IP Library › Granted Patent US 10,348,458
Granted Patent B2
US 10,348,458 · App. 15/061,740 · Granted Jul 9, 2019

Methods and apparatus for LTE coordinated transmission on unlicensed spectrum

Inventors: Boon Loong Ng (Plano, TX); Thomas David Novlan (Dallas, TX)
Assignee: Samsung Electronics Co., Ltd.
H04L1/1887H04L5/001H04L5/008H04L5/0035H04L5/0044H04L5/0092H04L27/0006H04W72/1231H04L5/0023H04L5/0053H04W16/14H04W74/0808
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Quick Facts
Patent No.
US 10,348,458
App. No.
15/061,740
Granted
Jul 9, 2019
Kind
B2
Abstract

A method for a coordinated transmission in a wireless communication system. The method includes processing feedback information from multiple transmit points (TPs) operating in license assisted access (LAA) cells, generating scheduling information for the coordinated transmission by the multiple TPs to a user equipment (UE) in accordance with the feedback information, transmitting the scheduling information to the multiple TPs, and receiving the feedback information from the multiple TPs.

Claims (45)

1. A network entity (NE) comprising:

a communication interface configured to receive feedback information from multiple transmit points (TPs) operating in a cell providing license assisted access (LAA); and

at least one processor configured to:

process the feedback information received from the multiple TPs;

select the multiple TPs that perform a coordinated transmission to a user equipment (UE) based on the feedback information received from the multiple TPs, wherein the feedback information comprises information associated with a channel access rate that is a measure of a probability that the multiple TPs are able to pass clear channel assessment (CCA) and gain access to a channel, and wherein the channel access rate is a ratio of a total number of idle CCA slots over a total number of CCA slots;

generate scheduling information for a coordinated transmission by the multiple TPs to the UE using the LAA in accordance with the feedback information; and

wherein the communication interface is further configured to transmit the scheduling information to the multiple TPs.

2. The NE of claim 1 , wherein the at least one processor is further configured to:

segment a data packet into a plurality of transport blocks (TBs) in accordance with the feedback information received from the multiple TPs; and

schedule a number of the TBs to be transmitted to the UE through the multiple TPs.

3. The NE of claim 2 , wherein segmentation of the data packet further comprises segment the data packet with the same TB size.

4. The NE of claim 2 , wherein segmentation of the data packet further comprises segment the data packet with different TB sizes.

5. The NE of claim 1 , wherein the feedback information comprises at least one of a channel access rate information that is determined based on a listen before talk (LBT) protocol and channel state information received from the UE through the multiple TPs.

6. The NE of claim 5 , wherein the feedback information further comprises inter-TP coordinated information determined by an inter-TP coordinated scheme between the multiple TPs.

7. The NE of claim 1 , wherein the scheduling information includes TP selection information.

8. A first transmit point (TP) operating in a first cell providing licensed assisted access (LAA) comprising:

at least one processor configured to:

establish a connection with a second TP operating in a second cell providing license assisted access (LAA) to perform a coordinated transmission to a user equipment (UE); and

generate inter-TP coordinated information in accordance with an inter-TP coordinated scheme between the first and second TPs;

process feedback information received from the UE;

a communication interface configured to:

transmit the feedback information to a network entity (NE); and

receive scheduling information from the NE based on the feedback information, the scheduling information providing for an inter-TP coordinated transmission by the first and the second TPs to the user equipment (UE) in accordance with the feedback information from the first cell and the second cell using the LAA; and

wherein the first and the second TPs have been selected by the NE to perform a coordinated transmission to the UE based on the feedback information from the first and second TPs,

wherein the feedback information comprises information associated with a channel access rate that is a measure of a probability that the first and second TPs are able to pass clear channel assessment (CCA) and gain access to a channel, and

wherein the channel access rate is a ratio of a total number of idle CCA slots over a total number of CCA slots.

9. The first TP of claim 8 , wherein the scheduling information includes TP-selection information.

10. The first TP of claim 8 , wherein the communication interface is further configured to:

receive a data packet that is segmented into a plurality of transport blocks (TBs) from the NE, the plurality of TB s being segmented in accordance with the feedback information; and

transmit the plurality of TB s to the UE in accordance with the scheduling information received from the NE.

11. The first TP of claim 10 , wherein the communication interface is further configured to retransmit the plurality of TB s to the UE in accordance with a radio link control protocol when the first TP is unable to re-transmit a hybrid automatic repeat and request (H-ARQ) data packet to the UE.

12. The first TP of claim 10 , wherein transmission of the plurality of TBs is coordinated to transmit different TBs to the UE than the second TP.

13. The first TP of claim 8 , wherein the feedback information comprises at least one of a channel access rate information that is determined based on a listen before talk (LBT) protocol and channel state information received from the UE through the first and second TPs.

14. The first TP of claim 13 , wherein the feedback information further comprises the inter-TP coordinated information.

15. The first TP of claim 8 , wherein a retransmission based on a radio link protocol is performed either by the first TP or the second TP, when the first TP is unable to re-transmit a hybrid automatic repeat and request (H-ARQ) data packet to the UE.

16. A method for a coordinated transmission in a wireless communication system, the method comprising:

receiving, by a network entity (NE), feedback information from multiple transmit points (TPs) operating in a cell providing license assisted access (LAA);

processing, by the NE, the feedback information from the multiple TPs;

selecting, by the NE, the multiple TPs that perform a coordinated transmission to a user equipment (UE) based on the feedback information received from the multiple TPs, wherein the feedback information comprises information associated with a channel access rate that is a measure of a probability that the multiple TPs are able to pass clear channel assessment (CCA) and gain access to a channel, and wherein the channel access rate is a ratio of a total number of idle CCA slots over a total number of CCA slots;

generating, by the NE, scheduling information for the coordinated transmission by the multiple TPs to the UE in accordance with the feedback information using the LAA; and

transmitting, by the NE, the scheduling information to the multiple TPs.

17. The method of claim 16 , further comprising:

segmenting a data packet into a plurality of transport blocks (TBs) in accordance with the feedback information received from the multiple TPs; and

scheduling a number of the TBs to be transmitted to the UE through the multiple TPs.

18. The method of claim 16 , wherein the feedback information comprises at least one of a channel access rate information that is determined based on a listen before talk (LBT) protocol and channel state information received from the UE through the multiple TPs.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2016
From: NG, BOON LOONG; NOVLAN, THOMAS DAVID
To: SAMSUNG ELECTRONICS CO., LTD
Reel/Frame 037898/0275 →
Continuity (3)
Provisional Application 62251456 · Nov 5, 2015
Provisional Application 62132911 · Mar 13, 2015
Related Publication 20160270100A1 · Sep 15, 2016