IP Library Granted Patent US 12683874
Granted Patent B2
US 12683874 · App. 18/567,166 · Granted Jul 14, 2026

Intent based automation for partitioned radio systems

Inventors: Erik Westerberg (Enskede, SE); Håkan Olofsson (Stockholm, SE); Ilaria Brunelli (Prosper, TX); Zachary Duncan (Stockholm, SE)
Assignee: Telefonaktiebolaget LM Ericsson (Publ)
H04L41/5009H04W28/24
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Quick Facts
Patent No.
US 12683874
App. No.
18/567,166
Granted
Jul 14, 2026
Kind
B2
Abstract

A method and network node for intent based automation for partitioned radio systems are disclosed. According to one aspect, a method in a network node includes determining at least a first intent metric and a second intent metric based on performance measurements. The first intent metric indicates a quality of experience of first communication network users and the second intent metric indicates a quality of experience of second communication network users. The method also includes comparing the first and second intent metrics to respective first and second service level intents for communications of respective first and second communication networks. A service level intent may indicate a minimum service level. A radio resource partition (RRP) between the communications of the first and second communication networks is determined based at least in part on the comparison.

Claims (26)

1 . A network node configured to communicate with a plurality of wireless devices, WD, of users of a first communication network and with WDs of users of a second communication network, the network node comprising processing circuitry configured to:

determine at least a first intent metric and a second intent metric based at least in part on performance measurements, the first intent metric being indicative of a quality of experience of users of the first communication network and the second intent metric being indicative of a quality of experience of users of the second communication network;

compare the first intent metric and the second intent metric to respective ones of a first service level intent for communications of the first communication network and a second service level intent for communications of the second communication network, a service level intent including an indication of a minimum service level; and

determine a radio resource partition, RRP, between the communications of the first communication network and the communications of the second communication network based at least in part on the comparison, the RRP determined based in part on a priority intent received from an intent owner module and a RRP ratio configuration parameter.

2 . The network node of claim 1 , wherein the first intent metric and the second intent metric are based at least in part on a data transfer rate.

3 . The network node of claim 1 , wherein the performance measurements are performed by a scheduler.

4 . The network node of claim 1 , wherein the first and second service level intents are based at least in part on target values from a network operator.

5 . The network node of claim 1 , wherein the processing circuitry is further configured to cause transmission of an indication of available intent metrics to the intent owner module and to receive the first and second service level intents.

6 . The network node of claim 1 , wherein the quality of experience of users of the first communication network and the quality of experience of users of the second communication network are based at least in part on a downlink throughput for the first communication network users and the second communication network users, respectively.

7 . The network node of claim 1 , wherein the processing circuitry is further configured to send a reconfiguration signal to an RRP unit configured to change a partition between resources for communications of the first communication network and resources for communications of the second communication network.

8 . The network node of claim 1 , wherein a service level intent includes at least one of a throughput target, an energy consumption limit and packet latency bounds.

9 . The network node of claim 1 , wherein at least one of the intent metrics includes at least one of an average downlink throughput, an uplink throughput, a worst user downlink throughput and a packet latency.

10 . The network node of claim 1 , wherein the first communication network is a mobile broadband, MBB, communication network and the second communication network is one of a fixed wireless access, FWA, communication network and an Internet of Things, IoT, communication network.

11 . A method implemented in a network node that is configured to communicate with a wireless device, the method comprising:

determining at least a first intent metric and a second intent metric based at least in part on performance measurements, the first intent metric being indicative of a quality of experience of users of the first communication network and the second intent metric being indicative of a quality of experience of users of the second communication network;

comparing the first intent metric and the second intent metric to respective ones of a first service level intent for communications of the first communication network and a second service level intent for communications of the second communication network, a service level intent including an indication of a minimum service level; and

determining a radio resource partition, RRP, between the communications of the first communication network and communications of the second communication network based at least in part on the comparison, the RRP determined based in part on a priority intent received from an intent owner module and a RRP ratio configuration parameter.

12 . The method of claim 11 , wherein the first intent metric and the second intent metric are based at least in part on a data transfer rate.

13 . The method of claim 11 , wherein the performance measurements are performed by a scheduler.

14 . The method of claim 11 , wherein the first and second service level intents are based at least in part on target values from a network operator.

15 . The method of claim 11 , further comprising transmitting an indication of available intent metrics to the intent owner module and receiving the first and second service level intents.

16 . The method of claim 11 , wherein the quality of experience of users of the first communication network and the quality of experience of users of the second communication network are based at least in part on a downlink throughput for the first communication network users and the second communication network users, respectively.

17 . The method of claim 11 , wherein the process also includes sending a reconfiguration signal to an RRP unit configured to change a partition between resources for communications of the first communication network and resources for communications of the second communication network.

18 . The method of claim 11 , wherein a service level intent includes at least one of a throughput target, an energy consumption limit and packet latency bounds.

19 . The method of claim 11 , wherein at least one of the intent metrics includes at least one of an average downlink throughput, an uplink throughput, a worst user downlink throughput and a packet latency.

20 . The method of claim 11 , wherein the first communication network is a mobile broadband, MBB, communication network and the second communication network is one of a fixed wireless access, FWA, communication network and an Internet of Things, IoT, communication network.