IP Library Granted Patent US 10,117,250
Granted Patent B2
US 10,117,250 · App. 15/651,341 · Granted Oct 30, 2018

Wireless communication system, wireless communication setting method, base station, mobile station, and program

Inventors: Takamichi Inoue (Tokyo, JP); Kenji Koyanagi (Tokyo, JP); Le Liu (Tokyo, JP); Yoshikazu Kakura (Tokyo, JP)
Assignee: NEC CORPORATION
H04W72/0453H04L5/006H04L5/0007H04L5/0037H04L5/0041H04L5/0044H04L5/0048H04L5/0057H04L5/0064H04L5/0094H04L27/2614H04W72/042H04W72/0406H04W72/0413H05K999/99H04W88/02H04W88/08
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Quick Facts
Patent No.
US 10,117,250
App. No.
15/651,341
Granted
Oct 30, 2018
Kind
B2
Abstract

A base station includes a transmitter configured to transmit a downlink control information to a user equipment, the downlink control information being generated based on one of (1) a first uplink allocation information indicating a first frequency block corresponding to a first plurality of subcarriers which are contiguous in frequency and (2) a second uplink allocation information indicating a second frequency block corresponding to a second plurality of subcarriers which are contiguous in frequency and a third frequency block corresponding to a third plurality of subcarriers which are contiguous in frequency, the second frequency block and the third frequency block being separated in frequency.

Claims (82)

1. A User Equipment (UE) comprising:

a receiver configured to receive, from a base station, downlink control information comprising uplink resource allocation information, wherein the downlink control information indicates a frequency block count;

a transmitter configured to transmit, to the base station, one of:

(1) a first reference signal generated using a first reference signal sequence having a first sequence length corresponding to a first transmit bandwidth allocated by the uplink resource allocation information, wherein the first transmit bandwidth comprises a set of one or more consecutive resource blocks, if the frequency block count is one, and

(2) a second reference signal generated using a second reference signal sequence having a second sequence length corresponding to a second transmit bandwidth allocated by the uplink resource allocation information, wherein the second transmit bandwidth comprises two sets of one or more resource blocks, wherein each of the two sets of one or more resource blocks comprises one or more consecutive resource blocks, wherein the two sets of one or more resource blocks are separated in frequency, if the frequency block count is more than one.

2. The UE according to claim 1 , wherein the uplink resource allocation information indicates one of:

the set of one or more consecutive resource blocks of the first transmit bandwidth, wherein each of the one or more consecutive resource blocks comprises a plurality of consecutive subcarriers in a frequency domain, and

the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in the frequency domain.

3. The UE according to claim 1 , wherein the uplink resource allocation information indicates one of:

the set of one or more consecutive resource blocks of the first transmit bandwidth, wherein each of the one or more consecutive resource blocks comprises a plurality of consecutive subcarriers in a frequency domain, if the frequency block count is one, and

the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in the frequency domain, if the frequency block count is more than one.

4. The UE according to claim 1 , wherein:

the transmitter is configured to transmit (2) the second reference signal, when the transmitter transmits, to the base station, an indication that a UE baseband supports a multi-cluster physical uplink shared channel (PUSCH) transmission.

5. The UE according to claim 4 , wherein:

the transmitter is configured to transmit (2) the second reference signal when the resource allocation information indicates the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in a frequency domain.

6. The UE according to claim 1 , wherein the first reference signal and the second reference signal are demodulation reference signals associated with transmission of a physical uplink shared channel (PUSCH).

7. The UE according to claim 1 , wherein the uplink resource allocation information indicates one of:

a starting resource block for the set of one or more consecutive resource blocks of the first transmit bandwidth, and

a starting resource block for each of the two sets of one or more resource blocks of the second transmit bandwidth.

8. A base station comprising:

a transmitter configured to transmit, to a user equipment (UE), downlink control information comprising uplink resource allocation information, wherein the downlink control information indicates a frequency block count;

a receiver configured to receive, from the UE, one of:

(1) a first reference signal generated using a first reference signal sequence having a first sequence length corresponding to a first transmit bandwidth allocated by the uplink resource allocation information, wherein the first transmit bandwidth comprises a set of one or more consecutive resource blocks, if the frequency block count is one, and

(2) a second reference signal generated using a second reference signal sequence having a second sequence length corresponding to a second transmit bandwidth allocated by the uplink resource allocation information, wherein the second transmit bandwidth comprises two sets of one or more resource blocks, wherein each of the two sets of one or more resource blocks comprises one or more consecutive resource blocks, wherein the two sets of one or more resource blocks are separated in frequency, if the frequency block count is more than one.

9. The base station according to claim 8 , wherein:

the uplink resource allocation information indicates one of:

the set of one or more consecutive resource blocks of the first transmit bandwidth, wherein each of the one or more consecutive resource blocks comprises a plurality of consecutive subcarriers in a frequency domain, and

the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in the frequency domain.

10. The base station according to claim 8 , wherein:

the uplink resource allocation information indicates one of:

the set of one or more consecutive resource blocks of the first transmit bandwidth, wherein each of the one or more consecutive resource blocks comprises a plurality of consecutive subcarriers in a frequency domain, if the frequency block count is one, and

the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in the frequency domain, if the frequency block count is more than one.

11. The base station according to claim 8 , wherein:

the receiver is configured to receive (2) the second reference signal when the receiver receives, from the UE, an indication that a UE baseband supports a multi-cluster physical uplink shared channel (PUSCH) transmission.

12. The base station according to claim 11 , wherein:

the receiver is configured to receive (2) the second reference signal when the resource allocation information indicates the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in a frequency domain.

13. The base station according to claim 8 , wherein the first reference signal and the second reference signal are demodulation reference signals associated with transmission of a physical uplink shared channel (PUSCH).

14. The base station according to claim 8 , wherein the uplink resource allocation information indicates one of:

a starting resource block for the set of one or more consecutive resource blocks of the first transmit bandwidth, and

a starting resource block for each of the two sets of one or more resource blocks of the second transmit bandwidth.

15. A communication method of a User Equipment (UE), the method comprising:

receiving, from a base station, downlink control information comprising uplink resource allocation information, wherein the downlink control information indicates a frequency block count;

transmitting, to the base station, one of:

(1) a first reference signal generated using a first reference signal sequence having a first sequence length corresponding to a first transmit bandwidth allocated by the uplink resource allocation information, wherein the first transmit bandwidth comprises a set of one or more consecutive resource blocks, if the frequency block count is one, and

(2) a second reference signal generated using a second reference signal sequence having a second sequence length corresponding to a second transmit bandwidth allocated by the uplink resource allocation information, wherein the second transmit bandwidth comprises two sets of one or more resource blocks, wherein each of the two sets of one or more resource blocks comprises one or more consecutive resource blocks, wherein the two sets of one or more resource blocks are separated in frequency, if the frequency block count is more than one.

16. The communication method according to claim 15 , wherein:

the uplink resource allocation information indicates one of:

the set of one or more consecutive resource blocks of the first transmit bandwidth, wherein each of the one or more consecutive resource blocks comprises a plurality of consecutive subcarriers in a frequency domain, and

the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in the frequency domain.

17. The communication method according to claim 15 , wherein:

the uplink resource allocation information indicates one of:

the set of one or more consecutive resource blocks of the first transmit bandwidth, wherein each of the one or more consecutive resource blocks comprises a plurality of consecutive subcarriers in a frequency domain, if the frequency block count is one, and

the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in the frequency domain, if the frequency block count is more than one.

18. The communication method according to claim 15 , wherein:

the transmitting comprises transmitting (2) the second reference signal, when further transmitting, to the base station, an indication that a UE baseband supports a multi-cluster physical uplink shared channel (PUSCH) transmission.

19. The communication method according to claim 18 , wherein:

the transmitting comprises transmitting (2) the second reference signal when the resource allocation information indicates the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in a frequency domain.

20. The communication method according to claim 15 , wherein the first reference signal and the second reference signal are demodulation reference signals associated with transmission of a physical uplink shared channel (PUSCH).

21. The communication method according to claim 15 , wherein the uplink resource allocation information indicates one of:

a starting resource block for the set of one or more consecutive resource blocks of the first transmit bandwidth, and

a starting resource block for each of the two sets of one or more resource blocks of the second transmit bandwidth.

22. A communication method of a base station, the method comprising:

transmitting, to a user equipment (UE), downlink control information comprising uplink resource allocation information, wherein the downlink control information indicates a frequency block count; and

receiving, from the UE, one of:

(1) a first reference signal generated using a first reference signal sequence having a first sequence length corresponding to a first transmit bandwidth allocated by the uplink resource allocation information, wherein the first transmit bandwidth comprises a set of one or more consecutive resource blocks, if the frequency block count is one, and

(2) a second reference signal generated using a second reference signal sequence having a second sequence length corresponding to a second transmit bandwidth allocated by the uplink resource allocation information, wherein the second transmit bandwidth comprises two sets of one or more resource blocks, wherein each of the two sets of one or more resource blocks comprises one or more consecutive resource blocks, wherein the two sets of one or more resource blocks are separated in frequency, if the frequency block count is more than one.

23. The communication method of claim 22 , wherein:

the uplink resource allocation information indicates one of:

the set of one or more consecutive resource blocks of the first transmit bandwidth, wherein each of the one or more consecutive resource blocks comprises a plurality of consecutive subcarriers in a frequency domain, and

the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in the frequency domain.

24. The communication method of claim 22 , wherein:

the uplink resource allocation information indicates one of:

the set of one or more consecutive resource blocks of the first transmit bandwidth, wherein each of the one or more consecutive resource blocks comprises a plurality of consecutive subcarriers in a frequency domain, if the frequency block count is one, and

the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in the frequency domain, if the frequency block count is more than one.

25. The communication method according to claim 22 , wherein:

the receiving comprises receiving (2) the second reference signal when further receiving, from the UE, an indication that a UE baseband supports a multi-cluster physical uplink shared channel (PUSCH) transmission.

26. The communication method according to claim 25 , wherein:

the receiving comprises receiving (2) the second reference signal when the resource allocation information indicates the two sets of one or more resource blocks of the second transmit bandwidth, wherein each of the two sets of one or more resource blocks comprises a plurality of consecutive subcarriers in a frequency domain.

27. The communication method according to claim 22 , wherein the first reference signal and the second reference signal are demodulation reference signals associated with transmission of a physical uplink shared channel (PUSCH).

28. The communication method according to claim 22 , wherein the uplink resource allocation information indicates one of:

a starting resource block for the set of one or more consecutive resource blocks of the first transmit bandwidth, and

a starting resource block for each of the two sets of one or more resource blocks of the second transmit bandwidth.

Priority Claims (1)
JP 2008-072581 · Mar 19, 2008 · national
Continuity (6)
Continuation 15282856 · Sep 30, 2016
Continuation 15008090 · Jan 27, 2016
Continuation 14669932 · Mar 26, 2015
Continuation 13551296 · Jul 17, 2012
Continuation 12735993
Related Publication 20170318588A1 · Nov 2, 2017
Cited By (1)
US 12,309,765