IP Library Granted Patent US 11,937,262
Granted Patent B2
US 11,937,262 · App. 17/579,999 · Granted Mar 19, 2024

Base station signaling in a wireless network

Inventor: Esmael Hejazi Dinan (Herndon, VA)
Assignee: Comcast Cable Communications, LLC
H04W72/23H04L27/2601H04W24/08H04W36/0005H04W36/0072H04W36/06H04W72/0446H04W72/0453H04W72/20
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Quick Facts
Patent No.
US 11,937,262
App. No.
17/579,999
Granted
Mar 19, 2024
Kind
B2
Abstract

A first base station may communicate with a second base station regarding a wireless device and handover. The first base station may send the wireless device's configuration to the second base station, and may receive, from the second base station, configuration parameters of carriers associated with the wireless device. The carriers may be of different types, and may have differences regarding reference signals. The first base station may inform the wireless device of the configuration parameters.

Claims (89)

1. A method comprising:

transmitting, by a first base station, to a second base station, and based on a handover decision for a wireless device, information indicating a carrier type for each of a plurality of carriers associated with the wireless device, wherein the plurality of carriers comprises:

at least one carrier of a first carrier type that comprises a reference signal in every downlink subframe of a plurality of downlink subframes; and

at least one carrier of a second carrier type that:

comprises a common reference signal in fewer than all downlink subframes of the plurality of downlink subframes based on data being in fewer than all downlink subframes of the plurality of downlink subframes; and

supports fewer transmission modes than the at least one carrier of the first carrier type; and

causing, by the first base station, handover of the wireless device from the first base station to the second base station.

2. The method of claim 1 , wherein the at least one carrier of the second carrier type selectively comprises the reference signal based on data being transmitted in one or more of the plurality of downlink subframes.

3. The method of claim 1 , wherein the at least one carrier of the second carrier type employs a wireless-device-specific demodulation reference signal.

4. The method of claim 1 , further comprising causing a downlink subframe of the at least one carrier of the second carrier type to become empty.

5. The method of claim 1 , wherein the at least one carrier of the second carrier type comprises a second downlink subframe in which a control channel is configured to start at a symbol after a first symbol in the second downlink subframe.

6. The method of claim 5 , wherein in the second downlink subframe, no common reference signal is transmitted between the first symbol in the second downlink subframe and the control channel in the second downlink subframe.

7. The method of claim 1 , wherein the first base station is part of a long-term evolution (LTE) network.

8. A method comprising:

transmitting, by a first base station, to a second base station, and based on a handover decision for a wireless device, information indicating a carrier type for each of a plurality of carriers associated with the wireless device, wherein the plurality of carriers comprises:

at least one carrier of a first carrier type that comprises a common reference signal in every downlink subframe of a plurality of downlink subframes; and

at least one carrier of a second carrier type that:

selectively comprises a common reference signal in at least one downlink subframe of the plurality of downlink subframes based on data being transmitted in one or more of the plurality of downlink subframes; and

supports fewer transmission modes than the at least one carrier of the first carrier type; and

causing, by the first base station, handover of the wireless device from the first base station to the second base station.

9. The method of claim 8 , wherein the at least one carrier of the second carrier type is without the common reference signal in at least one second downlink subframe of the plurality of downlink subframes.

10. The method of claim 8 , wherein the at least one carrier of the second carrier type is without the common reference signal, in at least one second downlink subframe of the plurality of downlink subframes, based on data being transmitted in fewer than all downlink subframes of the plurality of downlink subframes.

11. The method of claim 8 , wherein the at least one carrier of the second carrier type employs a wireless-device-specific demodulation reference signal.

12. The method of claim 8 , further comprising causing a downlink subframe of the at least one carrier of the second carrier type to become empty.

13. The method of claim 8 , wherein the at least one carrier of the second carrier type comprises a second downlink subframe in which a control channel is configured to start at a symbol after a first symbol in the second downlink subframe.

14. The method of claim 13 , wherein in the second downlink subframe, no common reference signal is transmitted between the first symbol in the second downlink subframe and the control channel in the second downlink subframe.

15. The method of claim 8 , wherein the first base station is part of a long-term evolution (LTE) network.

16. A first base station comprising:

one or more processors; and

memory storing instructions that, when executed by the one or more processors, configure the first base station to:

transmit, to a second base station and based on a handover decision for a wireless device, information indicating a carrier type for each of a plurality of carriers associated with the wireless device, wherein the plurality of carriers comprises:

at least one carrier of a first carrier type that comprises a reference signal in every downlink subframe of a plurality of downlink subframes; and

at least one carrier of a second carrier type that:

comprises a common reference signal in fewer than all downlink subframes of the plurality of downlink subframes based on data being in fewer than all downlink subframes of the plurality of downlink subframes; and

supports fewer transmission modes than the at least one carrier of the first carrier type; and

cause handover of the wireless device from the first base station to the second base station.

17. The first base station of claim 16 , wherein the at least one carrier of the second carrier type selectively comprises the reference signal based on data being transmitted in one or more of the plurality of downlink subframes.

18. The first base station of claim 16 , wherein the at least one carrier of the second carrier type employs a wireless-device-specific demodulation reference signal.

19. The first base station of claim 16 , wherein the instructions, when executed by the one or more processors, further configure the first base station to cause a downlink subframe of the at least one carrier of the second carrier type to become empty.

20. The first base station of claim 16 , wherein the at least one carrier of the second carrier type comprises a second downlink subframe in which a control channel is configured to start at a symbol after a first symbol in the second downlink subframe.

21. The first base station of claim 20 , wherein in the second downlink subframe, no common reference signal is transmitted between the first symbol in the second downlink subframe and the control channel in the second downlink subframe.

22. The first base station of claim 16 , wherein the first base station is part of a long-term evolution (LTE) network.

23. A first base station comprising:

one or more processors; and

memory storing instructions that, when executed by the one or more processors, configure the first base station to:

transmit, to a second base station and based on a handover decision for a wireless device, information indicating a carrier type for each of a plurality of carriers associated with the wireless device, wherein the plurality of carriers comprises:

at least one carrier of a first carrier type that comprises a common reference signal in every downlink subframe of a plurality of downlink subframes; and

at least one carrier of a second carrier type that:

selectively comprises a common reference signal in at least one downlink subframe of the plurality of downlink subframes based on data being transmitted in one or more of the plurality of downlink subframes; and

supports fewer transmission modes than the at least one carrier of the first carrier type; and

cause handover of the wireless device from the first base station to the second base station.

24. The first base station of claim 23 , wherein the at least one carrier of the second carrier type is without the common reference signal in at least one second downlink subframe of the plurality of downlink subframes.

25. The first base station of claim 23 , wherein the at least one carrier of the second carrier type is without the common reference signal, in at least one second downlink subframe of the plurality of downlink subframes, based on data being transmitted in fewer than all downlink subframes of the plurality of downlink subframes.

26. The first base station of claim 23 , wherein the at least one carrier of the second carrier type employs a wireless-device-specific demodulation reference signal.

27. The first base station of claim 23 , wherein the instructions, when executed by the one or more processors, further configure the first base station to cause a downlink subframe of the at least one carrier of the second carrier type to become empty.

28. The first base station of claim 23 , wherein the at least one carrier of the second carrier type comprises a second downlink subframe in which a control channel is configured to start at a symbol after a first symbol in the second downlink subframe.

29. The first base station of claim 28 , wherein in the second downlink subframe, no common reference signal is transmitted between the first symbol in the second downlink subframe and the control channel in the second downlink subframe.

30. The first base station of claim 23 , wherein the first base station is part of a long-term evolution (LTE) network.

31. One or more non-transitory, computer-readable media storing instructions that, when executed, configure a first base station to:

transmit, to a second base station and based on a handover decision for a wireless device, information indicating a carrier type for each of a plurality of carriers associated with the wireless device, wherein the plurality of carriers comprises:

at least one carrier of a first carrier type that comprises a common reference signal in every downlink subframe of a plurality of downlink subframes; and

at least one carrier of a second carrier type that:

selectively comprises a common reference signal in at least one downlink subframe of the plurality of downlink subframes based on data being transmitted in one or more of the plurality of downlink subframes; and

supports fewer transmission modes than the at least one carrier of the first carrier type; and

cause handover of the wireless device from the first base station to the second base station.

32. The one or more non-transitory, computer-readable media of claim 31 , wherein the at least one carrier of the second carrier type is without the common reference signal in at least one second downlink subframe of the plurality of downlink subframes.

33. The one or more non-transitory, computer-readable media of claim 31 , wherein the at least one carrier of the second carrier type is without the common reference signal, in at least one second downlink subframe of the plurality of downlink subframes, based on data being transmitted in fewer than all downlink subframes of the plurality of downlink subframes.

34. The one or more non-transitory, computer-readable media of claim 31 , wherein the at least one carrier of the second carrier type employs a wireless-device- specific demodulation reference signal.

35. The one or more non-transitory, computer-readable media of claim 31 , wherein the instructions, when executed, further cause the first base station to cause a downlink subframe of the at least one carrier of the second carrier type to become empty.

36. The one or more non-transitory, computer-readable media of claim 31 , wherein the at least one carrier of the second carrier type comprises a second downlink subframe in which a control channel is configured to start at a symbol after a first symbol in the second downlink subframe.

37. The one or more non-transitory, computer-readable media of claim 36 , wherein in the second downlink subframe, no common reference signal is transmitted between the first symbol in the second downlink subframe and the control channel in the second downlink subframe.

38. The one or more non-transitory, computer-readable media of claim 31 , wherein the first base station is part of a long-term evolution (LTE) network.

39. A system comprising:

a first base station and a second base station,

wherein the first base station is configured to:

transmit, to the second base station and based on a handover decision for a wireless device, information indicating a carrier type for each of a plurality of carriers associated with the wireless device, wherein the plurality of carriers comprises:

at least one carrier of a first carrier type that comprises a common reference signal in every downlink subframe of a plurality of downlink subframes; and

at least one carrier of a second carrier type that:

selectively comprises a common reference signal in at least one downlink subframe of the plurality of downlink subframes based on data being transmitted in one or more of the plurality of downlink subframes; and

supports fewer transmission modes than the at least one carrier of the first carrier type; and

cause handover of the wireless device from the first base station to the second base station; and

wherein the second base station is configured to receive the information indicating the carrier type for each of the plurality of carriers associated with the wireless device.

40. The system of claim 39 , wherein the at least one carrier of the second carrier type is without the common reference signal in at least one second downlink subframe of the plurality of downlink subframes.

41. The system of claim 39 , wherein the at least one carrier of the second carrier type is without the common reference signal, in at least one second downlink subframe of the plurality of downlink subframes, based on data being transmitted in fewer than all downlink subframes of the plurality of downlink subframes.

42. The system of claim 39 , wherein the at least one carrier of the second carrier type employs a wireless-device-specific demodulation reference signal.

43. The system of claim 39 , wherein the first base station is further configured to cause a downlink subframe of the at least one carrier of the second carrier type to become empty.

44. The system of claim 39 , wherein the at least one carrier of the second carrier type comprises a second downlink subframe in which a control channel is configured to start at a symbol after a first symbol in the second downlink subframe.

45. The system of claim 44 , wherein in the second downlink subframe, no common reference signal is transmitted between the first symbol in the second downlink subframe and the control channel in the second downlink subframe.

46. The system of claim 39 , wherein the first base station is part of a long-term evolution (LTE) network.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2023
From: OFINNO TECHNOLOGIES, LLC
To: COMCAST CABLE COMMUNICATIONS, LLC
Reel/Frame 063620/0727 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2023
From: DINAN, ESMAEL HEJAZI
To: OFINNO TECHNOLOGIES, LLC
Reel/Frame 063620/0749 →
Continuity (10)
Continuation 16716724 · Dec 17, 2019
Continuation 15864894 · Jan 8, 2018
Continuation 14941147 · Nov 13, 2015
Continuation 14042840 · Oct 1, 2013
Continuation 13938306 · Jul 10, 2013
Continuation 13791535 · Mar 8, 2013
Continuation 13691720 · Nov 30, 2012
Provisional Application 61566671 · Dec 4, 2011
Provisional Application 61566670 · Dec 4, 2011
Related Publication 20220256512A1 · Aug 11, 2022
Cited By (1)
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