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    • 1. 发明授权
    • Method for automatic license plate recognition using adaptive feature set
    • 使用自适应特征集自动车牌识别的方法
    • US08447112B2
    • 2013-05-21
    • US12971643
    • 2010-12-17
    • Peter PaulAaron Michael BurryWilliam J. HannawayClaude S. Fillion
    • Peter PaulAaron Michael BurryWilliam J. HannawayClaude S. Fillion
    • G06K9/18G06K9/00
    • G06K9/00G06K2209/15
    • A method for determining a confidence level to be used in identifying a vehicle. The method includes receiving a vehicle image, extracting a license plate image from the at least one vehicle image, determining a license plate number and associated confidence level based upon the license plate image, and comparing the associated confidence level against a confidence threshold. If the associated confidence level is below the confidence threshold, the method further includes extracting auxiliary data from the at least one vehicle image, corresponding the extracted auxiliary data and a set of stored auxiliary data, and updating the associated confidence level to produce an updated confidence level based upon the correspondence of the extracted auxiliary data and the set of stored auxiliary data.
    • 一种用于确定用于识别车辆的可信度水平的方法。 所述方法包括接收车辆图像,从所述至少一个车辆图像提取车牌图像,基于所述车牌图像来确定车牌号码和相关联的置信度,以及将所述相关联的可信度与置信阈值进行比较。 如果相关联的置信水平低于置信度阈值,则该方法还包括从所述至少一个车辆图像提取辅助数据,对应于所提取的辅助数据和一组存储的辅助数据,以及更新相关联的置信水平以产生更新的置信度 基于所提取的辅助数据和所存储的辅助数据的集合的对应关系。
    • 3. 发明授权
    • Photoreceptor motion quality estimation using multiple sampling intervals
    • 使用多个采样间隔的光感受器运动质量估计
    • US08599435B2
    • 2013-12-03
    • US12617117
    • 2009-11-12
    • Peter PaulClaude S. Fillion
    • Peter PaulClaude S. Fillion
    • G06F15/00
    • G03G15/5037G03G15/5033G03G15/5062G03G2215/00075
    • What is disclosed is a novel system and method for determining printer component velocity variations by analyzing multiple page test patterns. A test pattern, such as ladder chart targets, is produced that extends across multiple pages. Corresponding page sync signals are recorded and used to maintain phase coherence when analyzing scanned images associated with the multiple pages. An algorithm determines the ladder rung positions and the average photoreceptor velocity between each ladder rung on each scanned image for each page. Interpolation is used for proper phase alignment of the velocity data that spans multiple pages. The long assembly of phase coherent velocity data is then analyzed in one embodiment to determine its frequency content and to estimate the photoreceptor motion quality error sources. Based upon these estimated error sources, a trouble condition or pending maintenance problem with the printer is able to be indentified.
    • 公开的是通过分析多页测试图案来确定打印机部件速度变化的新型系统和方法。 产生了跨越多个页面的测试模式,例如梯形图目标。 当分析与多页相关联的扫描图像时,相应的页同步信号被记录并用于维持相位相干性。 算法确定梯形梯级位置以及每个梯形图梯度在每页扫描图像上的平均感光体速度。 插值用于跨越多页的速度数据的正确相位对齐。 然后在一个实施例中分析相位相干速度数据的长组件以确定其频率含量并估计感光体运动质量误差源。 基于这些估计的误差源,可以识别打印机的故障状况或待处理的维护问题。
    • 4. 发明授权
    • Streak compensation using model based projections for run time updates
    • 使用基于模型的运行时更新预测的条纹补偿
    • US08400683B2
    • 2013-03-19
    • US12781085
    • 2010-05-17
    • Peter PaulClaude S. FillionStuart A. SchweidDouglas R. TaylorBrian R. Conrow
    • Peter PaulClaude S. FillionStuart A. SchweidDouglas R. TaylorBrian R. Conrow
    • H04N1/409
    • H04N1/506
    • Streak compensation in a digital printer is provided utilizing a spatially varying Printer Model and Run Time updates to generate Spatially Varying Tone Reproduction Curves (STRCs) which are used as actuators to compensate for streaks during run time. A full width array sensor is used to measure streak profiles and the STRCs are used as actuators to compensate for streaks. Streak profile measurements taken at a limited number of area coverage levels combined with a Printer Streaks Basis Function Model are used to estimate and project the streak behavior at all area coverage levels and at all inboard-to-outboard spatial locations. The projection is then used in a pixel-wise error feedback control scheme to drive each profile to a desired shape, thereby compensating for streaks.
    • 使用空间变化的打印机型号和运行时间更新来提供数字打印机中的条纹补偿,以生成空间变化色调再现曲线(STRC),这些曲线用作执行器来补偿运行时间内的条纹。 全宽阵列传感器用于测量条纹轮廓,并且STRC用作致动器来补偿条纹。 在有限数量的区域覆盖水平和打印机条纹基础函数模型的条件下进行条纹分布测量用于估计和计算所有区域覆盖水平和所有内到外空间位置的条纹行为。 然后将投影用于像素方向的误差反馈控制方案,以将每个轮廓驱动到期望的形状,从而补偿条纹。
    • 5. 发明授权
    • Spectrophotometer target distance variation compensation
    • 分光光度计目标距离变化补偿
    • US07283240B2
    • 2007-10-16
    • US11210957
    • 2005-08-24
    • Lalit K. MesthaTonya L. LovePeter PaulClaude S. Fillion
    • Lalit K. MesthaTonya L. LovePeter PaulClaude S. Fillion
    • G01J3/46
    • G01J3/50G01J3/02G01J3/0256G01J3/0278G01J3/501G01J3/524
    • Spectrophotometer color measurement with a target illumination system and a reflected illumination sensing system where the target surface is variably spaced from said spectrophotometer. Color correction calibration information corresponding to color measurements for known different spacings of a test target surface from the spectrophotometer are obtained and stored. In use, the spacing of the actual target surface from the spectrophotometer is measured to provide a target spacing information signal. That signal is automatically combined with the stored color correction calibration information for the corresponding distances to provide at least partial correction of color measurement errors of the spectrophotometer for variable spacing of the target surface relative to the spectrophotometer even with low cost fixed focus optics. The spectrophotometer output can be so corrected by changing the target illumination, such as by LED pulse width changes, and/or by corrective adjustment of the measured reflectances.
    • 使用目标照明系统和反射照明感测系统进行分光光度计颜色测量,其中目标表面与所述分光光度计可变地间隔开。 获得并存储与来自分光光度计的测试目标表面的已知不同间隔的颜色测量相对应的颜色校正校准信息。 在使用中,测量实际目标表面与分光光度计的间距,以提供目标间隔信息信号。 该信号与相应距离的存储的颜色校正校准信息自动组合,以便即使使用低成本的固定聚焦光学器件,也可以对目标表面相对于分光光度计的可变间隔进行至少部分校正分光光度计的颜色测量误差。 通过改变目标照明(例如通过LED脉冲宽度变化)和/或通过校正测量的反射率来校正分光光度计输出。
    • 10. 发明申请
    • COMPUTER-BASED REUSABLE BIDIRECTIONAL MEDICAL ADHERENCE SYSTEM AND METHOD FOR PERSONALIZED MEDICATION PACKAGING
    • 基于计算机的可重复使用的双向医疗辅助系统和用于个性化药物包装的方法
    • US20140039445A1
    • 2014-02-06
    • US13567630
    • 2012-08-06
    • Paul R. AustinWendell Lewis KiblerClaude S. Fillion
    • Paul R. AustinWendell Lewis KiblerClaude S. Fillion
    • A61J1/18
    • A61J7/0084A61J1/035A61J2200/30G06F19/3462
    • A computer-based system for implementing and monitoring a medication regimen, including a medication package and a computer-based unit. The package includes a base including spaces for receiving a medication, a sheet of material including respective portions sealing the spaces with respect to the base, and a respective electrical circuit associated with each portion. The computer-based unit includes a memory element to store computer readable instructions and a medication regimen, formulated by a medical practitioner or pharmacist, for the medication, a processor; and a wireless transmitter. The computer-based unit is attachable to the medication package or can wirelessly communicate with the medication package. The processor executes the computer readable instructions to: monitor the electrical circuits to detect when portions are ruptured; and wirelessly transmit, using the wireless transmitter, a compliance message for receipt by at least one computer, the compliance message indicating whether a portion has been ruptured.
    • 用于实施和监测药物治疗方案的基于计算机的系统,包括药物包装和基于计算机的单元。 该包装包括一个包括用于接收药物的空间的基座,包括相对于基座密封空间的相应部分的材料片以及与每个部分相关联的相应的电路。 基于计算机的单元包括用于存储用于药物的计算机可读指令和由医生或药剂师制定的药物治疗方案的存储元件,处理器; 和无线发射机。 基于计算机的单元可附接到药物包装,或者可以与药物包装无线通信。 处理器执行计算机可读指令,以便:监视电路以检测何时部分破裂; 并且使用所述无线发射机无线地发送用于由至少一台计算机接收的符合性消息,所述遵从消息指示部分是否已经破裂。