IP Library Granted Patent US 9,510,314
Granted Patent B2
US 9,510,314 · App. 14/318,076 · Granted Nov 29, 2016

Method and evolved node-B for geographic bin data collection and reporting

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Quick Facts
Patent No.
US 9,510,314
App. No.
14/318,076
Granted
Nov 29, 2016
Kind
B2
Abstract

Embodiments of an Evolved Node-B (eNB) and method for collecting and reporting data related to a coverage area in a wireless network are generally described herein. The eNB may be configured to track geographic bin information for one or more User Equipment (UEs). The eNB may comprise hardware processing circuitry configured to, for each of the UEs, measure an angle of arrival for the UE and a propagation delay for the UE, and to select a geographic bin for the UE from a set of candidate geographic bins. The hardware processing circuitry may be further configured to send, for each of the candidate geographic bins, performance data for the candidate geographic bin to the TCE when a number of UEs for which the candidate geographic bin is selected is not less than a UE distribution threshold.

Claims (47)

1. An Evolved Node-B (eNB) configured to track geographic bin information for one or more User Equipment (UEs), the eNB comprising hardware processing circuitry configured to:

for each of the UEs:

based on a reception of one or more packets from the UE, measure an angle of arrival for the UE and a propagation delay for the UE;

from a set of candidate geographic bins, select a geographic bin for the UE, wherein the selection is based at least partly on the measurements of the angle of arrival and the propagation delay; and

for each of the candidate geographic bins, when a number of UEs for which the candidate geographic bin is selected is not less than a UE distribution threshold, send geographic bin performance data for the candidate geographic bin to a Trace Collection Entity (TCE).

2. The eNB according to claim 1 , the hardware processing circuitry further configured to, for each of the candidate geographic bins, when the number of UEs for which the candidate geographic bin is selected is less than the UE distribution threshold, restrict the sending of the geographic bin performance data for the candidate geographic bin to the TCE.

3. The eNB according to claim 1 , wherein:

the packets received from each UE include a received signal power indicator for the UE associated with a reception, at the UE, of a wireless signal transmitted from the eNB; and

the geographic bin performance data for the candidate geographic bin includes an average of the received signal power indicators for the UEs for which the candidate geographic bin is selected.

4. The eNB according to claim 3 , the hardware processing circuitry further configured to:

receive, from a Mobility Management Entity (MME), a geographic bin control message that includes a signal power indicator bin threshold; and

for each of the candidate geographic bins, when the average of the received signal power indicators for the UEs for which the candidate geographic bin is selected is less than the signal power indicator bin threshold, restrict the sending of the geographic bin performance data for the candidate geographic bin to the TCE.

5. The eNB according to claim 1 , wherein:

the packets received from each UE include a received signal quality indicator for the UE associated with a reception, at the UE, of a wireless signal transmitted from the eNB; and

the geographic bin performance data for the candidate geographic bin includes an average of the received signal quality indicators for the UEs for which the candidate geographic bin is selected.

6. The eNB according to claim 5 , the hardware processing circuitry further configured to:

receive, from the MME, a geographic bin control message that includes a signal quality indicator bin threshold; and

for each of the candidate geographic bins, when the average of the received signal quality indicators for the UEs for which the candidate geographic bin is

selected is less than the signal quality indicator bin threshold, restrict the sending of the geographic bin performance data for the candidate geographic bin to the TCE.

7. The eNB according to claim 6 , the hardware processing circuitry further configured to:

receive, from the MME, a geographic bin control message that includes an angle of arrival window average parameter and a propagation delay window average parameter;

for each of the candidate geographic bins, determine a bin average of the received signal quality indicators for the UEs for which the candidate geographic bin is selected; and

for each of the candidate geographic bins, determine a zoomed-out average for the candidate geographic bin that is included in the geographic bin performance data, wherein the zoomed-out average is determined as a windowed average of the bin average of the candidate geographic bin and the bin averages of adjacent candidate geographic bins according to the angle of arrival window average parameter and a propagation delay window average parameter.

8. The eNB according to claim 1 , the hardware processing circuitry further configured to receive, from the MME, a geographic bin control message that includes the UE distribution threshold.

9. The eNB according to claim 8 , wherein the geographic bin control message is a geographic bin information element (IE) that is included as part of a Minimization of Drive Testing (MDT) control message.

10. The eNB according to claim 9 , wherein the geographic bin IE is transported by the MDT control message.

11. The eNB according to claim 1 , the hardware processing circuitry further configured to:

receive, from the MME, a geographic bin control message that includes an angle of arrival scale parameter and a propagation delay scale parameter;

determine, based at least partly on the angle of arrival scale parameter and the propagation delay scale parameter, the set of candidate geographic bins.

12. The eNB according to claim 11 , wherein the angle of arrival scale parameter is related to an angle difference between any two adjacent candidate geographic bins at a particular radial distance from the eNB, and the propagation delay scale parameter is related to a distance difference between any two adjacent candidate geographic bins at a particular angle with respect to an axis of the eNB.

13. The eNB according to claim 1 , the hardware processing circuitry further configured to receive, from the MME, a geographic bin control message that includes a periodicity reporting parameter, and wherein the sending of performance data occurs according to the periodicity reporting parameter.

14. A non-transitory computer-readable storage medium that stores instructions for execution by one or more processors to perform operations for collecting and sending geographic bin performance data, the operations to configure the one or more processors to:

receive, at an Evolved Node-B (eNB) configured to track geographic bin information in a wireless network, packets from one or more User Equipment (UEs) configured to operate in the wireless network;

measure, based on the reception of the packets from the UEs, an angle of arrival for each UE and a propagation delay for each UE;

select for each UE, from a set of candidate geographic bins, a geographic bin for the UE, wherein the selection is based at least partly on the measurements of the angle of arrival for the UE and the propagation delay for the UE; and

for each of the candidate geographic bins, when a number of UEs for which the candidate geographic bin is selected is not less than a UE distribution threshold, send geographic bin performance data to a Trace Collection Entity (TCE) configured to operate in the wireless network.

15. The non-transitory computer-readable storage medium according to claim 14 , the operations to further configure the one or more processors to receive, from a Mobility Management Entity (MME) configured to operate in the wireless network, a geographic bin control message that includes the UE distribution threshold.

16. The non-transitory computer-readable storage medium according to claim 15 , wherein:

the geographic bin control message includes a angle of arrival scale parameter and a propagation delay scale parameter; and

the operations further configure the one or more processors to determine, based at least partly on the angle of arrival scale parameter and the propagation delay scale parameter, the set of candidate geographic bins.

17. A method of collecting and reporting data related to a coverage area in a wireless network, the method comprising:

receiving, at an Evolved Node-B (eNB) configured to track geographic bin information in a wireless network, packets from one or more User Equipment (UEs) configured to operate in the wireless network;

measuring, based on the reception of the packets from the UEs, an angle of arrival for each UE and a propagation delay for each LE;

selecting for each UE, from a set of candidate geographic bins, a geographic bin for the UE, wherein the selection is based at least partly on the measurements of the angle of arrival for the UE and the propagation delay for the UE; and

for each of the candidate geographic bins, when a number of UEs for which the candidate geographic bin is selected is not less than a UE distribution threshold, sending geographic bin performance data to a Trace Collection Entity (TCE) configured to operate in the wireless network.

18. The method according to claim 17 , further comprising receiving, from a Mobility Management Entity (MME), a geographic bin control message that includes the UE distribution threshold.

19. The method according to claim 17 , further comprising restricting, for each of the candidate geographic bins, the sending of the geographic bin performance data to the ICE when a number of UEs for which the candidate geographic bin is selected is less than the UE distribution threshold.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2020
From: INTEL CORPORATION
To: APPLE INC.
Reel/Frame 053062/0703 →
CONFIRMATORY ASSIGNMENT Recorded Jun 25, 2020
From: INTEL IP CORPORATION
To: INTEL CORPORATION
Reel/Frame 053066/0388 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2014
From: SCHMIDT, ANDREAS; CHOU, JOEY
To: INTEL IP CORPORATION
Reel/Frame 033535/0558 →