IP Library Granted Patent US 10,313,496
Granted Patent B2
US 10,313,496 · App. 15/206,049 · Granted Jun 4, 2019

Spectrum abstraction for a shared coaxial cable network

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Quick Facts
Patent No.
US 10,313,496
App. No.
15/206,049
Granted
Jun 4, 2019
Kind
B2
Abstract

A first Multimedia over Coax Alliance (MoCA) compatible device comprises a physical layer profiling circuit and a spectrum abstraction circuit. The physical layer profiling circuit may for example be operable to measure a performance metric for each of a plurality of subbands on a shared coaxial cable of a MoCA network. The spectrum abstraction circuit may for example be operable to select, based at least in part on the measured performance metric, a subset of the subbands to be used for communication over the coaxial cable between the first MoCA-compatible device and a second MoCA-compatible device. The spectrum abstraction circuit may for example be operable to receive an indication of whether channel bonding is to be used for the communication over the coaxial cable between the first MoCA-compatible device and the second MoCA-compatible device. The spectrum abstraction circuit may for example be operable to perform the selection of the subset of the subbands based at least in part on the indication of whether channel-bonding is to be used.

Claims (60)

1. A system comprising

a first Multimedia over Coax Alliance (MoCA) compatible device comprising a physical layer profiling circuit and a spectrum abstraction circuit, wherein:

the physical layer profiling circuit is operable to measure a performance metric for each of a plurality of subbands on a shared coaxial cable of a MoCA network; and

the spectrum abstraction circuit is operable to select, based at least in part on the measured performance metric, a subset of the plurality of subbands to be used for communication over the coaxial cable between the first MoCA-compatible device and a second MoCA-compatible device, wherein the subset of the plurality of subbands comprises more than one of the plurality of subbands,

wherein:

the spectrum abstraction circuit is operable to receive an indication of whether channel-bonding is to be used for the communication over the coaxial cable between the first MoCA-compatible device and the second MoCA-compatible device; and

the spectrum abstraction circuit is operable to perform the selection of the subset of the plurality of subbands based at least in part on the indication of whether channel-bonding is to be used, wherein:

when channel-bonding is not to be used, the subset of the plurality of subbands comprises a first plurality of the plurality of subbands; and

when channel-bonding is to be used, the subset of the plurality of subbands comprises a second plurality of the plurality of subbands, wherein the second plurality is different from the first plurality.

2. The system of claim 1 , wherein the plurality of subbands comprises at least one MoCA subband and at least one non-MoCA subband.

3. The system of claim 1 , wherein the spectrum abstraction circuit is operable to:

select a first subset of the plurality of subbands having a first aggregate bandwidth when the indication is that channel bonding is to be used; and

select a second subset having a second aggregate bandwidth, different from the first aggregate bandwidth, when the indication is that channel bonding is not to be used.

4. The system of claim 1 , wherein the spectrum abstraction circuit is operable to include, in the selected subset, only those of the plurality of subbands for which the measured performance metric meets a minimum acceptable level.

5. The system of claim 1 , wherein:

the first MoCA-compatible device comprises an analog-to-digital conversion circuit (ADC), a subband selection circuit, and a downconversion circuit, wherein:

an input of the subband selection circuit is connected to an output of the ADC; and

inputs of the downconversion circuit are connected to outputs of the subband selection circuit.

6. The system of claim 5 , wherein a local oscillator frequency of the downconversion circuit is configured based, at least in part, on a control signal from the spectrum abstraction circuit.

7. The system of claim 5 , wherein the subband selection circuit is configured based, at least in part, on a control signal from the spectrum abstraction circuit such that the subband selection circuit passes only the selected subset of the plurality of subbands to the inputs of the downconversion circuit.

8. The system of claim 5 , wherein:

the first MoCA-compatible device comprises a demodulation and decoding circuit; and

parameter values used by the demodulation and decoding circuit are configured based, at least in part, on a control signal from the spectrum abstraction circuit such that appropriate parameter values are used for demodulating and decoding each subband in the selected subset.

9. A system comprising

a first Multimedia over Coax Alliance (MoCA) compatible device comprising a physical layer profiling circuit and a spectrum abstraction circuit, wherein:

the physical layer profiling circuit is operable to measure a performance metric for each of a plurality of subbands on a shared coaxial cable of a MoCA network;

the spectrum abstraction circuit is operable to select, based at least in part on the measured performance metric, a subset of the plurality of subbands to be used for communication over the coaxial cable between the first MoCA-compatible device and a second MoCA-compatible device, wherein the subset of the plurality of subbands comprises more than one of the plurality of subbands; and

the plurality of subbands comprises at least one MoCA subband and at least one non-MoCA subband.

10. A system comprising

a first Multimedia over Coax Alliance (MoCA) compatible device comprising a physical layer profiling circuit and a spectrum abstraction circuit, wherein:

the physical layer profiling circuit is operable to measure a performance metric for each of a plurality of subbands on a shared coaxial cable of a MoCA network;

the spectrum abstraction circuit is operable to select, based at least in part on the measured performance metric, a subset of the plurality of subbands to be used for communication over the coaxial cable between the first MoCA-compatible device and a second MoCA-compatible device, wherein the subset of the plurality of subbands comprises more than one of the plurality of subbands; and

the subset of the plurality of subbands comprises at least three distinct subbands separated from each other by one or more intervening subbands.

11. A method comprising

measuring, by a physical layer profiling circuit of a first Multimedia over Coax Alliance (MoCA) compatible device, a performance metric for each of a plurality of subbands on a shared coaxial cable of a MoCA network; and

selecting, by a spectrum abstraction circuit of the first MoCA-compatible device based at least in part on the measured performance metric, a subset of the plurality of subbands to be used for communication over the coaxial cable between the first MoCA-compatible device and a second MoCA-compatible device, wherein the subset of the plurality of subbands comprises more than one of the plurality of subbands,

receiving, by the spectrum abstraction circuit, an indication of whether channel-bonding is to be used for the communication over the coaxial cable between the first MoCA-compatible device and the second MoCA-compatible device, wherein the spectrum abstraction circuit performs the selecting of the subset of the plurality of subbands based at least in part on the indication of whether channel-bonding is to be used, wherein:

when channel-bonding is not to be used, the subset of the plurality of subbands comprises a first plurality of the plurality of subbands; and

when channel-bonding is to be used, the subset of the plurality of subbands comprises a second plurality of the plurality of subbands, wherein the second plurality is different from the first plurality.

12. The method of claim 11 , wherein the plurality of subbands comprises at least one MoCA subband and at least one non-MoCA subband.

13. The method of claim 11 , wherein the selecting comprises:

selecting a first subset of the plurality of subbands having a first aggregate bandwidth when the indication is that channel bonding is to be used; and

selecting a second subset having a second aggregate bandwidth, different from the first aggregate bandwidth, when the indication is that channel bonding is not to be used.

14. The method of claim 11 , wherein the selecting comprises selecting only those of the plurality of subbands for which the measured performance metric meets a minimum acceptable level.

15. The method of claim 11 , wherein:

the first MoCA-compatible device comprises an analog-to-digital conversion circuit (ADC), a subband selection circuit, and a downconversion circuit, wherein:

an input of the subband selection circuit is connected to an output of the ADC; and

inputs of the downconversion circuit are connected to outputs of the subband selection circuit.

16. The method of claim 15 , comprising configuring, by the downconversion circuit, a frequency of one or more local oscillators based, at least in part, on a control signal from the spectrum abstraction circuit.

17. The method of claim 15 , comprising configuring, by the subband selection circuit based at least in part on a control signal from the spectrum abstraction circuit, the subband selection circuit to pass only the selected subset of the plurality of subbands to the inputs of the downconversion circuit.

18. The method of claim 15 , wherein the first MoCA-compatible device comprises a demodulation and decoding circuit, and the method comprises:

configuring, by the demodulation and decoding circuit based at least in part on a control signal from the spectrum abstraction circuit, parameter values used by the demodulation and decoding circuit such that appropriate parameter values are used for demodulating and decoding each subband in the selected subset.

19. A method comprising

measuring, by a physical layer profiling circuit of a first Multimedia over Coax Alliance (MoCA) compatible device, a performance metric for each of a plurality of subbands on a shared coaxial cable of a MoCA network; and

selecting, by a spectrum abstraction circuit of the first MoCA-compatible device based at least in part on the measured performance metric, a subset of the plurality of subbands to be used for communication over the coaxial cable between the first MoCA-compatible device and a second MoCA-compatible device, wherein the subset of the plurality of subbands comprises more than one of the plurality of subbands,

wherein the plurality of subbands comprises at least one MoCA subband and at least one non-MoCA subband.

20. A method comprising

measuring, by a physical layer profiling circuit of a first Multimedia over Coax Alliance (MoCA) compatible device, a performance metric for each of a plurality of subbands on a shared coaxial cable of a MoCA network; and

selecting, by a spectrum abstraction circuit of the first MoCA-compatible device based at least in part on the measured performance metric, a subset of the plurality of subbands to be used for communication over the coaxial cable between the first MoCA-compatible device and a second MoCA-compatible device, wherein the subset of the plurality of subbands comprises more than one of the plurality of subbands,

wherein the subset of the plurality of subbands comprises at least three distinct subbands separated from each other by one or more intervening subbands.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Jun 23, 2021
From: MUFG UNION BANK, N.A.
To: MAXLINEAR, INC.; EXAR CORPORATION; MAXLINEAR COMMUNICATIONS LLC
Reel/Frame 056656/0204 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2021
From: MAXLINEAR, INC.
To: ENTROPIC COMMUNICATIONS, LLC
Reel/Frame 055898/0230 →
RELEASE OF SECURITY INTEREST Recorded Mar 31, 2021
From: MUFG UNION BANK, N.A.
To: MAXLINEAR, INC.; MAXLINEAR COMMUNICATIONS LLC
Reel/Frame 055779/0001 →
SUCCESSION OF AGENCY (REEL 042453 / FRAME 0001) Recorded Jul 1, 2020
From: JPMORGAN CHASE BANK, N.A.
To: MUFG UNION BANK, N.A.
Reel/Frame 053115/0842 →
SECURITY AGREEMENT Recorded May 12, 2017
From: MAXLINEAR, INC.; ENTROPIC COMMUNICATIONS, LLC (F/K/A ENTROPIC COMMUNICATIONS, INC.); EXAR CORPORATION
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 042453/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2016
From: LING, CURTIS; RAMESH, SRIDHAR
To: MAXLINEAR, INC.
Reel/Frame 040745/0666 →