Abstract:
An information processing system includes an information processing apparatus that is capable of being remotely operated by a remote operation terminal via a network, an execution unit that executes a job in accordance with operation, a first operation receiving unit that receives operation of the remote operation terminal for the execution unit, a second operation receiving unit that receives operation for the execution unit, a determining unit that determines whether operation is received by the first operation receiving unit or the second operation receiving unit, a charging determining unit that determines whether the job executed by the execution unit is an object for charging in accordance with the result determined by the determining unit, and a storing unit that stores therein the result determined by the determining unit.
Abstract:
Device B requests a network service of device A, and devices B and A are set in a client mode and server mode, respectively. Further, a mode is set in which the console unit of device A is controlled from that of device B, and image data scanned and created by the scanner of device B is processed as image data scanned by that of device A. In response to process start designation input from the console unit of device B, device A designates device B to scan an image using the scanner of device B. In response to the designation, device B transmits image data scanned by the scanner of device B to device A. Device A executes a process corresponding to setting information for the image data.
Abstract:
[Problem] A technique is provided for managing the usage of image forming apparatuses by users while suppressing a decrease in the convenience of users as well as suppressing an increase in cost. [Means for Solving Problem] An image forming apparatus (e.g., MFP 10a) stores amount-of use information (counter information) regarding the amount of use of itself (MFP 10a) by each user in a high speed storage 5b of itself (MFP 10a). On a predetermined condition, the MFP 10a shifts amount-of-use information (counter information) about a specific user (e.g., user U9), out of amount-of-use information (counter information) about each of multiple users (e.g., users U1, U2, U4, U6, and U9) stored in the high speed storage 5b of itself (MFP 10a), to another MFP 10 (e.g., MFP 10c).
Abstract:
A method includes invoking an image capture interface via a mobile device; and analyzing video data captured via the capture interface. The analysis includes determining whether an object exhibiting one or more defining characteristics is depicted within the viewfinder; and if so, whether that object satisfies one or more predetermined quality control criteria. The method further includes displaying an indication of success or failure to satisfy the predetermined control criteria on the mobile device display. Where the object depicted within the viewfinder satisfies the one or more predetermined quality control criteria, the method also includes: displaying an indication that the object depicted in the viewfinder exhibits the one or more defining characteristics; automatically capturing an image of the object; and/or automatically storing to memory one or more of the frames in which the object is depicted in the viewfinder. Systems and computer program products are also disclosed.
Abstract:
In one embodiment, a system includes a processor and logic executable by the processor. The logic is configured to cause the processor to: capture video data using a mobile device, the video data comprising a plurality of frames; determine whether one or more of the frames depict a document exhibiting one or more defining characteristics; determine whether one or more of the frame(s) determined to depict the document also satisfy one or more predetermined quality control criteria; and in response to determining one or more of the frames depict the document and also satisfy the one or more predetermined quality control criteria, automatically capture an image of the document. Corresponding computer program products are also disclosed.
Abstract:
Synchronization of simultaneously captured media in a multi-camera system is performed using a consistent file structure within the cameras. A primary camera receives a bitmap describing the file and folder utilization of each of one or more secondary cameras. The primary camera selects a folder number and file position number that is commonly available across all cameras. The primary camera directs the secondary cameras to store subsequently simultaneously captured media content at the selected file number and folder position number. During post-processing, simultaneously-captured content is accessed based on common folder numbers and file position numbers. A post-processing system compares a timestamp associated with each content file in a group with matching folder numbers and file position numbers to identify false positive groupings.
Abstract:
A system displays an image using a plurality of projection type display devices, and is capable of reliably notifying a user who uses the system that an error has occurred in a certain projection type display device. A slave includes a display unit that projects and displays an image and a signal receiving unit that receives data transmitted from a commander. The slave includes a detection unit that detects an error in the commander on the basis of the receiving conditions of the data in the signal receiving unit. The slave includes a display control unit that, when an error is detected by the detection unit, makes the display unit display an image showing that the error has been detected.
Abstract:
An information processing system includes an information processing apparatus that is capable of being remotely operated by a remote operation terminal via a network, an execution unit that executes a job in accordance with operation, a first operation receiving unit that receives operation of the remote operation terminal for the execution unit, a second operation receiving unit that receives operation for the execution unit, a determining unit that determines whether operation is received by the first operation receiving unit or the second operation receiving unit, a charging determining unit that determines whether the job executed by the execution unit is an object for charging in accordance with the result determined by the determining unit, and a storing unit that stores therein the result determined by the determining unit.
Abstract:
A display system displays images projected by a plurality of projection type display devices so as to overlap each other. When a user uses this system, events occurring in these devices can be reliably delivered to the user. A commander and a slave project and display images so as to overlap each other. When a notification-required event occurs in the commander or the slave, the commander specifies this notification-required event. Then, the commander displays a first OSD image between the first OSD image and a second OSD image, which form an image corresponding to the specified notification-required event, in a predetermined region of a first screen of screens on which images are displayed. Also, the commander outputs to the slave a control signal to display the second OSD image in the predetermined region. The slave displays the second OSD image in the predetermined region when the control signal is received.
Abstract:
A method and an electronic device are provided. An electronic device wirelessly connects to another electronic device including a camera unit, receives image data from the other electronic device, displays an image using the image data, receives a user input for changing a photographic composition, and transmits, to the other electronic device, a control signal formed based on the user input.