IP Library Granted Patent US 11,843,447
Granted Patent B2
US 11,843,447 · App. 17/290,183 · Granted Dec 12, 2023

Interference coordination for 5G flight communication

Inventors: Jun Wang (Poway, CA); Bin Liu (Poway, CA)
Assignee: AERO5G, INC.
H04B7/18506H04W72/20H04W72/54
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Quick Facts
Patent No.
US 11,843,447
App. No.
17/290,183
Granted
Dec 12, 2023
Kind
B2
Abstract

Systems and methods are provided for achieving interference coordination for 5G flight communication. That is, systems and methods are disclosed that improve QoS by implementing interference coordination between nodes, wherein one of the nodes is optimized for flight communication.

Claims (65)

1. A method for attenuating interference associated with flight communication, the method comprising:

generating interference information, the interference information comprising an interference measurement associated with each of a plurality of node combinations and beam configurations thereof, wherein each of said plurality of node combinations comprises a combination of: a flight communication node and one of a plurality of neighbor communication nodes;

selecting a beam mode from a plurality of possible transmit and receive beam modes for transmitting or receiving a signal at the flight communication node based on the interference information; and

communicating a load information message to the plurality of neighbor communication nodes.

2. The method claim 1 , wherein said generating interference information comprises:

(i) configuring the flight communication node to transmit a signal in a first transmit beam mode of the plurality of possible transmit and receive beam modes;

(ii) transmitting the signal from the flight communication node with the flight communication node configured in the first transmit beam mode;

(iii) measuring the signal at each of the plurality of neighbor communication nodes, wherein said measuring the signal includes: for a plurality of receive beam modes of each respective neighbor communication node of the plurality of neighbor communication nodes, obtaining the corresponding interference measurement;

(iv) optionally measuring the signal at each of a plurality of user equipment connected to the network;

(v) repeating (i) thru (iii) and optionally (iv) for each subsequent transmit beam mode of the plurality of possible transmit and receive beam modes of the flight communication node; and

(vi) storing the interference information in memory, wherein the interference information comprises a plurality of records, each record corresponding to one of the transmit beam modes, one of the neighbor communication nodes, one of the receive beam modes of the one of the neighbor communication nodes, and the corresponding interference measurement.

3. The method of claim 2 , wherein said generating interference information comprises:

(i) requesting flight user equipment to transmit a signal to the flight communication node with the flight communication node being configured in a first receive beam mode of the plurality of possible transmit and receive beam modes;

(ii) receiving the signal at the flight communication node with the flight communication node configured in the first receive beam mode;

(iii) measuring the signal at each of the plurality of neighbor communication nodes,

wherein said measuring the signal includes: for a plurality of receive beam modes of each respective neighbor communication node of the plurality of neighbor communication nodes, obtaining the corresponding interference measurement;

(iv) optionally measuring the signal at each of a plurality of user equipment connected to the network;

(v) repeating (i) thru (iii) and optionally (iv) for each subsequent receive beam mode of the plurality of possible transmit and receive beam modes of the flight communication node; and

(vi) storing the interference information in memory, wherein the interference information comprises a plurality of records, each record corresponding to one of the transmit beam modes, one of the neighbor communication nodes, one of the receive beam modes of the one of the neighbor communication nodes, and the corresponding interference measurement.

4. The method of claim 3 , wherein

for each of the plurality of node combinations and beam configurations thereof, said interference measurement comprises one from the group consisting of: null-interference, low-interference, medium-interference, and high-interference.

5. The method of claim 4 , wherein

each of said plurality of beam configurations individually comprises:

one of: a transmit beam mode or receive beam mode of the flight communication node, and

one of: a transmit beam mode or receive beam mode of the respective neighbor communication node.

6. The method of claim 5 , wherein

said load information message comprises: beam mode indication, direction of arrival indication, uplink interference overload indication; uplink high interference indication, or a combination thereof.

7. The method of claim 6 , wherein

said load information message comprises: beam mode indication, direction of arrival indication, relative narrowband Tx power, or a combination thereof.

8. The method of claim 7 , further comprising:

requesting resource reservation based on the load information message, flight route associated with a flight user equipment, or a combination thereof.

9. The method, wherein

said load information message comprises: a timestamp, the timestamp indicating a time for which a resource partition takes effect according to the resource reservation, wherein the timestamp is based on the flight route associated with the flight user equipment.

10. The method of claim 9 , wherein

said resource reservation comprises: frequency domain, time domain, spatial domain, or a combination thereof.

11. The method of claim 10 , wherein

if all neighbor communication nodes are configured with the same time division duplex uplink and downlink configurations, then

automatically setting crosslink interference in the interference information as ‘null-interference’, and

measuring only same link interference for the plurality of node combinations and beam configurations thereof.

12. The method of claim 11 , further comprising:

at one or more of: the flight communication node, the plurality of neighbor communication nodes, and the user equipment served by the flight communication node or neighbor communication nodes,

listening for an activity signal embedded in each of a plurality of radio frames communicated over time, and

if no activity signal is detected in one of the radio frames, then

with one of: the flight communication node, the plurality of neighbor communication nodes, and the user equipment,

utilizing network resources allocated to another of the flight communication node, the plurality of neighbor communication nodes, and the user equipment within the radio frame.

13. The method of claim 12 , wherein the activity signal is embedded in a preamble, reference signal, or control signal.

14. The method of claim 13 , wherein

if all neighbor communication nodes are configured with the same time division duplex uplink and downlink configurations, then

automatically setting crosslink interference in the interference information as ‘null-interference’,

measuring only same link interference for the plurality of node combinations and beam configurations thereof,

listening for said activity signal only at the flight communication node and the plurality of neighbor communication nodes in uplink transmissions, and

listening for said activity signal only at the user equipment served by the neighbor communication nodes in downlink transmissions.

15. The method of claim 14 , further comprising:

serving scheduling information from the flight communication node to the plurality of neighbor communication nodes; and

performing interference cancelation at one or more of the neighbor communication nodes based on the scheduling information.

16. The method of claim 14 , further comprising:

serving scheduling information from the flight communication node to the plurality of neighbor communication nodes;

communicating assistance information between the neighbor communication nodes and the user equipment connected therewith; and

performing interference cancelation at one or more of the neighbor communication nodes and user equipment connected therewith based on the scheduling information.

17. The method of claim 14 , further comprising:

performing joint detection of scheduling information between the flight communication node and the plurality of neighbor communication nodes located;

performing interference cancelation at one or more of the flight communication node, the neighbor communication nodes and user equipment connected therewith based on the scheduling information.

18. The method of claim 7 , further comprising:

performing interference coordination with disaggregated communication nodes; and

exchanging interference coordination information between distributed units of disaggregated communication nodes and a central unit of the dis-aggregated communication nodes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 4, 2022
From: WANG, JUN; LIU, BIN
To: AERO5G INC.
Reel/Frame 058897/0624 →
Continuity (2)
Provisional Application 62789918 · Jan 8, 2019
Related Publication 20210376913A1 · Dec 2, 2021