Abstract:
A method of creating a confidence map for an electronic fillable form may include identifying, by an electronic device, one or more fillable fields of an electronic fillable form. The method may include, for one or more of the identified fillable fields, assigning one or more first coordinates of the electronic fillable form to define a graphical zone associated with the fillable field, assigning one or more second coordinates of the electronic fillable form to define a fill zone, assigning one or more third coordinates of the electronic fillable form to define a click zone, and assigning, by the electronic device, one or more fourth coordinates of the electronic fillable form to define a start zone representing a most likely selection area for the fillable field. The method may include creating, a confidence map associated with the electronic fillable form.
Abstract:
A system creates an electronic file corresponding to a printed artifact by launching a video capture module that causes a mobile electronic device to capture a video of a scene that includes the printed artifact. The system analyzes image frames in the video in real time as the video is captured to identify a suitable instance. In one example, the suitable instance is a frame or sequence of frames that contain an image of a page or side of the printed artifact and that do not exhibit a page-turn event. In response to identification of the suitable instance, the system will automatically cause a photo capture module of the device to capture a still image of the printed artifact. The still image has a resolution that is higher than that of the image frames in the video. The system will save the captured still images to a computer-readable file.
Abstract:
A system creates an electronic file corresponding to a printed artifact by launching a video capture module that causes an imaging sensor of a mobile electronic device to capture a video of a scene that includes the printed artifact. The system analyzes image frames in the video in real time as the video is captured to identify a suitable instance. The suitable instance is a frame or sequence of frames that contains at least a portion of the printed artifact and that also satisfies one or more image quality criteria or other criteria. Upon identification of each suitable instance, the system will automatically cause a photo capture module of the device to capture a still image of the printed artifact. The still image has a resolution that is higher than that of the image frames in the video. The system will save the captured still images to a computer-readable file.
Abstract:
A system creates an electronic file corresponding to a printed artifact by launching a video capture module that causes a mobile electronic device to capture a video of a scene that includes the printed artifact. The system analyzes image frames in the video in real time as the video is captured to identify a suitable instance. In one example, the suitable instance is a frame or sequence of frames that contain an image of a page or side of the printed artifact and that do not exhibit a page-turn event. In response to identification of the suitable instance, the system will automatically cause a photo capture module of the device to capture a still image of the printed artifact. The still image has a resolution that is higher than that of the image frames in the video. The system will save the captured still images to a computer-readable file.
Abstract:
This disclosure provides a method and system for navigating hard copies of web pages. According to one exemplary method, a hard copy of a web page is navigated by capturing with a mobile device an image of the hard copy, performing OCR on the captured image to identify the captured web page, accessing a database to retrieve a copy of the identified web page and displaying the retrieved copy of the identified web page along with active web page links on the mobile device.
Abstract:
A mobile electronic device application uses various hardware parameters for operation. The application leverages calibration data from other users to determine what the parameters should be for the particular device model on which the application is installed. The application queries a cloud-based data store by sending the model and a hardware-variable parameter to the data store. If a value for the parameter is available in the data store, the application will receive it from the data store and use it in operation. If the value is not available, the application will prompt the user to calibrate the application. The application will use the calibration results to identify a setting, and it will send the setting to the data store for use by other instances in which the application is installed on the same model device.
Abstract:
A document generation system creates a secure document by: receiving document content to be printed onto a substrate; creating a stencil mask comprising an image of at least a portion of the document content; receiving an image of a watermark to be printed on the substrate; modifying the watermark to remove portions of the watermark that will correspond to locations of the stencil mask; causing a print device to print the document content on the substrate; and causing the print device to print the modified watermark through the stencil mask on the substrate.
Abstract:
A document validation system receives a scan of a certified document. The system identifies a security template for the document, prompts a user to enter a validation document into the scanning device, receives the validation document, uses the security template identify the location of one or more security elements on the certified document, and analyzes the validation document to identify expected content that should appear on the certified document at the security element locations. The system determines whether the expected content matches actual content of the scan at the security element locations and generates a report of the result.
Abstract:
A method of creating a confidence map for an electronic fillable form may include identifying, by an electronic device, one or more fillable fields of an electronic fillable form. The method may include, for one or more of the identified fillable fields, assigning one or more first coordinates of the electronic fillable form to define a graphical zone associated with the fillable field, assigning one or more second coordinates of the electronic fillable form to define a fill zone, assigning one or more third coordinates of the electronic fillable form to define a click zone, and assigning, by the electronic device, one or more fourth coordinates of the electronic fillable form to define a start zone representing a most likely selection area for the fillable field. The method may include creating, a confidence map associated with the electronic fillable form.
Abstract:
A system creates a copy of a document by: receiving an electronic representation a document to be copied onto a substrate; identifying a non-invasive watermark to be printed on the substrate; analyzing the document and the non-invasive watermark to determine whether a threshold amount of the non-invasive watermark can be printed in a white space of the document; and creating a secure copy of the document with the watermark. If the threshold amount of the non-invasive watermark can be printed in the white space, the system will print at least a portion the non-invasive watermark in the white space. Otherwise, the system will modify at least a portion of the non-invasive watermark to comprise an invasive watermark portion, and it will print the invasive watermark portion over a portion of the document's content.