IP Library › Granted Patent US 10,812,295
Granted Patent B2
US 10,812,295 · App. 16/191,748 · Granted Oct 20, 2020

Search space set hashing under channel estimation capability

Inventors: Heechoon Lee (San Diego, CA); Jing Sun (San Diego, CA); Wanshi Chen (San Diego, CA); Tao Luo (San Diego, CA)
Assignee: QUALCOMM Incorporated
H04L25/0224H04L1/0038H04L5/0048H04L5/0053H04W72/042H04L5/005H04L5/0094
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Quick Facts
Patent No.
US 10,812,295
App. No.
16/191,748
Granted
Oct 20, 2020
Kind
B2
Abstract

Methods, systems, and devices for wireless communications are described. A network device such as a next generation (gNB) may identify control information for transmission on a downlink control channel e.g., a physical downlink control channel (PDCCH). The network device may identify a candidate set of decoding candidates to which the control information is able to be mapped. In some examples, each decoding candidate may include one or more control channel elements (CCEs). The network device may select, from the candidate set of decoding candidates, an actual set of decoding candidates to which the control information is to actually be mapped, and map the control information into the actual set of decoding candidates. Upon decoding the control information, the network device may transmit the control information within a search space including the actual set of decoding candidates to a user equipment (UE).

Claims (51)

1. A method for wireless communication at a base station, comprising:

identifying control information for transmission on a downlink control channel;

identifying a candidate set of decoding candidates to which the control information is configured to be mapped, each decoding candidate comprising one or more control channel elements (CCEs);

selecting, from the candidate set of decoding candidates, an actual set of decoding candidates to which the control information is to actually be mapped, the selecting comprising evaluating decoding candidates by:

identifying a decoding candidate of the candidate set to be evaluated;

identifying a number of CCEs in the decoding candidate being evaluated;

determining an evaluation number of CCEs by adding the number of CCEs in the decoding candidate being evaluated to a number of CCEs already included within the actual set;

comparing the evaluation number of CCEs to a threshold; and

determining whether to add the decoding candidate being evaluated to the actual set of decoding candidates based at least in part on the comparing;

mapping the control information into the actual set of decoding candidates; and

transmitting the control information within a search space comprising the actual set of decoding candidates.

2. The method of claim 1 , wherein selecting the actual set of decoding candidates further comprises:

evaluating each decoding candidate of the candidate set sequentially for inclusion within the actual set of decoding candidates.

3. The method of claim 1 , wherein selecting the actual set of decoding candidates further comprises:

evaluating each decoding candidate of the candidate set in accordance with an order of evaluation.

4. The method of claim 1 , wherein the threshold is a maximum number of CCEs on which a user equipment (UE) receiving the control information is configured to perform channel estimation for a downlink transmission and process a physical downlink control channel associated with the downlink transmission.

5. The method of claim 4 , further comprising:

receiving, from the UE, an indication of the maximum number of CCEs on which the UE is configured to perform channel estimation for the downlink transmission.

6. The method of claim 1 , further comprising:

determining the number of CCEs already included within the actual set by accounting for any overlapping CCEs of decoding candidates already included within the actual set.

7. The method of claim 1 , wherein determining whether to add the decoding candidate being evaluated to the actual set of decoding candidates comprises:

adding the decoding candidate being evaluated to the actual set of decoding candidates based at least in part on when the evaluation number of CCEs is less than or equal to the threshold.

8. The method of claim 1 , wherein determining whether to add the decoding candidate being evaluated to the actual set of decoding candidates comprises:

dropping the decoding candidate being evaluated from the actual set of decoding candidates when the evaluation number of CCEs is greater than the threshold.

9. The method of claim 1 , wherein determining whether to add the decoding candidate being evaluated to the actual set of decoding candidates comprises:

dropping the decoding candidate being evaluated from any inclusion in the actual set of decoding candidates when the evaluation number of CCEs is greater than the threshold.

10. The method of claim 9 , further comprising:

identifying an alternative decoding candidate, the alternative decoding candidate being of a same aggregation level as the decoding candidate being evaluated but not being within either the candidate set of decoding candidates or the actual set of decoding candidates; and

adding the alternative decoding candidate to the actual set of decoding candidates.

11. The method of claim 10 , wherein identifying the alternative decoding candidate comprises:

testing decoding candidates based at least in part on a sequentially increasing offset value.

12. The method of claim 1 , wherein selecting the actual set of decoding candidates further comprises:

identifying, from the candidate set of decoding candidates, a set of decoding candidates for each aggregation level;

concatenating the sets of decoding candidates for each aggregation level into a single set of decoding candidates, accounting for any overlapping decoding candidates; and

truncating the single set of decoding candidates to form the actual set of decoding candidates such that a number of CCEs in the actual set of decoding candidates does not exceed a maximum number of CCEs on which a user equipment (UE) receiving the control information is configured to perform channel estimation for a downlink transmission.

13. The method of claim 12 , further comprising:

randomizing the single set of decoding candidates based at least in part on a transmission slot, an identifier of the UE, or combinations of the same.

14. An apparatus for wireless communication, comprising:

a processor;

memory in electronic communication with the processor; and

instructions stored in the memory and executable by the processor to cause the apparatus to:

identify control information for transmission on a downlink control channel;

identify a candidate set of decoding candidates to which the control information is configured to be mapped, each decoding candidate comprising one or more control channel elements (CCEs);

select, from the candidate set of decoding candidates, an actual set of decoding candidates to which the control information is to actually be mapped, wherein the instructions executable by the processor to cause the apparatus to select the actual set of decoding candidates further comprise instructions executable by the processor to cause the apparatus to:

identify a decoding candidate of the candidate set to be evaluated:

identify a number of CCEs in the decoding candidate being evaluated:

determine an evaluation number of CCEs by adding the number of CCEs in the decoding candidate being evaluated to a number of CCEs already included within the actual set;

compare the evaluation number of CCEs to a threshold; and

determine whether to add the decoding candidate being evaluated to the actual set of decoding candidates based at least in part on the comparison;

map the control information into the actual set of decoding candidates; and

transmit the control information within a search space comprising the actual set of decoding candidates.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2019
From: LEE, HEECHOON; SUN, JING; CHEN, WANSHI; LUO, TAO
To: QUALCOMM INCORPORATED
Reel/Frame 048636/0846 →
Continuity (2)
Provisional Application 62587976 · Nov 17, 2017
Related Publication 20190158317A1 · May 23, 2019