Patent classifications
H04L65/1023
Integrated core network of 5G and ATSC 3.0, control plane entity and method for transmitting multimedia content in control plane entity
Disclosed herein is an integrated core network of 5G and ATSC 3.0. The integrated core network of 5G and ATSC 3.0 includes multiple control plane entities and a user plane entity, and further includes an ATSC 3.0 gateway, thereby enabling multimedia content transmitted from the ATSC 3.0 gateway to the user plane entity under the control of the control entity to be delivered to user equipment over an ATSC 3.0 terrestrial network. The ATSC 3.0 gateway may include an ATSC 3.0 Control Plane Gateway (CP-GW) connected between the user plane entity and the multiple control plane entities and an ATSC 3.0 User Plane Gateway (UP-GW) connected to the user plane entity.
Integrated core network of 5G and ATSC 3.0, control plane entity and method for transmitting multimedia content in control plane entity
Disclosed herein is an integrated core network of 5G and ATSC 3.0. The integrated core network of 5G and ATSC 3.0 includes multiple control plane entities and a user plane entity, and further includes an ATSC 3.0 gateway, thereby enabling multimedia content transmitted from the ATSC 3.0 gateway to the user plane entity under the control of the control entity to be delivered to user equipment over an ATSC 3.0 terrestrial network. The ATSC 3.0 gateway may include an ATSC 3.0 Control Plane Gateway (CP-GW) connected between the user plane entity and the multiple control plane entities and an ATSC 3.0 User Plane Gateway (UP-GW) connected to the user plane entity.
Method and system for wireless video transmission via different interfaces
A method and system is provided for wireless transmission of audio/video information via different wired AV interface formats. A method and system for wireless communication of audio/video AV information between AV devices includes receiving audio/video (AV) information from a first AV module via a first wired AV interface in a first AV device, applying interface dependent processing to the AV information, and transmitting the processed AV information from a wireless transceiver over a wireless channel to a wireless receiver of a second AV device. The second AV device includes a second wired AV interface and the first AV interface is of a different type than the second interface device.
CALL FLOW SYSTEM AND METHOD FOR USE IN A LEGACY TELECOMMUNICATION SYSTEM
A method of operating a network server, such as a mobile application gateway, connect devices on a cellular or carrier network with individual networks, such as enterprise voice and data networks or residential networks. The effects of the present invention are far reaching in terms of transferring effective call control from the cellular network into the control of the individual network, such as the enterprise, and enabling new business models for the purchase of cellular service from a public cellular carrier by an enterprise.
CALL FLOW SYSTEM AND METHOD FOR USE IN A LEGACY TELECOMMUNICATION SYSTEM
A method of operating a network server, such as a mobile application gateway, connect devices on a cellular or carrier network with individual networks, such as enterprise voice and data networks or residential networks. The effects of the present invention are far reaching in terms of transferring effective call control from the cellular network into the control of the individual network, such as the enterprise, and enabling new business models for the purchase of cellular service from a public cellular carrier by an enterprise.
SYSTEM AND METHOD FOR DYNAMIC MANIPULATION OF CONTENT PRESENTATION
Aspects of the subject disclosure may include, for example, a machine-readable medium that has recorded executable instructions that, when executed by a processing system including a processor, facilitate performance of operations, including analyzing media content for video complexity and audio characteristics, thereby creating a content classification; determining a user context for a user observing the media content; determining a content manipulation based on the content classification, the user context, or a combination thereof; and presenting the media content by applying the content manipulation determined. Other embodiments are disclosed.
Trunking communication system, trunking server, access network and trunking communication method
The present disclosure relates to trunking communication systems, servers, access networks, and trunking communication methods. One example system includes a trunking management server and an access network. The trunking management server includes a trunking call service control module and a connected trunking call media gateway module. The trunking call media gateway module is configured to receive service data sent through the access network by a trunking UE, and forward the service data according to a communication type of the service data for implementing user plane communication of the trunking UE. The trunking call service control module is configured to receive a communication request sent through the access network by a trunking UE, and perform call control and bearer management on the trunking UE according to a communication type of the communication request for implementing control plane communication of the trunking UE.
Mediator for optimizing the transmission of media contents between a multimedia resource function and a plurality of terminals
A mediator for the transmission of media contents includes means for receiving video content requests from terminals when they request to take part in said video call conference, and for optimizing these requests, in order to avoid requesting any redundant video stream from a multimedia resource function, before forwarding the optimized requests to the multimedia resource function; means for implementing virtual conferees as a function of the video content requests from said terminals, for receiving the video streams that have been requested by the optimized request, from the multimedia resource function, and then forwarding the received video streams to the terminals that have requested them, in a broadcast way when a same video stream has been requested by several terminals, and means for commanding the telephony server to accept the implemented virtual conferees in the video call conference.
REAL-TIME CONTROL INTERFACE FOR BROADCAST OBJECT STREAMING
A device for encoding and sending media data includes a scheduler unit that schedules transmission of media data, a media encoder, and a transmitter that transmits according to a schedule formed by the scheduler unit. The scheduler unit sends a first set of data to the media encoder representing a number of media segments of the media data to be broadcast and a time at which the media data must be available for delivery at the transmitter of the media broadcast device. The media encoder sends a second set of data representing a first number of estimated encoding bytes for the media data to the media encoder. The scheduler unit sends, to the transmitter, the number of media segments including respective portions of the encoded media data at or before the time at which the media data must be available for delivery at the transmitter.
Network Architecture, Methods, and Devices for a Wireless Communications Network
- Stefan Parkvall ,
- Janne Peisa ,
- Gunnar Mildh ,
- Robert Baldemair ,
- Stefan Wager ,
- Jonas Kronander ,
- Karl Werner ,
- Richard Abrahamsson ,
- Ismet Aktas ,
- Peter Alriksson ,
- Junaid Ansari ,
- Shehzad Ali Ashraf ,
- Henrik Asplund ,
- Fredrik Athley ,
- Håkan Axelsson ,
- Joakim Axmon ,
- Johan Axnäs ,
- Kumar Balachandran ,
- Gunnar Bark ,
- Jan-Erik Berg ,
- Andreas Bergström ,
- Håkan Björkegren ,
- Nadia Brahmi ,
- Cagatay Capar ,
- Anders Carlsson ,
- Andreas Cedergren ,
- Mikael Coldrey ,
- Icaro L. J. da Silva ,
- Erik Dahlman ,
- Ali El Essaili ,
- Ulrika Engström ,
- Mårten Ericson ,
- Erik Eriksson ,
- Mikael Fallgren ,
- Rui Fan ,
- Gabor Fodor ,
- Pål Frenger ,
- Jonas FRIDÉN ,
- Jonas Fröberg Olsson ,
- Anders Furuskär ,
- Johan Furuskog ,
- Virgile Garcia ,
- Ather Gattami ,
- Fredrik GUNNARSSON ,
- Ulf Gustavsson ,
- Bo Hagerman ,
- Fredrik Harrysson ,
- Ning He ,
- Martin Hessler ,
- Kimmo Hiltunen ,
- Songnam Hong ,
- Dennis Hui ,
- Jörg Huschke ,
- Tim Irnich ,
- Sven Jacobsson ,
- Niklas Jaldén ,
- Simon Järmyr ,
- Zhiyuan Jiang ,
- Martin Johansson ,
- Niklas Johansson ,
- Du Ho Kang ,
- Eleftherios KARIPIDIS ,
- Patrik Karlsson ,
- Ali S. Khayrallah ,
- Caner Kilinc ,
- Göran N. Klang ,
- Sara Landström ,
- Christina Larsson ,
- Gen LI ,
- Lars Lindbom ,
- Robert Lindgren ,
- Bengt Lindoff ,
- Fredrik Lindqvist ,
- Jinhua Liu ,
- Thorsten Lohmar ,
- Qianxi Lu ,
- Lars Manholm ,
- Ivana Maric ,
- Jonas Medbo ,
- Qingyu Miao ,
- Reza Moosavi ,
- Walter Müller ,
- Elena Myhre ,
- Karl Norrman ,
- Bengt-Erik Olsson ,
- Torgny Palenius ,
- Sven PETERSSON ,
- Jose Luis Pradas ,
- Mikael Prytz ,
- Olav Queseth ,
- Pradeepa Ramachandra ,
- Edgar Ramos ,
- Andres Reial ,
- Thomas Rimhagen ,
- Emil Ringh ,
- Patrik Rugeland ,
- Johan Rune ,
- Joachim SACHS ,
- Henrik Sahlin ,
- Vidit Saxena ,
- Nima Seifi ,
- Yngve Selén ,
- Eliane Semaan ,
- Sachin Sharma ,
- Cong Shi ,
- Johan Sköld ,
- Magnus Stattin ,
- Anders Stjernman ,
- Dennis Sundman ,
- Lars Sundström ,
- Miurel Isabel Tercero Vargas ,
- Claes Tidestav ,
- Sibel Tombaz ,
- Johan TORSNER ,
- Hugo Tullberg ,
- Jari Vikberg ,
- Peter von Wrycza ,
- Thomas Walldeen ,
- Pontus Wallentin ,
- Hai Wang ,
- Ke WANG HELMERSSON ,
- Jianfeng Wang ,
- Yi-Pin Eric Wang ,
- Niclas Wiberg ,
- Emma Wittenmark ,
- Osman Nuri Can Yilmaz ,
- Ali Zaidi ,
- Zhan Zhang ,
- Zhang ZHANG ,
- Yanli Zheng
Methods and apparatus in a fifth-generation wireless communications, including an example method, in a wireless device, that includes receiving a downlink signal comprising an uplink access configuration index, using the uplink access configuration index to identify an uplink access configuration from among a predetermined plurality of uplink access configurations, and transmitting to the wireless communications network according to the identified uplink access configuration. The example method further includes, in the same wireless device, receiving, in a first subframe, a first Orthogonal Frequency-Division Multiplexing (OFDM) transmission formatted according to a first numerology and receiving, in a second subframe, a second OFDM transmission formatted according to a second numerology, the second numerology differing from the first numerology. Variants of this method, corresponding apparatuses, and corresponding network-side methods and apparatuses are also disclosed.