An automated vehicle control distributed network is operative to detect an emergency vehicle on a roadway; create a prediction model for the emergency vehicle; and send control commands to vehicles within a distance in front of the emergency vehicle to clear a path for the emergency vehicle based on the prediction model.
G08G 1/0967 - Systèmes impliquant la transmission d'informations pour les grands axes de circulation, p. ex. conditions météorologiques, limites de vitesse
G08G 1/04 - Détection du mouvement du trafic pour le comptage ou la commande utilisant des détecteurs optiques ou ultrasonores
G08G 1/052 - Détection du mouvement du trafic pour le comptage ou la commande avec des dispositions pour déterminer la vitesse ou l'excès de vitesse
2.
Automated Vehicle Control Distributed Network Apparatuses and Methods
An automated vehicle control distributed network node, that includes at least two modems for communicating with two neighboring roadside nodes on the same side of the roadway; at least one antenna for communicating with vehicles via a wireless connection; pattern recognition processing operative to detect patterns using image data from a plurality of high speed, high resolution video cameras that include night vision; vehicle prediction processing, operatively coupled to the pattern recognition processing, operative to predict vehicle location, velocity and direction using the pattern recognition processing; and a vehicle controller, operatively coupled to the vehicle prediction processing to receive vehicle prediction data, and to the at least one antenna, operative to send acceleration, deceleration and steering control signals to a plurality of vehicles in response to vehicle prediction data received from the vehicle prediction processing.
An automated vehicle control distributed network node, that includes at least two modems for communicating with two neighboring roadside nodes on the same side of the roadway; at least one antenna for communicating with vehicles via a wireless connection; pattern recognition processing operative to detect patterns using image data from a plurality of high speed, high resolution video cameras that include night vision; vehicle prediction processing, operatively coupled to the pattern recognition processing, operative to predict vehicle location, velocity and direction using the pattern recognition processing; and a vehicle controller, operatively coupled to the vehicle prediction processing to receive vehicle prediction data, and to the at least one antenna, operative to send acceleration, deceleration and steering control signals to a plurality of vehicles in response to vehicle prediction data received from the vehicle prediction processing.
An automated vehicle control distributed network node, that includes at least two modems for communicating with two neighboring roadside nodes on the same side of the roadway; at least one antenna for communicating with vehicles via a wireless connection; pattern recognition processing operative to detect patterns using image data from a plurality of high speed, high resolution video cameras that include night vision; vehicle prediction processing, operatively coupled to the pattern recognition processing, operative to predict vehicle location, velocity and direction using the pattern recognition processing; and a vehicle controller, operatively coupled to the vehicle prediction processing to receive vehicle prediction data, and to the at least one antenna, operative to send acceleration, deceleration and steering control signals to a plurality of vehicles in response to vehicle prediction data received from the vehicle prediction processing.
H04W 4/40 - Services spécialement adaptés à des environnements, à des situations ou à des fins spécifiques pour les véhicules, p. ex. communication véhicule-piétons
H04W 36/32 - La resélection étant déclenchée par des paramètres spécifiques par des données de localisation ou de mobilité, p. ex. des données de vitesse
5.
AUTOMATED VEHICLE CONTROL DISTRIBUTED NETWORK APPARATUSES AND METHODS
An automated vehicle control distributed network node, that includes at least two modems for communicating with two neighboring roadside nodes on the same side of the roadway; at least one antenna for communicating with vehicles via a wireless connection; pattern recognition processing operative to detect patterns using image data from a plurality of high speed, high resolution video cameras that include night vision; vehicle prediction processing, operatively coupled to the pattern recognition processing, operative to predict vehicle location, velocity and direction using the pattern recognition processing; and a vehicle controller, operatively coupled to the vehicle prediction processing to receive vehicle prediction data, and to the at least one antenna, operative to send acceleration, deceleration and steering control signals to a plurality of vehicles in response to vehicle prediction data received from the vehicle prediction processing.
G05D 1/02 - Commande de la position ou du cap par référence à un système à deux dimensions
H04W 4/40 - Services spécialement adaptés à des environnements, à des situations ou à des fins spécifiques pour les véhicules, p. ex. communication véhicule-piétons
H04W 36/32 - La resélection étant déclenchée par des paramètres spécifiques par des données de localisation ou de mobilité, p. ex. des données de vitesse
6.
Automated vehicle control distributed network apparatuses and methods
An automated vehicle control distributed network node, that includes at least two modems for communicating with two neighboring roadside nodes on the same side of the roadway; at least one antenna for communicating with vehicles via a wireless connection; pattern recognition processing operative to detect patterns using image data from a plurality of high speed, high resolution video cameras that include night vision; vehicle prediction processing, operatively coupled to the pattern recognition processing, operative to predict vehicle location, velocity and direction using the pattern recognition processing; and a vehicle controller, operatively coupled to the vehicle prediction processing to receive vehicle prediction data, and to the at least one antenna, operative to send acceleration, deceleration and steering control signals to a plurality of vehicles in response to vehicle prediction data received from the vehicle prediction processing.
A method, system and machine-readable storage medium for providing fault tolerance in a distributed mobile architecture (dMA) system. The method includes receiving a message or failing to receive the message within a predetermined time relating to a first dMA gateway (dMAG) at a second dMAG. It is determined whether the first dMAG is not operational or is otherwise offline based on the received message or the failure to receive the message. One or more dMA nodes associated with the first dMAG are notified in order to request connections to an external system via the second dMAG. The external system is also notified to request connections to one or more dMA nodes associated with the first dMAG via the second dMAG.
A method includes detecting a failure condition relating to a first distributed mobile architecture (dMA) gateway (dMAG) at a dMAG management system. The dMAG management system is in communication with at least the first dMAG, a second dMAG, and dMA nodes. The method also includes determining that the first dMAG is offline based on the failure condition, selecting the second dMAG, sending a first notification from the dMAG management system to the second dMAG, and sending a second notification from the dMAG management system to an external system. The external system is configured to connect calls to a mobile station via the first dMAG. The first notification instructs the second dMAG to take over operations from the first dMAG. The second notification indicates that the external system is to connect subsequent calls to the mobile station via the second dMAG.
Methods and systems for controlling wireless communications are provided. A method includes sending, from a mobile base station mimicking system, signals that mimic a first base station of a wireless communication system. The method also includes selectively routing, at the mobile base station mimicking system, communications associated with at least one communication device, wherein selectively routing the communications comprises forwarding a first communication associated with the at least one communication device and blocking a second communication associated with the at least one communication device.
H04L 29/06 - Commande de la communication; Traitement de la communication caractérisés par un protocole
H04W 48/04 - Restriction d'accès effectuée dans des conditions spécifiques sur la base des données de localisation ou de mobilité de l'utilisateur ou du terminal, p. ex. du sens ou de la vitesse de déplacement
H04W 40/02 - Sélection d'itinéraire ou de voie de communication, p. ex. routage basé sur l'énergie disponible ou le chemin le plus court
F42C 21/00 - Vérification des fuséesTest des fusées
Methods and systems to control wireless communications are provided. A particular network communication system includes a plurality of distributed mobile architecture gateways. Each distributed mobile architecture gateway includes at least one interface to communicate with one or more legacy communication networks and each distributed mobile architecture gateway also includes a data network connection. The data network connection is adapted to connect to at least one other distributed mobile architecture gateway of the plurality of distributed mobile architecture gateways. Additionally, the system includes a private Internet Protocol (IP) network connecting each distributed mobile architecture gateway to a respective set of distributed mobile architecture (DMA) servers. Each DMA server is coupled to a respective base transceiver station, and the private IP network also connects each DMA server in a particular set of DMA servers to the DMA servers in the other sets of DMA servers.
A method includes transmitting communications information from a first DMA gateway of a DMA gateway communication network to a second DMA gateway of the DMA gateway communication network. The communications information is associated with a communication network that is accessible to the first DMA gateway. The method includes receiving a communication from the second DMA gateway via the DMA gateway communication network. The communication network and the DMA communication network are different. The communication is associated with a destination device that is indicated by the communications information to be served by the communication network that is accessible to the first DMA gateway. The method includes routing the communication to the destination device.
A method includes receiving a first call to a mobile station at a first distributed mobile architecture gateway (dMAG). The mobile station is accessible via the first dMAG. The method includes determining a routing path for the first call based on register data associated with the mobile station. The routing path includes one or more components of the first dMAG, a first distributed mobile architecture (dMA) node, and a private Internet Protocol (IP) network. The method includes sending one or more command messages to reserve the one or more components of the first dMAG, the first dMA node, and the private IP network and receiving one or more confirmation messages indicating that the one or more components are reserved to route the first call. The method further includes connecting the first call to the mobile station via the one or more reserved components.
H04W 8/02 - Traitement de données de mobilité, p. ex. enregistrement d'informations dans un registre de localisation nominal [HLR Home Location Register] ou de visiteurs [VLR Visitor Location Register]Transfert de données de mobilité, p. ex. entre HLR, VLR ou réseaux externes
H04W 8/04 - Enregistrement dans un registre de localisation nominal ou un serveur d'abonnés locaux [HSS Home Subscriber Server]
H04W 8/06 - Enregistrement dans un registre de localisation de réseau-serveur, un VLR ou un serveur de mobilité des utilisateurs
A system is disclosed that includes a first multiple International Mobile Subscriber Identity (IMSI) location register (MILR) module. The first MILR module includes user information associated with a plurality of mobile subscribers. For each of the mobile subscribers, the user information includes a first IMSI number and a first Mobile Directory Number (MDN). The first IMSI number and the first MDN are associated with a first country. The user information includes a second IMSI number and a second MDN. The second IMSI number and the second MDN are associated with a second country. The user information also includes active location information for each of the mobile subscribers.
H04W 8/02 - Traitement de données de mobilité, p. ex. enregistrement d'informations dans un registre de localisation nominal [HLR Home Location Register] ou de visiteurs [VLR Visitor Location Register]Transfert de données de mobilité, p. ex. entre HLR, VLR ou réseaux externes
H04W 8/18 - Traitement de données utilisateur ou abonné, p. ex. services faisant l'objet d'un abonnement, préférences utilisateur ou profils utilisateurTransfert de données utilisateur ou abonné
14.
SYSTEM, METHOD, AND DEVICE FOR ROUTING CALLS USING A DISTRIBUTED MOBILE ARCHITECTURE
Methods and devices for routing communications between distributed management architecture (DMA) servers using DMA gateways are disclosed. Communications information is received at a first DMA gateway for a communications network accessible by a second DMA gateway. The communications information indicates one or more devices that are accessible by one of a DMA server and a legacy communications network. The first DMA gateway and the second DMA gateway participate in a DMA gateway communications network. The communications information is stored in a home DMA register of the first DMA gateway. A communication is received at the first DMA gateway for a target device indicated by the communications information to be served by the second DMA gateway. The communication is routed from the first DMA gateway to the target device by relaying the communication from the first DMA gateway to the second DMA gateway via the DMA gateway communications network.
A method of routing calls includes receiving a first call at a first distributed mobile architecture gateway (dMAG) from a legacy communication network. A routing path for the first call is determined based on register data associated with a mobile station, the routing path including at least one component of each of the first dMAG, a first dMA node, and a private Internet Protocol (IP) network. One or more command messages are sent to reserve the components of the first dMAG, the first dMA node, and the private Internet Protocol (IP) network. One or more confirmation messages are received indicating that components of the first dMAG, the first dMA node, and the private IP network are reserved to route the first call. The first call is connected to the mobile station via the reserved components of the first dMAG, the first dMA node, and the private IP network.
H04L 12/66 - Dispositions pour la connexion entre des réseaux ayant différents types de systèmes de commutation, p. ex. passerelles
H04L 12/28 - Réseaux de données à commutation caractérisés par la configuration des liaisons, p. ex. réseaux locaux [LAN Local Area Networks] ou réseaux étendus [WAN Wide Area Networks]
16.
SYSTEM AND METHOD TO CONTROL WIRELESS COMMUNICATIONS
Methods and systems to control wireless communications are provided. A particular network communication system includes a plurality of distributed mobile architecture gateways. Each distributed mobile architecture gateway includes at least one interface to communicate with one or more legacy communication networks and each distributed mobile architecture gateway also includes a data network connection. The data network connection is adapted to connect to at least one other distributed mobile architecture gateway of the plurality of distributed mobile architecture gateways. Additionally, the system includes a private Internet Protocol (IP) network connecting each distributed mobile architecture gateway to a respective set of distributed mobile architecture (DMA) servers. Each DMA server is coupled to a respective base transceiver station, and the private IP network also connects each DMA server in a particular set of DMA servers to the DMA servers in the other sets of DMA servers.
A method, system and machine-readable storage medium for providing fault tolerance in a distributed mobile architecture (dMA) system. The method includes receiving a message or failing to receive the message within a predetermined time relating to a first dMA gateway (dMAG) at a second dMAG. It is determined whether the first dMAG is not operational or is otherwise offline based on the received message or the failure to receive the message. One or more dMA nodes associated with the first dMAG are notified in order to request connections to an external system via the second dMAG. The external system is also notified to request connections to one or more dMA nodes associated with the first dMAG via the second dMAG.
H04L 12/66 - Dispositions pour la connexion entre des réseaux ayant différents types de systèmes de commutation, p. ex. passerelles
H04L 12/28 - Réseaux de données à commutation caractérisés par la configuration des liaisons, p. ex. réseaux locaux [LAN Local Area Networks] ou réseaux étendus [WAN Wide Area Networks]
18.
SYSTEM, METHOD, AND DEVICE TO CONTROL WIRELESS COMMUNICATIONS
Methods and systems for controlling wireless communications are provided. A method of controlling wireless communications includes acquiring base station data at a mobile base station mimicking system. The base station data is associated with a targeted base station of a wireless communication system. The method may include mimicking signals of a neighboring base station of the targeted base station based on the acquired base station data. Further, the method may include transmitting a ban signal associated with the targeted base station. The ban signal is based on the acquired base station data and may induce at least one communication device to stop communicating with the targeted base station. In addition, the method includes controlling communications associated with the at least one communication device via the mobile base station mimicking system.
09 - Appareils et instruments scientifiques et électriques
38 - Services de télécommunications
42 - Services scientifiques, technologiques et industriels, recherche et conception
Produits et services
Communications systems, namely, computers and computer software for the activation, operation and administration of wireless communications services including automated routing and call distribution; gateways for use in wireless communications systems; wireless handheld communication devices to transmit, receive, or otherwise access communications networks; network systems comprised of radio transmitters and receivers, antennas, switches, signal transfer point servers, signal control point servers, service resource platform servers, call routing servers and related software for automatic call distribution and routing Telecommunications and information technology services, namely, local and long distance transmission of voice, data, images, audio, video, and information via telephone, telegraphic, cable, satellite, and radio transmissions, telecommunications services, namely, local and long distance transmission of voice data, image data, audio data, and video data; telecommunications services, namely, personal communications services between mobile telecommunications devices; leasing telecommunications equipment, including mobile telecommunications devices, for the activation and operation of wireless telecommunications services; telecommunications consultation services Leasing computers and computer software for the activation and operation of wireless telecommunications services; computer network design for others, namely, the design and construction of computer networks for activating, operating and administering wireless telecommunications services, wireless broadband local, wide area and Internet networks; technical support, namely, monitoring of telecommunications network systems and wireless telecommunications services
09 - Appareils et instruments scientifiques et électriques
42 - Services scientifiques, technologiques et industriels, recherche et conception
Produits et services
Communications systems, namely, transportable mobile computers and computer software for the activation, operation and administration of wireless communications services for military use, including automated routing and call distribution, authentication, dynamic configuration and redundancy; transportable mobile gateways for use in wireless communications systems for military use; wireless handheld communication devices for military use to transmit, receive, or otherwise access communications networks; transportable mobile network systems comprised of radio transmitters and receivers, antennas, switches, signal transfer point servers, signal control point servers, service resource platform servers, call routing servers and related software for automatic call distribution and routing, authentication, dynamic configuration and redundancy for military use [ Computer network design for others, namely, the design of transportable mobile computer networks for activating, operating and administering wireless telecommunications services for military use including wireless broadband, local, wide area and Internet networks; technical support, namely, monitoring of telecommunications network systems and wireless telecommunications services for military use ]