Abstract:
It is provided a method for transferring and managing data packages between a first portable secure element, SB, server implemented in a portable device (100, 200) and a second portable SB server implemented in an embedded UICC, eUICC (120, 240), comprised in a user's device (110, 230) which is local to the portable device (100, 200), the first and second portable SB severs comprising Subscription Manager, SM, functionalities, the method comprises the first and the second portable SB servers establishing off-line communication using local data transport protocols in a secured mode, the first or the second portable SB server implementing first transfer functionalities (140) for performing secure transfer of the data packages and the first or the second portable SB server implementing second transfer functionalities (140) for performing end-to-end securing of the data packages after the secure transfer of the data packages.
Abstract:
Dispositivo conector óptico (10) de montaje en campo exterior, comprendiendo un conjunto férula-fibra (1) y un soporte en la parte posterior del conector óptico (10) con una ranura para anclar el conjunto férula-fibra (1)con los restantes componentes: -un conjunto conector reforzado (3) para proveer protección ambiental al conjunto férula-fibra (1), -una anilla de crimpado (4) para obturar el conjunto conector reforzado (3), -una bota del conector (5) sobre la anilla de crimpado (4) y el conjunto conector reforzado (3), para la obturación del conector óptico (10)y su protección ante cargas laterales; el conjunto conector reforzado (3), la anilla de crimpado (4) y la bota del conector (5) teniendo un diámetro interior para ser atravesados por el cable de fibra óptica (11) sin rasgar su cubierta.
Abstract:
The method, sending by a Diameter Client node a request message to a Diameter Server node through a Diameter Orchestration Agent node implementing a policy enforcement and routing decisions on the request and progressing it through a set of selected auxiliary Diameter Agent nodes intervening in said processing, the progressing involving the request passing from the Orchestration node to each of the selected auxiliary nodes by returning in each case to the Orchestration node before progressing it to the next auxiliary node and to be sent finally to said Diameter Server. The system is adapted to implement the method. The Diameter agent node is adapted to progress a request to a set of selected auxiliary nodes, to pass the request and to further receive it before progressing it to the next auxiliary node and to further send said requested message to a Diameter Server node.
Abstract:
A Method and a System for lossless compression and decompression of baseband digital signals in distributed LTE-Advanced (LTE-A) radio access networks The method comprising at least one Remote Radio Head with a plurality of transmit and receive antennas connected to at least one Baseband Unit through a wired connection denoted as fronthaul link. In order to perform said lossless compression and decompression of a plurality of LTE-A baseband digital signals the method uses two additional processing nodes hosted at both ends of said fronthaul link in both an uplink direction and a downlink direction; transforms for both of said uplink and downlink directions said plurality of LTE-A baseband digital signals into frequency domain; and sends through said fronthaul link information corresponding to a set of resource blocks occupied with said plurality of LTE-A baseband digital signals. The system of the invention is adapted to implement the method of the invention.
Abstract:
A Method for connecting programs and/or applications to network interfaces The method comprising in order to assign priorities to specific programs or applications, so that they are granted maximum priority when accessing to the internet/intranet and enable the application of connectivity selection policies on a "per application or program" basis: (a) redirecting said computerized system administrator said request for connectivity of said at least one program and/or application to a virtual network adapter; (b) distinguishing said virtual network adapter said network data traffic belonging to said at least one program and/or application; (c) said virtual network adapter applying a routing policy identifying said at least one program and/or application; (d) obtaining for said routing policy a specific network adapter, and (e) dynamically connecting said computerized system administrator said at least one program and/or application to said at least one network interface through said specific network adapter.
Abstract:
The method comprising at least one user device provided with at least four antennas, wirelessly connected to a serving base station having between one and four transmit antennas and suffering interferences from at least one interfering base station having between one and four transmit antennas, establishing a data transmission link among a plurality of antennas, and: applying a time shift delay between said serving base station and said at least one interfering base station in order to avoid collision between Cell Reference Signals (CRS) of serving and interfering base stations when said data transmission is established; and introducing changes on the physical layer for PDSCH transmission and reception aimed at achieving inter-layer interference cancellation, said changes introduced comprising the introduction of a pattern of transmission gaps at symbols (l) and subcarrier indices (k) of interfering cell's CRS signals, which will be exploited by said at least one user device for effective interference cancellation.
Abstract:
The method comprising the steps of: a) acquiring with a capturing module, traffic data from an input line and forwarding said traffic data to a detection module; and b) receiving, said detection module, said traffic data for performing a Deep Packet Inspection analysis of said traffic data received to perform a detection thereof, wherein said step a) comprises, acquiring said traffic data from at least two of said input lines and classifying it such that said forwarding to said detection module is performed in a chronological order for those packets belonging to a specific flow of said traffic data which come from said at least two input lines. The system of the invention is arranged to implement the method of the invention.
Abstract:
In the method of the invention said services include Information Technology, or IT, and scheduled services and said converged networks implement Policy Control and Charging Rules Function, or PCRF and advanced Path Computation Element, or PCE+ in a 3rd Generation Partnership Project architecture. It is characterised in that it comprises performing a communication procedure between a PCRF module and a PCE+ module by means of an adaptor entity in order to provide, said PCE+ module, information to said PCRF module, said PCRF module using said information to at least allocate network and/or IT resources demanded when provisioning said services.
Abstract:
The invention relates to a physical exercise correctness calculation method and system. In the method of the invention, said physical exercise is performed by a user connected or close to electronic sensing devices which collect measurements of different variables related to performing said physical exercise. The method is characterized in that it comprises supervising said exercise remotely by means of performing the following actions: processing at least part of said variables in a computation device to which said electronic sensing devices are connected; obtaining said correctness calculation depending on the distance measured between at least one of said variables and previously established correctness values; and transmitting at least said correctness calculation to remote equipment for supervision. The system is provided for implementing the method of the invention.
Abstract:
A computer-implemented method and system to manage user profiles regarding user preferences towards a content. In the computer-implemented method of the invention said content is previously rated by a group of users via computing devices, and it is characterised in that it comprises generating adaptive catalogues for a user by means of Item Response Theory models applied to said content and generating a user profile for said user by at least presenting items of said adaptive catalogues to said user, through a user computing device, and analysing scores given by said user to said items via said user computing device. The system of the invention is arranged to implement the method of the invention.