Abstract:
A method and an apparatus for sharing a DLNA device are provided. Wherein, the method includes: establishing a data channel between a first DLNA gateway in a first DLNA network and a second DLNA gateway in a second DLNA network, wherein the DLNA gateway is a DLNA device having a DMC function and capable of accessing the Internet; adding, in the second DLNA gateway, a virtual DLNA device corresponding to a DLNA device in the first DLNA network; and a DLNA device in the second DLNA network performing remote control and/or remote play for the DLNA device in the first DLNA network through the virtual DLNA device. With the embodiments of the present invention, the problem in related technologies that DLNA sharing is only limited in a local range is solved, cross-network remote control and remote play are implemented, a sharing range of the DLNA network is expanded, and the user experience is improved.
Abstract:
A management terminal belonging to a first network periodically receives a registration request of information of a communication terminal belonging to a second network from a gateway device belonging to the second network. A control device belonging to the first network receives a communication request that a communication path be secured between the management terminal and the communication terminal from the management terminal. The control device includes the communication request in a latest response to a registration request received from the gateway device periodically and transmits the communication request to the gateway device. The gateway device permits an access to the communication terminal from the management terminal via a tunnel formed in response to the communication request.
Abstract:
A management terminal belonging to a first network periodically receives a registration request of information of a communication terminal belonging to a second network from a gateway device belonging to the second network. A control device belonging to the first network receives a communication request that a communication path be secured between the management terminal and the communication terminal from the management terminal. The control device includes the communication request in a latest response to a registration request received from the gateway device periodically and transmits the communication request to the gateway device. The gateway device permits an access to the communication terminal from the management terminal via a tunnel formed in response to the communication request.
Abstract:
Service providers can reduce multiple overlay networks by creating multiple logical service networks (LSNs) (302, 304, 306 and 308) on the same physical or optical fiber network. The LSNs (302, 304, 306 and 308) are established by the service provider and can be characterized by traffic type, bandwidth, delay, hop count, guaranteed information rates and/or restoration priorities. Once established, the LSNs (302, 304, 306 and 308) allow the service provider to deliver a variety of services to customers depending on customer's traffic specifications. Different traffic specifications are serviced on different LSNs (302, 304, 306 and 308), depending on each LSN's characteristics. Such LSNs (302, 304, 306 and 308), once built within a broadband network, can be customized and sold to multiple customers.