IP Library Granted Patent US 11,974,252
Granted Patent B2
US 11,974,252 · App. 17/213,682 · Granted Apr 30, 2024

Communication device and communication system for selecting resources to be used for data transmission

Inventor: Jianming Wu (Kawasaki, JP)
Assignee: FUJITSU LIMITED
H04W72/02H04W72/0446H04W72/0453H04W76/27H04W92/18
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Quick Facts
Patent No.
US 11,974,252
App. No.
17/213,682
Granted
Apr 30, 2024
Kind
B2
Abstract

A communication device including, a subgroup management unit allocates each of N resources in the frequency axis direction at a first position in the time axis direction to each communication device as a first resource, allocates each of second to N T th resources in the time axis direction at a first position in the frequency axis direction to each of the communication devices as the second resource, allocates each of the second to Nth resources in the frequency axis direction at a second position in the time axis direction to each of other communication devices as the first resource, and allocates each of the third to N T th resources in the time axis direction at the second position in the frequency axis direction to each of the other communication devices as the second resource, and repeat this operation to allocate the first and second resources to a plurality of communication devices.

Claims (46)

1. A communication device comprising:

at least one processor configured to allocate, among a total of N×N T resources including N resources (N is an integer equal to or greater than 1) in a frequency axis direction and N T resources (N T is an integer equal to or greater than 2) in a time axis direction, each of N resources in the frequency axis direction at a first position in the time axis direction to each communication device as a first resource, allocate each of second to N T th resources in the time axis direction at a first position in the frequency axis direction to each of the communication devices as the second resource, allocate each of the second to Nth resources in the frequency axis direction at a second position in the time axis direction to each of other communication devices as the first resource, and allocate each of the third to N T th resources in the time axis direction at the second position in the frequency axis direction to each of the other communication devices as the second resource, and repeat this operation to allocate the first and second resources to a plurality of communication devices; and a transmitter configured to transmit at least one of a control signal and data by using the first resource and retransmit at least one of the control signal and the data by using the second resource, wherein a size of each of the resources is changeable,

wherein the at least one processor is further configured to perform random replacement of the first and second resources allocated to the plurality of communication devices in the frequency axis direction and the time axis direction,

the at least one processor is further configured to perform random replacement of the first and second resources in the frequency axis direction and the time axis direction, and to replace the resources allocated to the plurality of communication devices in the time axis direction according to rearrangement information generated by a representative communication device,

the communication device further comprises a reception controller,

the at least one processor is further configured to generate a transmission request when transmitting emergency data,

the transmitter transmits the transmission request by using a rearrangement control channel, and

the receiver receives the rearrangement information transmitted from the representative communication device by using the rearrangement control channel.

2. The communication device according to claim 1 , wherein

the resource includes one or more channel elements, and

the channel element is a minimum transmission unit capable of conveying at least one of the control signal and the data.

3. The communication device according to claim 1 , wherein the size is able to be changed on the basis of all or part of a data amount of the data, a needed delay, or a channel state.

4. The communication device according to claim 3 , wherein

the resource includes one or more channel elements,

the channel element is a minimum transmission unit capable of conveying at least one of the control signal and the data, and

the size is represented by the number of channel elements included in the resource in the frequency axis direction and the number of channel elements included in the resource in the time axis direction.

5. The communication device according to claim 1 , wherein the at least one processor is further configured to determine the size on the basis of all or part of a data amount of the data, a needed delay amount, and a channel state.

6. The communication device according to claim 5 , wherein the transmitter transmits the control signal including the determined size by using the first resource, and retransmits the control signal by using the second resource.

7. The communication device according to claim 1 , further comprising a receiver configured to receive a radio resource control (RRC) message including the size transmitted from a base station device.

8. The communication device according to claim 1 , wherein the at least one processor is further configured to determine the size that differs for each subgroup.

9. The communication device according to claim 1 , wherein the communication device is able to communicate with another communication device in a coverage range of a base station device or outside the coverage range of the base station device.

10. The communication device according to claim 2 , wherein a data channel for transmitting the data and a control channel for transmitting the control signal are able to be set for each of the channel elements.

11. The communication device according to claim 1 , wherein the at least one processor is further configured to perform random replacement of the resources in a period corresponding to one subchannel in the frequency axis direction to perform random replacement in the frequency axis direction.

12. The communication device according to claim 1 , wherein the at least one processor is further configured to set all resources included in the frequency axis direction in a period corresponding to one subchannel as one unit and to perform random replacement of the units in the time axis direction to perform random replacement in the time axis direction.

13. The communication device according to claim 12 , wherein the at least one processor is further configured to perform the replacement randomly in the time axis direction so that a plurality of resource units are not replaced in an overlapping manner in a same period.

14. The communication device according to claim 1 , wherein

the transmitter transmits the transmission request in a first half slot of a subframe period in the rearrangement control channel, and

the receiver receives the rearrangement information in a second half slot of the subframe period.

15. The communication device according to claim 1 , further comprising a receiver configured to receive a transmission request by using a rearrangement control channel, wherein

at least one processor is further configured to generate rearrangement information for replacement of the first and second resources allocated to the plurality of communication devices in the time axis direction in response to the transmission request, and

the transmitter transmits the rearrangement information by using the rearrangement control channel.

16. A communication device comprising:

a receiver wireless communication unit configured to receive a radio signal transmitted from another communication device; and

at least one processor configure to allocate, among resources of a total of N×N T control channels including N control channels (N is an integer equal to or greater than 1) in a frequency axis direction and N T control channels (N T is an integer equal to or greater than 2) in a time axis direction, each of N resources in the frequency axis direction at a first position in the time axis direction to each communication device as a resource of a first control channel, allocate each of second to N T th resources in the time axis direction at a first position in the frequency axis direction to each of the communication devices as a resource of a second control channel, allocate each of the second to Nth resources in the frequency axis direction at a second position in the time axis direction to each of other communication devices as the resource of the first control channel, and allocate each of the third to N T th resources in the time axis direction at the second position in the frequency axis direction to each of the other communication devices as the second control channel, repeat this operation to allocate the resources of the first and second channels to a plurality of communication devices, extract from the radio signal a control signal transmitted by using the resource of the first control channel, and extract from the radio signal the control signal retransmitted by using the resource of the second control channel,

wherein a size of each of the resources is changeable, and

the receiver receives rearrangement information transmitted from a representative communication device by using a rearrangement control channel.

17. A communication system comprising first and second communication devices, wherein

the first communication device includes

at least one processor configured to allocate, among resources of a total of N×N T control channels including N control channels (N is an integer equal to or greater than 1) in a frequency axis direction and N T control channels (N T is an integer equal to or greater than 2) in a time axis direction, each of N resources in the frequency axis direction at a first position in the time axis direction to each communication device as a resource of a first control channel, allocate each of second to N T th resources in the time axis direction at a first position in the frequency axis direction to each of the communication devices as a resource of a second control channel, allocate each of the second to Nth resources in the frequency axis direction at a second position in the time axis direction to each of other communication devices as the resource of the first control channel, and allocate each of the third to N T th resources in the time axis direction at the second position in the frequency axis direction to each of the other communication devices as the second control channel, and repeat this operation to allocate the resources of the first and second channels to a plurality of communication devices; and

a transmitter configured to transmit a control signal by using the resource of the first control channel and retransmit the control signal by using the resource of the second control channel, the second communication device includes a receiver configured to receive the control signal by using the resource of the first control channel and receive the retransmitted control signal by using the resource of the second control channel, and

the size of each of the resources is changeable,

the at least one processor is further configured to perform random replacement of the first and second resources allocated to the plurality of communication devices in the frequency axis direction and the time axis direction,

the at least one processor is further configured to perform random replacement of the first and second resources in the frequency axis direction and the time axis direction, and to replace the resources allocated to the plurality of communication devices in the time axis direction according to rearrangement information generated by a representative communication device,

the at least one processor is further configured to generate a transmission request when transmitting emergency data,

the transmitter transmits the transmission request by using a rearrangement control channel, and

the receiver receives the rearrangement information transmitted from the representative communication device by using the rearrangement control channel.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2025
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 072436/0149 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2022
From: WU, JIANMING
To: FUJITSU LIMITED
Reel/Frame 060968/0870 →
Continuity (2)
Continuation PCTJP2018036094 · Sep 27, 2018
Related Publication 20210219267A1 · Jul 15, 2021