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    • 6. 发明申请
    • AUTO-EXPOSURE METHOD USING CONTINUOUS VIDEO FRAMES UNDER CONTROLLED ILLUMINATION
    • 在控制照明下使用连续视频框架的自动曝光方法
    • US20120199654A1
    • 2012-08-09
    • US13020044
    • 2011-02-03
    • Xiaoxun ZhuYnjiun Paul Wang
    • Xiaoxun ZhuYnjiun Paul Wang
    • G06K7/14
    • H04N5/2256F21V33/0052F21W2131/30F21Y2115/10G06K7/10732G06K7/10752H04N5/2353
    • An adaptive strobe illumination control process for use in a digital image capture and processing system. In general, the process involves: (i) illuminating an object in the field of view (FOV) with several different pulses of strobe (i.e. stroboscopic) illumination over a pair of consecutive video image frames; (ii) detecting digital images of the illuminated object over these consecutive image frames; and (iii) decode processing the digital images in an effort to read a code symbol graphically encoded therein. In a first illustrative embodiment, upon failure to read a code symbol graphically encoded in one of the first and second images, these digital images are analyzed in real-time, and based on the results of this real-time image analysis, the exposure time (i.e. photonic integration time interval) is automatically adjusted during subsequent image frames (i.e. image acquisition cycles) according to the principles of the present disclosure. In a second illustrative embodiment, upon failure to read a code symbol graphically encoded in one of the first and second images, these digital images are analyzed in real-time, and based on the results of this real-time image analysis, the energy level of the strobe illumination is automatically adjusted during subsequent image frames (i.e. image acquisition cycles) according to the principles of the present disclosure.
    • 一种用于数字图像捕获和处理系统的自适应频闪照明控制过程。 通常,该过程涉及:(i)通过在一对连续的视频图像帧上的几个不同的选通脉冲(即频闪)照明来在视野(FOV)中照射物体; (ii)在这些连续的图像帧上检测被照明物体的数字图像; 并且(iii)解码处理数字图像以努力读取其中图形编码的代码符号。 在第一说明性实施例中,在读取在第一和第二图像之一中图形编码的代码符号时,这些数字图像被实时分析,并且基于该实时图像分析的结果,曝光时间 (即光子积分时间间隔)根据本公开的原理在随后的图像帧(即,图像采集周期)期间自动调整。 在第二个说明性实施例中,在读取在第一和第二图像之一中图形编码的代码符号时,实时地分析这些数字图像,并且基于该实时图像分析的结果,能级 根据本公开的原理,在随后的图像帧(即图像采集周期)期间自动调节频闪照明。
    • 7. 发明申请
    • TERMINAL HAVING IMAGE DATA FORMAT CONVERSION
    • 具有图像数据格式转换的终端
    • US20140197238A1
    • 2014-07-17
    • US14342551
    • 2011-09-09
    • Yong LiuXiaoxun ZhuXi TaoYnjiun Paul Wang
    • Yong LiuXiaoxun ZhuXi TaoYnjiun Paul Wang
    • G06K7/10G06K7/14
    • G06K7/10722G06K7/10544G06K7/1408
    • There is set forth herein an indicia reading terminal having data format conversion capabilities. The indicia reading terminal includes an image sensor integrated circuit with an image sensor array comprising a plurality of pixels. The image sensor integrated circuit is configured to output image data in a first data format to a data formatting circuit for conversion to image data in a second data format. The data formatting circuit is configured to provide the image data in the second data format to the at least one data interface of a microprocessor integrated circuit, which is operative to transfer image data received by the at least one data interface into memory of the indicia reading terminal. A CPU of the microprocessor integrated circuit is operative for executing a decoding algorithm for processing image data in the memory for attempting to decode at least one symbol represented in the memory.
    • 这里提出了具有数据格式转换能力的标记读取终端。 标记读取终端包括具有包括多个像素的图像传感器阵列的图像传感器集成电路。 图像传感器集成电路被配置为以第一数据格式将图像数据输出到用于以第二数据格式转换为图像数据的数据格式化电路。 数据格式化电路被配置为将第二数据格式的图像数据提供给微处理器集成电路的至少一个数据接口,微处理器集成电路可操作以将由至少一个数据接口接收的图像数据传送到标记读取的存储器 终奌站。 微处理器集成电路的CPU用于执行用于处理存储器中的图像数据的解码算法,用于尝试对存储器中表示的至少一个符号进行解码。
    • 8. 发明申请
    • TERMINAL HAVING ILLUMINATION AND FOCUS CONTROL
    • 终端具有照明和聚焦控制
    • US20110163165A1
    • 2011-07-07
    • US12683779
    • 2010-01-07
    • Yong LiuXiaoxun ZhuYnjiun Paul Wang
    • Yong LiuXiaoxun ZhuYnjiun Paul Wang
    • G06K7/10
    • G06K7/10811G06K7/10594
    • There is set forth herein an indicia reading terminal having an illumination subsystem for projection of an illumination pattern, the illumination subsystem having at least one light source, the illumination subsystem being switchable between a first state and a second state, wherein the illumination subsystem in the second state projects illumination light at a projection angle that is more narrow than a projection angle of illumination light projected by the illumination subsystem when the illumination subsystem is in the first state. An indicia reading terminal can include an imaging subsystem including an image sensor array and an imaging lens for focusing an image of a target onto the image sensor array, the imaging lens being a variable imaging lens and having a first lens setting at which the lens assembly has a relatively nearer plane of optimum focus and a second lens setting at which the imaging lens has a relatively farther plane of optimum focus setting.
    • 这里列出了具有用于投射照明图案的照明子系统的标记读取终端,该照明子系统具有至少一个光源,照明子系统可在第一状态和第二状态之间切换,其中照明子系统 当照明子系统处于第一状态时,第二状态以比由照明子系统投射的照明光的投影角更窄的投影角投影照明光。 标记读取终端可以包括成像子系统,其包括图像传感器阵列和用于将目标图像聚焦到图像传感器阵列上的成像透镜,成像透镜是可变成像透镜,并且具有第一透镜设置,透镜组件 具有相对较近的最佳焦点平面和第二透镜设置,在该第二透镜设置处,成像透镜具有最佳聚焦设置的相对较远的平面。
    • 9. 发明授权
    • Terminal having image data format conversion
    • 终端具有图像数据格式转换
    • US09135483B2
    • 2015-09-15
    • US14342551
    • 2011-09-09
    • Yong LiuXiaoxun ZhuXi TaoYnjiun Paul Wang
    • Yong LiuXiaoxun ZhuXi TaoYnjiun Paul Wang
    • G06K7/10G06K7/14
    • G06K7/10722G06K7/10544G06K7/1408
    • There is set forth herein an indicia reading terminal having data format conversion capabilities. The indicia reading terminal includes an image sensor integrated circuit with an image sensor array comprising a plurality of pixels. The image sensor integrated circuit is configured to output image data in a first data format to a data formatting circuit for conversion to image data in a second data format. The data formatting circuit is configured to provide the image data in the second data format to the at least one data interface of a microprocessor integrated circuit, which is operative to transfer image data received by the at least one data interface into memory of the indicia reading terminal. A CPU of the microprocessor integrated circuit is operative for executing a decoding algorithm for processing image data in the memory for attempting to decode at least one symbol represented in the memory.
    • 这里给出了具有数据格式转换能力的标记读取终端。 标记读取终端包括具有包括多个像素的图像传感器阵列的图像传感器集成电路。 图像传感器集成电路被配置为以第一数据格式将图像数据输出到用于以第二数据格式转换为图像数据的数据格式化电路。 数据格式化电路被配置为将第二数据格式的图像数据提供给微处理器集成电路的至少一个数据接口,微处理器集成电路可操作以将由至少一个数据接口接收的图像数据传送到标记读取的存储器 终奌站。 微处理器集成电路的CPU用于执行用于处理存储器中的图像数据的解码算法,用于尝试对存储器中表示的至少一个符号进行解码。
    • 10. 发明授权
    • Auto-exposure method using continuous video frames under controlled illumination
    • 在受控照明下使用连续视频帧的自动曝光方法
    • US08408464B2
    • 2013-04-02
    • US13020044
    • 2011-02-03
    • Xiaoxun ZhuYnjiun Paul Wang
    • Xiaoxun ZhuYnjiun Paul Wang
    • G06K7/10G06K9/24G08C21/00
    • H04N5/2256F21V33/0052F21W2131/30F21Y2115/10G06K7/10732G06K7/10752H04N5/2353
    • An adaptive strobe illumination control process for use in a digital image capture and processing system. In general, the process involves: (i) illuminating an object in the field of view (FOV) with several different pulses of strobe (i.e. stroboscopic) illumination over a pair of consecutive video image frames; (ii) detecting digital images of the illuminated object over these consecutive image frames; and (iii) decode processing the digital images in an effort to read a code symbol graphically encoded therein. In a first illustrative embodiment, upon failure to read a code symbol graphically encoded in one of the first and second images, these digital images are analyzed in real-time, and based on the results of this real-time image analysis, the exposure time (i.e. photonic integration time interval) is automatically adjusted during subsequent image frames (i.e. image acquisition cycles) according to the principles of the present disclosure. In a second illustrative embodiment, upon failure to read a code symbol graphically encoded in one of the first and second images, these digital images are analyzed in real-time, and based on the results of this real-time image analysis, the energy level of the strobe illumination is automatically adjusted during subsequent image frames (i.e. image acquisition cycles) according to the principles of the present disclosure.
    • 一种用于数字图像捕获和处理系统的自适应频闪照明控制过程。 通常,该过程涉及:(i)通过在一对连续的视频图像帧上的几个不同的选通脉冲(即频闪)照明来在视野(FOV)中照射物体; (ii)在这些连续的图像帧上检测被照明物体的数字图像; 并且(iii)解码处理数字图像以努力读取其中图形编码的代码符号。 在第一说明性实施例中,在读取在第一和第二图像之一中图形编码的代码符号时,这些数字图像被实时分析,并且基于该实时图像分析的结果,曝光时间 (即光子积分时间间隔)根据本公开的原理在随后的图像帧(即,图像采集周期)期间自动调整。 在第二个说明性实施例中,在读取在第一和第二图像之一中图形编码的代码符号时,实时地分析这些数字图像,并且基于该实时图像分析的结果,能级 根据本公开的原理,在随后的图像帧(即图像采集周期)期间自动调节频闪照明。