IP Library Granted Patent US 10,187,150
Granted Patent B2
US 10,187,150 · App. 15/867,110 · Granted Jan 22, 2019

Direct communicative coupling of a radio source to a remote unit for exchanging communications services with a distributed communications system (DCS)

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Quick Facts
Patent No.
US 10,187,150
App. No.
15/867,110
Granted
Jan 22, 2019
Kind
B2
Abstract

Direct communicative coupling of a base station(s) to a remote unit for exchanging communications services with a distributed communications system (DCS) is disclosed. For example, the remote unit may include a remote antenna unit that is provided in a distributed antenna system (DAS) as one type of DCS. In this manner, the remote unit can facilitate distribution of communications services from a base station into the DCS at locations other than at a centralized location in the DCS, such as at a central unit or head-end equipment. Various DCS configurations are possible that include a remote unit supporting the direct communicatively coupling to a base station(s) for distributing communications services in a DCS.

Claims (93)

1. A method of exchanging communications signals in a distributed communications system (DCS) with a remote radio source directly communicatively coupled to a remote unit in the DCS, comprising:

receiving downlink communications signals in a central unit from at least one radio source communicatively coupled to the central unit;

distributing the downlink communications signals from the central unit to be received by a plurality of remote units;

receiving uplink communications signals in the central unit received by the plurality of remote units;

receiving the downlink communications signals in one or more of the plurality of remote units;

distributing the downlink communications signals from the one or more of the plurality of remote units to at least one client device;

receiving uplink communications signals from the at least one client device;

distributing the received uplink communications signals from one or more of the plurality of remote units to be received by the central unit;

receiving remote downlink communications signals in a radio source remote unit among the plurality of remote units, from at least one remote radio source directly communicatively coupled to the radio source remote unit;

distributing the remote downlink communications signals from the radio source remote unit to at least one client device;

distributing the remote downlink communications signals from the radio source remote unit to be received by at least one other remote unit among the plurality of remote units;

distributing the uplink communications signals received from the at least one client device to the at least one remote radio source; and

distributing the uplink communications signals received by at least one remote unit among the plurality of remote units to the at least one remote radio source.

2. The method of claim 1 , comprising receiving the remote downlink communications signals in the radio source remote unit from the at least one remote radio source physically connected to the radio source remote unit.

3. The method of claim 2 , comprising receiving the remote downlink communications signals in the radio source remote unit from the at least one remote radio source directly physically connected to the radio source remote unit.

4. The method of claim 1 , comprising receiving the remote downlink communications signals in the radio source remote unit from the at least one remote radio source wirelessly connected to the radio source remote unit.

5. The method of claim 1 , comprising:

distributing the downlink communications signals from the central unit directly to the plurality of remote units;

receiving the uplink communications signals in the central unit directly from the plurality of remote units;

receiving the downlink communications signals directly from the central unit in each of the plurality of remote units;

distributing the downlink communications signals from each of the plurality of remote units to at least one client device; and

receiving the uplink communications signals from the at least one client device in each of the plurality of remote units.

6. The method of claim 5 , comprising:

distributing the received uplink communications signals from each of the plurality of remote units directly to the central unit;

distributing the remote downlink communications signals from the radio source remote units directly to the central unit; and

distributing the uplink communications signals received directly from the central unit to the at least one remote radio source.

7. The method of claim 1 , comprising:

distributing the downlink communications signals to one or more upstream remote units among the plurality of remote units;

receiving upstream uplink communications signals from the one or more upstream remote units;

receiving the downlink communications signals in one or more downstream remote units among the plurality of remote units, from the one or more upstream remote units;

distributing the downlink communications signals from the one or more downstream remote units to at least one client device;

receiving the uplink communications signals from the at least one client device in the one or more downstream remote units; and

distributing the received uplink communications signals from the one or more downstream remote units to the one or more upstream remote units.

8. The method of claim 7 , comprising:

receiving upstream downlink communications signals in one or more radio source remote units among the plurality of remote units, from the one or more upstream remote units;

distributing the upstream downlink communications signals from the one or more radio source remote units to at least one client device;

distributing the uplink communications signals as upstream uplink communications signals from the one or more radio source remote units to the one or more upstream remote units;

receiving downstream downlink communications signals from the one or more downstream remote units in the one or more radio source remote units;

distributing the downstream downlink communications signals from the one or more radio source remote units to at least one client device; and

distributing the uplink communications signals as downstream uplink communications signals from the one or more radio source remote units to the one or more downstream remote units.

9. The method of claim 8 , further comprising:

distributing the received uplink communications signals from the at least one client device, from the one or more radio source remote units to the at least one remote radio source;

distributing the received upstream uplink communications signals from the one or more upstream remote units, from the one or more radio source remote units to the at least one remote radio source; and

distributing the received downstream uplink communications signals from the one or more upstream remote units, from the one or more radio source remote units to the at least one remote radio source.

10. A remote unit for exchanging communications signals in a distributed communications system (DCS) comprising:

an input interface configured to receive downlink communications signals in a DCS;

a client device output interface configured to distribute the received downlink communications signals to at least one client device;

a client device input interface configured to receive uplink communications signals from the at least one client device;

an output interface configured to distribute the received uplink communications signals to be received by a central unit;

a remote input interface configured to receive remote downlink communications signals from one or more radio source remote units directly communicatively coupled to the remote unit;

the input interface configured to distribute the remote downlink communications signals to be received by at least one other remote unit among a plurality of remote units;

a remote output interface configured to distribute the uplink communications signals received from the at least one client device to at least one remote radio source; and

the remote output interface configured to distribute the uplink communications signals received by the at least one other remote unit among the plurality of remote units to the at least one remote radio source.

11. The remote unit of claim 10 , wherein:

the input interface is configured to receive the downlink communications signals directly from the central unit;

the client device output interface is configured to distribute the downlink communications signals to at least one client device; and

the client device input interface is configured to receive the uplink communications signals from the at least one client device.

12. The remote unit of claim 11 , wherein:

the output interface is configured to distribute the received uplink communications signals directly to the central unit;

the input interface is configured to distribute the remote downlink communications signals directly to the central unit in the DCS; and

the remote output interface is configured to distribute the uplink communications signals received directly from the central unit to the at least one remote radio source.

13. The remote unit of claim 12 , further comprising at least one band circuit configured to:

receive the downlink communications signals to be distributed to the at least one client device;

receive the remote downlink communications signals to be distributed to the at least one client device; and

receive the uplink communications signals from at least one client device.

14. The remote unit of claim 11 , further comprising a digital processing circuit configured to:

route the remote downlink communications signals to the at least one client device;

route the remote downlink communications signals to be received by the at least one other remote unit among the plurality of remote units;

route the uplink communications signals received from the at least one client device to the at least one remote radio source; and

route the uplink communications signals received by at least one other remote unit among the plurality of remote units to the at least one remote radio source.

15. The remote device of claim 10 , wherein:

the input interface comprises an upstream input interface configured to receive upstream downlink communications signals from one or more upstream remote units;

the client device output interface configured to distribute the upstream downlink communications signals to the at least one client device and distribute downstream downlink communications signals to the at least one client device;

an upstream output interface configured to distribute the uplink communications signals as upstream uplink communications signals to the one or more upstream remote units;

the input interface comprises a downstream input interface configured to receive downstream downlink communications signals from the one or more downstream remote units; and

the output interface further comprises a downstream output interface configured to distribute downstream uplink communications signals to the one or more downstream remote units.

16. The remote unit of claim 15 , further comprising:

the remote output interface configured to distribute the received uplink communications signals from the at least one client device and the received upstream uplink communications signals from the one or more upstream remote units to the at least one remote radio source; and

the remote input interface configured to distribute the received downstream uplink communications signals from the one or more upstream remote units to the at least one remote radio source.

17. The remote unit of claim 16 , further comprising at least one band circuit configured to:

receive the upstream downlink communications signals from the one or more upstream remote units to be distributed to at least one client device; and

filter the received upstream downlink communication signals to at least one radio-frequency (RF) band;

receive the uplink communications signals from at least one client device to be distributed as the upstream uplink communications signals to the one or more upstream remote units;

filter the received uplink communication signals to at least one radio-frequency (RF) band;

receive the downstream downlink communications signals from the one or more downstream remote units to be distributed to the at least one client device;

filter the received downstream downlink communications signals to at least one radio-frequency (RF) band;

receive the uplink communications signals from at least one client device to distribute the uplink communications signals as the downstream uplink communications signals to the one or more downstream remote units; and

filter the received uplink communication signals from the at least one client device to at least one radio-frequency (RF) band.

18. The remote unit of claim 10 , further comprising a digital processing circuit configured to:

route the remote downlink communications signals to the at least one client device;

route the remote downlink communications signals to be received by the at least one other remote unit among the plurality of remote units;

route the uplink communications signals received from the at least one client device to the at least one remote radio source; and

route the uplink communications signals received by at least one other remote unit among the plurality of remote units to the at least one remote radio source.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2025
From: CORNING OPTICAL COMMUNICATIONS LLC
To: ANI ACQUISITION SUB, LLC
Reel/Frame 071270/0328 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2019
From: CORNING OPTICAL COMMUNICATIONS WIRELESS LTD
To: CORNING OPTICAL COMMUNICATIONS LLC
Reel/Frame 048411/0787 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 11, 2018
From: MIZRAHI, GAVRIEL; SHEKALIM, PARWIZ
To: CORNING OPTICAL COMMUNICATIONS WIRELESS LTD
Reel/Frame 046043/0058 →