Abstract:
An image processing system includes a reception unit that receives an image forming instruction from a user, a retaining unit that retains the image forming instruction in association with the user, an acceptance unit that accepts an execution instruction from the user; an authentication unit that performs authentication of the user, and an image forming unit that executes the image forming instruction retained by the retaining unit in association with the authenticated user. The image forming unit executes the image forming instruction without accepting the execution instruction by the acceptance unit in a case where the authentication unit completes the authentication and cancellation of execution by the user is not present within a holding time.
Abstract:
A control device includes: a receiving unit that receives a request for processing; and a control unit that, in a case where the receiving unit receives a plurality of requests for processing from a plurality of places, controls a traveling route of a processing apparatus based on traveling time taken for the processing apparatus to travel to the plurality of places and processing time taken for the processing apparatus to finish the processing after traveling.
Abstract:
A remotely operated mobile robot includes a movement controller, a notification unit, and a switching unit. The movement controller is configured to be remotely operated by a terminal device connected to the remotely operated mobile robot through a communication line so as to control movement of the remotely operated mobile robot. The notification unit is configured to notify a terminal device, other than the terminal device connected to the remotely operated mobile robot, of a request for operation of the remotely operated mobile robot, if a predetermined condition is satisfied. If the terminal device notified of the request for operation of the remotely operated mobile robot makes an operation demand, the switching unit switches to a state of the movement controller to a state in which the movement controller is operable by the terminal device that makes the operation demand.
Abstract:
An autonomous mobile robot includes a robot body, a movement unit, a detector, and a controller. The movement unit moves the robot body to a destination point. The detector detects a state of a person present around the destination point. The controller controls the movement unit so as to make the autonomous mobile robot approach the person present around the destination point along a travel route that differs depending on the state of the person detected by the detector.
Abstract:
A service providing system includes a self-moving apparatus and a server apparatus. The self-moving apparatus provides a service by moving to a predetermined destination and includes a detection unit and a reporting unit. The detection unit detects a state of the self-moving apparatus. The reporting unit sends a report about the detected state to the server apparatus. The server apparatus includes a reception unit, a report-reception unit, and a first instruction unit. The reception unit receives a user instruction for causing the self-moving apparatus to move to the destination if the self-moving apparatus is in a predetermined state. The report-reception unit receives the report from the self-moving apparatus. The first instruction unit instructs the self-moving apparatus to move to the destination upon the reception unit receiving the user instruction if the report received by the report-reception unit indicates that the self-moving apparatus is in the predetermined state.
Abstract:
An image processing system includes a reception unit that receives an image forming instruction from a user, a retaining unit that retains the image forming instruction in association with the user, an acceptance unit that accepts an execution instruction from the user; an authentication unit that performs authentication of the user, and an image forming unit that executes the image forming instruction retained by the retaining unit in association with the authenticated user. The image forming unit executes the image forming instruction without accepting the execution instruction by the acceptance unit in a case where the authentication unit completes the authentication and cancellation of execution by the user is not present within a holding time.
Abstract:
A print system includes a client device, plural mobile printers, and a server device. The client device issues a print instruction in accordance with a user operation. The plural mobile printers each receive a print instruction and move to a destination indicated by the print instruction so as to perform printing at the destination. The server device selects a mobile printer which will perform printing based on a print instruction issued by the client device, in accordance with selection standards including judgement standards for judging whether or not it is necessary to distribute a print instruction over plural mobile printers or to transfer a print instruction from one mobile printer to another mobile printer.
Abstract:
An information processing system includes a verification unit and an execution unit. The verification unit verifies biometric information acquired from users against preregistered reference information. The execution unit executes a process based on the number of times biometric information has been verified on a user basis in a predetermined period by the verification unit.
Abstract:
An authentication apparatus includes an imaging unit that captures a face image of a user, an authenticating unit that authenticates the user using the face image of the user captured by the imaging unit, a display unit that displays failure information if authentication of the user by the authenticating unit is unsuccessful, a departure detecting unit that detects a departure of the user, and a stopping unit that causes the display unit to stop displaying the failure information if the departure detecting unit detects the departure of the user.
Abstract:
An information processing apparatus includes a detector, and first to fourth generation units. The detector detects an instruction to magnify a portion of a reduced image obtained by reducing an original image, using the first generation unit. Upon detection of the instruction, the second generation unit generates a first magnified image by magnifying the reduced-image portion such that the degree of the magnification becomes smaller from the center of the magnification toward a surrounding area. The third generation unit specifies a portion of the original image corresponding to a first magnified image region having a perimeter from which a distance to the center of the magnification is predetermined, and generates a second magnified image by magnifying the specified original image portion. The fourth generation unit composes and then outputs an image by superimposing the second magnified image on the first magnified image at the center of the magnification.