IP Library Granted Patent US 8,787,225
Granted Patent B2
US 8,787,225 · App. 13/546,926 · Granted Jul 22, 2014

Phase-rotated reference signals for multiple antennas

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,787,225
App. No.
13/546,926
Granted
Jul 22, 2014
Kind
B2
Abstract

Systems, methods, and apparatuses for phase-rotated reference signals are provided. In accordance with one implementation, phase-rotated reference signals are transmitted from multiple transmit antennas on the same reference signal (RS) resource elements. The receiver may determine channel coefficients for links corresponding to the multiple antennas, based on the received signals at the RS resource elements. Time-domain filtering or frequency-domain orthogonal codes may be used to determine the channel coefficients for links corresponding to the multiple antennas. The phase-rotation information may be broadcasted in a system information block (SIB) message or signaled in a radio resource control (RRC) message.

Claims (48)

1. A method of wireless communication in an Orthogonal Frequency Division Multiplexing (OFDM) system, comprising:

transmitting a first set of reference signals from a first transmit antenna on a plurality of reference signal (RS) resource elements of the OFDM system, the RS resource elements representing a set of time and frequency resources;

transmitting a second set of reference signals from a second transmit antenna on the plurality of RS resource elements, wherein the second set of reference signals is identical to a first phase rotation of the first set of reference signals in a frequency domain;

transmitting a first set of data signals from the first transmit antenna on a plurality of data resource elements; and

transmitting a second set of data signals from the second transmit antenna on the plurality of data resource elements, wherein the second set of data signals is identical to the first phase rotation of the first set of data signals in the frequency domain.

2. The method of claim 1 , wherein the first and second set of data signals are transmitted from the first and second transmit antennas using spatial multiplexing.

3. The method of claim 1 , wherein the first and second set of data signals are transmitted from the first and second transmit antennas using Space Frequency Block Coding (SFBC).

4. The method of claim 1 , wherein the plurality of RS resource elements are in a Physical Downlink Shared Channel (PDSCH) region.

5. The method of claim 1 , wherein the plurality of RS resource elements are in a Physical Downlink Control Channel (PDCCH) region.

6. The method of claim 1 , wherein the plurality of RS resource elements are in a Physical Multicast Channel (PMCH) region.

7. The method of claim 1 , wherein information regarding the first phase rotation is broadcast in a System Information Block (SIB) message.

8. The method of claim 1 , wherein information regarding the first phase rotation is signaled in a Radio Resource Control (RRC) message.

9. The method of claim 1 , further comprising:

transmitting a plurality of sets of reference signals from a plurality of transmit antennas on the plurality of RS resource elements, respectively, wherein the plurality of sets of reference signals are identical to a plurality of phase rotations of the first set of reference signals in the frequency domain.

10. The method of claim 9 , wherein each of the plurality of phase rotations is multiple times of the first phase rotation.

11. The method of claim 9 , wherein information regarding the plurality of phase rotations is broadcast in a system information block (SIB) message.

12. The method of claim 9 , wherein information regarding the plurality of phase rotations is signaled in a Radio Resource Control (RRC) message.

13. The method of claim 1 , wherein the plurality of RS resource elements are in a Multicast-Broadcast Single Frequency Network (MBSFN) subframe.

14. A base station device for wireless communications in an Orthogonal Frequency Division Multiplexing (OFDM) system, the base station device configured to:

transmit a first set of reference signals from a first transmit antenna on a plurality of reference signal (RS) resource elements of the OFDM system, the RS resource elements representing a set of time and frequency resources;

transmit a second set of reference signals from a second transmit antenna on the plurality of RS resource elements, wherein the second set of reference signals is identical to a first phase rotation of the first set of reference signals in a frequency domain;

transmit a first set of data signals from the first transmit antenna on a plurality of data resource elements; and

transmit a second set of data signals from the second transmit antenna on the plurality of data resource elements, wherein the second set of data signals is identical to the first phase rotation of the first set of data signals in the frequency domain.

15. The base station device of claim 14 , wherein the first and second set of data signals are transmitted from the first and second transmit antennas using spatial multiplexing.

16. The base station device of claim 14 , wherein the first and second set of data signals are transmitted from the first and second transmit antennas using Space Frequency Block Coding (SFBC).

17. The base station device of claim 14 , wherein the plurality of RS resource elements are in a Physical Downlink Shared Channel (PDSCH) region.

18. The base station device of claim 14 , wherein the plurality of RS resource elements are in a Physical Downlink Control Channel (PDCCH) region.

19. The base station device of claim 14 , wherein the plurality of RS resource elements are in a Physical Multicast Channel (PMCH) region.

20. The base station device of claim 14 , wherein information regarding the first phase rotation is broadcast in a System Information Block (SIB) message.

21. The base station device of claim 14 , wherein information regarding the first phase rotation is signaled in a Radio Resource Control (RRC) message.

22. The base station device of claim 14 further configured to:

transmit a plurality of sets of reference signals from a plurality of transmit antennas on the plurality of RS resource elements, respectively, wherein the plurality of sets of reference signals are identical to a plurality of phase rotations of the first set of reference signals in the frequency domain.

23. The base station device of claim 22 , wherein each of the plurality of phase rotations is multiple times of the first phase rotation.

24. The base station device of claim 22 , wherein information regarding the plurality of phase rotations is broadcast in a system information block (SIB) message.

25. The base station device of claim 22 , wherein information regarding the plurality of phase rotations is signaled in a Radio Resource Control (RRC) message.

26. The base station device of claim 14 , wherein the plurality of RS resource elements are in a Multicast-Broadcast Single Frequency Network (MBSFN) subframe.

27. A method of wireless communication, comprising:

configuring a plurality of Multicast-Broadcast Single Frequency Network (MBSFN) subframes;

transmitting a first set of reference signals from a first transmit antenna on a plurality of reference signal (RS) resource elements during at least one of the plurality of MBSFN subframes, the RS resource elements representing a set of time and frequency resources;

transmitting a second set of reference signals from a second transmit antenna on the plurality of RS resource elements during the at least one of the plurality of MBSFN subframes, wherein the second set of reference signals is identical to a first phase rotation of the first set of reference signals in a frequency domain;

transmitting a first set of data signals from the first transmit antenna on a plurality of data resource elements; and

transmitting a second set of data signals from the second transmit antenna on the plurality of data resource elements, wherein the second set of data signals is identical to the first phase rotation of the first set of data signals in the frequency domain.

28. A base station device for wireless communications, the base station device configured to:

configure a plurality of Multicast-Broadcast Single Frequency Network (MBSFN) subframes;

transmit a first set of reference signals from a first transmit antenna on a plurality of reference signal (RS) resource elements during at least one of the plurality of MBSFN subframes, the RS resource elements representing a set of time and frequency resources;

transmit a second set of reference signals from a second transmit antenna on the plurality of RS resource elements during the at least one of the plurality of MBSFN subframes, wherein the second set of reference signals is identical to a first phase rotation of the first set of reference signals in a frequency domain;

transmit a first set of data signals from the first transmit antenna on a plurality of data resource elements; and

transmit a second set of data signals from the second transmit antenna on the plurality of data resource elements, wherein the second set of data signals is identical to the first phase rotation of the first set of data signals in the frequency domain.

Assignments (9)
CORRECTIVE ASSIGNMENT TO CORRECT THE ADDED PATENT NUMBER TO REMOVE PATENT NO. 8,873,407 AT PREVIOUSLY RECORDED ON REEL 64066 FRAME 1. ASSIGNOR(S) HEREBY CONFIRMS THE NUNC PRO TUNC ASSIGNMENT EFFECTIVE DATE MARCH 20, 2023. Recorded Feb 2, 2026
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 074921/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT 12817157 APPLICATION NUMBER PREVIOUSLY RECORDED AT REEL: 064015 FRAME: 0001. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 5, 2023
From: OT PATENT ESCROW, LLC
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064807/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE COVER SHEET AT PAGE 50 TO REMOVE 12817157 PREVIOUSLY RECORDED ON REEL 063471 FRAME 0474. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 5, 2023
From: BLACKBERRY LIMITED
To: OT PATENT ESCROW, LLC
Reel/Frame 064806/0669 →
NUNC PRO TUNC ASSIGNMENT Recorded Jun 19, 2023
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064066/0001 →
NUNC PRO TUNC ASSIGNMENT Recorded Jun 16, 2023
From: OT PATENT ESCROW, LLC
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064015/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2023
From: BLACKBERRY LIMITED
To: OT PATENT ESCROW, LLC
Reel/Frame 063471/0474 →
CHANGE OF NAME Recorded Oct 14, 2014
From: RESEARCH IN MOTION LIMITED
To: BLACKBERRY LIMITED
Reel/Frame 033987/0576 →
CHANGE OF NAME Recorded Jun 6, 2014
From: RESEARCH IN MOTION LIMITED
To: BLACKBERRY LIMITED
Reel/Frame 033104/0150 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 28, 2012
From: MURUGANATHAN, SIVA DHARSHAN; TABET, TARIK; BONTU, CHANDRA SEKHAR; SONG, YI; CAI, ZHIJUN
To: RESEARCH IN MOTION LIMITED
Reel/Frame 028663/0648 →