首页> 外国专利> Hand-supportable planar laser illumination and imaging (PLIIM) device employing a pair of linear laser diode arrays mounted about an area image detection array, for illuminating an object to be imaged with a plurality of optically-combined spatially-incoherent planar laser illumination beams (PLIBS) scanned through the field of view (FOV) of said area image detection array, and reducing the speckle-pattern noise power in detected 2-D images by temporally-averaging detected speckle-noise patterns during the photo-integration time period of said area image detection array

Hand-supportable planar laser illumination and imaging (PLIIM) device employing a pair of linear laser diode arrays mounted about an area image detection array, for illuminating an object to be imaged with a plurality of optically-combined spatially-incoherent planar laser illumination beams (PLIBS) scanned through the field of view (FOV) of said area image detection array, and reducing the speckle-pattern noise power in detected 2-D images by temporally-averaging detected speckle-noise patterns during the photo-integration time period of said area image detection array

机译:手持式平面激光照明和成像(PLIIM)设备,采用一对线性激光二极管阵列安装在区域图像检测阵列周围,用于通过多个光学组合的空间非相干平面激光照明光束来照明要成像的物体(通过所述区域图像检测阵列的视场(FOV)进行扫描,并通过在所述光积分时间段内对检测到的斑点噪声图案进行时间平均来降低检测到的二维图像中的斑点图案噪声功率区域图像检测阵列

摘要

Methods of and systems for illuminating objects using planar laser illumination beams having substantially-planar spatial distribution characteristics that extend through the field of view (FOV) of image formation and detection modules employed in such systems. Each planar laser illumination beam is produced from a planar laser illumination beam array (PLIA) comprising an plurality of planar laser illumination modules (PLIMs). Each PLIM comprises a visible laser diode (VLD, a focusing lens, and a cylindrical optical element arranged therewith. The individual planar laser illumination beam components produced from each PLIM are optically combined to produce a composite substantially planar laser illumination beam having substantially uniform power density characteristics over the entire spatial extend thereof and thus the working range of the system. Preferably, each planar laser illumination beam component is focused so that the minimum beam width thereof occurs at a point or plane which is the farthest or maximum object distance at which the system is designed to acquire images, thereby compensating for decreases in the power density of the incident planar laser illumination beam due to the fact that the width of the planar laser illumination beam increases in length for increasing object distances away from the imaging optics. By virtue of the present invention, it is now possible to use both VLDs and high-speed CCD-type image detectors in conveyor, hand-held and hold-under type scanning applications alike, enjoying the advantages and benefits that each such technology has to offer, while avoiding the shortcomings and drawbacks hitherto associated therewith.
机译:使用具有基本平面的空间分布特征的平面激光照明光束来照明物体的方法和系统,该空间激光分布特征延伸通过图像形成的视场(FOV)和在这种系统中使用的检测模块。每个平面激光照明光束是由包括多个平面激光照明模块(PLIM)的平面激光照明光束阵列(PLIA)产生的。每个PLIM包括可见激光二极管(VLD),聚焦透镜和与其一起布置的圆柱形光学元件。将每个PLIM产生的各个平面激光照明光束分量光学组合以产生具有基本上均匀的功率密度的复合的基本上平面的激光照明光束。优选地,每个平面激光照明光束分量都被聚焦,使得其最小光束宽度出现在一个点或平面上,该点或平面是最远或最大物距。该系统被设计成获取图像,从而补偿由于平面激光照明光束的宽度增加长度而增加了距成像光学器件的物距的事实,从而补偿了入射平面激光照明光束的功率密度的降低。根据本发明,现在可以同时使用VLD和高电平在传送带,手持式和固定式扫描应用中的高速CCD型图像检测器,都享有每种技术所具有的优点和好处,同时避免了迄今为止与之相关的缺点和缺点。

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