3%.  相似文献   
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