IP Library Granted Patent US 12,184,563
Granted Patent B2
US 12,184,563 · App. 17/267,903 · Granted Dec 31, 2024

Measurement gap configuration in NE-DC and NR-NR DC

Inventors: Oumer Teyeb (Solna, SE); Stefan Wager (Espoo, FI); Antonio Orsino (Kirkkonummi, FI)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H04L5/0032H04W76/25H04W36/00698
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Quick Facts
Patent No.
US 12,184,563
App. No.
17/267,903
Granted
Dec 31, 2024
Kind
B2
Abstract

A method by a master network node for measurement gap configuration includes establishing a connection with a wireless device operating in dual connectivity with the master network node and a secondary network node. The master network node operates on a New Radio, NR, wireless network and the secondary network node operates on a Long-Term Evolution, LTE, network. The measurement gap configuration is configured on a per frequency basis for at least a first frequency and a second frequency on the NR wireless network. The measurement gap configuration is configured on a per frequency basis for the first frequency on the LTE network. The method further incudes configuring, by the master network node, the wireless device with at least one measurement gap for the second frequency when the master network node configures a measurement that requires the at least one measurement gap.

Claims (40)

1. A method by a master network node for measurement gap configuration, the method comprising:

establishing a connection with a wireless device operating in dual connectivity with the master network node and a secondary network node, the master network node operating on a New Radio, NR, wireless network and the secondary network node operating on a Long-Term Evolution, LTE, network, wherein the measurement gap configuration is configured on a per frequency basis for at least a first frequency and a second frequency on the NR wireless network, wherein the measurement gap configuration is configured on a per frequency basis for the first frequency on the LTE network;

configuring, by the master network node, the wireless device with at least one measurement gap for the second frequency when the master network node configures a measurement that requires the at least one measurement gap

configuring, by the master network node, the wireless device with at least one measurement gap for the first frequency when the master network node is first to configure a measurement that requires the at least one measurement gap before the secondary network node, and

receiving, from the secondary network node, a configuration of the at least one measurement gap for the first frequency when the secondary network node is first to configure a measurement that requires the at least one measurement gap for the first frequency before the master network node.

2. The method of claim 1 , further comprising at least one of:

modifying, by the master network node, the at least one measurement gap for the first frequency, and

receiving, from the secondary network node, a modification of the at least one measurement gap for the first frequency and modifying the at least one measurement gap for the first frequency based on the modification from the secondary network node.

3. The method according to claim 1 , wherein the at least one measurement gap for the first frequency is communicated to the wireless device in aRadio Resource Control, RRC, reconfiguration message directly from the node configuring the gap.

4. The method according to claim 1 , wherein the at least one measurement gap for the first frequency is received from the secondary node and the method further comprises:

transmitting, in a RRC reconfiguration message from the master network node to the wireless device, the at least one measurement gap for the first frequency received from the secondary node.

5. The method according to claim 4 , wherein the RRC reconfiguration message was generated at the secondary node.

6. The method according to claim 4 , wherein the RRC reconfiguration message comprises at least one information element generated at the secondary network node, the at least one information element comprising the at least one measurement gap for the first frequency.

7. The method according to claim 1 , wherein the master network node is first to configure the measurement that requires the at least one measurement gap for the first frequency and the method further comprises:

transmitting the at least one measurement gap for the first frequency to the secondary network node.

8. The method according to claim 1 , further comprising transmitting the at least one measurement gap for the second frequency to the secondary network node.

9. The method according to claim 1 , further comprising:

upon configuring or releasing a serving cell on the first frequency, transmitting an indication of configuring or releasing the serving cell on the first frequency to the secondary network node.

10. The method according to claim 1 , further comprising receiving a communication from the secondary node, the communication indicating a configuration or release of a serving cell on the first frequency by the secondary network node.

11. The method according to claim 1 , further comprising receiving a communication from the secondary node, the communication indicating a configuration of a measurement on the first frequency by the secondary network node.

12. A master network node for measurement gap configuration, the master network node comprising processing circuitry configured to:

establish a connection with a wireless device operating in dual connectivity with the master network node and a secondary network node, the master network node operating on a New Radio, NR, wireless network and the secondary network node operating on a Long-Term Evolution, LTE, network, wherein the measurement gap configuration is configured on a per frequency basis for at least a first frequency and a second frequency on the NR wireless network, wherein the measurement gap configuration is configured on a per frequency basis for the first frequency on the LTE network;

configure the wireless device with at least one measurement gap for the second frequency when the master network node configures a measurement a measurement that requires the at least one measurement gap;

configure the wireless device with at least one measurement gap for the first frequency when the master network node is first to configure a measurement that requires the at least one measurement gap before the secondary network node; and

receive, from the secondary network node, a configuration of the at least one measurement gap for the first frequency when the secondary network node is first to configure a measurement that requires the at least one measurement gap for the first frequency before the master network node.

13. The master network node of claim 12 wherein the processing circuitry is configured to perform at least one of:

modifying, by the master network node, the at least one measurement gap for the first frequency, and

receiving, from the secondary network node, a modification of the at least one measurement gap for the first frequency and modifying the at least one measurement gap for the first frequency based on the modification from the secondary network node.

14. The master network node according to claim 12 , wherein the at least one measurement gap for the first frequency is communicated to the wireless device in a Radio Resource Control, RRC, reconfiguration message directly from the node configuring the gap.

15. The master network node according to claim 12 , wherein the at least one measurement gap for the first frequency is received from the secondary node and the processing circuitry is configured to:

transmit, in a RRC reconfiguration message from the master network node to the wireless device, the at least one measurement gap for the first frequency received from the secondary node.

16. The master network node according to claim 15 , wherein the RRC reconfiguration message was generated at the secondary node.

17. The master network node according to claim 15 , wherein the RRC reconfiguration message comprises at least one information element generated at the secondary network node, the at least one information element comprising the at least one measurement gap for the first frequency.

18. The master network node according to claim 12 , wherein the master network node is first to configure the measurement that requires the at least one measurement gap for the first frequency and the processing circuitry is configured to:

transmit the at least one measurement gap for the first frequency to the secondary network node.

19. The master network node according to claim 12 , wherein the processing circuitry is configured to transmit the at least one measurement gap for the second frequency to the secondary network node.

20. The master network node according to claim 12 , wherein the processing circuitry is configured to:

upon configuring or releasing a serving cell on the first frequency, transmit an indication of configuring or releasing the serving cell on the first frequency to the secondary network node.

21. The master network node according to claim 12 , wherein the processing circuitry is configured to receive a communication from the secondary node, the communication indicating a configuration or release of a serving cell on the first frequency by the secondary network node.

22. The master network node according to claim 12 , wherein the processing circuitry is configured to receive a communication from the secondary node, the communication indicating a configuration of a measurement on the first frequency by the secondary network node.

Continuity (2)
Provisional Application 62716876 · Aug 9, 2018
Related Publication 20220216959A1 · Jul 7, 2022
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