Abstract:
An information processing apparatus (100) includes a symbol detection unit (101) that detects an identification symbol included in an object based on sensor information, and an association unit (102) that associates, in accordance with a positional relationship between a commodity or a commodity symbol corresponding to the commodity and the object including the detected identification symbol, identification information obtained using the detected identification symbol with information on the commodity.
Abstract:
In order to achieve improved work efficiency and reduced work errors, this information processing device is provided with an acquisition unit, a detection unit, and a report control unit. The acquisition unit acquires information used in work to be executed on a work object from a document attached to the work object. The detection unit detects the whereabouts of the work object. On the basis of a rule that is data in which the information used in the work and work contents utilizing the information are associated with each other, the report control unit detects the work contents for the work object. Further, the report control unit reports the work contents by controlling a report device for reporting the work contents.
Abstract:
Provided is a technique capable of moving a mobile body to an appropriate position and eliminating the mobile body. This mobile body control system is provided with: a false signal generation unit that generates a false signal for calculating a position different from the actual position of the mobile body on the basis of signal code information which the mobile body has received to calculate the position thereof; and a false signal transmission unit that transmits the generated false signal into a prescribed region.
Abstract:
An information processing system includes, a first detection unit which detects an object position which is the position of an object, and a display control unit which causes information based on the type of the object or the type of a content contained in the object to be displayed in the object position or near the object position.
Abstract:
A projection control apparatus, method and non-transitory computer-readable storage medium are disclosed. A projection control apparatus may include a memory storing instructions; and one or more processors configured to process the instructions to: cause a projection apparatus to project an image; detect a user operation; control the projection apparatus to change projection parameters upon detecting a first user operation; and control the one or more processors to change the image without changing the projection parameters upon detecting a second user operation.
Abstract:
In order to provide a technique for improving precision of location estimation using a video, a location estimation device includes: a video processing unit that executes video processing including location estimation of an imaging unit, based on a plurality of feature points extracted from a video captured by the imaging unit and composed of a plurality of frames; and an imaging control unit that determines, on the basis of video-related information acquired in the video processing on a first frame belonging to a first group out of the plurality of frames, an exposure condition of the imaging unit in a second frame belonging to a second group different from the first group out of the plurality of frames.
Abstract:
An image projection unit (101) projects, onto an object, an image that contains identification information for identifying the contents of control on an unmanned flying device. A control unit (103) controls operation of the unmanned flying device, in accordance with the identification information indicated by the image captured by the imaging device mounted on the unmanned flying device. A deformation determination unit (105) determines deformation of the projection plane of the object. The image projection unit (101) projects an image showing a predetermined shape onto the object, and, in accordance with a result of the deformation determination, controls projection of the image for controlling operation of the unmanned flying device. The deformation determination unit (105) determines deformation of the projection plane, in accordance with the shape of the captured image generated by capturing the projected image showing the predetermined shape.
Abstract:
An acquisition unit acquires a photographed image data which is photographed by a user at a first position in a space. The photographed image includes at least any of the multiple markers. An identification unit identifies the first position, on which user have photographed an image, based on the markers included in the photographed image. An informing unit identifies second position relative to the first position identified by the identification unit, and informs the user of the second position relative to the first position.
Abstract:
An information providing device (100) includes: a display processing unit (101) that causes each of plural pieces of different specific content corresponding to plural information content groups to be displayed on a display unit or a projection surface while switching the pieces of specific content over time; a detection unit (102) that detects a predetermined operation of a user; and a provision unit (103) that recognizes piece of specific content which is a target of the detected predetermined operation and provides an operation interface for the user relating to an information content group corresponding to the recognized piece of specific content.
Abstract:
An information processing system, method and non-transitory computer-readable storage medium are disclosed. The information processing system may include a memory storing instructions; and one or more processors configured to process the instructions to detect an actual object, project a first image, detect a user's operation on the actual object, and execute a task regarding the first image on the basis of the user's operation.