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    • 4. 发明申请
    • METHODS AND DEVICES FOR THE DETERMINATION AND RECONSTRUCTION OF A PREDICTED IMAGE AREA
    • 方法和装置用于确定和重建的预测图像区域
    • WO2007048666A3
    • 2007-06-28
    • PCT/EP2006066683
    • 2006-09-25
    • SIEMENS AGAGTHE BERNHARDBAESE GEROKUTKA ROBERTOERTEL NORBERTPANDEL JUERGEN
    • AGTHE BERNHARDBAESE GEROKUTKA ROBERTOERTEL NORBERTPANDEL JUERGEN
    • H04N7/34H04N7/36
    • H04N19/51H04N19/537H04N19/593
    • The invention relates to a method for determining a predicted image area for an image area, in which a temporal predictor for the image area is determined based on a reconstructed image that precedes said image, a local predictor for the image area is determined within a reconstructed image area of the image, a margin of error between the image area and the image area predicted based on the temporal and local predictors being minimized, and the predicted image area is determined by means of the local predictor using the reconstructed image area and by means of the temporal predictor using one of the preceding images. The invention further relates to a method for reconstructing a predicted image area. Also disclosed are an establishing device for carrying out the method for determining a predicted image area as well as a reconstructing device for carrying out the reconstruction method.
    • 是本发明涉及一种用于确定用于在其中对图像区域中的时间预测在时间上被重建前身图像之前的图像的基础上确定的画面图象区域的一个预测图像区域,所述图像的重构图像区域内的局部预测的图像区域确定 其中,所述图像区域和所述预测图像区域的时间和局部预测图像区域是通过使用所重建的图像区域中的局部预测确定的基础上,通过使用前身图像的一个时间预测的预测最小化之间的误差度量。 本发明还包括用于重构的预测图像区域的方法。 此外,所述制剂还涉及一种用于实施该方法用于确定预测的图像区域的装置,以及用于执行用于重构的方法的重建装置。
    • 5. 发明专利
    • IN828DE2012A
    • 2015-08-28
    • IN828DE2012
    • 2012-03-21
    • SIEMENS AG
    • BASE GEROOERTEL NORBERT
    • G06M20060101
    • The invention describes a method for controlling the translation of predefined rules (R) and/or incoming data (D) of a data stream, the data of which (D) is described in an XML schema, wherein a conversion of hierarchically arranged elements (W, Kl, EL1, K2, EL2) of the XML schema into a list (L) containing list entries is performed. This is effected in that for an element (W, Kl, K2) which represents a parent compo¬nent in the XML schema, a fact class (FK) is created which for every possible relation¬ship arising from the parent component comprises a fact element (FE) comprising all elements (W, Kl, EL1, K2, EL2) of the path of the relevant relationship of the XML schema, wherein the fact elements (FE) represent the list entries of the fact class (FK). At least one of the fact elements (FE) is assigned property information (El) which represents a processing instruction for the assigned fact element (FE) for the translation of the rules (R) and/or data (D). A translation of the rules (R) is effected in that the elements (W, Kl, EL1, K2, EL2) of the XML schema contained in a path of the relationship are determined from the fact elements (FE) and in accordance with the respective assigned property information (El) are converted into a processing in¬struction that can be processed by a rule machine (RM). Furthermore, a translation of the data (D) of the data stream into a fact class instance (FKI) that can be processed by the rule machine (RM) is effected, in that in accordance with the prop¬erty information assigned to a fact element (FE) a predefined handling of optional elements (W, Kl, EL1, K2, EL2) of the XML schema is effected. Figure 2