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A method for the automatic correction of the radiation receiver, of the location on a radiation receiver geer dependent impurities of warping effects

机译:一种自动校正辐射接收器,辐射接收器上位置的方法,该方法取决于翘曲效应中与geer有关的杂质

摘要

A method for the automatic correction of the radiation receiver, of the location on a radiation receiver dependent impurities of warping effects in image data recorded with the radiation receiver, wherein the impurities by means of a location of the image sharpness effects blurring operator variants are described, characterized in that an iterative correction is carried out, wherein the iteration the beginning, a zeroth iteration field is defined as the recorded image data, as n - ter iterative step, an n - te approximation of the image data that is customarily by the use of a second gate is operative to the n - te iteration field and as a (n + 1) - tes iteration field the sum of the n - of the second iteration field and by the application of a relaxation of the motor operational modified or unmodified difference between the recorded image data and the operational by application of the spreading of the motor to the n - te approximation of the image data that is customarily blurred image data are determined, wherein as truncation condition the consistency condition that the residue, which is obtained as the standard of the difference between the recorded image data and the operational by application of the spreading of the motor to the n - te approximation of the image data that is customarily blurred image data is smaller than a first threshold value, is used, it being in the case of..
机译:一种用于自动校正辐射接收器的方法,该方法根据辐射接收器所记录的图像数据中的翘曲效应的杂质来自动校正辐射接收器上的位置,其中描述了通过图像清晰度影响的位置使操作者变量模糊的杂质,其特征在于,进行迭代校正,其中将迭代从头开始,将第零迭代字段定义为记录的图像数据,作为n-迭代步骤,将图像数据的n-te逼近通常由使用第二个门对n-te迭代字段有效,并且作为(n +1)-tes迭代字段,第二个迭代字段的n-之和并通过应用松弛的电机进行修改或通过将电机的扩展应用于通常模糊的图像数据的n-te近似,可以在记录的图像数据和操作之间保持不变。确定数据,其中作为截断条件的一致性条件是残差,该残差作为记录的图像数据与操作之间的差的标准而获得,该残差是通过将电动机的扩展应用于图像的n-te逼近在这种情况下,使用通常是模糊图像数据的数据小于第一阈值。

著录项

  • 公开/公告号DE102009015831B4

    专利类型

  • 公开/公告日2010-12-30

    原文格式PDF

  • 申请/专利权人

    申请/专利号DE20091015831

  • 发明设计人

    申请日2009-04-01

  • 分类号H04N5/325;A61B6/03;G01N23/04;

  • 国家 DE

  • 入库时间 2022-08-21 17:47:57

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