IP Library › Granted Patent US 10,374,780
Granted Patent B2
US 10,374,780 · App. 15/514,602 · Granted Aug 6, 2019

Method and device for indicating number of bits

Inventors: Jin Yang (Shenzhen, CN); Yu Ngok Li (Shenzhen, CN); Shuanshuan Wu (Shenzhen, CN)
Assignee: ZTE CORPORATION
H04L5/0094H04W8/14H04W72/0446H04W76/14
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Quick Facts
Patent No.
US 10,374,780
App. No.
15/514,602
Granted
Aug 6, 2019
Kind
B2
Abstract

A method and device for indicating the number of bits are provided. In the method, a transmitting User Equipment (UE) and/or a network entity indicate the number k of effective indication bits in a bitmap sequence, the bitmap sequence indicates Physical Sidelink Shared Channel (PSSCH) subframes allocation, k includes one or multiple values, 1≤k≤N, and N is a bit length of the entire bitmap sequence.

Claims (58)

1. A method for indicating number of bits, comprising:

determining, by a transmitting User Equipment (UE) and/or a network entity, a number k of effective indication bits in a bitmap sequence;

indicating, by the transmitting User Equipment (UE) and/or the network entity, the number k of effective indication bits in the bitmap sequence, wherein the bitmap sequence indicates Physical Sidelink Shared Channel (PSSCH) subframes allocation, k comprises one or multiple values, 1≤k≤N, and N is a bit length of the entire bitmap sequence;

wherein indicating, by the transmitting UE and/or the network entity, the number k of the effective indication bits comprises: indicating, by the network entity and/or the transmitting UE, the number k of the effective indication bits via a high layer signaling and/or a physical layer signaling.

2. The method as claimed in claim 1 , wherein indicating, by the transmitting UE and/or the network entity, the number k of the effective indication bits via the high layer signaling and/or the physical layer signaling comprises at least one of the following manners:

indicating, by the UE, the number k of the effective indication bits via a broadcast message for Device-to-Device (D2D) communication;

indicating, by the UE, the number k of the effective indication bits via a Sidelink Control Information (SCI) between a transmitter terminal and a receiver terminal of D2D communication;

indicating, by the network entity, the number k of the effective indication bits via a System Information Block (SIB);

indicating, by the network entity, the number k of the effective indication bits via a Radio Resource Control (RRC) message; and

indicating, by the network entity, the number k of the effective indication bits via a sidelink resource scheduling control signaling.

3. The method as claimed in claim 2 , wherein indicating, by the transmitting UE and/or the network entity, the number k of the effective indication bits via the high layer signaling and/or the physical layer signaling comprises at least one of:

when the UE indicates the number k of the effective indication bits via the broadcast message for D2D communication, indicating one or multiple k values by the broadcast message which is carried on a Physical Sidelink Broadcast Channel (PSBCH) resource;

when the UE indicates the number k of the effective indication bits via the SCI between the transmitter terminal and the receiver terminal of D2D communication, indicating one or multiple k values by n bits in the SCI, where n is equal to 1 or 2 or 3;

when the UE indicates the number k of the effective indication bits via the SCI, indicating one k value by n 1 bits in indication bits corresponding to a Time Resource Pattern (TRP), and indicating a bitmap pattern by a bitmap index represented by n 2 bits in the indication bits corresponding to the TRP, wherein each bitmap index uniquely corresponds to one bitmap pattern, and the bitmap index indicates all or part of bitmap patterns corresponding to the one k value, where n 1 =1 or 2 or 3, and n 1 +n 2 =7;

when the network entity indicates the number k of the effective indication bits via the SIB, one or multiple k values, which are indicated via the SIB, being effective for all D2D UEs within a cell;

when the network entity indicates the number k of the effective indication bits via the SIB, one or multiple k values, which are indicated via the SIB, being effective for UEs within a designated D2D group;

when the network entity indicates the number k of the effective indication bits via the RRC message, indicating one or multiple k values by the RRC message which is embodied as a D2D reconfiguration message of a D2D-specific configuration indication message;

when the network entity indicates the number k of the effective indication bits in the sidelink resource scheduling control signaling, indicating one or multiple k values by n bits contained in the sidelink resource scheduling control signaling in a Downlink Control Information (DCI) format, where n is equal to 1 or 2 or 3; and

when the network entity indicates the number k of the effective indication bits via DCI, indicating, by the network entity, one k value by n 1 bits in the indication bits corresponding to a TRP, and indicating a bitmap pattern by a bitmap index represented by n 2 bits in the indication bits corresponding to the TRP, wherein each bitmap index uniquely corresponds to one bitmap pattern, and the bitmap index indicates all or part of bitmap patterns corresponding to the one k value, where n 1 =1 or 2 or 3, and n 1 +n 2 =7.

4. The method as claimed in claim 1 , wherein

a Time Resource Pattern (TRP) indicates a bitmap pattern through a 7-bit index, each of TRP indexes corresponds to one bitmap pattern, and the TRP indexes indicate all or part of bitmap patterns corresponding to one or multiple k values.

5. The method as claimed in claim 1 , wherein

the TRP indexes sequentially indicate all or part of the bitmaps corresponding to different k values in accordance with the multiple k values when the TRP indexes indicate all or part of the bitmaps corresponding to the multiple k values.

6. The method as claimed in claim 1 , wherein the network entity comprises at least one of:

an evolved NodeB (eNB), a Relay Station (RN), a Multi-cell/multicast Coordination Entity (MCE), a Gateway (GW), a Mobility Management Equipment (MME), an Evolved Universal Terrestrial Radio Access Network (EUTRAN), and an Operation Administration Maintenance (OAM) manager.

7. A device for indicating number of bits, applied to a transmitting User Equipment (UE) side, comprising a hardware processor configured to execute program modules stored on a memory, wherein the device is configured to determine a number k of effective indication bits in a bitmap sequence, and the program modules comprise:

a first indicating module, arranged to indicate the number k of effective indication bits in the bitmap sequence, wherein the bitmap sequence indicates Physical Sidelink Shared Channel (PSSCH) subframes allocation, k comprises one or multiple values, 1≤k≤N, and N is a bit length of the entire bitmap sequence;

wherein the first indicating module is arranged to indicate the number k of the effective indication bits via a high layer signaling and/or a physical layer signaling.

8. The device as claimed in claim 7 , wherein the first indicating module is arranged to indicate the number k of the effective indication bits in at least one of the following manners:

indicating, by the UE, the number k of the effective indication bits via a broadcast message for Device-to-Device (D2D) communication; and

indicating, by the UE, the number k of the effective indication bits via a Sidelink Control Information (SCI) between a transmitter terminal and a receiver terminal of D2D communication.

9. The device as claimed in claim 8 , wherein the first indicating module is further arranged to execute at least one of the following processing:

when the UE indicates the number k of the effective indication bits via the broadcast message for D2D communication, indicating one or multiple k values by the broadcast message which is carried on a Physical Sidelink Broadcast Channel (PSBCH) resource;

when the UE indicates the number k of the effective indication bits via the SCI between the transmitter terminal and the receiver terminal of D2D communication, indicating one or multiple k values by n bits in the SCI, where n is equal to 1 or 2 or 3; and

when the UE indicates the number k of the effective indication bits via the SCI, indicating one k value by n 1 bits in indication bits corresponding to a Time Resource Pattern (TRP), and indicating a bitmap pattern by a bitmap index represented by n 2 bits in the indication bits corresponding to the TRP, wherein each bitmap index uniquely corresponds to one bitmap pattern, and the bitmap index indicates all or part of bitmap patterns corresponding to the one k value, where n 1 =1 or 2 or 3, and n 1 +n 2 =7.

10. The device as claimed in claim 7 , wherein

a Time Resource Pattern (TRP) indicates a bitmap pattern through a 7-bit index, each of TRP indexes corresponds to one bitmap pattern, and the TRP indexes indicate all or part of bitmap patterns corresponding to one or multiple k values.

11. The device as claimed in claim 7 , wherein

the TRP indexes sequentially indicate all or part of the bitmaps corresponding to different k values in accordance with the multiple k values when the TRP indexes indicate all or part of the bitmaps corresponding to the multiple k values.

12. A device for indicating number of bits, applied to a network entity side, comprising a hardware processor configured to execute program modules stored on a memory, wherein the device is configured to determine a number k of effective indication bits in a bitmap sequence, and the program modules comprise:

a second indicating module, arranged to indicate the number k of effective indication bits in the bitmap sequence, wherein the bitmap sequence indicates Physical Sidelink Shared Channel (PSSCH) subframes allocation, k comprises one or multiple values, 1≤k≤N, and N is a bit length of the entire bitmap sequence;

wherein the second indicating module is arranged to indicate the number k of the effective indication bits via a high layer signaling and/or a physical layer signaling.

13. The device as claimed in claim 12 , wherein the second indicating module is arranged to indicate the number k of the effective indication bits in at least one of the following manners:

indicating, by the network entity, the number k of the effective indication bits via a System Information Block (SIB);

indicating, by the network entity, the number k of the effective indication bits via a Radio Resource Control (RRC) message; and

indicating, by the network entity, the number k of the effective indication bits via a sidelink resource scheduling control signaling.

14. The device as claimed in claim 13 , wherein the second indicating module is further arranged to execute at least one of the following processing:

when the network entity indicates the number k of the effective indication bits via the SIB, one or multiple k values, which are indicated via the SIB, being effective for all D2D UEs within a cell;

when the network entity indicates the number k of the effective indication bits via the SIB, one or multiple k values, which are indicated via the SIB, being effective for UEs within a designated D2D group;

when the network entity indicates the number k of the effective indication bits via the RRC message, indicating one or multiple k values by the RRC message which is embodied as a D2D reconfiguration message of a D2D-specific configuration indication message;

when the network entity indicates the number k of the effective indication bits in the sidelink resource scheduling control signaling, indicating one or multiple k values by n bits contained in the sidelink resource scheduling control signaling in a Downlink Control Information (DCI) format, where n is equal to 1 or 2 or 3; and

when the network entity indicates the number k of the effective indication bits via DCI, indicating, by the network entity, one k value by n 1 bits in the indication bits corresponding to a TRP, and indicating a bitmap pattern by a bitmap index represented by n 2 bits in the indication bits corresponding to the TRP, wherein each bitmap index uniquely corresponds to one bitmap pattern, and the bitmap index indicates all or part of bitmap patterns corresponding to the one k value, where n 1 =1 or 2 or 3, and n 1 +n 2 =7.

15. The device as claimed in claim 12 , wherein

a Time Resource Pattern (TRP) indicates a bitmap pattern through a 7-bit index, each of TRP indexes corresponds to one bitmap pattern, and the TRP indexes indicate all or part of bitmap patterns corresponding to one or multiple k values.

16. The device as claimed in claim 12 , wherein

the TRP indexes sequentially indicate all or part of the bitmaps corresponding to different k values in accordance with the multiple k values when the TRP indexes indicate all or part of the bitmaps corresponding to the multiple k values.

17. The device as claimed in claim 12 , wherein the network entity comprises at least one of:

an evolved NodeB (eNB), a Relay Station (RN), a Multi-cell/multicast Coordination Entity (MCE), a Gateway (GW), a Mobility Management Equipment (MME), an Evolved Universal Terrestrial Radio Access Network (EUTRAN), and an Operation Administration Maintenance (OAM) manager.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 27, 2017
From: YANG, JIN; LI, YU NGOK; WU, SHUANSHUAN
To: ZTE CORPORATION
Reel/Frame 041749/0966 →
Priority Claims (1)
CN 2014 1 0498693 · Sep 25, 2014 · national
Continuity (1)
Related Publication 20170230165A1 · Aug 10, 2017