FR3052628A1 - - Google Patents
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- FR3052628A1 FR3052628A1 FR1755256A FR1755256A FR3052628A1 FR 3052628 A1 FR3052628 A1 FR 3052628A1 FR 1755256 A FR1755256 A FR 1755256A FR 1755256 A FR1755256 A FR 1755256A FR 3052628 A1 FR3052628 A1 FR 3052628A1
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/02—Services making use of location information
- H04W4/023—Services making use of location information using mutual or relative location information between multiple location based services [LBS] targets or of distance thresholds
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/18—Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
- H04W8/183—Processing at user equipment or user record carrier
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network-specific arrangements or communication protocols supporting networked applications
- H04L67/30—Network-specific arrangements or communication protocols supporting networked applications involving profiles
- H04L67/306—User profiles
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. TPC [Transmission Power Control], power saving or power classes
- H04W52/02—Power saving arrangements
- H04W52/0209—Power saving arrangements in terminal devices
- H04W52/0261—Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level
- H04W52/0274—Power saving arrangements in terminal devices managing power supply demand, e.g. depending on battery level by switching on or off the equipment or parts thereof
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. TPC [Transmission Power Control], power saving or power classes
- H04W52/02—Power saving arrangements
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access, e.g. scheduled or random access
- H04W74/02—Hybrid access techniques
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W52/00—Power management, e.g. TPC [Transmission Power Control], power saving or power classes
- H04W52/02—Power saving arrangements
- H04W52/0209—Power saving arrangements in terminal devices
- H04W52/0225—Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal
- H04W52/0235—Power saving arrangements in terminal devices using monitoring of external events, e.g. the presence of a signal where the received signal is a power saving command
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W40/00—Communication routing or communication path finding
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B7/00—Radio transmission systems, i.e. using radiation field
- H04B7/24—Radio transmission systems, i.e. using radiation field for communication between two or more posts
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- H—ELECTRICITY
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- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
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- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L41/00—Arrangements for maintenance or administration or management of packet switching networks
- H04L41/08—Configuration management of network or network elements
- H04L41/0803—Configuration setting of network or network elements
- H04L41/0823—Configuration optimization
- H04L41/0836—Configuration optimization to enhance reliability, e.g. reduce downtime
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- H04W36/00—Hand-off or reselection arrangements
- H04W36/02—Buffering or recovering information during reselection ; Modification of the traffic flow during hand-off
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- G—PHYSICS
- G06—COMPUTING; CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F16/00—Information retrieval; Database structures therefor; File system structures therefor
- G06F16/90—Details of database functions independent of the retrieved data types
- G06F16/95—Retrieval from the web
- G06F16/953—Querying, e.g. by the use of web search engines
- G06F16/9535—Search customisation based on user profiles and personalisation
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- G—PHYSICS
- G06—COMPUTING; CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F16/00—Information retrieval; Database structures therefor; File system structures therefor
- G06F16/90—Details of database functions independent of the retrieved data types
- G06F16/95—Retrieval from the web
- G06F16/953—Querying, e.g. by the use of web search engines
- G06F16/9537—Spatial or temporal dependent retrieval, e.g. spatiotemporal queries
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- H04B17/00—Monitoring; Testing
- H04B17/20—Monitoring; Testing of receivers
- H04B17/24—Monitoring; Testing of receivers with feedback of measurements to the transmitter
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- H04B7/022—Site diversity; Macro-diversity
- H04B7/024—Co-operative use of antennas of several sites, e.g. in co-ordinated multipoint or co-operative multiple-input multiple-output [MIMO] systems
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- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0615—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
- H04B7/0619—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
- H04B7/0621—Feedback content
- H04B7/0626—Channel coefficients, e.g. channel state information [CSI]
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- H04B7/00—Radio transmission systems, i.e. using radiation field
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- H04B7/04—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas
- H04B7/06—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station
- H04B7/0613—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission
- H04B7/0615—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal
- H04B7/0619—Diversity systems; Multi-antenna system, i.e. transmission or reception using multiple antennas using two or more spaced independent antennas at the transmitting station using simultaneous transmission of weighted versions of same signal using feedback from receiving side
- H04B7/0636—Feedback format
- H04B7/0639—Using selective indices, e.g. of a codebook, e.g. pre-distortion matrix index [PMI] or for beam selection
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- H04B7/00—Radio transmission systems, i.e. using radiation field
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- H04B7/2621—Radio transmission systems, i.e. using radiation field for communication between two or more posts at least one of which is mobile using frequency division multiple access [FDMA]
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- H04J—MULTIPLEX COMMUNICATION
- H04J11/00—Orthogonal multiplex systems, e.g. using WALSH codes
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- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L1/00—Arrangements for detecting or preventing errors in the information received
- H04L1/12—Arrangements for detecting or preventing errors in the information received by using return channel
- H04L1/16—Arrangements for detecting or preventing errors in the information received by using return channel in which the return channel carries supervisory signals, e.g. repetition request signals
- H04L1/18—Automatic repetition systems, e.g. van Duuren system ; ARQ protocols
- H04L1/1829—Arrangements specific to the receiver end
- H04L1/1861—Physical mapping arrangements
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- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L12/00—Data switching networks
- H04L12/66—Arrangements for connecting between networks having differing types of switching systems, e.g. gateways
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- H04L29/00—Arrangements, apparatus, circuits or systems, not covered by a single one of groups H04L1/00 - H04L27/00
- H04L29/02—Communication control; Communication processing
- H04L29/06—Communication control; Communication processing characterised by a protocol
- H04L29/08—Transmission control procedure, e.g. data link level control procedure
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- H04L41/0659—Network fault recovery by isolating the faulty entity
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- H04L41/082—Changing of configuration due to updating or upgrading of network functionality, e.g. firmware
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- H04L43/08—Monitoring based on specific metrics
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- H04N21/25—Management operations performed by the server for facilitating the content distribution or administrating data related to end-users or client devices, e.g. end-user or client device authentication, learning user preferences for recommending movies
- H04N21/258—Client or end-user data management, e.g. managing client capabilities, user preferences or demographics, processing of multiple end-users preferences to derive collaborative data
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Abstract
Description
SIGNALISATION D'INFORMATIONS D'ASSISTANCE D'EQUIPEMENT UTILISATEUR DANS UN RESEAU SANS FIL
DOMAINE
La présente invention concerne les réseaux sans fil et, plus particulièrement, un appareil et des procédés pour une signalisation améliorée d'informations d'assistance d'équipement utilisateur (UE) dans un réseau sans fil.
ARRIERE-PLAN
Dans les réseaux sans fil, par exemple des réseaux d'évolution à long terme (LTE) et LTE avancé (LTE-A) , des dispositifs de communication mobile, également appelés équipements utilisateurs ou UE, fonctionnent à l'intérieur de régions de couverture cellulaire ou de cellules. Une ou plusieurs stations de base, également appelées émetteurs-récepteurs de nœud B évolué (eNB), sont typiquement associées à chaque cellule. Les eNB communiquent avec les UE, et gèrent ces derniers, en surveillant l'état d'un UE et en réglant des options et des paramètres de configuration associés aux UE et/ou au réseau pour accroître l'efficacité de fonctionnement.
Lorsque le trafic réseau augmente, de nouvelles améliorations de système sont mises en œuvre dans les réseaux LTE/LTE-A. Avec ces améliorations, de nouvelles formes d'informations d'état d'UE et d'indicateurs de préférence de fonctionnement peuvent avoir besoin d'être transmis entre l'UE et l'eNB. Cependant, ce transfert d'informations supplémentaires peut avoir un impact négatif sur le surdébit de signalisation et/ou consommer une bande passante supplémentaire, qui est une ressource limitée.
BREVE DESCRIPTION DES DESSINS
Des caractéristiques et des avantages des modes de réalisation de l'objet revendiqué apparaîtront au fur et à mesure de la description détaillée suivante et en référence aux dessins, sur lesquels des chiffres identiques représentent des parties identiques, et dans lesquels : - la Figure 1 illustre un schéma de système de niveau supérieur d'un mode de réalisation à titre d'exemple selon la présente invention ; - la Figure 2 illustre un schéma fonctionnel d'un mode de réalisation à titre d'exemple selon la présente invention ; - la Figure 3 illustre une structure de message associée à un mode de réalisation à titre d'exemple selon la présente invention ; - la Figure 4 illustre un diagramme de flux de message d'un mode de réalisation à titre d'exemple selon la présente invention ; - la Figure 5 illustre une structure de données associée à un mode de réalisation à titre d'exemple selon la présente invention ; - la Figure 6 illustre une structure de données associée à un autre mode de réalisation à titre d'exemple selon la présente invention ; - la Figure 7 illustre une structure de données associée à un autre mode de réalisation à titre d'exemple selon la présente invention ; - la Figure 8 illustre une structure de données associée à un autre mode de réalisation à titre d'exemple selon la présente invention ; - la Figure 9 illustre une structure de données associée à un autre mode de réalisation à titre d'exemple selon la présente invention ; la Figure 10 illustre un organigramme d'opérations d'un mode de réalisation à titre d'exemple selon la présente invention ; et - la Figure 11 illustre une plate-forme d'un mode de réalisation à titre d'exemple selon la présente invention.
Bien que la description détaillée suivante se fasse en référence aux modes de réalisation illustrés, de nombreuses alternatives, modifications et variations de ceux-ci apparaîtront à l'homme du métier.
DESCRIPTION DETAILLEE
De manière générale, la présente divulgation concerne un appareil et des procédés pour une signalisation améliorée d'informations d'assistance d'équipement utilisateur (UE) dans un réseau sans fil, par exemple un réseau LTE ou LTE-A. L'UE (par exemple, le dispositif mobile) peut être configuré pour générer un indicateur de préférence de puissance (power preference indicator - PPI). Le PPI peut être associé à un compromis entre une consommation d'énergie et une latence d'UE. L'UE peut également être configuré pour générer des informations d'état de mobilité (MSI). Les MSI peuvent être associées à un taux de transfert intercellulaire lorscpjte l'UE est dans un état connecté, et à un taux de resélection de cellule, lorsque l'UE est dans un état au repos. Le PPI et/ou les MSI peuvent être transmis à un nœud B évolué (eNB), sous la forme d'un message d'informations d'assistance d'UE qui permet au réseau de configurer des paramètres de commande de ressources radio (RRC) pour améliorer la performance de système/réseau.
Dans certains modes de réalisation, le message d'informations d'assistance d'UE peut être transmis sous la forme d'un signal d'élément de commande (CE) de couche de commande d'accès au support (MAC) sur un canal partagé en liaison montante (UL-SCH). Dans certains modes de réalisation, le message d'informations d'assistance d'UE peut être transmis sous la forme d'un message de commande de ressources radio (RRC) sur un canal de commande dédié en liaison montante (UL-DCCH).
La Figure 1 illustre un schéma de système de niveau supérieur 100 d'un mode de réalisation à titre d'exemple selon la présente divulgation. Un réseau sans fil 108 est représenté comprenant un eNB 104 et un UE 102. L ' eNB 104 peut desservir la zone de couverture cellulaire dans laquelle l'UE 102 fonctionne. L'UE 102 peut être configuré pour transmettre un message d'informations d'assistance 106 à 1'eNB 104, comme cela sera expliqué plus en détail ci-dessous. Les informations d'assistance peuvent comprendre un PPI et des MSI associés à l'UE 102, ce qui permet à 1 ' eNB 104 de configurer des paramètres RRC pour améliorer la performance de système/réseau. Dans certains modes de réalisation, les informations d'assistance peuvent comprendre en outre une mesure ou une estimation de temps entre arrivées moyen de paquets, de trafic complémentaire par rapport à un trafic actif, de niveau de puissance de batterie et/ou toute autre information appropriée.
Le réseau sans fil 108 peut se conformer à, ou sinon être compatible avec, la norme de réseau sans fil d'évolution à long terme (LTE) et/ou LTE avancé (LTE-A) de projet de partenariat de troisième génération (3GPP), comprenant des versions actuelles, antérieures et futures de cette norme. Alors qu'il s'agit d'un exemple simplifié, à des fins d'illustration, il sera apprécié qu'en pratique le réseau peut comprendre un nombre quelconque d'eNB et d'UE déployés dans n'importe quelle configuration.
La Figure 2 illustre un schéma fonctionnel 200 d'un mode de réalisation à titre d'exemple selon la présente divulgation. L'UE 102 est représenté comprenant un circuit récepteur 202, un circuit de traitement 204, un circuit émetteur 206, un module de génération de signal 208 et un circuit temporisateur/compteur 210.
Le circuit de traitement 204 peut être configuré pour déterminer un état de préférence de puissance pour l'UE 102. L'état de préférence de puissance peut correspondre à une valeur quelconque parmi une plage de valeurs d'un état de consommation de puissance relativement faible à un état de consommation de puissance relativement élevée. L'état de préférence de puissance plus faible peut offrir l'avantage d'une durée de vie de batterie accrue, mais au détriment de certaines dégradations de la performance de dispositif, telles que, par exemple, une latence de communication accrue. Inversement, un état de préférence de puissance plus élevée peut conférer une performance de dispositif accrue en échange d'une durée de vie de batterie réduite. Un circuit de traitement 204 peut générer un PPI pour indiquer l'état de préférence de puissance souhaité pour l'UE 102. Dans certains modes de réalisation, le PPI peut représenter ou correspondre à l'état de préférence de puissance souhaité réel ou peut indiquer le souhait d'un état par défaut. Dans d'autres modes de réalisation, le PPI peut représenter un changement d'état (par exemple, à la hausse ou à la baisse) de l'état courant vers l'une ou l'autre des extrémités de la plage d'états.
Le circuit de traitement 204 peut également être configuré pour déterminer un état de mobilité de l'UE 102. Dans certains modes de réalisation, l'état de mobilité peut représenter le nombre de transferts intercellulaires de l'UE par unité de temps (par exemple, un tavix de transfert intercellulaire) pendant une période de temps dans laquelle l'UE est dans un état connecté. Dans certains modes de réalisation, l'état de mobilité peut représenter le nombre de resélections de cellules de l'UE par unité de temps (par exemple, un taux de resélection de cellule) pendant une période de temps dans laquelle l'UE est dans un état au repos. Des MSI peuvent être générées pour représenter ou quantifier l'état de mobilité au sein d'une plage de valeurs d'une mobilité relativement faible (ou aucune mobilité) à une mobilité relativement élevée. Le circuit de traitement 204 peut en outre être configuré pour générer un message d'informations d'assistance (ou un élément d'informations) comprenant le PPI et les MSI.
Dans certains modes de réalisation, le module de génération de signal 208 peut être configuré pour générer un signal CE de couche MAC sur la base du message d'informations d'assistance, comme cela sera décrit plus en détail ci-dessous. Dans ces modes de réalisation, le circuit émetteur 206 peut être configuré pour transmettre le signal à un eNB 104 sur un UL-SCH.
Dans certains modes de réalisation, le module de génération de signal 208 peut être configuré pour générer un message RRC sur la base de l'élément d'informations d'assistance, comme cela sera décrit plus en détail ci-dessous. Dans ces modes de réalisation, le circuit émetteur 2 06 peut être configuré pour transmettre le message RRC à un eNB 104 sur un UL-DCCH.
Le circuit récepteur 202 peut être configuré pour recevoir un message en provenance de l'eNB 104 en réponse à la transmission des informations d'assistance. La réponse peut être un message RRCConnectionReconfiguration (Reconfiguration de connexion RRC), qui comprend des paramètres de configuration de réception discontinue (DRX) mis à jour qui peuvent être basés sur le PPI et les MSI de l'UE 102. Les paramètres DRX mis à jour peuvent permettre un fonctionnement d'UE plus efficace, tel qu'une conservation accrue de l'énergie de la batterie, ce qui affecte la latence.
Dans certains modes de réalisation, la transmission des informations d'assistance à l'eNB 104 peut être répétée ou retransmise jusqu'à la réception d'une réponse en provenance de l'eNB. Le circuit temporisateur/compteur 210 peut être configuré pour imposer une période de temps minimale ou un retard minimal entre des retransmissions consécutives du message d'assistance. Cette période de temps minimale entre des retransmissions peut être réglée sur ^Ine valeur de seuil pour réduire un surdébit de signalisation et augmenter l'efficacité de bande passante entre l'UE 102 et l'eNB 104. Dans certains modes de réalisation, des temporisateurs distincts peuvent être utilisés pour une retransmission du PPI et une retransmission des MSI. Le circuit temporisateur/compteur 210 peut en outre être configuré pour limiter le nombre total de telles retransmissions, car l'eNB peut choisir de ne pas répondre aux informations d'assistance. Les valeurs de seuil de retard de temporisateur et de seuil de retransmission maximal peuvent être réglées par l'eNB et fournies à l'UE. Dans certains modes de réalisation, ces valeurs peuvent être définies en tant que valeur entière commune à chaque cellule, valeur entière définie pour chaque connexion RRC ou valeur entière définie pour chaque évènement de déclencheur d'informations d'assistance (par exemple, une transition d'UE hors d'un état au repos ou un changement des réglages de préférence de puissance d'UE).
La Figure 3 illustre une structure de message 300 associée à un mode de réalisation à titre d'exemple selon la présente divulgation. Un signal CE de couche MAC peut comprendre un en-tête CE MAC et une charge utile facultative. Un format d'en-tête CE MAC existant 302 est représenté qui comprend un identificateur de canal logique (LCID) en bits 3-7. Les bits 0 et 1 sont réservés et le bit 2 est un bit d'extension utilisé pour indiquer la présence d'un en-tête de longueur étendue (à l'aide d'octets supplémentaires) . Les LCID dans la plage allant de 01011 à 11000 inclus sont réservés, de telle sorte qu'une ou plusieurs de ces valeurs peuvent être utilisées dans un nouveau format d'en-tête CE MAC pour indiquer que le signal CE MAC est utilisé pour transférer des informations d'assistance (AI). Par exemple, une valeur de LCID de 10111 peut indiquer que le nouvel en-tête CE MAC 304 comprend des MSI en bit 0. Selon un autre exemple, une valeur de LCID de 11000 peut indiquer que le nouvel en-tête CE MAC 306 comprend un PPI en bit 0. Selon encore un autre exemple, une autre valeur de LCID choisie parmi la plage réservée peut indiquer que le nouvel en-tête CE MAC 308 comprend à la fois des MSI en bit 0 et un PPI en bit 1. Selon encore un autre exemple, une autre valeur de LCID choisie parmi la plage réservée peut indiquer que le nouvel en-tête CE MAC 310 est accompagné d'une charge utile à octet unique 312, 314 ou 316. Les charges utiles peuvent comprendre un bit de MSI, un bit de PPI ou les deux. Dans certains modes de réalisation, la charge utile peut permettre au PPI et/ou aux MSI d'être représentés par 2 bits ou davantage (non représentés) pour fournir des niveairx supplémentaires au sein de leur plage respective de valeurs.
La Figure 4 illustre un schéma de flux de message 400 d'un mode de réalisation à titre d'exemple selon la présente divulgation. Le schéma de flux de message 400 donne un exemple de traitement d'informations d'assistance d'UE, entre l'UE 102 et l'eNB 104, à travers des échanges de message RRC. Les formats de message RRC seront décrits plus en détail ci-dessous. Une connexion initiale 402 est établie entre l'UE et l'eNB par envoi d'une RRCConnectionRequest (demande de connexion RRC) (ou une RRCConnectionReestablishmentRequest (demande de rétablissement de connexion RRC)) en provenance de l'UE 102. L'eNB répond alors avec un message RRCConnectionSetup (Configuration de connexion RRC) (ou RRCConnectionReestablishment (Rétablissement de connexion RRC)), et l'UE acquitte la réalisation de la configuration avec un message RRCConnectionSetupComplete (Configuration de connexion RRC achevée) (ou RRCConnectionReestablishmentComplete (Rétablissement de connexion RRC achevée)). Plus tard, une transmission d'assistance d'UE est déclenchée 404. Ceci peut aboutir, par exemple, à une transition d'UE hors d'un état au repos à un état connecté ou par un changement des réglages de préférence de puissance d'UE. Les informations d'assistance d'UE, sous la forme d'un message RRC 406, sont envoyées à l'eNB. L'eNB peut répondre avec un message RRCConnectionReconfiguration (Reconfiguration de connexion RRC) qui fournit un réglage de configuration DRX mise à jour à l'UE, et l'UE peut acquitter avec un message RRCConnectionReconfigurationComplete (Reconfiguration de connexion RRC achevée).
Les Figures 5 à 9 illustrent des structures de données et/ou des champs de message qui peuvent se conformer à, ou sinon être compatibles avec, la norme de réseau sans fil LTE et/ou LTE-A 3GPP, comprenant des versions actuelles, antérieures et futures de cette norme.
La Figure 5 illustre une structure de données 500 associée à un mode de réalisation à titre d'exemple selon la présente divulgation. L'UE 102 peut envoyer les informations d'assistance à 1'eNB 104 sous forme d'une inclusion dans n'importe lequel d'un nombre de différents types de messages RRC qui sont transmis sur un canal UL-DCCH, qui se conforme au type de message UL-DCCH 510. Dans certains modes de réalisation, les types de message RRC existants disponibles comprennent RRCConnectionReestablishmentComplete 520, RRCConnectionSetupComplete 530 et UEInformationResponse-r9 (Réponse d'informations d'UE-r9) 540. Dans certains modes de réalisation, un nouveau type de message RRC, UEAssistancelnfoTransfer-rll (Transfert d'informations d'assistance d'UE-rll) 550, peut être fourni. Le message UEAssistanceInfoTransfer-rll 550 peut être fourni sous la forme d'un élément d'informations de choix supplémentaire, par exemple c2 560, dans la structure de message UL-DCCH.
La Figure 6 illustre une structure de données 600 associée à un autre mode de réalisation à titre d'exemple selon la présente divulgation. Le nouveau type de message UEAssistanceInfoTransfer-rll 550 est conçu pour comprendre un élément d'informations UE-AssistanceInfo-rll 610, qui comprend à son tour un élément d'informations power-Preference-Indication (indication de préférence de puissance) 620 et un élément d'informations mobility-State-
Indication (indication d'état de mobilité) 630. Le message UEAssistancelnfoTransfer-rll 550 peut utiliser une porteuse radio de signalisation 1 et un mode de mode d'acquittement (AM) de commande de liaison radio (RLC) sur un canal logique DCCH.
La Figure 7 illustre une structure de données 700 associée à un autre mode de réalisation à titre d'exemple selon la présente divulgation. Le type de message UEInformationResponse-r9 540 est représenté pour être modifié pour comprendre le nouvel élément d'informations UEInformationResponse-vllxx-lEs 710, qui comprend à son tour l'élément d'informations UE-Assistancelnfo-rll 610 décrit précédemment.
La Figure 8 illustre une structure de données 800 associée à un autre mode de réalisation à titre d'exemple selon la présente divulgation. Le type de message RRCConnectionReestablishmentComplete 520 est représenté pour être modifié pour comprendre le nouvel élément d'informations RRCConnectionReestablishmentComplete-vllxx-lEs 810, qui comprend à son tour l'élément d'informations UE-AssistanceInfo-rll 610 décrit précédemment. Ceci peut fournir un mécanisme de signalisation plus efficace pour transmettre des informations d'assistance de l'UE 102 à l'eNB 104.
La Figure 9 illustre une structure de données 900 associée à un autre mode de réalisation à titre d'exemple selon la présente divulgation. Le type de message RRCConnectionSetupComplete 530 est représenté pour être modifié pour comprendre le nouvel élément d'informations RRCConnectionSetupComplete-vllxx-IEs 910, qui comprend à son tour l'élément d'informations UE-Assistancelnfo-rll 610 décrit précédemment. Ceci peut fournir un mécanisme de signalisation plus efficace pour transmettre des informations d'assistance de l'UE 102 à l'eNB 104.
La Figure 10 illustre un organigramme d'opérations 1000 d'un mode de réalisation à titre d'exemple selon la présente divulgation. A l'opération 1010, une préférence de puissance est déterminée pour un UE. A l'opération 1020, un état de mobilité est déterminé pour l'UE. L'état de mobilité représente un taux de transfert intercellulaire associé à un état connecté d'UE et un taux de resélection de cellule associé à un état au repos d'UE. A l'opération 1030, un message d'informations d'assistance d'UE est généré. Le message comprend la préférence de puissance et l'état de mobilité. A l'opération 1040, le message d'informations d'assistance d'UE est transmis à un eNB d'un réseau sans fil associé à l'UE. Le message peut être transmis en tant que signal CE MAC sur un canal UL-SCH ou en tant que message RRC sur un canal UL-DCCH.
La Figure 11 illustre une configuration de plateforme 1100 d'un mode de réalisation à titre d'exemple selon la présente invention. La plate-forme 1110 peut être un dispositif de communication mobile, tel que, par exemple, un dispositif d'UE (un téléphone intelligent), une tablette, un dispositif informatique d'ordinateur portable ou tout autre dispositif configuré pour transmettre ou recevoir des signaux sans fil. Dans certains modes de réalisation, la plate-forme 1110 peut comprendre un processeur 1120, une mémoire 1130, un système d'entrée/sortie (E/S) 1140, un dispositif d'affichage/clavier ou un autre type d'interface utilisateur (lU) 1170 tel que, par exemple, un écran tactile. La plate-forme 1110 peut comprendre en outre un module de traitement en bande de base 1150 et un module de traitement RF 1160, ainsi qu'une ou plusieurs antennes 1180 qui peuvent faire partie d'un système d'antennes entrées multiples sorties multiples (ΜΙΜΟ). N'importe quel nombre de plateformes 1100 peuvent transmettre ou recevoir des signaux à travers un module RF 1160 et des antennes 1180 sur un réseau sans fil qui peut être un réseau sans fil LTE ou LTE-A.
Les modes de réalisation des procédés décrits ici peuvent être mis en œuvre dans un système qui comprend un ou plusieurs supports de stockage ayant des instructions stockées sur ceux-ci, individuellement ou en combinaison, qui, lorsqu'elles sont exécutées par un ou plusieurs processeurs, réalisent les procédés. Ici, le processeur peut comprendre, par exemple, une unité centrale (UC) de système (par exemple, un cœur de processeur) et/ou un circuit programmable. Ainsi, il est prévu que des opérations, selon les procédés décrits ici, puissent être distribuées sur une pluralité de dispositifs physiques, tels que des structures de traitement, à plusieurs emplacements physiques différents. De plus, il est prévu que les opérations de procédé puissent être réalisées individuellement ou en sous-combinaison, comme il sera compris par l'homme du métier. Ainsi, toutes les opérations de chacun des organigrammes n'ont pas besoin d'être réalisées, et la présente divulgation vise expressément à ce que toutes les sous-combinaisons de telles opérations soient autorisées, comme il sera compris par l'homme du métier.
Le support de stockage peut comprendre tout type de support tangible, par exemple, tout type de disque comprenant des disquettes, des disques optiques, des disques compacts à mémoire morte (CD-ROM), des disques compacts réinscriptibles (CD-RW), des disques numériques polyvalents (DVD) et des disques magnéto-optiques, des dispositifs semi-conducteurs tels que des mémoires mortes (ROM) , des mémoires vives (RAM) telles que des RAM dynamiques et statiques, des mémoires mortes programmables et effaçables (EPROM), des mémoires mortes programmables et effaçables électriquement (EEPROM), des mémoires flash, des cartes magnétiques ou optiques ou tout type de support approprié pour stocker des instructions électroniques.
Un « circuit », tel qu'utilisé dans tout mode de réalisation ici, peut comprendre, par exemple, seul ou en combinaison, un circuit câblé, un circuit programmable, un circuit de machine à états et/ou un micrologiciel qui stocke des instructions exécutées par un circuit programmable. Une application peut être intégrée sous la forme de code ou d'instructions, qui peuvent être exécutés sur un circuit programmable tel qu'un processeur hôte ou iin autre circuit programmable. Un module, tel qu'utilisé dans tout mode de réalisation ici, peut prendre la forme de circuit. Le circuit peut prendre la forme de circuit intégré, tel qu'une puce de circuit intégré.
Ainsi, la présente divulgation concerne un appareil et des procédés pour une signalisation améliorée d'informations d'assistance d'équipement utilisateur (UE) dans un réseau sans fil.
Selon un aspect, l'invention concerne un UE. L'UE peut comprendre un circuit de traitement configuré pour générer un message d'informations d'assistance comprenant un PPI et des MSI, le PPI et les MSI étant associés à l'UE. L'UE de cet exemple peut également comprendre un module de génération de signal configuré pour générer un signal CE de couche MAC, le signal CE MAC comprenant le message d'informations d'assistance. L'UE de cet exemple peut comprendre en outre un circuit émetteur configuré pour transmettre le signal CE MAC à un eNB d'un réseau sans fil associé à l'UE, le signal CE MAC étant transmis sur un UL-SCH.
Un autre UE à titre d'exemple comprend les composants précédents et comprend en outre un circuit récepteur configuré pour recevoir un message RRCConnectionReconfiguration en provenance de l'eNB, en réponse à la transmission de signal CE MAC, le message RRCConnectionReconfiguration comprenant des paramètres de configuration DRX.
Un autre UE à titre d'exemple comprend les composants précédents et comprend en outre un circuit temporisateur configuré pour retarder une transmission du signal CE MAC, de telle sorte que la période de temps entre des transmissions consécutives du signal CE MAC excède un seuil de temps écoulé minimal.
Un autre UE à titre d'exemple comprend les composants précédents et comprend en outre un circuit compteur configuré pour limiter le nombre de transmissions consécutives du signal CE MAC à une valeur de seuil maximale, le circuit compteur se réinitialisant en réponse à la réception d'une réponse en provenance de l'eNB, la réponse étant en réponse au signal CE MAC transmis.
Un autre UE à titre d'exemple comprend les composants précédents et le PPI représente un état de préférence de puissance d'UE, l'état étant un état de configuration de puissance plus faible ou un état de configuration de latence plus faible.
Un autre UE à titre d'exemple comprend les composants précédents et le PPI représente un changement d'état de préférence de puissance d'UE, le changement d'état étant entre un état de configuration de puissance plus faible et un état de configuration de latence plus faible.
Un autre UE à titre d'exemple comprend les composants précédents et les MSI représentent un taux de transfert intercellulaire associé à un état connecté d'UE et un taux de resélection de cellule associé à un état au repos d'UE.
Un autre UE à titre d'exemple comprend les composants précédents et comprend en outre une mémoire couplée au circuit de traitement, un système d'E/S couplé au circuit de traitement et un dispositif d'affichage à écran tactile couplé au système d'E/S.
Selon un autre aspect, l'invention concerne un UE. L'UE peut comprendre un circuit de traitement configuré pour générer un élément d'informations d'assistance d'UE comprenant un PPI et des MSI, le PPI et les MSI étant associés à l'UE. L'UE de cet exemple peut également comprendre un module de génération de signal configuré pour générer un message RRC, le message RRC comprenant l'élément d'informations d'assistance d'UE. L'UE de cet exemple peut comprendre en outre un circuit émetteur configuré pour transmettre le message RRC à un eNB d'un réseau sans fil associé à l'UE, le message RRC étant transmis sur un UL-DCCH.
Un autre UE à titre d'exemple comprend les composants précédents et comprend en outre un circuit récepteur configuré pour recevoir un message RRCConnectionReconfiguration en provenance de l'eNB, en réponse à la transmission de message RRC, le message RRCConnectionreconfiguration comprenant des paramètres de configuration DRX.
Un autre UE à titre d'exemple comprend les composants précédents et le message RRC est un message RRCConnectionReestablishmentComplete, un message RRCConnectionSetupComplete et/ou un message UEInfoResponse-r9.
Un autre UE à titre d'exemple comprend les composants précédents et le message RRC est un message UEAssistancelnfoTransfer-rll.
Un autre UE à titre d'exemple comprend les composants précédents et comprend en outre un circuit temporisateur configuré pour retarder une transmission du message RRC, de telle sorte que la période de temps entre des transmissions consécutives du message RRC excède un seuil de temps écoulé minimal.
Un autre UE à titre d'exemple comprend les composants précédents et comprend en outre un circuit compteur configuré pour limiter le nombre de transmissions consécutives du message RRC à une valeur de seuil maximale, le circuit compteur se réinitialisant en réponse à la réception d'une réponse en provenance de l'eNB, la réponse étant en réponse au message RRC transmis.
Un autre UE à titre d'exemple comprend les composants précédents et le PPI représente un état de préférence de puissance d'UE, l'état étant un état de configuration de puissance plus faible ou un état de configuration de latence plus faible.
Un autre UE à titre d'exemple comprend les composants précédents et le PPI représente un changement d'état de préférence de puissance d'UE, le changement d'état étant entre un état de configuration de puissance plus faible et un état de configuration de latence plus faible.
Un autre UE à titre d'exemple comprend les
composants précédents et les MSI représentent un taux de transfert intercellulaire associé à un état connecté d'UE et un taux de resélection de cellule associé à un état au repos d'UE.
Un autre UE à titre d'exemple comprend les composants précédents et comprend en outre une mémoire couplée au circuit de traitement, un système d'E/S couplé au circuit de traitement et un dispositif d'affichage à écran tactile couplé au système d'E/S.
Selon un autre aspect, l'invention concerne un procédé. Le procédé peut comprendre la détermination d'une préférence de puissance pour un UE. Le procédé de cet exemple peut également comprendre la détermination d'un état de mobilité pour l'UE, l'état de mobilité représentant un taux de transfert intercellulaire associé à un état connecté d'UE et un taux de resélection de cellule associé à un état au repos d'UE. Le procédé de cet exemple peut comprendre en outre la génération d'un message d'informations d'assistance d'UE, le message comprenant la préférence de puissance et l'état de mobilité. Le procédé de cet exemple peut comprendre en outre la transmission du message d'informations d'assistance d'UE à un eNB d'un réseau sans fil associé à l'UE.
Un autre procédé à titre d'exemple comprend les opérations précédentes et comprend en outre la transmission du message d'informations d'assistance d'UE, sous la forme d'un signal CE de couche MAC, sur un UL-SCH.
Un autre procédé à titre d'exemple comprend les opérations précédentes et comprend en outre la transmission du message d'informations d'assistance d'UE sous la forme d'un message RRC sur un UL-DCCH.
Un autre procédé à titre d'exemple comprend les opérations précédentes et le message RRC est un message RRCConnectionReestablishmentComplete, un message RRCConnectionSetupComplete, un message UEInformationResponse-r9 et/ou un message UEAssistancelnfoTransfer-rll.
Un autre procédé à titre d'exemple comprend les opérations précédentes et comprend en outre la réception d'un message RRCConnectionReconfiguration en provenance de l'eNB, en réponse à la transmission du message d'informations d'assistance d'UE, le message RRCConnectionReconfiguration comprenant des paramètres de configuration DRX.
Un autre procédé à titre d'exemple comprend les opérations précédentes et la préférence de puissance est un état de configuration de puissance plus faible ou un état de configuration de latence plus faible.
Les termes et expressions qui ont été utilisés ici sont utilisés comme termes de description, mais non limitatifs, et il n'existe aucune intention, dans l'utilisation de tels termes et expressions, d'exclure tout équivalent des caractéristiques présentées et décrites (ou des parties de celles-ci), et il est reconnu que diverses modifications sont possibles dans la portée des revendications. Par conséquent, les revendications sont entendues couvrir tous ces équivalents. Diverses caractéristiques, divers aspects et modes de réalisation ont été décrits ici. Les caractéristiques, les aspects et les modes de réalisation sont susceptibles d'être combinés entre eiuc, ainsi que de siibir une variation et une modification, comme il sera compris par l'homme du métier. La présente divulgation doit, par conséquent, être considérée comme englobant de telles combinaisons, variations et modifications.
Claims (15)
- REVENDICATIONS1 - Equipement utilisateur (UE) comprenant ; un circuit de traitement configuré pour générer un élément d'informations d'assistance d'UE comprenant un indicateur de préférence de puissance (PPI), ledit PPI spécifiant un état de consommation de puissance souhaité pour ledit UE à utiliser dans un mode connecté avec un réseau sans fil associé audit UE ; un module de génération de signal configuré pour générer un message de commande de ressources radio (RRC), ledit message RRC comprenant ledit élément d'informations d'assistance d'UE ; et un circuit émetteur configuré pour transmettre ledit message RRC à un nœud B évolué (eNB) du réseau sans fil sur un canal de commande dédié en liaison montante (UL-DCCH).
- 2 - Equipement utilisateur (UE) selon la revendication 2, comprenant en outre un circuit récepteur configuré pour recevoir un message de reconfiguration de connexion RRC (RRCConnectionReconfiguration) en provenance dudit eNB en réponse à ladite transmission de message RRC, ledit message RRCConnectionReconfiguration comprenant des paramètres de configuration de réception discontinue (DRX).
- 3 - Equipement utilisateur (UE) selon la revendication 1 ou 2, comprenant en outre un circuit temporisateur pour retarder la transmission dudit message RRC de telle sorte que la période de temps entre des transmissions consécutives dudit message RRC excède un seuil de temps écoulé minimal.
- 4 - Equipement utilisateur (UE) selon la revendication 1 ou 2, dans lequel ledit message RRC est un message de rétablissement de connexion RRC achevée (rrcConnectionReestablishmentComplete), un message de configuration de connexion RRC achevée (rrcConnectionSetupComplete) et/ou un message de réponse d'informations d'UE-r9 (ueInformationResponse-r9).
- 5 - Equipement utilisateur (UE) selon la revendication 1 ou 2, dans lequel ledit message RRC est un message de transfert d'informations d'assistance d'UE-rll (UEAssistancelnfoTransfer-rll).
- 6 - Equipement utilisateur (UE) selon la revendication 1 ou 2, comprenant en outre un circuit compteur configuré pour limiter le nombre de transmissions consécutives dudit message RRC à une valeur de seuil maximale, ledit circuit compteur se réinitialisant en réponse à la réception d'une réponse en provenance dudit eNB, ladite réponse étant en réponse audit message RRC transmis.
- 7 - Equipement utilisateur (UE) selon la revendication 1 ou 2, dans lequel ledit élément d'informations d'assistance comprend en outre des informations d'état de mobilité (MSI) associées audit UE, lesdites MSI représentant un taux de transfert intercellulaire associé à un état connecté d'UE et un débit de resélection de cellule associé à un état au repos d'UE.
- 8 - Equipement utilisateur (UE) selon l'une quelconque de la revendication 1 ou 2, comprenant en outre une mémoire couplée audit circuit de traitement, un système d'entrée/sortie (E/S) couplé audit circuit de traitement et un dispositif d'affichage à écran tactile couplé audit système d'E/S,
- 9 - Procédé comprenant : générer, avec un équipement utilisateur (UE), un élément d'informations d'assistance d'UE comprenant un indicateur de préférence de puissance (PPI), ledit PPI spécifiant un état de consommation de puissance souhaité pour ledit UE à utiliser dans un mode connecté avec un réseau sans fil associé audit UE ; générer un message de commande de ressources radio (RRC) comprenant ledit élément d'informations d'assistance d'UE ; et transmettre, sur un canal de commande dédié en liaison montante (UL-DCCH), ledit message RRC à un nœud B évolué (eNB) du réseau sans fil.
- 10 - Procédé selon la revendication 9, comprenant en outre, avec ledit équipement utilisateur, recevoir un message de reconfiguration de connexion RRC (RRCConnectionReconfiguration) en provenance dudit eNB en réponse à ladite transmission de message RRC, ledit message RRCConnectionReconfiguration comprenant des paramètres de configuration de réception discontinue (DRX).
- 11 - Procédé selon la revendication 9 ou 10, dans lequel la transmission dudit message RRC est retardée d'un seuil de retard de temporisateur de telle sorte qu'une période de temps entre des transmissions consécutives dudit message d'informations d'assistance d'UE excède un seuil de temps écoulé minimal.
- 12 - Procédé selon la revendication 9 ou 10, dans lequel ledit message RRC est un message de rétablissement de connexion RRC achevée (rrcConnectionReestablishmentComplete), un message de configuration de connexion RRC achevée (rrcConnectionSetupComplete), un message de réponse d'informations d'UE-r9 (uelnformationResponse-r9) et/ou un message de transfert d'informations d'assistance d'UE-rll (UEAssistancelnfoTransfer-rll).
- 13 - Procédé selon la revendication 12, dans lequel ledit message RRC est un message UEAssistanceInfoTransfer-rll.
- 14 - Procédé selon la revendication 9 ou 10, comprenant en outre : limiter un nombre consécutif de transmissions dudit message RRC à une valeur de seuil maximale d'un compteur ; et réinitialiser ledit compteur en réponse à une réponse en provenance dudit eNB en réponse audit message RRC transmis.
- 15 - Procédé selon la revendication 9 ou 10, dans lequel ledit élément d'informations d'assistance comprend en outre des informations d'état de mobilité (MSI) associées audit UE, lesdites MSI représentant un taux de transfert intercellulaire associé à un état connecté d'UE et un taux de resélection de cellule associé à un état au repos d'UE.
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FR1357735A FR2996402B1 (fr) | 2012-08-03 | 2013-08-02 | Signalisation d'informations d'assistance d'equipement utilisateur dans un reseau sans fil |
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FR1357654A Active FR2994361B1 (fr) | 2012-08-03 | 2013-08-01 | Etablissement de politiques de routage basees sur application dans un equipement utilisateur multimode |
FR1357735A Active FR2996402B1 (fr) | 2012-08-03 | 2013-08-02 | Signalisation d'informations d'assistance d'equipement utilisateur dans un reseau sans fil |
FR1357753A Active FR2994365B1 (fr) | 2012-08-03 | 2013-08-02 | Rapport d'informations d'etat de canal periodiques pour systemes multipoint coordonnees (comp) |
FR1655312A Active FR3037470B1 (fr) | 2012-08-03 | 2016-06-09 | Reglage de couverture dans des reseaux e-utra |
FR1751060A Active FR3047629B1 (fr) | 2012-08-03 | 2017-02-08 | Rapport d'informations d'etat de canal periodiques pour systemes multipoint coordonnees (comp) |
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FR1357687A Withdrawn FR2994357A1 (fr) | 2012-08-03 | 2013-08-01 | Titre non renseigne |
FR1357654A Active FR2994361B1 (fr) | 2012-08-03 | 2013-08-01 | Etablissement de politiques de routage basees sur application dans un equipement utilisateur multimode |
FR1357735A Active FR2996402B1 (fr) | 2012-08-03 | 2013-08-02 | Signalisation d'informations d'assistance d'equipement utilisateur dans un reseau sans fil |
FR1357753A Active FR2994365B1 (fr) | 2012-08-03 | 2013-08-02 | Rapport d'informations d'etat de canal periodiques pour systemes multipoint coordonnees (comp) |
FR1655312A Active FR3037470B1 (fr) | 2012-08-03 | 2016-06-09 | Reglage de couverture dans des reseaux e-utra |
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