IP Library Granted Patent US 10,938,497
Granted Patent B2
US 10,938,497 · App. 16/714,350 · Granted Mar 2, 2021

Network architecture, methods, and devices for a wireless communications network

Inventors: Stefan Parkvall (Bromma, SE); Janne Peisa (Espoo, FI); Gunnar Mildh (Sollentuna, SE); Robert Baldemair (Solna, SE); Stefan Wager (Espoo, FI); Jonas Kronander (Knivsta, SE); Karl Werner (Segeltorp, SE); Richard Abrahamsson (Kvivsta, SE); Ismet Aktas (Aachen, DE); Peter Alriksson (Hörby, SE); Junaid Ansari (Aachen, DE); Shehzad Ali Ashraf (Aachen, DE); Henrik Asplund (Stockholm, SE); Fredrik Athley (Kullavik, SE); Håkan Axelsson (Linköping, SE); Joakim Axmon (Kävlinge, SE); Johan Axnäs (Solna, SE); Kumar Balachandran (Pleasanton, CA); Gunnar Bark (Linköping, SE); Jan-Erik Berg (Sollentuna, SE); Andreas Bergström (Vikingstad, SE); Håkan Björkegren (Täby, SE); Nadia Brahmi (Hildesheim, DE); Cagatay Capar (Santa Clara, CA); Anders Carlsson (Lund, SE); Andreas Cedergren (Bjärred, SE); Mikael Coldrey (Landvetter, SE); Icaro L. J. da Silva (Bromma, SE); Erik Dahlman (Stockholm, SE); Ali el Essaili (Aachen, DE); Ulrika Engström (Floda, SE); Mårten Ericson (Luleå, SE); Erik Eriksson (Linköping, SE); Mikael Fallgren (Kista, SE); Rui Fan (Beijing, CN); Gabor Fodor (Hässelby, SE); Pål Frenger (Linköping, SE); Jonas Fridén (Mölndal, SE); Jonas Fröberg Olsson (Ljungsbro, SE); Anders Furuskär (Stockholm, SE); Johan Furuskog (Stockholm, SE); Virgile Garcia (Beijing, CN); Ather Gattami (Stockholm, SE); Fredrik Gunnarsson (Linköping, SE); Ulf Gustavsson (Gothenburg, SE); Bo Hagerman (Tyresö, SE); Fredrik Harrysson (Gothenburg, SE); Ning He (Sollentuna, SE); Martin Hessler (Linköping, SE); Kimmo Hiltunen (Esbo, FI); Songnam Hong (Yongin-Si, KR); Dennis Hui (Sunnyvale, CA); Jörg Huschke (Aachen, DE); Tim Irnich (Neuss, DE); Sven Jacobsson (Gothenburg, SE); Niklas Jaldén (Enköping, SE); Simon Järmyr (Skarpnäck, SE); Zhiyuan Jiang (Beijing, CN); Niklas Johansson (Uppsala, SE); Martin Johansson (Mölndal, SE); Du Ho Kang (Sollentuna, SE); Eleftherios Karipidis (Stockholm, SE); Patrik Karlsson (Sollentuna, SE); Ali S. Khayrallah (Mountain View, CA); Caner Kilinc (Luleå, SE); Göran N. Klang (Enskede, SE); Sara Landstrom (Luleå, SE); Christina Larsson (Mölndal, SE); Gen Li (Beijing, CN); Lars Lindbom (Karlstad, SE); Robert Lindgren (Västra Frölunda, SE); Bengt Lindoff (Bjärred, SE); Fredrik Lindqvist (Järfälla, SE); Jinhua Liu (Beijing, CN); Thorsten Lohmar (Aachen, DE); Qianxi Lu (Beijing, CN); Lars Manholm (Gothenburg, SE); Ivana Maric (Sunnyvale, CA); Jonas Medbo (Uppsala, SE); Qingyu Miao (Beijing, CN); Reza Moosavi (Linköping, SE); Walter Müller (Upplands Väsby, SE); Elena Myhre (Järfälla, SE); Karl Norrman (Stockholm, SE); Bengt-Erik Olsson (Hovås, SE); Torgny Palenius (Barsebäck, SE); Sven Petersson (Sävedalen, SE); Jose Luis Pradas (Stockholm, SE); Mikael Prytz (Rönninge, SE); Olav Queseth (Solna, SE); Pradeepa Ramachandra (Linköping, SE); Edgar Ramos (Kirkkonummi, FI); Andres Reial (Malmö, SE); Thomas Rimhagen (Linköping, SE); Emil Ringh (Stockholm, SE); Patrik Rugeland (Stockholm, SE); Johan Rune (Lidingö, SE); Joachim Sachs (Sollentuna, SE); Henrik Sahlin (Mölnlycke, SE); Vidit Saxena (Solna, SE); Nima Seifi (Solna, SE); Yngve Selén (Uppsala, SE); Eliane Semaan (Vällingby, SE); Sachin Sharma (Huddinge, SE); Cong Shi (Beijing, CN); Johan Sköld (Solna, SE); Magnus Stattin (Upplands Väsby, SE); Anders Stjernman (Lindome, SE); Dennis Sundman (Solna, SE); Lars Sundström (Södra Sandby, SE); Miurel Isabel Tercero Vargas (Sollentuna, SE); Claes Tidestav (Bålsta, SE); Sibel Tombaz (Stockholm, SE); Johan Torsner (Kyrkslätt, FI); Hugo Tullberg (Nyköping, SE); Jari Vikberg (Järna, SE); Peter von Wrycza (Stockholm, SE); Thomas Walldeen (Linköping, SE); Pontus Wallentin (Linköping, SE); Hai Wang (Beijing, CN); Ke Wang Helmersson (Linköping, SE); Jianfeng Wang (Beijing, CN); Yi-Pin Eric Wang (Fremont, CA); Niclas Wiberg (Linköping, SE); Emma Wittenmark (Lund, SE); Osman Nuri Can Yilmaz (Espoo, FI); Ali Zaidi (Järfälla, SE); Zhan Zhang (Beijing, CN); Zhang Zhang (Beijing, CN); Yanli Zheng (Beijing, CN)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04J11/0079H04B7/0452H04B7/0848H04L5/0053H04L5/1469H04L29/06231H04W4/00H04W8/18H04L5/0007H04L5/0028H04L5/0091H04W72/12H04W74/02H04W74/0816H04W74/0833
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Quick Facts
Patent No.
US 10,938,497
App. No.
16/714,350
Granted
Mar 2, 2021
Kind
B2
Abstract

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.

Claims (68)

1. A wireless communications network, the wireless communications network comprising:

a server node, the server node comprising:

processing circuitry configured to process received first user data and provide second user data, and

a communication interface configured to receive the first user data from the wireless device via radio network equipment and to forward the second user data to the radio network equipment for transmission to the wireless device, wherein the wireless device comprises:

radio-frequency circuitry, and

processing circuitry operatively connected to the radio-frequency circuitry and configured to:

receive information indicating a plurality of uplink access configurations, each uplink access configuration including a random access configuration;

receive an uplink access configuration index, using the uplink access configuration index to identify an uplink access configuration from among the indicated plurality of uplink access configurations, and transmit a message to the wireless communications network according to the identified uplink access configuration; and

subsequently transmit the first user data; and

receive in response to the transmitted message a first Orthogonal Frequency-Division Multiplexing (OFDM) transmission formatted according to a first numerology and receive a second OFDM transmission formatted according to a second numerology and carrying the second user data, the second numerology differing from the first numerology, wherein the first numerology has a first subcarrier spacing and the second numerology has a second subcarrier spacing, the first subcarrier spacing differing from the second subcarrier spacing.

2. The wireless communications network of claim 1 , further including the wireless device.

3. The wireless communications network of claim 2 , further including the radio network equipment, the radio network equipment comprising:

radio circuitry configured to communicate with the wireless device;

processing circuitry operatively connected to the radio circuitry; and

a communication interface configured to forward to the server node the first user data carried by a transmission from the wireless device to the radio network equipment.

4. The wireless communications network of claim 2 , wherein:

the processing circuitry of the server node is configured to execute a server software application, thereby providing the second user data; and

the processing circuitry of the wireless device is configured to execute a client software application associated with the server software application.

5. The wireless communications network of 2 , wherein:

the processing circuitry of the server node is configured to execute a server software application; and

the processing circuitry of the wireless device is configured to execute a client software application associated with the server software application, thereby providing the first user data.

6. The wireless communications network of claim 2 , wherein:

the processing circuitry of the server node is configured to execute a server software application, thereby providing request data; and

the processing circuitry of the wireless device is configured to execute a client software application associated with the server software application, thereby providing the first user data in response to the request data.

7. A wireless communications network, the wireless communications network comprising:

a server node, the server node comprising:

processing circuitry configured to process received first user data and provide second user data, and

a communication interface configured to receive the first user data from the wireless device via radio network equipment and to forward the second user data to the radio network equipment for transmission to the wireless device, wherein the radio network equipment comprises:

radio circuitry, and

processing circuitry operatively connected to the radio circuitry, wherein the processing circuitry in the radio network equipment is configured to:

transmit an uplink access configuration index, the uplink access configuration index identifying an uplink access configuration from among a plurality of uplink access configurations, and subsequently receive a message from a first user equipment (UE) according to the identified uplink access configuration, and further subsequently receive the first user data; and

transmit, in response to the message, a first Orthogonal Frequency-Division Multiplexing (OFDM) transmission formatted according to a first numerology, and transmit a second OFDM transmission formatted according to a second numerology and carrying the second user data, the second numerology differing from the first numerology, wherein the first numerology has a first subcarrier spacing and the second numerology has a second subcarrier spacing, the first subcarrier spacing differing from the second subcarrier spacing.

8. The wireless communications network of claim 7 , further comprising the radio network equipment.

9. The wireless communications network of claim 8 , further including the wireless device, wherein the wireless device is configured to communicate with the radio network equipment.

10. The wireless communications network of claim 9 , wherein:

the processing circuitry of the server node is configured to execute a server software application, thereby providing the second user data; and

the wireless device comprises processing circuitry configured to execute a client software application associated with the server software application.

11. The wireless communications network of claim 9 , wherein:

the processing circuitry of the server node is configured to execute a server software application; and

the wireless device comprises processing circuitry configured to execute a client software application associated with the server software application, thereby providing the first user data to be received by the server node.

12. A method, in a wireless communications network including a server node, radio network equipment (BS) and a wireless device (UE), the method comprising:

at the server node, receiving first user data in response to the radio network equipment transmitting to the wireless device an uplink access configuration index, the uplink access configuration index identifying an uplink access configuration from among a plurality of uplink access configurations, and subsequently receiving a message from a first user equipment (UE) according to the identified uplink access configuration and further subsequently receiving the first user data;

wherein the method further comprises, at the server node, in response, initiating transmission of second user data, thereby causing the radio network equipment to transmit to the wireless device, in response to the message, a first Orthogonal Frequency-Division Multiplexing (OFDM) transmission formatted according to a first numerology and transmit to the wireless device a second OFDM transmission formatted according to a second numerology and carrying the second user data, the second numerology differing from the first numerology, wherein the first numerology has a first subcarrier spacing and the second numerology has a second subcarrier spacing, the first subcarrier spacing differing from the second subcarrier spacing.

13. The method of claim 12 , further comprising:

at the radio network equipment, transmitting the second user data.

14. The method of claim 13 , wherein the second user data is provided at the server node by executing a server software application,

the method further comprising:

at the wireless device, executing a client software application associated with the server software application.

15. The method of claim 12 , further comprising:

at the radio network equipment, receiving the first user data from the wireless device.

16. The method of claim 15 , further comprising:

at the radio network equipment, initiating a transmission of the received first user data to the server node.

17. A method, in a wireless communications network including a server node, radio network equipment (BS) and a wireless device (UE), the method comprising:

at the server node, receiving first user data in response to:

the wireless device receiving from the radio network equipment information indicating a plurality of uplink access configurations, each uplink access configuration including a random access configuration;

the wireless device receiving from the radio network equipment an uplink access configuration index, the wireless device using the uplink access configuration index to identify an uplink access configuration from among the indicated plurality of uplink access configurations, and the wireless device transmitting a message to the wireless communications network according to the identified uplink access configuration and subsequently transmitting the first user data;

wherein the method further comprises, at the server node, initiating transmission of second user data, thereby causing the wireless device to:

receive from the radio network equipment, in response to the transmitted message a first Orthogonal Frequency-Division Multiplexing (OFDM) transmission formatted according to a first numerology and receive from the radio network equipment a second OFDM transmission formatted according to a second numerology and carrying the second user data, the second numerology differing from the first numerology, wherein the first numerology has a first subcarrier spacing and the second numerology has a second subcarrier spacing, the first subcarrier spacing differing from the second subcarrier spacing.

18. The method of claim 17 , further comprising:

at the wireless device, receiving the second user data from the radio network equipment.

19. The method of claim 17 , further comprising:

at the wireless device, providing the first user data to the radio network equipment.

20. The method of claim 19 , further comprising:

at the wireless device, executing a client software application, thereby providing the first user data to be transmitted; and

at the server node, executing a server software application associated with the client software application.

21. The method of claim 19 , further comprising:

at the wireless device, executing a client software application; and

at the wireless device, receiving input data to the client software application, the input data being provided at the server node by executing a server software application associated with the client software application.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2020
From: HILTUNEN, KIMMO; PEISA, JANNE; RAMOS, EDGAR; TORSNER, JOHAN; WAGER, STEFAN; YILMAZ, OSMAN NURI CAN
To: OY L M ERICSSON AB
Reel/Frame 051976/0245 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2020
From: OY L M ERICSSON AB
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 051976/0335 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2020
From: PARKVALL, STEFAN; MILDH, GUNNAR; BALDEMAIR, ROBERT; KRONANDER, JONAS; WERNER, KARL; ABRAHAMSSON, RICHARD; AKTAS, ISMET; ALRIKSSON, PETER; ANSARI, JUNAID; ASHRAF, SHEHZAD ALI; ASPLUND, HENRIK; ATHLEY, FREDRIK; AXELSSON, HÅKAN; AXMON, JOAKIM; AXNÄS, JOHAN; BALACHANDRAN, KUMAR; BARK, GUNNAR; BERG, JAN-ERIK; BERGSTRÖM, ANDREAS; BJÖRKEGREN, HÅKAN; BRAHMI, NADIA; CAPAR, CAGATAY; CARLSSON, ANDERS; CEDERGREN, ANDREAS; COLDREY, MIKAEL; DA SILVA, ICARO L. J.; DAHLMAN, ERIK; EL ESSAILI, ALI; ENGSTRÖM, ULRIKA; ERICSON, MÅRTEN; ERIKSSON, ERIK; FALLGREN, MIKAEL; FAN, RUI; FODOR, GABOR; FRENGER, PÅL; FRIDÉN, JONAS; FRÖBERG OLSSON, JONAS; FURUSKÄR, ANDERS; FURUSKOG, JOHAN; GARCIA, VIRGILE; GATTAMI, ATHER; GUNNARSSON, FREDRIK; GUSTAVSSON, ULF; HAGERMAN, BO; HARRYSSON, FREDRIK; HE, NING; HESSLER, MARTIN; HONG, SONGNAM; HUI, DENNIS; HUSCHKE, JÖRG; IRNICH, TIM; JACOBSSON, SVEN; JALDÉN, NIKLAS; JÄRMYR, SIMON; JIANG, ZHIYUAN; JOHANSSON, NIKLAS; JOHANSSON, MARTIN; KANG, DU HO; KARIPIDIS, ELEFTHERIOS; KARLSSON, PATRIK; KHAYRALLAH, ALI S.; KILINC, CANER; KLANG, GÖRAN N.; LANDSTRÖM, SARA; LARSSON, CHRISTINA; LI, GEN; LINDBOM, LARS; LINDGREN, ROBERT; LINDOFF, BENGT; LINDQVIST, FREDRIK; LIU, JINHUA; LOHMAR, THORSTEN; LU, QIANXI; MANHOLM, LARS; MARIC, IVANA; MEDBO, JONAS; MIAO, QINGYU; MOOSAVI, REZA; MÜLLER, WALTER; MYHRE, ELENA; NORRMAN, KARL; OLSSON, BENGT-ERIK; PALENIUS, TORGNY; PETERSSON, SVEN; PRADAS, JOSE LUIS; PRYTZ, MIKAEL; QUESETH, OLAV; RAMACHANDRA, PRADEEPA; REIAL, ANDRES; RIMHAGEN, THOMAS; RINGH, EMIL; RUGELAND, PATRIK; RUNE, JOHAN; SACHS, JOACHIM; SAHLIN, HENRIK; SAXENA, VIDIT; SEIFI, NIMA; SELÉN, YNGVE; SEMAAN, ELIANE; SHARMA, SACHIN; SHI, CONG; SKÖLD, JOHAN; STATTIN, MAGNUS; STJERNMAN, ANDERS; SUNDMAN, DENNIS; SUNDSTRÖM, LARS; TERCERO VARGAS, MIUREL ISABEL; TIDESTAV, CLAES; TOMBAZ, SIBEL; TULLBERG, HUGO; VIKBERG, JARI; VON WRYCZA, PETER; WALLDEEN, THOMAS; WALLENTIN, PONTUS; WANG, HAI; WANG HELMERSSON, KE; WANG, JIANFENG; WANG, YI-PIN ERIC; WIBERG, NICLAS; WITTENMARK, EMMA; ZAIDI, ALI; ZHANG, ZHAN; ZHANG, ZHANG; ZHENG, YANLI
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 052061/0408 →
Continuity (3)
Continuation 16290596 · Mar 1, 2019
Continuation 15154212 · May 13, 2016
Related Publication 20200120482A1 · Apr 16, 2020
Cited By (2)
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