IP Library Granted Patent US 9,077,569
Granted Patent B2
US 9,077,569 · App. 14/065,541 · Granted Jul 7, 2015

Reference signal for a control channel in wireless communication network

Inventors: Ravikiran Nory (Buffalo Grove, IL); Vijay Nangia (Algonquin, IL); Ajit Nimbalker (Buffalo Grove, IL); Krishna Kamal Sayana (Arlington Heights, IL)
Assignee: Google Technology Holdings LLC
H04L25/0228H04L5/0048
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Quick Facts
Patent No.
US 9,077,569
App. No.
14/065,541
Granted
Jul 7, 2015
Kind
B2
Abstract

A wireless communication terminal receives a first set of pilot signal resource elements and control information in spatial layers in a first resource block in a subframe and a second set of pilot signal resource elements and data in spatial layers in a second resource block in the subframe, wherein the first and second resource blocks span a set of time symbols in a sub-frame, the first resource blocks span a first set of frequency carriers in the sub-frame, and the second resource blocks span a second set of frequency carriers in the sub-frame. The terminal decodes the spatial layers in which the control information is received using the first set of pilot signal resource elements. The terminal also decodes the spatial layers in which the data are received in the second resource block using the second set of pilot signal resource elements.

Claims (26)

1. A method in a wireless communication terminal, the method comprising:

receiving a first set of pilot signal resource elements and control information in one or more spatial layers in a first set of time symbols in a first resource block in a subframe, the first resource block spanning a first set of frequency carriers in the sub-frame;

receiving a second set of pilot signal resource elements and data in one or more spatial layers in the first set of time symbols in a second resource block in the subframe, the second resource block spanning a second set of frequency carriers in the sub-frame;

decoding the one or more spatial layers in which the control information is received using the first set of pilot signal resource elements, the first set of pilot signal resource elements comprising a first number of pilot signal resource elements per layer; and

decoding the one or more spatial layers in which the data are received in the second resource block using the second set of pilot signal resource elements, the second set of pilot signal resource elements comprising a second number of pilot signal resource elements per layer, the second number of pilot signal resource elements present in the second resource block;

wherein the first number is greater than the second number.

2. The method of claim 1 :

wherein the first number of pilot signal resource elements per layer is a first number of pilot signal resource elements per layer per resource block; and

wherein the second number of pilot signal resource elements per layer is a second number of pilot signal resource elements per layer per resource block.

3. The method of claim 1 wherein the second set of frequency carriers are non-overlapping with the first set of frequency carriers.

4. The method of claim 1 wherein a size of the second set of frequency carriers is same as a size of the first set of frequency carriers.

5. The method of claim 1 further comprising decoding the one or more spatial layers in which the control information is received using the first set of pilot signal resource elements includes performing channel estimation based on the first set of pilot resource elements.

6. The method of claim 1 further comprising:

decoding a spatial layer in which the control information is received using the first set of pilot signal resource elements, the first set of pilot signal resource elements associated with a first antenna port; and

decoding a spatial layer in which the data are received using a second set of pilot signal resource elements, the second set of pilot signal resource elements associated with the first antenna port.

7. The method of claim 6 wherein the first set of pilot signal resource elements and the second set of pilot signal resource elements occupy common time symbols in the subframe.

8. The method of claim 6 further comprising receiving control information using only the first set of pilot signal resource elements.

9. The method of claim 1 further comprising:

decoding a spatial layer in which the control information is received using the first set of pilot signal resource elements, the first set of pilot signal resource elements associated with a first antenna port and a second antenna port; and

decoding a spatial layer in which the data are received using the second set of pilot signal resource elements, the second set of pilot signal resource elements associated with a third antenna port.

10. The method of claim 9 wherein the first set of pilot signal resource elements and the second set of pilot signal resource elements occupy common time symbols in the subframe.

11. The method of 9 wherein the first antenna port is the same as the third antenna port.

12. The method of claim 1 further comprising:

determining that data are expected in the second resource block in the subframe using the control information; and

decoding the one or more spatial layers in which the data are received in the second resource block using the control information.

13. The method of claim 1 further comprising determining that control information is expected in the first resource block in the subframe based on a signal received from a base unit.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 30, 2014
From: MOTOROLA MOBILITY LLC
To: GOOGLE TECHNOLOGY HOLDINGS LLC
Reel/Frame 034500/0001 →
CERTIFICATE OF CONVERSION Recorded Nov 7, 2014
From: MOTOROLA MOBILITY, INC.
To: MOTOROLA MOBILITY LLC
Reel/Frame 034384/0647 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 6, 2014
From: NORY, RAVIKIRAN; NANGIA, VIJAY; NIMBALKER, AJIT; SAYANA, KRISHNA KAMAL
To: MOTOROLA MOBILITY, INC.
Reel/Frame 034122/0640 →
Continuity (2)
Continuation 13210317 · Aug 15, 2011
Related Publication 20140226761A1 · Aug 14, 2014