IP Library Granted Patent US 11,848,880
Granted Patent B2
US 11,848,880 · App. 17/164,316 · Granted Dec 19, 2023

Using medium access control control elements to schedule semi-persistent sounding reference signals for positioning

Inventors: Alexandros Manolakos (Escondido, CA); Sony Akkarakaran (Poway, CA); Sven Fischer (Nuremberg, DE)
Assignee: QUALCOMM Incorporated
H04L5/0048H04W28/26
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Quick Facts
Patent No.
US 11,848,880
App. No.
17/164,316
Granted
Dec 19, 2023
Kind
B2
Abstract

Disclosed are techniques for wireless communication. In an aspect, a user equipment (UE) receives, from a serving base station, a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCID) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning, and transmits the SP SRS-for-positioning on one or more SRS resources configured for the UE, the SP SRS-for-positioning having transmission parameters adopted from a spatial relation reference signal for the SP SRS-for-positioning.

Claims (161)

1. A method of wireless communication performed by a user equipment (UE), comprising:

receiving, from a serving base station, a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCID) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning; and

transmitting the SP SRS-for-positioning on one or more SRS resources configured for the UE, the SP SRS-for-positioning having transmission parameters adopted from a spatial relation reference signal for the SP SRS-for-positioning, wherein a type of the spatial relation reference signal is one of (1) an SRS-for-communication resource, (2) a synchronization signal block (SSB), (3) a channel state information reference signal (CSI-RS) resource, (4) an SRS-for-positioning resource, or (5) a downlink positioning reference signal (DL PRS) resource, wherein the MAC-CE includes at least one three-bit field indicating the type of the spatial relation reference signal, and wherein the MAC-CE further includes at least one spatial relation information field indicating an identifier (ID) of the spatial relation reference signal.

2. The method of claim 1 , wherein the SRS-for-communication resource is identified by a five-bit SRS resource ID.

3. The method of claim 1 , wherein the SSB is identified by a 16-bit SSB ID and physical cell identity (PCI) of the SSB.

4. The method of claim 1 , wherein the CSI-RS resource is identified by an eight-bit CSI-RS resource ID.

5. The method of claim 1 , wherein the SRS-for-positioning resource is identified by a five-bit SRS resource ID.

6. The method of claim 1 , wherein the DL PRS resource is identified by a 17-bit DL PRS resource ID, DL PRS resource set ID, and transmission-reception point (TRP) ID.

7. The method of claim 1 , wherein, based on the type of the spatial relation reference signal, the identifier field includes:

the SRS resource ID of the SRS-for-communication resource,

an index value into a table of combinations of SSB IDs and PCIs,

the CSI-RS resource ID,

the SRS resource ID of the SRS-for-positioning resource, or

an index value into a table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs.

8. The method of claim 7 , further comprising, based on the type of the spatial relation reference signal:

receiving, from the serving base station, the table of combinations of SSB IDs and PCIs via radio resource control (RRC) signaling; and/or

receiving, from the serving base station, the table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs via RRC signaling.

9. The method of claim 1 , wherein the identifier field includes one or more bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource or the SRS-for-positioning resource.

10. The method of claim 9 , wherein the identifier field includes six bits for the SRS resource ID of the SRS-for-communication resource or the SRS resource ID of the SRS-for-positioning resource.

11. The method of claim 1 , wherein the identifier field includes at least one bit indicating whether the type of the spatial relation reference signal is the SSB, the CSI-RS resource, the DL PRS resource, or an SRS resource.

12. The method of claim 11 , wherein the identifier field includes a seven-bit index value into a table of combinations of SSB IDs and PCIs, a seven-bit index value into a table of CSI-RS resource IDs, or a seven-bit index value into a table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs.

13. The method of claim 12 , further comprising:

receiving, from the serving base station, the table of combinations of SSB IDs and PCIs via RRC signaling;

receiving, from the serving base station, the table of CSI-RS resource IDs via RRC signaling; and/or

receiving, from the serving base station, the table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs via RRC signaling.

14. The method of claim 1 , further comprising:

receiving a table from the serving base station via RRC signaling, each entry of the table including the type of the spatial relation reference signal and the ID of the spatial relation reference signal.

15. The method of claim 14 , wherein the table is for an SRS resource, an SRS resource set, a bandwidth part (BWP), or a component carrier for the SP SRS-for-positioning.

16. The method of claim 1 , wherein the identifier field comprises an eight-bit field including the ID of the spatial relation reference signal.

17. The method of claim 16 , wherein the eight-bit field is a combination of an F i field having a length of one bit and a resource ID i field having a length of seven bits.

18. The method of claim 1 , further comprising:

receiving, from the serving base station via RRC signaling, a configuration of the type of the spatial relation reference signal as the SSB or the DL PRS resource.

19. The method of claim 1 , wherein:

the LCID indicates the activation or deactivation of the SP SRS-for-positioning, and

the MAC-CE includes at least one three-bit F i field identifying the type of the spatial relation reference signal and at least one spatial relation information field including the ID of the spatial relation reference signal.

20. The method of claim 1 , wherein the spatial relation reference signal is a quasi-colocation (QCL) source reference signal.

21. A method of wireless communication performed by a base station, comprising:

transmitting, to a user equipment (UE), a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCD) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning, wherein the MAC-CE includes an identifier field from which an identifier (ID) of a spatial relation reference signal for the SP SRS-for-positioning can be determined, wherein a type of the spatial relation reference signal is one of (1) an SRS-for-communication resource, (2) a synchronization signal block (SSB), (3) a channel state information reference signal (CSI-RS) resource, (4) an SRS-for-positioning resource, or (5) a downlink positioning reference signal (DL PRS) resource, and wherein the identifier field includes three bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource, the SRS-for-positioning resource, the SSB, the CSI-RS resource, or the DL PRS resource; and

receiving, from the UE, the SP SRS-for-positioning on one or more SRS resources configured to the UE for transmission of the SP SRS-for-positioning, the SP SRS-for-positioning having transmission parameters adopted from the spatial relation reference signal.

22. The method of claim 21 , wherein the SRS-for-communication resource is identified by a five-bit SRS resource identifier (ID).

23. The method of claim 21 , wherein the SSB is identified by a 16-bit SSB ID and physical cell identity (PCI) of the SSB.

24. The method of claim 21 , wherein the CSI-RS resource is identified by an eight-bit CSI-RS resource ID.

25. The method of claim 21 , wherein the SRS-for-positioning resource is identified by a five-bit SRS resource identifier.

26. The method of claim 21 , wherein the DL PRS resource is identified by a 17-bit DL PRS resource ID, DL PRS resource set ID, and transmission-reception point (TRP) ID.

27. The method of claim 21 , wherein, based on the type of the spatial relation reference signal, the identifier field includes:

the SRS resource ID of the SRS-for-communication resource,

an index value into a table of combinations of SSB IDs and PCIs,

the CSI-RS resource ID,

the SRS resource ID of the SRS-for-positioning resource, or

an index value into a table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs.

28. The method of claim 27 , further comprising, based on the type of the spatial relation reference signal:

transmitting, to the UE, the table of combinations of SSB IDs and PCIs via radio resource control (RRC) signaling; and/or

transmitting, to the UE, the table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs via RRC signaling.

29. The method of claim 21 , wherein the identifier field includes one or more bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource or the SRS-for-positioning resource.

30. The method of claim 29 , wherein the identifier field includes six bits for the SRS resource ID of the SRS-for-communication resource or the SRS resource ID of the SRS-for-positioning resource.

31. The method of claim 21 , wherein the identifier field includes at least one bit indicating whether the type of the spatial relation reference signal is the SSB, the CSI-RS resource, the DL PRS resource, or an SRS resource.

32. The method of claim 31 , wherein the identifier field includes a seven-bit index value into a table of combinations of SSB IDs and PCIs, a seven-bit index value into a table of CSI-RS resource IDs, or a seven-bit index value into a table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs.

33. The method of claim 32 , further comprising:

transmitting, to the UE, the table of combinations of SSB IDs and PCIs via RRC signaling;

transmitting, to the UE, the table of CSI-RS resource IDs via RRC signaling; and/or

transmitting, to the UE, the table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs via RRC signaling.

34. The method of claim 21 , further comprising:

transmitting a table to the UE via RRC signaling, each entry of the table including the type of the spatial relation reference signal and the ID of the spatial relation reference signal.

35. The method of claim 34 , wherein the table is for an SRS resource, an SRS resource set, a bandwidth part (BWP), or a component carrier for the SP SRS-for-positioning.

36. The method of claim 21 , wherein the identifier field comprises an eight-bit field including the ID of the spatial relation reference signal.

37. The method of claim 36 , wherein the eight-bit field is a combination of an F i field having a length of one bit and a resource ID i field having a length of seven bits.

38. The method of claim 21 , further comprising:

transmitting, to the UE via RRC signaling, a configuration of the type of the spatial relation reference signal as the SSB or the DL PRS resource.

39. The method of claim 21 , wherein:

the LCD indicates the activation or deactivation of the SP SRS-for-positioning, and

the MAC-CE includes at least one three-bit F i field identifying the type of the spatial relation reference signal and at least one spatial relation information field including the ID of the spatial relation reference signal.

40. The method of claim 21 , wherein the spatial relation reference signal is a quasi-colocation (QCL) source reference signal.

41. A user equipment (UE), comprising:

a memory;

at least one transceiver; and

at least one processor communicatively coupled to the memory and the at least one transceiver, the at least one processor configured to:

receive, from a serving base station, a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCD) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning; and

transmit the SP SRS-for-positioning on one or more SRS resources configured for the UE, the SP SRS-for-positioning having transmission parameters adopted from a spatial relation reference signal for the SP SRS-for-positioning, an identifier (ID) of the spatial relation reference signal determined based on an identifier field for the spatial relation reference signal in the MAC-CE, wherein a type of the spatial relation reference signal is one of (1) an SRS-for-communication resource, (2) a synchronization signal block (SSB), (3) a channel state information reference signal (CSI-RS) resource, (4) an SRS-for-positioning resource, or (5) a downlink positioning reference signal (DL PRS) resource, and wherein the identifier field includes three bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource, the SRS-for-positioning resource, the SSB, the CSI-RS resource, or the DL PRS resource.

42. The UE of claim 41 , wherein the SRS-for-communication resource is identified by a five-bit SRS resource ID.

43. The UE of claim 41 , wherein the SSB is identified by a 16-bit SSB ID and physical cell identity (PCI) of the SSB.

44. The UE of claim 41 , wherein the CSI-RS resource is identified by an eight-bit CSI-RS resource ID.

45. The UE of claim 41 , wherein the SRS-for-positioning resource is identified by a five-bit SRS resource ID.

46. The UE of claim 41 , wherein the DL PRS resource is identified by a 17-bit DL PRS resource ID, DL PRS resource set ID, and transmission-reception point (TRP) ID.

47. The UE of claim 41 , wherein, based on the type of the spatial relation reference signal, the identifier field includes:

the SRS resource ID of the SRS-for-communication resource,

an index value into a table of combinations of SSB IDs and PCIs,

the CSI-RS resource ID,

the SRS resource ID of the SRS-for-positioning resource, or

an index value into a table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs.

48. The UE of claim 47 , wherein the at least one processor is further configured to, based on the type of the spatial relation reference signal:

receive, from the serving base station, the table of combinations of SSB IDs and PCIs via radio resource control (RRC) signaling; and/or

receive, from the serving base station, the table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs via RRC signaling.

49. The UE of claim 41 , wherein the identifier field includes one or more bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource or the SRS-for-positioning resource.

50. The UE of claim 49 , wherein the identifier field includes six bits for the SRS resource ID of the SRS-for-communication resource or the SRS resource ID of the SRS-for-positioning resource.

51. The UE of claim 41 , wherein the identifier field includes at least one bit indicating whether the type of the spatial relation reference signal is the SSB, the CSI-RS resource, the DL PRS resource, or an SRS resource.

52. The UE of claim 51 , wherein the identifier field includes a seven-bit index value into a table of combinations of SSB IDs and PCIs, a seven-bit index value into a table of CSI-RS resource IDs, or a seven-bit index value into a table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs.

53. The UE of claim 52 , wherein the at least one processor is further configured to:

receive, from the serving base station, the table of combinations of SSB IDs and PCIs via RRC signaling;

receive, from the serving base station, the table of CSI-RS resource IDs via RRC signaling; and/or

receive, from the serving base station, the table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs via RRC signaling.

54. The UE of claim 41 , wherein the at least one processor is further configured to:

receive a table from the serving base station via RRC signaling, each entry of the table including the type of the spatial relation reference signal and the ID of the spatial relation reference signal.

55. The UE of claim 54 , wherein the table is for an SRS resource, an SRS resource set, a bandwidth part (BWP), or a component carrier for the SP SRS-for-positioning.

56. The UE of claim 41 , wherein the identifier field comprises an eight-bit field including the ID of the spatial relation reference signal.

57. The UE of claim 56 , wherein the eight-bit field is a combination of an F i field having a length of one bit and a resource ID i field having a length of seven bits.

58. The UE of claim 41 , wherein the at least one processor is further configured to:

receive, from the serving base station via RRC signaling, a configuration of the type of the spatial relation reference signal as the SSB or the DL PRS resource.

59. The UE of claim 41 , wherein:

the LCD indicates the activation or deactivation of the SP SRS-for-positioning, and the MAC-CE includes at least one three-bit F i field identifying the type of the spatial relation reference signal and at least one spatial relation information field including the ID of the spatial relation reference signal.

60. The UE of claim 41 , wherein the spatial relation reference signal is a quasi-colocation (QCL) source reference signal.

61. A base station, comprising:

a memory;

at least one transceiver; and

at least one processor communicatively coupled to the memory and the at least one transceiver, the at least one processor configured to:

transmit, to a user equipment (UE), a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCD) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning, wherein the MAC-CE includes an identifier field from which an identifier (ID) of a spatial relation reference signal for the SP SRS-for-positioning can be determined, wherein a type of the spatial relation reference signal is one of (1) an SRS-for-communication resource, (2) a synchronization signal block (SSB), (3) a channel state information reference signal (CSI-RS) resource, (4) an SRS-for-positioning resource, or (5) a downlink positioning reference signal (DL PRS) resource, and wherein the identifier field includes three bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource, the SRS-for-positioning resource, the SSB, the CSI-RS resource, or the DL PRS resource; and

receive, from the UE, the SP SRS-for-positioning on one or more SRS resources configured to the UE for transmission of the SP SRS-for-positioning, the SP SRS-for-positioning having transmission parameters adopted from the spatial relation reference signal.

62. The base station of claim 61 , wherein the SRS-for-communication resource is identified by a five-bit SRS resource identifier (ID).

63. The base station of claim 61 , wherein the SSB is identified by a 16-bit SSB ID and physical cell identity (PCI) of the SSB.

64. The base station of claim 61 , wherein the CSI-RS resource is identified by an eight-bit CSI-RS resource ID.

65. The base station of claim 61 , wherein the SRS-for-positioning resource is identified by a five-bit SRS resource identifier.

66. The base station of claim 61 , wherein the DL PRS resource is identified by a 17-bit DL PRS resource ID, DL PRS resource set ID, and transmission-reception point (TRP) ID.

67. The base station of claim 61 , wherein, based on the type of the spatial relation reference signal, the identifier field includes:

the SRS resource ID of the SRS-for-communication resource,

an index value into a table of combinations of SSB IDs and PCIs,

the CSI-RS resource ID,

the SRS resource ID of the SRS-for-positioning resource, or

an index value into a table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs.

68. The base station of claim 67 , wherein the at least one processor is further configured to, based on the type of the spatial relation reference signal:

transmit, to the UE, the table of combinations of SSB IDs and PCIs via radio resource control (RRC) signaling; and/or

transmit, to the UE, the table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs via RRC signaling.

69. The base station of claim 61 , wherein the identifier field includes one or more bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource or the SRS-for-positioning resource.

70. The base station of claim 69 , wherein the identifier field includes six bits for the SRS resource ID of the SRS-for-communication resource or the SRS resource ID of the SRS-for-positioning resource.

71. The base station of claim 61 , wherein the identifier field includes at least one bit indicating whether the type of the spatial relation reference signal is the SSB, the CSI-RS resource, the DL PRS resource, or an SRS resource.

72. The base station of claim 71 , wherein the identifier field includes a seven-bit index value into a table of combinations of SSB IDs and PCIs, a seven-bit index value into a table of CSI-RS resource IDs, or a seven-bit index value into a table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs.

73. The base station of claim 72 , wherein the at least one processor is further configured to:

transmit, to the UE, the table of combinations of SSB IDs and PCIs via RRC signaling;

transmit, to the UE, the table of CSI-RS resource IDs via RRC signaling; and/or

transmit, to the UE, the table of combinations of DL PRS resource IDs, DL PRS resource set IDs, and TRP IDs via RRC signaling.

74. The base station of claim 61 , wherein the at least one processor is further configured to:

transmit a table to the UE via RRC signaling, each entry of the table including the type of the spatial relation reference signal and the ID of the spatial relation reference signal.

75. The base station of claim 74 , wherein the table is for an SRS resource, an SRS resource set, a bandwidth part (BWP), or a component carrier for the SP SRS-for-positioning.

76. The base station of claim 61 , wherein the identifier field comprises an eight-bit field including the ID of the spatial relation reference signal.

77. The base station of claim 76 , wherein the eight-bit field is a combination of an F i field having a length of one bit and a resource ID i field having a length of seven bits.

78. The base station of claim 61 , wherein the at least one processor is further configured to:

transmit, to the UE via RRC signaling, a configuration of the type of the spatial relation reference signal as the SSB or the DL PRS resource.

79. The base station of claim 61 , wherein:

the LCD indicates the activation or deactivation of the SP SRS-for-positioning, and

the MAC-CE includes at least one three-bit F i field identifying the type of the spatial relation reference signal and at least one spatial relation information field including the ID of the spatial relation reference signal.

80. The base station of claim 61 , wherein the spatial relation reference signal is a quasi-colocation (QCL) source reference signal.

81. A user equipment (UE), comprising:

means for receiving, from a serving base station, a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCD) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning; and

means for transmitting the SP SRS-for-positioning on one or more SRS resources configured for the UE, the SP SRS-for-positioning having transmission parameters adopted from a spatial relation reference signal for the SP SRS-for-positioning, an identifier (ID) of the spatial relation reference signal determined based on an identifier field for the spatial relation reference signal in the MAC-CE, wherein a type of the spatial relation reference signal is one of (1) an SRS-for-communication resource, (2) a synchronization signal block (SSB), (3) a channel state information reference signal (CSI-RS) resource, (4) an SRS-for-positioning resource, or (5) a downlink positioning reference signal (DL PRS) resource, and wherein the identifier field includes three bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource, the SRS-for-positioning resource, the SSB, the CSI-RS resource, or the DL PRS resource.

82. A base station, comprising:

means for transmitting, to a user equipment (UE), a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCD) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning, wherein the MAC-CE includes an identifier field from which an identifier (ID) of a spatial relation reference signal for the SP SRS-for-positioning can be determined, wherein a type of the spatial relation reference signal is one of (1) an SRS-for-communication resource, (2) a synchronization signal block (SSB), (3) a channel state information reference signal (CSI-RS) resource, (4) an SRS-for-positioning resource, or (5) a downlink positioning reference signal (DL PRS) resource, and wherein the identifier field includes three bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource, the SRS-for-positioning resource, the SSB, the CSI-RS resource, or the DL PRS resource; and

means for receiving, from the UE, the SP SRS-for-positioning on one or more SRS resources configured to the UE for transmission of the SP SRS-for-positioning, the SP SRS-for-positioning having transmission parameters adopted from the spatial relation reference signal.

83. A non-transitory computer-readable medium storing computer-executable instructions, the computer-executable instructions comprising:

at least one instruction instructing a user equipment (UE) to receive, from a serving base station, a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCID) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning; and

at least one instruction instructing the UE to transmit the SP SRS-for-positioning on one or more SRS resources configured for the UE, the SP SRS-for-positioning having transmission parameters adopted from a spatial relation reference signal for the SP SRS-for-positioning, an identifier (ID) of the spatial relation reference signal determined based on an identifier field for the spatial relation reference signal in the MAC-CE, wherein a type of the spatial relation reference signal is one of (1) an SRS-for-communication resource, (2) a synchronization signal block (SSB), (3) a channel state information reference signal (CSI-RS) resource, (4) an SRS-for-positioning resource, or (5) a downlink positioning reference signal (DL PRS) resource, and wherein the identifier field includes three bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource, the SRS-for-positioning resource, the SSB, the CSI-RS resource, or the DL PRS resource.

84. A non-transitory computer-readable medium storing computer-executable instructions, the computer-executable instructions comprising:

at least one instruction instructing a base station to transmit, to a user equipment (UE), a medium access control control element (MAC-CE) indicating activation or deactivation of a semi-persistent (SP) sounding reference signal (SRS)-for-positioning, wherein a reserved bit in the MAC-CE or a logical channel identifier (LCD) of a MAC subheader of the MAC-CE indicates the activation or deactivation of the SP SRS-for-positioning, wherein the MAC-CE includes an identifier field from which an identifier (ID) of a spatial relation reference signal for the SP SRS-for-positioning can be determined, wherein a type of the spatial relation reference signal is one of (1) an SRS-for-communication resource, (2) a synchronization signal block (SSB), (3) a channel state information reference signal (CSI-RS) resource, (4) an SRS-for-positioning resource, or (5) a downlink positioning reference signal (DL PRS) resource, and wherein the identifier field includes three bits indicating whether the type of the spatial relation reference signal is the SRS-for-communication resource, the SRS-for-positioning resource, the SSB, the CSI-RS resource, or the DL PRS resource; and

at least one instruction instructing the base station to receive, from the UE, the SP SRS-for-positioning on one or more SRS resources configured to the UE for transmission of the SP SRS-for-positioning, the SP SRS-for-positioning having transmission parameters adopted from the spatial relation reference signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2021
From: MANOLAKOS, ALEXANDROS; AKKARAKARAN, SONY; FISCHER, SVEN
To: QUALCOMM INCORPORATED
Reel/Frame 055295/0315 →
Continuity (2)
Provisional Application 62970093 · Feb 4, 2020
Related Publication 20210242991A1 · Aug 5, 2021