IP Library Granted Patent US 10,027,396
Granted Patent B2
US 10,027,396 · App. 15/343,980 · Granted Jul 17, 2018

Method of measuring CSI in wireless communication system supporting unlicensed bands and apparatus supporting the same

Inventors: Hanjun Park (Seoul, KR); Joonkui Ahn (Seoul, KR); Seonwook Kim (Seoul, KR); Suckchel Yang (Seoul, KR); Hanbyul Seo (Seoul, KR)
Assignee: LG ELECTRONICS INC.
H04B7/0626H04B17/345H04L5/0048H04W4/10H04J11/0023H04L27/2601H04W74/0833H04W88/02H04W88/08
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Quick Facts
Patent No.
US 10,027,396
App. No.
15/343,980
Granted
Jul 17, 2018
Kind
B2
Abstract

The present invention discloses a channel state information (CSI) measurement method through which a user equipment (UE) recognizes a resource pattern applied to a current CSI measurement resource through blind detection or dynamic signaling and performs CSI measurement when an evolved Node B (eNB) or the UE performs LBT (Listen-Before-Talk) based signal transmission and the eNB transmits CSI measurement resources (e.g., CRS/CSI-RS/CSI-IM) by applying one of a plurality of resource patterns thereto, and a UE performing the same.

Claims (54)

1. A method of measuring channel state information (CSI) by a user equipment (UE) in a wireless communication system supporting unlicensed bands, the method comprising:

receiving, by the UE from an evolved Node B (eNB), CSI resource configuration information indicating one of a plurality of CSI measurement resource patterns;

determining, by the UE, a CSI measurement resource pattern based on the CSI resource configuration information,

wherein each of the plurality of CSI measurement resource patterns has different patterns, respectively, according to a last symbol position of orthogonal frequency division multiplexing (OFDM) symbols occupied by each of the plurality of CSI measurement resource patterns in one subframe; and

measuring, by the UE, CSI for one or more subframes using the determined CSI measurement resource pattern.

2. The method of claim 1 , wherein CSI measurement resources of the plurality of CSI measurement resource patterns comprise one or more of cell specific reference signal (CRS), channel state information-reference signal (CSI-RS) and channel state information-interference measurement (CSI-IM) resources.

3. The method of claim 2 , wherein each of the one or more subframes comprises OFDM symbols # 0 to # 13 in a time domain, and subcarriers # 0 to # 11 in a frequency domain,

wherein the plurality of CSI measurement resource patterns comprises:

a first CSI measurement resource pattern comprising the CSI-RS resource allocated to subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 2 and # 3 of each of the one or more subframes,

a second CSI measurement resource pattern comprising the CSI-RS resource allocated to subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 2 and # 3 and subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 5 and # 6 of each of the one or more subframes,

a third CSI measurement resource pattern comprising the CSI-RS resource allocated to subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 2 and # 3 , subcarriers # 0 to # 11 on OFDM symbols # 5 and # 6 and subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 9 and # 10 of each of the one or more subframes, and

a fourth CSI measurement resource pattern comprising the CSI-RS resource allocated to subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 5 and # 6 , subcarriers # 0 to # 11 on OFDM symbols # 9 and # 10 and subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 12 and # 13 of each of the one or more subframes.

4. The method of claim 2 , wherein, when the CSI resource configuration information is not received from the eNB, the UE measures a number of consecutive OFDM symbols carrying data transmitted in a subframe corresponding to a time appointed to receive the CSI resource configuration information on the basis of position information of a CRS detected in the subframe and measures CSI for the one or more subframes using a CSI measurement resource pattern determined on the basis of the measured number of consecutive OFDM symbols.

5. A method of measuring channel state information (CSI) by a user equipment (UE) in a wireless communication system supporting unlicensed bands, the method comprising:

receiving, by the UE from an evolved Node B (eNB), subframe configuration information indicating whether a specific subframe is a partial subframe carrying data transmitted only through some orthogonal frequency division multiplexing (OFDM) symbols;

when the subframe configuration information indicates that the specific subframe is the partial subframe, the method further comprising:

measuring, by the UE, a length of data transmitted from the eNB in the specific subframe based on position information of a cell specific reference signal (CRS) detected in the specific subframe,

determining, by the UE, a CSI measurement resource pattern based on the measured data length, and

measuring, by the UE, CSI for one or more subframes including the specific subframe using the determined CSI measurement resource pattern; and

when the subframe configuration information indicates that the specific subframe is not the partial subframe, the method further comprising:

determining, by the UE, a CSI measurement resource pattern as a predetermined CSI measurement resource pattern, and

measuring, by the UE, CSI for one or more subframes including the specific subframe using the predetermined CSI measurement resource pattern.

6. The method of claim 5 , wherein CSI measurement resources of the CSI measurement resource pattern comprise a channel state information-reference signal (CSI-RS) resource,

wherein each of the one or more subframes includes OFDM symbols # 0 to # 13 in a time domain,

wherein the CSI measurement resource pattern is determined as a CSI measurement resource pattern in which the CSI-RS resource is assigned to OFDM symbols # 2 and # 3 of each of the one or more subframes when the CRS is detected in OFDM symbols # 0 and # 4 of the specific subframe,

wherein the CSI measurement resource pattern is determined as a CSI measurement resource pattern in which the CSI-RS resource is assigned to OFDM symbols # 2 , # 3 , # 5 and # 6 of each of the one or more subframes when the CRS is detected in OFDM symbols # 0 , # 4 and # 7 of the specific subframe, and

wherein the CSI measurement resource pattern is determined as a CSI measurement resource pattern in which the CSI-RS resource is assigned to OFDM symbols # 2 , # 3 , # 5 , # 6 , # 9 and # 10 of each of the one or more subframes when the CRS is detected in OFDM symbols # 0 , # 4 , # 7 and # 11 of the specific subframe.

7. A user equipment (UE) for measuring channel state information (CSI) in a wireless communication system supporting unlicensed bands, the UE comprising:

a receiver; and

a processor operating by being connected to the receiver,

wherein the processor:

controls the receiver to receive, from an evolved Node B (eNB), CSI resource configuration information indicating one of a plurality of CSI measurement resource patterns,

wherein each of the plurality of CSI measurement resource patterns has different patterns, respectively, according to a last symbol position of orthogonal frequency division multiplexing (OFDM) symbols occupied by each of the plurality of CSI measurement resource patterns in one subframe, and

measures CSI for one or more subframes using a CSI measurement resource pattern indicated by the CSI resource configuration information.

8. The UE of claim 7 , wherein CSI measurement resources of the plurality of CSI measurement resource patterns comprise one or more of cell specific reference signal (CRS), a channel state information-reference signal (CSI-RS) and channel state information-interference measurement (CSI-IM) resources.

9. The UE of claim 8 , wherein each of the one or more subframes comprises OFDM symbols # 0 to # 13 in a time domain, and subcarriers # 0 to # 11 in a frequency domain,

wherein the plurality of CSI measurement resource patterns comprises:

a first CSI measurement resource pattern comprising the CSI-RS resource allocated to subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 2 and # 3 of each of the one or more subframes,

a second CSI measurement resource pattern comprising the CSI-RS resource allocated to subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 2 and # 3 and subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 5 and # 6 of each of the one or more subframes,

a third CSI measurement resource pattern comprising the CSI-RS resource allocated to subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 2 and # 3 , subcarriers # 0 to # 11 on OFDM symbols # 5 and # 6 and subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 9 and # 10 of each of the one or more subframes, and

a fourth CSI measurement resource pattern comprising the CSI-RS resource allocated to subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 5 and # 6 , subcarriers # 0 to # 11 on OFDM symbols # 9 and # 10 and subcarriers # 2 , # 3 , # 8 and # 9 on OFDM symbols # 12 and # 13 of each of the one or more subframes.

10. The UE of claim 8 , wherein, when the processor does not receive the CSI resource configuration information from the eNB, the processor measures the number of consecutive OFDM symbols carrying data transmitted in a subframe corresponding to a time appointed to receive the CSI resource configuration information on the basis of position information of a CRS detected in the subframe and measures CSI for the one or more subframes using a CSI measurement resource pattern determined on the basis of the measured number of consecutive OFDM symbols.

11. A user equipment (UE) for measuring channel state information (CSI) in a wireless communication system supporting unlicensed bands, the UE comprising:

a receiver; and

a processor operating by being connected to the receiver,

wherein the processor:

controls the receiver to receive, from an evolved Node B (eNB), subframe configuration information indicating whether a specific subframe is a partial subframe carrying data transmitted only through some orthogonal frequency division multiplexing (OFDM) symbols,

when the subframe configuration information indicates that the specific subframe is the partial subframe, measures a length of data transmitted from the eNB in the specific subframe on the basis of position information of a cell specific reference signal (CRS) detected in the specific subframe, determines a CSI measurement resource pattern based on the measured data length, and measures CSI for one or more subframes including the specific subframe using the determined CSI measurement resource pattern,

when the subframe configuration information indicates that the specific subframe is not the partial subframe, determines a CSI measurement resource pattern as a predetermined CSI measurement resource pattern, and measures CSI for one or more subframes including the specific subframe using the predetermined CSI measurement resource pattern.

12. The UE of claim 11 , wherein CSI measurement resources of the CSI measurement resource pattern comprise a channel state information-reference signal (CSI-RS) resource,

wherein each of the one or more subframes includes OFDM symbols # 0 to # 13 in a time domain;

wherein the CSI measurement resource pattern is determined as a CSI measurement resource pattern in which the CSI-RS resource is assigned to OFDM symbols # 2 and # 3 of each of the one or more subframes when the CRS is detected in OFDM symbols # 0 and # 4 of the specific subframe;

wherein the CSI measurement resource pattern is determined as a CSI measurement resource pattern in which the CSI-RS resource is assigned to OFDM symbols # 2 , # 3 , # 5 and # 6 of each of the one or more subframes when the CRS is detected in OFDM symbols # 0 , # 4 and # 7 of the specific subframe; and

wherein the CSI measurement resource pattern is determined as a CSI measurement resource pattern in which the CSI-RS resource is assigned to OFDM symbols # 2 , # 3 , # 5 , # 6 , # 9 and # 10 each of the one or more subframes when the CRS is detected in OFDM symbols # 0 , # 4 , # 7 and # 11 of the specific subframe.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2016
From: PARK, HANJUN; AHN, JOONKUI; KIM, SEONWOOK; YANG, SUCKCHEL; SEO, HANBYUL
To: LG ELECTRONICS INC.
Reel/Frame 040694/0142 →
Continuity (2)
Provisional Application 62250523 · Nov 4, 2015
Related Publication 20170126300A1 · May 4, 2017