IP Library Granted Patent US 9,992,769
Granted Patent B2
US 9,992,769 · App. 14/431,052 · Granted Jun 5, 2018

Method for determining resources of physical downlink control channels

Inventors: Shin Horng Wong (Chippenham, GB); Matthew Baker (Canterbury, GB); Qi Jiang (Shanghai, CN); Zheng Liu (Shanghai, CN)
Assignee: Alcatel Lucent
H04W72/042H04J11/0086H04L5/001H04L5/0007H04L5/0053
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Quick Facts
Patent No.
US 9,992,769
App. No.
14/431,052
Granted
Jun 5, 2018
Kind
B2
Abstract

A method for determining resources to be decoded by the UE to retrieve physical downlink control channels. A method is in a UE or an eNB and comprises the following steps of: i. determining a start position of a unit of resources in one physical resource block pair; ii, determining a gap between two of the units; and iii. determining a set of units, in a given plurality of physical resource block pairs, according to said start position and said gap, as the resources to be decoded. In this way, the eNB and the UE can locate all the resources for the EPDCCH, namely the search space is determined. This aspect allows a balance between the number of blind decoding and eNB scheduling flexibility in the EPDCCH search space.

Claims (90)

1. A method, in a UE or an eNB, of determining resources to be decoded by the UE to retrieve physical downlink control channels, comprising:

determining a start position of a unit of resources in one physical resource block pair according to UE specific information;

determining a gap between two of the units; and

determining a set of units, in a given plurality of physical resource block pairs, according to said start position and said gap, as the resources to be decoded.

2. A method according to claim 1 , wherein, said unit is a control channel element within a physical resource block, and said determining a start position of a unit of resources in one physical resource block pair determines the start position of a control channel element in one physical resource block pair according to:

the total number of control channel elements that is required in the physical downlink control channel; and

the number of control channel elements in one physical resource block pair.

3. A method according to claim 2 , wherein the determining a start position of a unit of resources in one physical resource block pair uses the following equation:

I ECCE =max[ ID C-RNTI mod( N ECCE −(AL−1)),0]

wherein, I ECCE stands for the index of the start control channel element in one physical resource block pair, ID C-RNTI stands for a UE-specific ID, N ECCE stands for the number of control channel elements in one physical resource block pair, and AL stands for the aggreagation level that is relevant with the total number of control channel elements that is required in the physical downlink control channel.

4. A method according to claim 1 , wherein the unit of the resources is a resource element group within a control channel element in a physical resource block pair, and said determining a start position of a unit of resources in one physical resource block pair comprises:

determining the start position of a control channel element, within which the resource element group is located, in one physical resource block pair according to:

UE specific information;

the total number of control channel elements that is required;

the number of resource element groups in one control channel element; and

the number of control channel elements in one physical resource block pair

determining the start position of the resource element group in the control channel element according to:

UE specific information;

the total number of control channel elements that is required; and

the number of resource element groups in one control channel element.

5. A method according to claim 4 , wherein the determining the start position of a control channel element uses the following equation:

I

ECCE

=

max

[

ID

C

-

RNTI

mod

(

N

ECCE

-

(

AL

N

EREG

-

1

)

)

,

0

]

wherein, I ECCE stands for the index of the start control channel element in one physical resource block pair, ID C-RNTI stands for a UE-specific ID, N ECCE stands for the number of control channel elements in one physical resource block pair, N EREG stands for the number of resource element groups within one control channel elements, and AL stands for the aggreagation level that is relevant with the total number of control channel elements that is required in the physical downlink control channel.

6. A method according to claim 4 , wherein the determining the start position of the resource element group in the control channel element uses the following equation:

I ECCE =max[ ID C-RNTI mod( N ECCE −(AL−1)),0]

wherein, I EREG stands for the index of the start resource element group within one control channel elements, ID C-RNTI stands for a UE-specific ID, N EREG stands for the number of resource element groups within one control channel elements, and AL stands for the aggregation level that is relevant with the total number of control channel elements that is required in the physical downlink control channel.

7. A method according to claim 1 , wherein the determining a start position of a unit of resources in one physical resource block pair determines the start position of a unit of the resources in one physical resource block pair further according to at least one of:

the index of the sub-frame for the physical downlink control channel;

the physical resource block pairs for the physical downlink control channel.

8. A method according to claim 1 , wherein said unit is a control channel element within a physical resource block pair, and

said determining a gap between two of the units comprises:

determines the gap between two of the control channel elements; or

determines the control channel elements within the same physical resource block pair as being contiguous.

9. A method according to claim 1 , wherein the unit of the resources is a resource element group within a control channel element in a physical resource block pair, and said determining a gap between two of the units comprises:

determining the resource element groups within the same control channel element as being contiguous;

determining the gap between corresponding resource element groups within different physical resource block pairs according to:

the number of control channel elements in one physical resource block pair;

the total number of physical resource block pairs available for the physical downlink control channel; and

the number of physical resource block pairs into which the physical downlink control channel is to be spread.

10. A method according to claim 9 , wherein the determining a gap between two of the units uses the following equation to determine the gap between corresponding resource element groups within different physical resource block pairs:

G

EREG

=

(

N

ECCE

×

N

PRB

)

N

DIV

wherein, G EREG is the gap in a unit of control channel element, N ECCE stands for the number of control channel elements in one physical resource block pair, N PRB stands for the total number of physical resource block pairs available for the physical downlink control channel, and N DIV stands for the number of physical resource block pairs into which the physical downlink control channel is to be spread.

11. A method according to claim 1 , wherein the method is in a UE for retrieving the physical downlink control channel, the method further comprises:

determining one or more candidates in said plurality of physical resource block pairs, based on the determined set;

for a respective candidate, decoding the signal transmitted on the set of units of resources for that candidate, for retrieving the physical downlink control channel from that candidate.

12. A method according to claim 1 , wherein the method is in an eNB for transmitting the physical downlink control channel, the method further comprises:

determining one or more candidates in said plurality of physical resource block pairs, based on the determined set;

selecting one from the one or more determined candidates, and transmitting the encoded physical downlink control channel in the selected candidate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2019
From: ALCATEL LUCENT
To: NOKIA TECHNOLOGIES OY
Reel/Frame 050910/0728 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 19, 2015
From: WONG, SHIN HORNG; BAKER, MATTHEW; JIANG, QI; LIU, ZHENG
To: ALCATEL LUCENT
Reel/Frame 036363/0229 →
Continuity (1)
Related Publication 20150257131A1 · Sep 10, 2015