Abstract:
A system and method for real-time network communications provides a session identifier (Session ID) as a public key for group communication (20, 22) between clients, and provides a channel identifier (Channel ID) representing a private key for each of a plurality of clients (12). The channel identifier includes client-specific attributes, which function to indicate grouping criteria for the group communication. A dynamic communication link is created over a network between a client (12) and a service (14) based upon the public and private key combination such that group communication is enabled based upon the attributes of the private key and the public key. Communications are translated using a translation service (16) which employs the attributes associated with the private key and the public key combination to provide response information in a designated language to enable multi- lingual real-time communications.
Abstract:
A system and method for real-time network communications provides a session identifier (Session ID) as a public key for group communication (20, 22) between clients, and provides a channel identifier (Channel ID) representing a private key for each of a plurality of clients (12). The channel identifier includes client-specific attributes, which function to indicate grouping criteria for the group communication. A dynamic communication link is created over a network between a client (12) and a service (14) based upon the public and private key combination such that group communication is enabled based upon the attributes of the private key and the public key. Communications are translated using a translation service (16) which employs the attributes as-sociated with the private key and the public key combination to provide response information in a designated language to enable multi- lingual real-time communications.
Abstract:
A system and method for real-time network communications provides a session identifier (Session ID) as a public key for group communication (20, 22) between clients, and provides a channel identifier (Channel ID) representing a private key for each of a plurality of clients (12). The channel identifier includes client-specific attributes, which function to indicate grouping criteria for the group communication. A dynamic communication link is created over a network between a client (12) and a service (14) based upon the public and private key combination such that group communication is enabled based upon the attributes of the private key and the public key. Communications are translated using a translation service (16) which employs the attributes as-sociated with the private key and the public key combination to provide response information in a designated language to enable multi- lingual real-time communications.
Abstract:
A method for separating a dividable computer device into multiple sub-computers may include receiving, by the dividable computer device, a command to separate a sub-computer from the dividable computer device. The method may also include detecting by the dividable computer device separation of the sub-computer and reconfiguring the dividable computer device for operation without the separated sub-computer in response to each sub-computer being separated.
Abstract:
A method for separating a dividable computer device into multiple sub-computers comprises receiving a command to separate a sub-computer from the dividable computer; the dividable computer detecting the separation of the sub-computer; and reconfiguring the dividable computer for operation without the sub-computer. Preferably, options for selection for association with the sub-computer to be separated are presented to the user. Predetermined features/functionalities may be loaded onto the sub-computer based on options related to entered characteristics of the user and/or a list of users. There may be a notification that the sub-computer is configured and ready for separation, whilst the reconfiguring may involve adjusting the display to minimize an effect of the separated computer. The sub-computer may be provided with a virtual operating system and/or may operate independently from the dividable computer. Separated sub-computers may be wirelessly connected to share resources. Each sub-computer may have processing unit, memory and interface connector.