Abstract:
Method and system for transparent transfer of applications opened by an user in a first electronic device to a second electronic device, when the user changes from using the first device to using the second device. The state of each application to be transferred is obtained and sent to the second device through a communication server. The second device will restore the applications using the state data sent, so the applications will have in the second device the same running state and will be started in the same point as they were in the first device. It is not necessary that the first in the second device are connected to the communication network as the same time, i.e. the first device can be shut down after sending the data.
Abstract:
An optical connection device for a plastic optical fibre comprises a housing body (20) having a transceiver cavity (21) to receive an optical transceiver and an approaching channel formed about a longitudinal axis (15) to receive a plastic optical fibre (10) having a termination (11) adjacent to and aligned with said optical transceiver, a deformable clamp arranged around said plastic optical fibre (10), and a movable fixer element (40) configured to deform said deformable clamp to grip the plastic optical fibre (10) when said fixer element (40) is moved in a fixing direction with respect to said housing body (20). The fixer element (40) is moved in said fixing direction by a fixer spring member (70), and a releaser element (50) is arranged to move the fixer element (40) in an opposite releasing direction for releasing the deformable clamp when said releaser element (50) is manually depressed.
Abstract:
A multilayer communications network system for distributing multicast services and a method for such a distribution The system comprises a switched optical transport network layer, such as a WSON, and an electronic packet switched network layer, such as a IP/MPLS, where the switched optical transport network layer transports multicast flows services and the electronic packet switched network layer is a backup layer of a dynamic restoration mechanism for recovery against one or more failures occurring in the switched optical transport network layer. The method comprises transporting multicast flows services through the switched optical transport network layer, and performing a recovery against one or more failures occurring in the switched optical transport network layer by means of a dynamic restoring carried out by using said electronic packet switched network layer as a backup layer.
Abstract:
Comprises providing several widgets and linking them to exchange data there between for performing the execution of an application or functionality, the method further comprising providing a widget suite grouping said several widgets and having an external entry point associated to one of said several widgets.
Abstract:
The device is intended for monitoring end to end traffic and measuring quality delivered to customers in PONs, and comprises a passive monitoring module arranged inside an ONU of the PON for monitoring, by sniffing, the traffic handled by the ONU. 10 The method comprises internally monitoring the traffic circulating through an ONU by means of a passive monitoring module arranged therein, and measuring the quality of service form the traffic monitored.
Abstract:
Comprises a network termination device (1) at a home network, and, for providing broadband services to different end devices of said home network, networking and service capabilities which are implemented, virtualized, in separate elements (2, 3) of a broadband service provider network, and connected to said termination device (1), therefore providing a home gateway capabilities Virtualization system.
Abstract:
A method between an Internet Protocol layer and a transport layer in a communication network, wherein said communication network comprises a plurality of Internet Protocol/Multi-Protocol Label Switching nodes interconnected through a plurality of transport nodes, for allowing to establish end to end communication between said plurality of Internet Protocol/Multi-Protocol Label Switching nodes, by switching Internet Protocol traffic flows at said transport layer by means of at least one of said plurality of transport nodes, while keeping a hierarchical topology at the Internet Protocol/Multi-Protocol Label Switching control plane level which allows said Internet Protocol/Multi Protocol Label Switching nodes to keep a plurality of adjacencies between Internet Protocol/Multi-Protocol Label Switching nodes without scalability concerns.
Abstract:
A method and system for processing, transmitting and receiving images of a first set of users in a first location in communication with a second set of users in a second location. The method comprising: recording the first set of users with a 3D image acquisition set; separating the region of interest of each image from the background; obtaining depth information of each of the images applying an algorithm; separating all the images belonging to each user from the images of the other users; encoding a video signal containing the images of each user and its depth information, and sending it to a receiving module in the second location; sending control signals from a control module for managing a communication between a location of the second set of users and the location of the first set of users; decoding the encoded video signal received by the receiving module; composing one multiperspective 3D image of the first set of users containing all the images of each user; and showing the multiperspective image of the first set of users to the second set of users by mean of a display configured for 3D images.
Abstract:
The method comprises: - analysing one or more lower order layer trails considering its working and protecting routes; - obtaining, from said analysis, protected and unprotected working route segments, said unprotected segments defined as those not having protection in their protecting route or in higher-order layer paths that support the working route; - protecting, at said low order layer, said unprotected working route segments; and - generating a new protecting route including the protected working route segments found from said analysis and the ones protected after having been found as unprotected from said analysis. The device comprises the means to perform the method. The telecommunication network comprises the device. The invention refers to a method for maximizing protected segments in the lower-order path layer in Synchronous Digital Hierarchy (SDH) networks, minimizing the number of needed network resources.
Abstract:
A method and system for classifying traffic in a communication network. The method comprises the steps of: capturing IP packets (35) from said communication network; profiling said captured packets (36) by assigning one vector to each of said captured packets (36) according to a set of determined characteristics; calculating a set of classification values for each of said profiled packets (37) according to its IP header information and its specific protocol header information; rewriting said captured packets' (35) headers, including said calculated classification values on an IP header.