IP Library › Granted Patent US 9,084,149
Granted Patent B2
US 9,084,149 · App. 14/243,450 · Granted Jul 14, 2015

Radio link monitoring (RLM) and reference signal received power (RSRP) measurement for heterogeneous networks

Inventors: Taesang Yoo (San Diego, CA); Tao Luo (San Deigo, CA); Xiliang Luo (San Diego, CA)
Assignee: QUALCOMM Incorporated
H04W24/08H04B17/318H04B17/327H04B17/382H04L5/005H04L5/0094H04L25/02H04W24/00H04W72/04H04W72/042
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Quick Facts
Patent No.
US 9,084,149
App. No.
14/243,450
Granted
Jul 14, 2015
Kind
B2
Abstract

A method for communicating in an advanced long term evolution (LTE-A) network using common reference signal (CRS) resources associated with different interference levels due to resource partitioning is disclosed. Signals are received from an eNodeB indicating a subset of CRS resources for radio link monitoring (RLM) and/or reference signal received power (RSRP) measuring. The subset of CRS resources includes the CRS resources expected to have lower interference from the interfering eNodeBs. RLM and/or RSRP measurements are performed based on the indicated subset.

Claims (42)

1. A method for communicating in a network, comprising:

receiving a physical downlink control channel (PDCCH) in a subframe of the network;

determining a block error rate (BLER) of the received PDCCH;

comparing a decoding difficulty of the received PDCCH with a decoding difficulty of a hypothetical PDCCH, wherein the decoding difficulties of the received PDCCH and the hypothetical PDCCH are determined based on parameters of the received PDCCH and the hypothetical PDCCH;

identifying a difference between the decoding difficulties of the received PDCCH and the hypothetical PDCCH;

determining a BLER of the hypothetical PDCCH based at least in part on the determined BLER of the received PDCCH and the difference between the decoding difficulties of the received PDCCH and the hypothetical PDCCH; and

estimating a radio link quality, from the determined BLER of the hypothetical PDCCH, for radio link monitoring (RLM).

2. The method of claim 1 , wherein the parameter comprise one or more of a DCI format, an aggregation level, a resource element (RE) energy ratio, or a combination thereof.

3. The method of claim 1 , further comprising adjusting a signal carrying the received PDCCH to compensate for the difference between the decoding difficulties.

4. The method of claim 3 , wherein adjusting the signal carrying the received PDCCH comprises adding noise to the signal carrying the received PDCCH to compensate for the difference between the decoding difficulties.

5. The method of claim 3 , further comprising determining that a PDCCH in the adjusted signal is decodable.

6. A apparatus for wireless communication, comprising:

means receiving a physical downlink control channel (PDCCH) in a subframe of a network;

means for determining a block error rate (BLER) of the received PDCCH;

means for comparing a decoding difficulty of the received PDCCH with a decoding difficulty of a hypothetical PDCCH, wherein the decoding difficulties of the received PDCCH and the hypothetical PDCCH are determined based on parameters of the received PDCCH and the hypothetical PDCCH;

means for identifying a difference between the decoding difficulties of the received PDCCH and the hypothetical PDCCH;

means for determining a BLER of the hypothetical PDCCH based at least in part on the determined BLER of the received PDCCH and difference between the decoding difficulties of the received PDCCH and the hypothetical PDCCH; and

means for estimating a radio link quality, from the determined BLER of the hypothetical PDCCH, for radio link monitoring (RLM).

7. The apparatus of claim 6 , wherein the parameters comprise one or more of a DCI format, an aggregation level, a resource element (RE) energy ratio, or a combination thereof.

8. The apparatus of claim 6 , further comprising means for adjusting a signal carrying the received PDCCH to compensate for the difference between the decoding difficulties.

9. The apparatus of claim 8 , further comprising means for determining that a PDCCH in the adjusted signal is decodable.

10. The apparatus of claim 8 , wherein the means for adjusting the signal carrying the received PDCCH comprises means for adding noise to the signal carrying the received PDCCH to compensate for the difference between the decoding difficulties.

11. A non-transitory computer-readable medium having program code recorded thereon, the program code comprising:

program code to receive a physical downlink control channel (PDCCH) in a subframe of a network;

program code to compare a decoding difficulty of the received PDCCH with a decoding difficulty of a hypothetical PDCCH, wherein the decoding difficulties of the received PDCCH and the hypothetical PDCCH are determined based on parameters of the received PDCCH and the hypothetical PDCCH;

program code to identify a difference between the decoding difficulties of the received PDCCH and the hypothetical PDCCH;

program code to determine a BLER of the hypothetical PDCCH based at least in part on the determined BLER of the received PDCCH and the difference between the decoding difficulties of the received PDCCH and the hypothetical PDCCH; and

program code to estimate a radio link quality, from the determined BLER of the hypothetical PDCCH, for radio link monitoring (RLM).

12. The non-transitory computer-readable medium of claim 11 , wherein the parameters comprise one or more of a DCI format, an aggregation level, a resource element (RE) energy ratio, or a combination thereof.

13. An apparatus for wireless communication, comprising:

a memory; and

at least one processor coupled to the memory, the memory storing instructions, the instructions being executable by the processor to:

receive a physical downlink control channel (PDCCH) in a subframe of a network;

determine a block error rate (BLER) of the received PDCCH;

compare a decoding difficulty of the received PDCCH with a decoding difficulty of a hypothetical PDCCH, wherein the decoding difficulties of the received PDCCH and the hypothetical PDCCH are determined based on parameters of the received PDCCH and the hypothetical PDCCH;

identify a difference between the decoding difficulties of the received PDCCH and the hypothetical PDCCH;

determine a BLER of the hypothetical PDCCH based at least in part on the determined BLER of the received PDCCH and the difference between the decoding difficulties of the received PDCCH and the hypothetical PDCCH; and

estimate a radio link quality, from the determined BLER of the hypothetical PDCCH, for radio link monitoring (RLM).

14. The apparatus of claim 13 , wherein the parameters comprise one or more of a DCI format, an aggregation level, a resource element (RE) energy ratio, or a combination thereof.

15. The apparatus of claim 13 , further comprising instructions executable by the processor to adjust a signal carrying the received PDCCH to compensate for the difference between the decoding difficulties.

16. The apparatus of claim 15 , further comprising instructions executable by the processor to determine a PDCCH in the adjusted signal is decodable.

17. The apparatus of claim 15 , further comprising instructions executable by the processor to add noise to the signal carrying the received PDCCH to adjust the signal carrying the received PDCCH and to compensate for the difference between the decoding difficulties.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 21, 2014
From: YOO, TAESANG; LUO, TAO; LUO, XILIANG
To: QUALCOMM INCORPORATED
Reel/Frame 034230/0651 →
Continuity (3)
Division 13084806 · Apr 12, 2011
Provisional Application 61325100 · Apr 16, 2010
Related Publication 20140211655A1 · Jul 31, 2014