Abstract:
Methods and apparatuses are provided for supporting data transmission by a wireless docking center. A first single hop communication link is established with a peripheral device configured to receive content data. A second single hop communication link is established with a dockee device configured to transmit the content data. At least one of a message and the content data is transferred from the second communication link to the first communication link.
Abstract:
A method in which a control device controls at least one of a plurality of terminal devices is provided. The method includes transmitting a search request for requesting information on a location of each of a plurality of terminal devices, and information on a direction of each of the plurality of terminal devices based on a direction in which the control device is directed, receiving a response corresponding to the transmitted search request, determining at least one of the plurality of terminal devices that are controllable from among the plurality of terminal devices based on the received response, and controlling the determined at least one of the plurality of terminal devices that are controllable.
Abstract:
The present invention provides a method and an apparatus for displaying application data. The first device transmits, to a second device information as to whether the first device can display data of an application run by the second device, if a connection to the second device is established, receives, from the second device, the application data and display information for displaying the application data, if the first device can display the application data, and displays the application data based on the display information.
Abstract:
A method and system for transmitting data based on deterministic quality of service by at least one peripheral device in a communication network is disclosed. The method includes exchanging reservation information with peripheral devices in the communication network, negotiating traffic specification (TSPEC) with the at least one peripheral device for at least one traffic type, based on the reservation information, establishing a quality of service associated with the at least one traffic type, using the TSPEC, reserving a wireless medium based on the established quality of service associated with the at least one traffic type and transmitting data through the reserved wireless medium, based on the quality of service and reservation information.
Abstract:
Disclosed is a method by a docking center of assisting communication between a dockee and a peripheral device to which the docking center is connected, including transmitting, as a group owner of a first group, to the dockee, information for a direct connection between the dockee and the peripheral device, receiving an assist request for setting the direct connection based on the information, transmitting a response indicating whether the assist request is accepted, receiving a release request for releasing a connections between the dockee and the docking center and between the docking center and the peripheral device, terminating control of the peripheral device, receiving a joining request for requesting to join a second group, transmitting a response for joining the second group as a client, the dockee being set as a second group owner, and operating as the group owner of the first group and the client of the second group.
Abstract:
A method and device to implement virtual docking host functionality in a wireless network is disclosed. The method manages at least one docking environment device within a wireless network. Further, the method discovers at least one docking environment and docks a dockee device to at least one docking environment device.
Abstract:
Provided is a method for playing multimedia contents in a first device of a communication system, the method including receiving a buffer storage capability of a second device from the second device, upon receiving a User Backward Seek (UIBC) command from the second device, determining a play position from which multimedia contents are to be played according to the UIBC command in a buffer of the second device based on the buffer storage capability of the second device, and notifying the second device of information about the determined play position.
Abstract:
Provided is a communication method using a group key for security of a wireless docking-based service, the communication method including grouping peripheral devices for each wireless docking-based service in association with the peripheral devices and generating a group key that is effective for a time being predetermined for each group and delivering the group key of the group to clients of the group.
Abstract:
The present disclosure relates to a pre-5th-Generation (5G) or 5G communication system to be provided for supporting higher data rates Beyond 4th-Generation (4G) communication system such as Long Term Evolution (LTE). Embodiments herein provide an oneM2M system. The oneM2M system includes an interworking proxy entity (IPE) and a oneM2M client. The IPE is configured to discover resources hosted by a RESTful server. The RESTful server is external to the oneM2M system. The IPE is configured to create an application entity (AE) resource associated with the RESTful server. The IPE is configured to create one or more containers with labels indicating information of resources associated with the RESTful server. Each container includes a content instance (CI) resource having a representation of mapped resources associated with the RESTful server. Further, the IPE is configured to send service subscription information update about the discovered RESTful server to a middle node. The oneM2M client is configured to send a request to the IPE to discover the container from the IPE using the labels.
Abstract:
A method for providing contents in a communication system according to an embodiment of the present invention comprises the steps of: discovering multiple synchronization devices which will communicate with a source device and identifying device types of the discovered multiple synchronization devices; generating multiple contents for the multiple synchronization devices on the basis of the identified device types; and providing each of the generated multiple contents to a corresponding synchronization device, wherein each of the device types is determined according to at least one among the capacity, type, and function of the device.