IP Library › Granted Patent US 11,102,663
Granted Patent B2
US 11,102,663 · App. 16/152,266 · Granted Aug 24, 2021

Radio access networks

Inventors: Vedat Eyuboglu (Weston, MA); Arthur J. Barabell (Sudbury, MA)
Assignee: CommScope Technologies LLC
H04W24/02H04B7/04H04B7/15507H04B17/336H04J11/00H04L5/005H04L12/4641H04L27/2602H04L27/2628H04L27/34H04L45/745H04L61/6022H04L69/28H04W16/26H04W72/042H04W72/0413H04W72/0446H04W72/1226H04W74/0833H04W84/12H04W88/085H04W88/12H04W88/16
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Quick Facts
Patent No.
US 11,102,663
App. No.
16/152,266
Filed
Oct 4, 2018
Granted
Aug 24, 2021
Kind
B2
Art Unit
2471
USPC
370/315
Abstract

Among other things, a communication system comprising at least one remote unit and at least one controller is described. The at least one remote unit exchanges radio frequency (RF) signals with mobile devices. Each RF signal comprises information destined for, or originating from, one of the mobile devices. The controller is communicatively coupled to the at least one remote unit and comprises a real-time scheduler for assigning airlink resources to the mobile devices for the information. The at least one controller and the at least one remote unit are configured so that the physical layer functions for an air interface are split between the controller and the at least one remote unit. The at least one controller and the at least one remote unit are configured so that the split of the physical layer functions for at least some of a first channel of the air interface differs from the split of the physical layer functions for a second channel of the air interface.

Claims (46)

1. A communication system comprising:

at least one remote unit to exchange radio frequency (RF) signals with mobile devices using an air interface, each RF signal comprising information that is destined for, or received from, at least one of the mobile devices; and

at least one controller communicatively coupled to the at least one remote unit, the at least one controller comprising a real-time scheduler for assigning airlink resources to the mobile devices for the information;

wherein the at least one controller and the at least one remote unit are configured so that physical layer functions for the air interface are split between the at least one controller and the at least one remote unit; and

wherein the at least one controller and the at least one remote unit are configured so that the split of the physical layer functions for a first channel of the air interface differs from the split of the physical layer functions for a second channel of the air interface.

2. The system of claim 1 , wherein the at least one controller and at least one remote unit are configured so that the split of the physical layer functions for the first channel of the air interface differs from the split of the physical layer functions for the second channel of the air interface such that at least some baseband data that is communicated between the at least one remote unit and the at least one controller for the first channel is communicated in a form that differs from a form in which baseband data is communicated between the at least one remote unit and the at least one controller for the second channel.

3. The system of claim 2 , wherein said form in which said at least some baseband data for the first channel is communicated comprises a time-domain form, and said form in which the baseband data for the second channel is communicated comprises a frequency-domain form.

4. The system of claim 2 , wherein the first channel comprises a Long Term Evolution (LTE) Physical Random Access Channel (PRACH), and the second channel comprises at least one of an LTE Physical Uplink Shared Channel (PUSCH) and an LTE Physical Uplink Control CHannel (PUCCH).

5. The system of claim 1 , wherein at least the first and second channels are both uplink channels.

6. The system of claim 1 , wherein at least the first and second channels are both downlink channels.

7. The system of claim 1 , wherein the at least one remote unit comprises more than one remote unit.

8. A method comprising:

exchanging, by at least one remote unit, radio frequency (RF) signals with mobile devices using an air interface, each RF signal comprising information that is destined for, or received from, at least one of the mobile devices; and

assigning, by at least one controller that communicates baseband data to and from the at least one remote unit, airlink resources to the mobile devices for the information;

wherein physical layer functions for the air interface are split between the at least one controller and the at least one remote unit;

wherein the split of the physical layer functions for a first channel of the air interface differs from the split of the physical layer functions for a second channel of the air interface.

9. The method of claim 8 , wherein the split of the physical layer functions for the first channel of the air interface differs from the split of the physical layer functions for the second channel of the air interface such that at least some of the baseband data that is communicated between the at least one remote unit and the at least one controller for the first channel is communicated in a form that differs from a form in which the baseband data is communicated between the at least one remote unit and the at least one controller for the second channel.

10. The method of claim 9 , wherein said form in which said at least some of the baseband data for the first channel is communicated comprises a time-domain form, and said form in which the baseband data for the second channel is communicated comprises a frequency-domain form.

11. The method of claim 9 , wherein the first channel comprises a Long Term Evolution (LTE) Physical Random Access Channel (PRACH), and the second channel comprises at least one of an LTE Physical Uplink Shared Channel (PUSCH) and an LTE Physical Uplink Control CHannel (PUCCH).

12. The method of claim 8 , wherein at least the first and second channels are both uplink channels.

13. The method of claim 8 , wherein at least the first and second channels are both downlink channels.

14. The method of claim 8 , wherein the at least one remote unit comprises more than one remote unit.

15. A communication system comprising:

at least one remote unit to exchange radio frequency (RF) signals with mobile devices using an air interface, each RF signal comprising information that is destined for, or received from, at least one of the mobile devices; and

at least one controller communicatively coupled to the at least one remote unit, the at least one controller comprising a real-time scheduler for assigning airlink resources to the mobile devices for the information;

wherein the at least one controller and the at least one remote unit are configured so that physical layer functions for the air interface are split between the at least one controller and the at least one remote unit;

wherein the at least one controller and the at least one remote unit are configured so that the split of the physical layer functions for at least some of an uplink channel of the air interface differs from the split of the physical layer functions for a downlink channel of the air interface.

16. The system of claim 15 , wherein the at least one controller and at least one remote unit are configured so that the split of the physical layer functions for the uplink channel of the air interface differs from the split of the physical layer functions for the downlink channel of the air interface such that at least some baseband data that is communicated between the at least one remote unit and the at least one controller for the uplink channel is communicated in a form that differs from a form in which baseband data is communicated between the at least one remote unit and the at least one controller for the downlink channel.

17. The system of claim 16 , wherein said form in which said at least some baseband data for the uplink channel is communicated comprises a time-domain form, and said form in which the baseband data for the downlink channel is communicated comprises a frequency-domain form.

18. The system of claim 16 , wherein the uplink channel comprises a Long Term Evolution (LTE) Physical Random Access Channel (PRACH).

19. The system of claim 15 , wherein at least the uplink and downlink channels comprise at least one uplink channel, at least one downlink channel, or at least one uplink channel and at least one downlink channel.

20. The system of claim 15 , wherein at least the uplink and downlink channels are both uplink channels.

21. The system of claim 15 , wherein at least the uplink and downlink channels are both downlink channels.

22. The system of claim 15 , wherein the at least one remote unit comprises more than one remote unit.

23. A method comprising:

exchanging, by at least one remote unit, radio frequency (RF) signals with mobile devices using an air interface, each RF signal comprising information that is destined for, or received from, at least one of the mobile devices; and

assigning, by at least one controller that communicates baseband data to and from the at least one remote unit, airlink resources to the mobile devices for the information;

wherein physical layer functions for the air interface are split between the at least one controller and the at least one remote unit;

wherein the split of the physical layer functions for at least some of an uplink channel of the air interface differs from the split of the physical layer functions for a downlink channel of the air interface.

24. The method of claim 23 , wherein the split of the physical layer functions for the uplink channel of the air interface differs from the split of the physical layer functions for the downlink channel of the air interface such that at least some of the baseband data that is communicated between the at least one remote unit and the at least one controller for the uplink channel is communicated in a form that differs from a form in which the baseband data is communicated between the at least one remote unit and the at least one controller for the downlink channel.

25. The method of claim 24 , wherein said form in which said at least some of the baseband data for the uplink channel is communicated comprises a time-domain form, and said form in which the baseband data for the downlink channel is communicated comprises a frequency-domain form.

26. The method of claim 24 , wherein the uplink channel comprises a Long Term Evolution (LTE) Physical Random Access Channel (PRACH).

27. The method of claim 23 , wherein at least the uplink and downlink channels comprise at least one uplink channel, at least one downlink channel, or at least one uplink channel and at least one downlink channel.

28. The method of claim 23 , wherein at least the uplink and downlink channels are both uplink channels.

29. The method of claim 23 , wherein at least the uplink and downlink channels are both downlink channels.

30. The method of claim 23 , wherein the at least one remote unit comprises more than one remote unit.

Assignments (14)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2025
From: COMMSCOPE TECHNOLOGIES LLC
To: OUTDOOR WIRELESS NETWORKS LLC
Reel/Frame 071712/0070 →
PARTIAL TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded May 8, 2025
From: U.S. BANK TRUST COMPANY, NATIONAL ASSOCIATION
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 071226/0923 →
PARTIAL TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT REEL 069889/FRAME 0114 Recorded May 8, 2025
From: APOLLO ADMINISTRATIVE AGENCY LLC
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 071234/0055 →
PARTIAL TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS AT REEL/FRAME NO. 60752/0001 Recorded May 6, 2025
From: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 071189/0001 →
PARTIAL RELEASE OF SECURITY INTEREST AT REEL/FRAME 049892/0396 Recorded May 2, 2025
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 071156/0020 →
RELEASE OF SECURITY INTEREST AT REEL/FRAME 049905/0504 Recorded Dec 19, 2024
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC (F/K/A ARRIS ENTERPRISES, INC.); ARRIS TECHNOLOGY, INC.; ARRIS SOLUTIONS, INC.; COMMSCOPE, INC. OF NORTH CAROLINA; COMMSCOPE TECHNOLOGIES LLC; RUCKUS WIRELESS, LLC (F/K/A RUCKUS WIRELESS, INC.)
Reel/Frame 071477/0255 →
SECURITY INTEREST Recorded Dec 17, 2024
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE INC., OF NORTH CAROLINA; OUTDOOR WIRELESS NETWORKS LLC; RUCKUS IP HOLDINGS LLC
To: APOLLO ADMINISTRATIVE AGENCY LLC
Reel/Frame 069889/0114 →
SECURITY INTEREST Recorded Nov 19, 2021
From: ARRIS SOLUTIONS, INC.; ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA; RUCKUS WIRELESS, INC.
To: WILMINGTON TRUST
Reel/Frame 060752/0001 →
ABL SECURITY AGREEMENT Recorded Jul 3, 2019
From: COMMSCOPE, INC. OF NORTH CAROLINA; COMMSCOPE TECHNOLOGIES LLC; ARRIS ENTERPRISES LLC; ARRIS TECHNOLOGY, INC.; RUCKUS WIRELESS, INC.; ARRIS SOLUTIONS, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 049892/0396 →
TERM LOAN SECURITY AGREEMENT Recorded Jul 3, 2019
From: COMMSCOPE, INC. OF NORTH CAROLINA; COMMSCOPE TECHNOLOGIES LLC; ARRIS ENTERPRISES LLC; ARRIS TECHNOLOGY, INC.; RUCKUS WIRELESS, INC.; ARRIS SOLUTIONS, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 049905/0504 →
PATENT SECURITY AGREEMENT Recorded Jul 3, 2019
From: COMMSCOPE TECHNOLOGIES LLC
To: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 049892/0051 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2018
From: EYUBOGLU, VEDAT; BARABELL, ARTHUR J.
To: AIRVANA LLC
Reel/Frame 047073/0825 →
CHANGE OF NAME Recorded Oct 4, 2018
From: AIRVANA LLC
To: AIRVANA LP
Reel/Frame 048221/0942 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2018
From: AIRVANA LP
To: COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 047196/0384 →
Continuity (3)
Continuation 15191005 · Jun 23, 2016
Continuation 13762284 · Feb 7, 2013
Related Publication 20190037421A1 · Jan 31, 2019
Cited By (1)
US 12,418,907