Abstract:
The invention concerns a method wherein the mobile node (1) obtains respective temporary addresses with several access routers (3) of a telecommunication system detected by the mobile mode. It also collects data concerning the characteristics of said access routers, and transmits to a manager temporary addresses (6) of a mobility service provider a request for address selection (REQ) containing part at least of the collected data. The manager (6) processes said request to select one of the temporary addresses for the mobile node.
Abstract:
A method is provided for decoding a data stream representing an object with at least three dimensions, associated with a basic mesh including of an assembly of facets defined by an assembly of vertices and ridges, and with wavelet coefficients corresponding to the local modifications of the basic mesh, indexed each by a vertex of the basic mesh. For at least some wavelet coefficients of the data stream, the method includes the following steps: determining an orientation of an edge bearing the vertex indexing the wavelet coefficients, called an orientation of the wavelet coefficient; and determining, based on the orientation, information for locating in the basic mesh at least one child of the wavelet coefficient, distinct locating rules being associated with each orientation, so as to extract a data stream of at least some of the wavelet coefficients, associated each with locating information.
Abstract:
A method and apparatus are provided for processing a request to instigate communication, received by a routing device associated with a plurality of terminals. The request relates to a communication to be established between a sender device of the request and at least one of the terminals. The method includes a step of comparing communication capabilities of said sender device with respective communication capabilities of one or more terminals, called addressee terminals, which are able to establish said communication, so as to identify at least one terminal having capabilities making it possible to establish with the sender device a communication of maximum quality. A call notification is transmitted to at least one of the addressee terminals, which is suitable for triggering on the addressee terminal a call presentation prompting a user to use, by priority, one of the terminals identified during the comparison step to establish the communication.
Abstract:
A method is provided for coding an image sequence, including splitting a current image into blocks of standard size, termed macroblocks. For at least one current macroblock of the current image, the method further includes: constructing at least one block of greater size than the current macroblock, termed a large block, which includes the current macroblock and at least one neighbor macroblock in the current image, taking account of characteristics of the current image; coding the large block, delivering base coding information, making it possible to reconstruct a base layer of said current image, and for at least one large block, determining enhancement information associated with at least one macroblock present in the large block.
Abstract:
A data packet transmission network comprises a stream of packets of data sent by a first terminal passes in transit through at least one network equipment with which there is associated a stream measurement unit; wherein the first terminal and the measurement unit are connected to a collection unit. The measurement method comprising the following steps: the first terminal sends a specific stream of packets, each having a different determined size, the sizes being such that in a set of r packets, r being a positive integer less than or equal to the number of packets of the stream, there are not any two subsets of the set of r packets comprising the same number of packets and having the same cumulative total size; the measurement unit analyzes at least one packet and at most r packets of the stream passing in transit through the network equipment.
Abstract:
A system and method are provided for parsing a digital video sequence, having a series of frames, into at least one segment including frames having a same camera motion quality category, selected from a predetermined list of possible camera motion quality categories. The method includes obtaining, for each of the frames, at least three pieces of information representative of the motion in the frame. The information includes: translational motion information, representative of translational motion in the frame; rotational motion information, representative of rotational motion in the frame; and scale motion information, representative of scale motion in the frame. The method further includes processing the at least three pieces of information representative of the motion in the frame, to attribute one of the camera motion quality categories to each of the frames.
Abstract:
A method for coding a multi-channel audio signal representing a sound scene comprising a plurality of sound sources is provided. This method comprises decomposing the multi-channel signal into frequency bands and, per frequency band, obtaining directivity information per sound source of the sound scene, the information being representative of the spatial distribution of the sound source in the sound scene, of selecting a set of sound sources of the sound scene constituting principal sources, of matrixing the selected principal sources to obtain a sum signal with a reduced number of channels and, of coding the directivity information and of forming a binary stream comprising the coded directivity information, the binary stream being transmittable in parallel with the sum signal. A decoding method is also provided that is able to decode the sum signal and the directivity information to obtain a multi-channel signal, to an adapted coder and an adapted decoder.
Abstract:
A method of regulating traffic in a telecommunications network, including a first step of detecting a fault affecting a node or a link of the network. The second step below is then executed: the nodes located immediately upstream of said node/link that experienced the fault forward to the latter the registration requests sent by users of the network, to the extent that the throughput of said registration requests is below a predetermined clipping threshold associated with the registration requests; if the throughput of registration requests exceeds said clipping threshold, the excess requests are not forwarded to the node/link that experienced the fault, and the network sends to each user that sent a request refused in this way, a response prompting that user to observe a time-out period, said response specifying the recommended duration of said time-out period. Application in particular to IP networks using SIP signaling protocols.
Abstract:
A method is provided for managing a transfer of a data stream received by a mobile terminal of a first network to a second network, the terminal having subscribed to at least one multicasting group receiving the data stream, and being connected to the first network by way of an access router for the first network, termed the first router. The method comprises: detecting, by an access router for the second network, termed the second router, an arrival of the terminal in the second network; obtaining, by the second router, information relating to at least one multicasting group to which the terminal has subscribed, on the basis of a reading of a subscription table; and receiving the data stream by the second router, on the basis of the information obtained, and retransmission to the terminal.
Abstract:
The present invention relates to obtaining information (I5) relating to a local environment of a terminal (1) of a local network and to providing (E9) the terminal, via an application server (9), with at least one service adapted both as a function of the information (I7) relating to an access session of the terminal and the information (I5) relating to a local environment of the terminal. According to the invention, the local environment information of the terminal (I5) is obtained from an autoconfiguration server (5) via a session server (7) and it is provided to the application server (9).