IP Library Granted Patent US 11,765,700
Granted Patent B2
US 11,765,700 · App. 14/741,974 · Granted Sep 19, 2023

Wireless terminal, wireless base station, wireless communication system, and wireless communication method related to radio resource allocation within a communication period

Inventors: Yoshiaki Ohta (Yokohama, JP); Yoshihiro Kawasaki (Kawasaki, JP)
Assignee: FUJITSU LIMITED
H04W72/0446H04W4/70H04W72/23H04W72/51
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Quick Facts
Patent No.
US 11,765,700
App. No.
14/741,974
Granted
Sep 19, 2023
Kind
B2
Abstract

A wireless terminal including: a memory, and a processor coupled to the memory and configured to: communicate with a wireless base station using a wireless signal that is divided into sequential time segments, receive first information from the wireless base station, the first information including a length of a period for periodic wireless communication that is performed using the wireless signal, the length of the period being a specified number of time segments in the sequential time segments, and perform the periodic wireless communication with the wireless base station based on the first information, wherein the first information includes second information indicating at least one time segment within the period for the periodic wireless communication, the indicated at least one time segment in which a radio resource for the periodic wireless communication is allocated for the wireless terminal.

Claims (59)

1. A wireless terminal comprising:

a memory configured to store a plurality of instructions; and

a processor coupled to the memory, configured to support scheduling feature while at least a mobility feature is not supported, and configured to execute the plurality of instructions to:

communicate with a wireless base station using a wireless signal that is divided into sequential time segments,

receive first information that is Radio Resource Control (RRC) information from the wireless base station, the first information including a length of a period for periodic wireless communication that is performed using the wireless signal, the length of the period being a specified number of time segments in the sequential time segments, and

perform the periodic wireless communication with the wireless base station based on the first information,

wherein the first information includes second information and third information, the second information indicating, by a bitmap, a plurality of first time segments within one cycle of the period for the periodic wireless communication, each of the plurality of first time segments being a radio resource allocated for the wireless terminal in the periodic wireless communication, the bitmap having a bit length corresponding to the length of the one cycle of the period for the periodic wireless communication, wherein each bit in the bitmap corresponds to a pattern indicating a time location at which each of the plurality of first time segments is allocated for the wireless terminal, wherein the third information is offset information indicating a timing of initial transmission of the plurality of first time segments.

2. The wireless terminal according to claim 1 ,

wherein the processor is further configured to transmit, when the wireless terminal does not use a latter part of the allocated radio resource within the period, a notification signal to the wireless base station, the notification signal being a buffer status report (BSR) signal that indicates an amount of uplink data.

3. The wireless terminal according to claim 2 ,

wherein when the notification signal represents that the amount of uplink data is zero, the notification signal is configured to cause the wireless base station, upon receiving the notification signal from the wireless terminal, to allocate at least part of the latter part of the allocated radio resource, to another wireless terminal.

4. The wireless terminal according to claim 3 , wherein

the allocated at least part of the latter part comprises at least one time segment that is needed for the another wireless terminal to transmit data.

5. The wireless terminal according to claim 2 , wherein

the processor is configured to transmit the notification signal using a part of the allocated radio resource.

6. The wireless terminal according to claim 1 , wherein

the processor is configured, when a response signal is an acknowledgement (ACK) signal, to suppress transmission of the ACK signal, except for transmission of the ACK signal in an end of the allocated radio resource.

7. The wireless terminal according to claim 6 , wherein

the processor is further configured not to suppress, when the response signal is a negative-acknowledgement (NACK) signal, transmission of the NACK signal.

8. The wireless terminal of claim 1 , wherein

the second information is a length of the first time segments within the one cycle of the period for wireless communication.

9. The wireless terminal according to claim 1 , wherein the first information further includes fourth information, the fourth information indicating a number of periodic transmissions.

10. A wireless base station comprising:

a memory configured to store a plurality of instructions; and

a processor coupled to the memory and the processor configured to:

communicate with a wireless terminal using a wireless signal that is divided into sequential time segments, the wireless terminal being configured to support scheduling feature while at least a mobility feature is not supported,

transmit first information that is Radio Resource Control (RRC) information to the wireless terminal, the first information including a length of a period for periodic wireless communication that is performed using the wireless signal, the length of the period being a specified number of time segments in the sequential time segments, and

perform the periodic wireless communication with the wireless terminal based on the first information,

wherein the first information includes second information and third information, the second information indicating, by a bitmap, a plurality of first time segments within one cycle of the period for the periodic wireless communication, each of the plurality of first time segments being a radio resource allocated for the wireless terminal in the periodic wireless communication, the bitmap having a bit length corresponding to the length of the one cycle of the period for the periodic wireless communication, wherein each bit in the bitmap corresponds to a pattern indicating a time location at which each of the plurality of first time segments is allocated for the wireless terminal, wherein the third information is offset information indicating a timing of initial transmission of the plurality of first time segments.

11. The wireless base station according to claim 10 ,

wherein the processor is further configured to receive, when the wireless terminal does not use a latter part of the allocated radio resource within the period, a notification signal from the wireless terminal,

wherein the notification signal is a buffer status report (BSR) signal that indicates an amount of uplink data.

12. The wireless base station according to claim 11 ,

wherein when the notification signal represents that the amount of uplink data is zero, the processor is configured, upon receiving the notification signal from the wireless terminal, to allocate at least part of the latter part of the allocated radio resource, to another wireless terminal.

13. The wireless base station according to claim 12 , wherein

the allocated at least part of the latter part comprises at least one time segment that is needed for the another wireless terminal to transmit data.

14. The wireless base station according to claim 11 , wherein

the processor is configured to receive the notification signal using a part of the allocated radio resource.

15. The wireless base station according to claim 10 , wherein

the wireless terminal is configured, when a response signal is an acknowledgement (ACK) signal, to suppress transmission of the ACK signal, except for transmission of the ACK signal in an end of the allocated radio resource.

16. The wireless base station of claim 10 , wherein

the second information is a length of the first time segments within the one cycle of the period for wireless communication.

17. A wireless communication system comprising:

a wireless base station; and

a wireless terminal configured to:

communicate with the wireless base station using a wireless signal that is divided into sequential time segments, the wireless terminal being configured to support scheduling feature while at least a mobility feature is not supported,

receive first information that is Radio Resource Control (RRC) information from the wireless base station, the first information including a length of a period for periodic wireless communication that is performed using the wireless signal, the length of the period being a specified number of time segments in the sequential time segments, and

perform the periodic wireless communication with the wireless base station based on the first information,

wherein the first information includes second information and third information, the second information indicating, by a bitmap, a plurality of first time segments within one cycle of the period for the periodic wireless communication, each of the plurality of first time segments being a radio resource allocated for the wireless terminal in the periodic wireless communication, the bitmap having a bit length corresponding to the length of the one cycle of the period for the periodic wireless communication, wherein each bit in the bitmap corresponds to a pattern indicating a time location at which each of the plurality of first time segments is allocated for the wireless terminal, wherein the third information is offset information indicating a timing of initial transmission of the plurality of first time segments.

18. The wireless communication system of claim 17 , wherein

the second information is a length of the first time segments within the one cycle of the period for wireless communication.

19. A wireless communication method by a wireless terminal, the wireless communication method comprising:

supporting scheduling feature while at least a mobility feature is not supported;

communicating with a wireless base station using a wireless signal that is divided into sequential time segments;

receiving first information that is Radio Resource Control (RRC) information from the wireless base station, the first information including a length of a period for periodic wireless communication that is performed using the wireless signal, the length of the period being a specified number of time segments in the sequential time segments; and

performing the periodic wireless communication with the wireless base station based on the first information,

wherein the first information includes second information and third information, the second information indicating, by a bitmap, a plurality of first time segments within one cycle of the period for the periodic wireless communication, each of the plurality of first time segments being a radio resource allocated for the wireless terminal in the periodic wireless communication, the bitmap having a bit length corresponding to the length of the one cycle of the period for the periodic wireless communication, wherein each bit in the bitmap corresponds to a pattern indicating a time location at which each of the plurality of first time segments is allocated for the wireless terminal, wherein the third information is offset information indicating a timing of initial transmission of the plurality of first time segments.

20. The wireless communication method of claim 19 , wherein

the second information is a length of the first time segments within the one cycle of the period for wireless communication.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2025
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 072423/0070 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2015
From: OHTA, YOSHIAKI; KAWASAKI, YOSHIHIRO
To: FUJITSU LIMITED
Reel/Frame 035854/0815 →
Continuity (2)
Continuation PCTJP2012008141 · Dec 19, 2012
Related Publication 20150289268A1 · Oct 8, 2015
Cited By (1)
US 12,484,044