IP Library Granted Patent US 9,854,524
Granted Patent B2
US 9,854,524 · App. 14/806,974 · Granted Dec 26, 2017

Geographically isolated antennas

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Quick Facts
Patent No.
US 9,854,524
App. No.
14/806,974
Granted
Dec 26, 2017
Kind
B2
Abstract

Briefly, in accordance with one or more embodiments, a base transceiver station having a first set of antennas and a second set of antennas geographically separated from the first set of antennas transmits a reference signal to a first device, and receives feedback from the first device. The feedback represents information that can be used to construct a weight adjustment vector. The base transceiver station selects a precoding vector from a codebook based at least in part on the feedback received from the first device, calculates the weight adjustment vector based at least in part on the feedback, and applies the weight adjustment vector to the selected precoding vector to provide an adjusted precoding vector. The base transceiver station then may transmit data to the first device using the adjusted precoding vector.

Claims (30)

1. An apparatus of an evolved Node B (eNB), comprising:

one or more baseband processors to map one or more common reference signal (CRS) ports to one or more antennas of a first set of antennas located near the eNB, and to map one or more CRS ports to one or more antennas of a second set of antennas geographically separated from the first set of antennas;

a radio-frequency (RF) transceiver to transmit one or more reference signals to a user equipment (UE) from the first set of antennas and from the second set of antennas and to receive feedback from the UE in response to the transmission, wherein the feedback includes one or more reference signal received power (RSRP) measurements from the first set of antennas and one or more RSRP measurements from the second set of antennas, wherein per port RSRP measurements are obtained from both the first set of antennas and the second set of antennas;

wherein the one or more baseband processors are to select a precoding vector from a codebook based at least in part on the RSRP measurements received from the UE; and

wherein the RF transceiver is to transmit data to the UE using the selected precoding vector.

2. The apparatus as claimed in claim 1 , wherein the feedback received from the UE includes a precoding matrix indicator.

3. The apparatus as claimed in claim 1 , wherein information in the feedback accommodates antenna gain imbalance between the first set of antennas and the second set of antennas.

4. The apparatus as claimed in claim 1 , wherein the RSRP measurements are obtained per each CRS port mapped to one or more of the first set of antennas and one or more of the second set of antennas.

5. An apparatus of a user equipment (UE), comprising:

a radio-frequency (RF) transceiver to receive one or more reference signals transmitted from a first set of antennas of an eNB located near the eNB and from a second set of antennas of the eNB geographically isolated from the first set of antennas, wherein one or more common reference signal (CRS) ports are mapped to one or more antennas of the first set of antennas, and one or more CRS ports are mapped to one or more antennas of the second set of antennas;

one or more baseband processors to perform one or more per port RSRP measurements on the one or more references signals, wherein per port RSRP measurements are obtained from both the first set of antennas and the second set of antennas;

wherein the RF transceiver is to transmit feedback to the eNB, wherein the feedback includes the one or more RSRP measurements and to receive data transmitted from the eNB via the first set of antenna ports and the second set of antenna ports using a precoding vector selected based on the one or more per port RSRP measurements.

6. The apparatus as claimed claim 5 , wherein the feedback transmitted to the eNB includes a precoding matrix indicator.

7. The apparatus as claimed in claim 5 , wherein information in the feedback accommodates antenna gain imbalance between the first set of antennas and the second set of antennas.

8. The apparatus as claimed in claim 5 , wherein the RSRP measurement is obtained per each CRS port mapped to one or more of the first set of antennas and one or more of the second set of antennas.

9. One or more non-transitory machine-readable media having instructions stored thereon that, if executed by an evolved Node B (eNB), result in:

mapping one or more common reference signal (CRS) ports to one or more antennas of a first set of antennas located near the eNB, and to map one or more CRS ports to one or more antennas of a second set of antennas geographically separated from the first set of antennas;

transmitting one or more reference signals to a user equipment (UE) from the first set of antennas and from the second set of antennas and to receive feedback from the UE in response to the transmission, wherein the feedback includes one or more reference signal received power (RSRP) measurements from the first set of antennas and one or more RSRP measurements from the second set of antennas, wherein per port RSRP measurements are obtained from both the first set of antennas and the second set of antennas;

selecting a precoding vector from a codebook based at least in part on the RSRP measurements received from the UE;

transmitting data to the UE using the selected precoding vector.

10. The one or more non-transitory machine-readable media as claimed in claim 9 , wherein the feedback received from the UE includes a precoding matrix indicator.

11. The one or more non-transitory machine-readable media as claimed in claim 9 , wherein information in the feedback accommodates antenna gain imbalance between the first set of antennas and the second set of antennas.

12. The one or more non-transitory machine-readable media as claimed in claim 9 , wherein the RSRP measurements are obtained per each CRS port mapped to one or more of the first set of antennas and one or more of the second set of antennas.

13. One or more non-transitory machine-readable media having instructions stored thereon that, if executed by a user equipment (UE), result in:

a radio-frequency (RF) transceiver to receive one or more reference signals transmitted from a first set of antennas of an eNB located near the eNB and from a second set of antennas of the eNB geographically isolated from the first set of antennas, wherein one or more common reference signal (CRS) ports are mapped to one or more antennas of the first set of antennas, and one or more CRS ports are mapped to one or more antennas of the second set of antennas;

one or more baseband processors to perform one or more per port RSRP measurements on the one or more references signals, wherein per port RSRP measurements are obtained from both the first set of antennas and the second set of antennas;

wherein the RF transceiver is to transmit feedback to the eNB, wherein the feedback includes the one or more RSRP measurements and to receive data transmitted from the eNB via the first set of antenna ports and the second set of antenna ports using a precoding vector selected based on the one or more RSRP measurements.

14. The one or more non-transitory machine-readable media as claimed in claim 13 , wherein the feedback transmitted to the eNB includes a precoding matrix indicator.

15. The one or more non-transitory machine-readable media claimed in claim 13 , wherein information in the feedback accommodates antenna gain imbalance between the first set of antennas and a second set of antennas.

16. The one or more non-transitory machine-readable media as claimed in claim 13 , wherein the RSRP measurement is obtained per each CRS port mapped to one or more of the first set of antennas and one or more of the second set of antennas.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2020
From: INTEL CORPORATION
To: APPLE INC.
Reel/Frame 052916/0308 →