MY162402A

Beamforming of control information in a wireless communication system

Abstract

TECHNIQUES FOR SENDING TRAFFIC DATA AND CONTROL INFORMATION IN A WIRELESS COMMUNICATION SYSTEM (100) ARE DESCRIBED. IN ONE DESIGN, A TRANSMITTER (E.G., A NODE B (110) OR A UE (120)) MAY PERFORM BEAMFORMING TO SEND TRAFFIC DATA ON M LAYERS BASED ON A PRECODING MATRIX, WHERE M MAY BE ONE OR GREATER. THE TRANSMITTER MAY ALSO PERFORM BEAMFORMING TO SEND CONTROL INFORMATION ON UP TO M LAYERS BASED ON THE SAME PRECODING MATRIX USED FOR THE TRAFFIC DATA. THE TRANSMITTER MAY SEND THE BEAMFORMED TRAFFIC DATA ON A FIRST PHYSICAL CHANNEL AND MAY SEND THE BEAMFORMED CONTROL INFORMATION ON A SECOND PHYSICAL CHANNEL. THE TRANSMITTER MAY MULTIPLEX THE BEAMFORMED TRAFFIC DATA AND THE BEAMFORMED CONTROL INFORMATION USING TIME DIVISION MULTIPLEXING (TDM) OR FREQUENCY DIVISION MULTIPLEXING (FDM).

MY162402A, drawing sheet 1
Sheet 1 of 8

Term

No projected expiry on record.

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24 claims: 17 independent, 7 dependent

  1. 1
    CLAIMS 1. A method of sending traffic data and control information in a wireless communication system (100), comprising:5 performing (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers;performing (614) beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the ιo plurality of subcarriers;sending (616) the beamformed traffic data on a first physical channel;sending (618) the beamformed control information on a second physical channel;and sending non-beamformed control information in a first section of a resource 15 block, wherein the sending the beamformed control information comprises sending the beamformed control information in a second section ofthe resource block.
  2. 2
    A method of sending traffic data and control information in a wireless communication system (100), comprising:20 performing (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers;performing (614) beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the 25 plurality of subcarriers;sending (616) the beamformed traffic data on a first physical channel;and sending (618) the beamformed control information on a second physical channel, wherein the performing beamforming for the traffic data comprises performing beamforming based on M columns of the precoding matrix to send the 30 traffic data on M layers, where M is one or greater.
  3. 7
    A method of sending traffic data and control information in a wireless communication system (100), comprising:performing (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers;performing (614) beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers;sending (616) the beamformed traffic data on a first physical channel;and sending (618) the beamformed control information on a second physical channel, wherein the sending the beamformed traffic data comprises sending the beamformed traffic data in a first segment of a resource block, the first segment being allocated to the first physical channel, and wherein the sending the beamformed control information comprises sending the beamformed control information in a second segment of the resource block, the second segment being allocated to the second physical channel.
  4. 8
    A method of sending traffic data and control information in a wireless communication system (100), comprising:performing (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers;1 0 MAR 2016 amendment performing (614) beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers;sending (616) the beamformed traffic data on a first physical channel;and sending (618) the beamformed control information on a second physical channel, wherein the traffic data, the control information, and the precoding matrix are for a first user equipment (UE) (120), the method further comprising: performing beamforming for traffic data for a second UE (120) based on a second precoding matrix;performing beamforming for control information for the second UE (120) based on the second precoding matrix;sending the beamformed traffic data for the second UE (120) on the first physical channel;and sending the beamformed control information for the second UE (120) on the second physical channel.
  5. 11
    A method of sending traffic data and control information in a wireless communication system (100), comprising:performing (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers;performing (614) beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers;sending (616) the beamformed traffic data on a first physical channel;and sending (618) the beamformed control information on a second physical channel, wherein the control information comprises a scheduling assignment for a user equipment (UE) (120), and wherein the traffic data is sent in accordance with the scheduling assignment.
  6. 13
    An apparatus for wireless communication, comprising:at least one processor (1020, 1040, 1090) configured to perform (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers, to perform
  7. 14
    15 (614) beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers, to send (616) the beamformed traffic data on a first physical channel, and to send (618) the beamformed control information on a second physical channel, wherein the at least one processor (1020, 1040, 1090) is configured to 20 send the beamformed traffic data in a first segment of a resource block and to send the beamformed control information in a second segment of the resource block, the first segment being allocated to the first physical channel, and the second segment being allocated to the second physical channel. 25 14. An apparatus for wireless communication, comprising:at least one processor (1020, 1040, 1090) configured to perform (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers, to perform (614) beamforming for control information by multiplying the precoding matrix 30 with a vector of control symbols to be sent on at least one of the plurality of subcarriers, to send (616) the beamformed traffic data on a first physical channel, and to send (618) the beamformed control information on a second physical channel, wherein the at least one processor (1020, 1040, 1090) is configured to traffic data on M layers, where M is one or greater, and to perform beamforming based on one column of the precoding matrix to send the control information on one layer. 15. An apparatus for wireless communication, comprising: at least one processor (1020, 1040, 1090) configured to perform (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers, to perform (614) beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers, to send (616) the beamformed traffic data on a first physical channel, and to send (618) the beamformed control information on a second physical channel, wherein the at least one processor (1020, 1040, 1090) is configured to send non-beamformed control information in a first section of a resource block, and to send the beamformed control information in a second section of the resource block, the first and second sections of the resource block being time division multiplexed or frequency division multiplexed.
  8. 15
    16. An apparatus for wireless communication, comprising:means (712) for performing beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers;means (714) for performing beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers;means (716) for sending the beamformed traffic data on a first physical channel;and means (718) for sending the beamformed control information on a second physical channel, wherein the means for sending the beamformed traffic data comprises means for sending the beamformed traffic data in a first segment of a resource block, the first segment being allocated to the first physical channel, and wherein the means for sending the beamformed control information comprises means for sending the beamformed control information in a second segment of ( 1 0 MAR '/016 AMENDMENT the resource block, the second segment being allocated to the second physical channel.
  9. 16
    17. An apparatus for wireless communication, comprising:means (712) for performing beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers;means (714) for performing beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers;means (716) for sending the beamformed traffic data on a first physical channel;and means (718) for sending the beamformed control information on a second physical channel, wherein the means for performing beamforming for the traffic data comprises means for performing beamforming based on M columns of the precoding matrix to send the traffic data on M layers, where M is one or greater, and wherein the means for performing beamforming for the control information comprises means for performing beamforming based on one column of the precoding matrix to send the control information on one layer.
  10. 17
    18. An apparatus for wireless communication, comprising:means (712) for performing beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers;means (714) for performing beamforming for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers;means (716) for sending the beamformed traffic data on a first physical channel;and means (718) for sending the beamformed control information on a second physical channel, means for sending non-beamformed control information in a first section of a resource block, and wherein the means for sending the beamformed control information comprises means for sending the beamformed control information in a second section of the resource block, the first and second sections of the resource block being time division multiplexed or frequency division multiplexed.
  11. 18
    19. A computer program product, comprising:5 a non-transitory computer-readable medium comprising: code for causing at least one computer to perform (612) beamforming for traffic data by multiplying a precoding matrix with a vector of data symbols to be sent on at least one of a plurality of subcarriers, code for causing the at least one computer to perform (614) beamforming 10 for control information by multiplying the precoding matrix with a vector of control symbols to be sent on at least one of the plurality of subcarriers, code for causing the at least one computer to send (616) the beamformed traffic data on a first physical channel, code for causing the at least one computer to send the beamformed control information on a second physical channel;15 code for causing the at least one computer to send the beamformed traffic data in a first segment of a resource block;and code for causing the at least one computer to send the beamformed control information in a second segment of the resource block, the first segment being allocated to the first physical channel, and the second segment being
  12. 19
    20 allocated to the second physical channel. 20. A method of receiving traffic data and control information in a wireless communication system (100), comprising:receiving (812) beamformed traffic data sent on a first physical channel in 25 accordance with a multiplication of a precoding matrix with a vector of data symbols sent on at least one of a plurality of subcarriers;receiving (814) beamformed control information sent on a second physical channel in accordance with a multiplication of the precoding matrix with a vector of control symbols sent on at least one of the plurality of subcarriers;30 performing (816) detection for the beamformed control information to recover the control information;and performing (818) detection for the beamformed traffic data to recover the traffic data, wherein the receiving the beamformed traffic data comprises receiving the beamformed traffic data in a first segment of a resource block, the first ( 1 0 MAR 2016 AMENDMENT segment being allocated to the first physical channel, and wherein the receiving the beamformed control information comprises receiving the beamformed control information in a second segment of the resource block, the second segment being allocated to the second physical channel.
  13. 20
    21. A method of receiving traffic data and control information in a wireless communication system (100), comprising:receiving (812) beamformed traffic data sent on a first physical channel in accordance with a multiplication of a precoding matrix with a vector of data symbols sent on at least one of a plurality of subcarriers;receiving (814) beamformed control information sent on a second physical channel in accordance with a multiplication of the precoding matrix with a vector of control symbols sent on at least one of the plurality of subcarriers;performing (816) detection for the beamformed control information to recover the control information;and performing (818) detection for the beamformed traffic data to recover the traffic data, wherein the receiving the beamformed traffic data comprises receiving the beamformed traffic data sent on at least one layer based on at least one column of the precoding matrix, and wherein the receiving the beamformed control information comprises receiving the beamformed control information sent on one layer based on one column of the precoding matrix.
  14. 21
    22. A method of receiving traffic data and control information in a wireless communication system (100), comprising:receiving (812) beamformed traffic data sent on a first physical channel in accordance with a multiplication of a precoding matrix with a vector of data symbols sent on at least one of a plurality of subcarriers;receiving (814) beamformed control information sent on a second physical channel in accordance with a multiplication of the precoding matrix with a vector of control symbols sent on at least one of the plurality of subcarriers;performing (816) detection for the beamformed control information to recover the control information;and performing (818) detection for the beamformed traffic data to recover the of a resource block, and wherein the beamformed control information is sent in a second section of the resource block, the first and second sections being time division multiplexed or frequency division multiplexed.
  15. 22
    23. An apparatus for wireless communication, comprising:at least one processor (1020, 1040, 1090) configured to receive (812) beamformed traffic data sent on a first physical channel in accordance with a multiplication of a precoding matrix with a vector of data symbols sent on at least one of a plurality of subcarriers, to receive (814) beamformed control information sent on a second physical channel in accordance with a multiplication of the precoding matrix with a vector of control symbols sent on at least one of the plurality of subcarriers, to perform (816) detection for the beamformed control information to recover the control information, and to perform (818) detection for the beamformed traffic data to recover the traffic data, wherein the at least one processor (1020, 1040, 1090) is configured to receive the beamformed traffic data in a first segment of a resource block and to receive the beamformed control information in a second segment of the resource block, the first segment being allocated to the first physical channel, and the second segment being allocated to the second physical channel.
  16. 23
    24. An apparatus for wireless communication, comprising:at least one processor (1020, 1040, 1090) configured to receive (812) beamformed traffic data sent on a first physical channel in accordance with a multiplication of a precoding matrix with a vector of data symbols sent on at least one of a plurality of subcarriers, to receive (814) beamformed control information sent on a second physical channel in accordance with a multiplication of the precoding matrix with a vector of control symbols sent on at least one of the plurality of subcarriers, to perform (816) detection for the beamformed control information to recover the control information, and to perform (818) detection for the beamformed traffic data to recover the traffic data, wherein the at least one processor (1020, 1040, 1090) is configured to receive the beamformed traffic data sent on at least one layer based on at least one column of the precoding matrix, and to receive the beamformed control information sent on one layer based on one column of the precoding matrix. 1 0 MAR 2016 AMENDMENT
  17. 24
    25. An apparatus for wireless communication, comprising:at least one processor (1020, 1040, 1090) configured to receive (812) beamformed traffic data sent on a first physical channel in accordance with a multiplication of a precoding matrix with a vector of data symbols sent on at least 5 one of a plurality of subcarriers, to receive (814) beamformed control information sent on a second physical channel in accordance with a multiplication of the precoding matrix with a vector of control symbols sent on at least one of the plurality of subcarriers, to perform (816) detection for the beamformed control information to recover the control information, and to perform (818) detection for io the beamformed traffic data to recover the traffic data, wherein non-beamformed control information is sent in a first section of a resource block, and wherein the beamformed control information is sent in a second section of the resource block, the first and second sections being time division multiplexed or frequency division multiplexed.
Independent claims17