Abstract:
Embodiments of the present invention relate to attesting a document that contains encoded data, such as a barcode or DataGlyph. When a document contains encoded data that is not in human-readable form, the document is checked to determine whether content in the encoded data appears somewhere in the document in human-readable form. Based on the amount of content that appears in the document, the document may be marked with a seal that attests to the amount of content in the encoded data that appears in human-readable form. The seal may be visually distinctive to facilitate easy recognition by a user or device.
Abstract:
Different aspects of the disclosure relate to either transmitting at least one portion of at least one image representation from, or receiving at least one portion of the at least one image representation at, a shared image device in a manner at least partially relying on a positioning of the shared image device within a sharing region.
Abstract:
An image reading apparatus includes a reading unit, an addition unit, and a transfer unit. The reading unit reads image data from a document. The addition unit adds attribute information regarding a preset item to the image data read by the reading unit. The transfer unit transfers to a specified destination the image data to which the attribute information is added by the addition unit.
Abstract:
A signature device including a storage unit configured to store moving image data, and a processor configured to extract original metadata from moving image data for the image data of each of a plurality of images forming the moving image data, the original metadata including location data of the image data and identification data of the moving image data, to encode the image data of each of the images into still image data in accordance with an image format, to write the still image data into a first area, to write the original metadata extracted by the extractor into a second area, the first area and the second area being included in a storage area of a still image data file in which the still image data is filed, and to generate summary data for the still image data file.
Abstract:
A self-authenticating intelligent document in sheet medium form has an information storage and transfer means incorporated thereinto for storing the original text portion of document information formed on the surface of the sheet medium and for storing an image of the completed document after supplemental information has been added to the original text portion on the surface of the sheet medium. The information storage and transfer means is either a single RFID tag having a first memory portion for storing the text portion and a second memory portion for storing the image of the completed document; or a first RFID tag having a memory portion for storing the text portion and a second RFID tag for storing the image of the completed document. To verify the authenticity of the document, the image stored in the information storage and transfer means is read out and compared with the visible version. When the two are identical, the document is authentic.
Abstract:
Among other things, at a cloud-based service, digital image files are received from which digital images can be displayed on devices. For each of the digital image files, data is embedded in the digital image file on behalf of a party who has rights in the digital image file. The existence of the embedded data is not perceptible in any digital image that is displayed using the digital image file. The embedded data includes information from which the digital image file can be authenticated. At the cloud-based service, a digital image file is received that is to be authenticated. The digital image file is authenticated based on the embedded data.
Abstract:
An apparatus for generating trusted image data includes an image data generator, a processor and an output unit. The image data generator generates image data of an image to be taken of a three-dimensional scene and trust data of the three-dimensional scene. The trust data indicates a depth information of at least one pixel of the image to be taken or comprises data capable of being used to calculate a depth information of at least one pixel of the image to be taken. The processor generates encrypted image data by encrypting at least the trust data or characteristic data derivable from at least the trust data, so that an authentication of the image data is enabled based on the encrypted image data. The output unit provides trusted image data including the encrypted image data.
Abstract:
According to one embodiment, an image forming apparatus includes a scanner, a setting unit, and a control unit. The scanner is configured to read a document. The setting unit is configured to receive an instruction to append a display image to a signature field of a PDF. The control unit is configured to generate the PDF by appending the display image to the signature field, for the document.
Abstract:
A method for transmitting a plurality of pieces of image data is provided. The method includes causing an image forming apparatus (1) to perform a process of obtaining a private key (#43), a process of generating individual electronic signatures for the plurality of pieces of image data by using the private key thus obtained (#38 and #45), and a process of adding the individual electronic signatures to the plurality of pieces of image data and transmitting the plurality of pieces of image data (#49).
Abstract:
The present invention relates to a protection system for printed documents using steganographic and computer vision, materialized by the use of portable devices, where ETCODE encoded images are generated for this purpose. This method was created in order to ensure the document's authenticity, integrity of information, store information about authorship and copyright protection of printed documents. The protection method described in this patent is to generate an encoded image ETCODE using steganographic techniques, to be printed with the document, using conventional printers, and also that the decoding is performed by a digital camera portable device, obtaining therefore the information hidden in ETCODE, and then confronted with the information about the document in its digital version present in a database, thus fulfilling the proposal document protection.