Abstract:
An embodiment of the invention may include a method, computer program product and computer system for managing mobile objects. The embodiment may determine, by a mobile object server, a position of a mobile object in a geographic space managed by the mobile object server. The embodiment may determine a plurality of routes based on the position of the mobile object in the geographic space. The embodiment may calculate, by the mobile object server, a plurality of route parameters for the plurality of routes, wherein the plurality of route parameters includes a passage possibility of the mobile object over each route. The embodiment may calculate a plurality of edge parameters for a plurality of edges, wherein each edge is a segment of a route, and wherein the edge parameter includes the passage possibility of the mobile object over each edge.
Abstract:
A request for a route guide to a destination in a building is received from a user terminal device. BIM data for the building is received, including material properties of the building elements, the material properties consisting of ease of slipping when wet, earthquake resistance, and flame retardancy base values. Security information for a route, real-time information for building status, and a user profile are received. A route guide to the destination in the building is created, based the BIM data, security information, real-time building status, and the user profile. Information from one or more environmental sensors is received indicating that an environmental event has been detected. Its current position is received from the user terminal device. The route guide from the user terminal device's current position is updated based on the environmental event, and the material properties of the building elements that are related to the environmental event.
Abstract:
To use a high-quality driving support and automatic driving system that manages a plurality of mobile objects through communication with the mobile objects to manage mobile objects that do not communicate with this system, provided is a system including a mobile object server operable to assist with movement of a plurality of mobile objects within a geographic space, wherein the mobile object server having: a monitoring section operable to monitor movement of a first mobile object that does not receive at least a portion of movement assistance and an assisting section operable to assist with movement of a second mobile object that is an assistance target, using a result obtained by monitoring the first mobile object. Also provided is a method and program product.
Abstract:
An embodiment of the invention includes a system, method and computer program product for managing dynamic events. The embodiment may include managing, by a first subsystem, an event in a first region of the plurality of geographic regions using a first event agent. The embodiment may include determining whether the event is predicted to spread from the first region to a second region. The embodiment may include generating a first dynamic event agent to monitor the event as a dynamic event based on predicting the event may spread from the first region to the second region. The first dynamic event agent may receive information relating to the dynamic event, update a status of the dynamic event based on the received information, and transmit the received information. The embodiment may include generating, by a second subsystem, a second dynamic event agent for handling the dynamic event in the second region.
Abstract:
An information processing apparatus includes a storage managing unit configured to manage a storage device by dividing the storage device into a plurality of physical storage regions corresponding to respective modes used by the information processing apparatus, and a storage processing unit configured to cause data generated by the information processing apparatus during operation in a mode to be stored in a physical storage region corresponding to the mode. For example, the storage managing unit stores a policy in the storage device. The policy defines whether to permit the use of data between a plurality of security attributes corresponding to the respective physical storage regions.
Abstract:
Geographic space may be managed by a system including a plurality of subsystems operable to respectively perform data processing, the data processing relating to traffic, of a plurality of regions, the plurality of regions obtained by dividing a geographic space including routes on which mobile objects move, and one or more servers collectively operable to obtain statistic information of at least one subsystem among the plurality of subsystems, the statistic information relating to a processing load of the at least one subsystem, and divide the geographic space into the plurality of regions based on the statistic information.
Abstract:
A method and system for displaying information relating to a designated marker is provided. An image including the designated marker is acquired. The designated marker is extracted from the acquired image. A type of the designated marker is identified from the extracted marker. The identified type of the designated marker is communicated to a server, and in response, marker information identified from the type of the designated marker is obtained from the server. The marker information relates to the designated marker and identifies at least two other markers. Relative positional information of the device in relation to the extracted marker is determined. A displayed informational image includes the designated marker and at least one other marker of the at least two other markers, which are displayed in accordance with a determined relative position between the designated marker and each marker of the at least one other marker.