IP Library Granted Patent US 8,588,250
Granted Patent B2
US 8,588,250 · App. 13/027,030 · Granted Nov 19, 2013

Broadband cable network utilizing common bit-loading

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Quick Facts
Patent No.
US 8,588,250
App. No.
13/027,030
Granted
Nov 19, 2013
Kind
B2
Abstract

A broadband cable network (“BCN”) for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in the BCN is disclosed. The BCN may include a transmitting node within the plurality of nodes where the transmitting node is capable of sending a probe signal to the plurality of nodes, and at least one receiving node within the plurality of nodes in signal communication with the transmitting node. The at least one receiving node is capable of transmitting a first response signal in response to receiving the probe signal. The first response signal includes a first bit-loading modulation scheme determined by the at least one receiving node. The transmitting node is further capable of determining the common bit-loading modulation scheme from the first response signal.

Claims (243)

1. A method for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the method comprising:

transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

determining the common bit-loading modulation scheme from the received plurality of response signals;

receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

determining the transmission characteristics of the channel path at the one receiving node;

transmitting a response signal from the one receiving node to the transmitting node;

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path; and

transmitting a broadcast signal from the transmitting node to the plurality of receiving nodes, wherein the broadcast signal utilizes the common bit-loaded modulation scheme;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node, and

wherein determining a common bit-loading modulation scheme includes:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes.

2. A method for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the method comprising:

transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

determining the common bit-loading modulation scheme from the received plurality of response signals;

receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

determining the transmission characteristics of the channel path at the one receiving node;

transmitting a response signal from the one receiving node to the transmitting node; and

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node,

wherein determining a common bit-loading modulation scheme includes:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes; and

wherein the probe signal utilizes a bit-loaded modulation scheme that is capable of being received by all the receiving nodes within the sub-plurality of receiving nodes.

3. A method for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the method comprising:

transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

determining the common bit-loading modulation scheme from the received plurality of response signals;

receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

determining the transmission characteristics of the channel path at the one receiving node;

transmitting a response signal from the one receiving node to the transmitting node; and

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node;

wherein determining a common bit-loading modulation scheme includes:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes;

wherein the probe signal utilizes a bit-loaded modulation scheme that is capable of being received by all the receiving nodes within the sub-plurality of receiving nodes; and

wherein the transmission characteristics of the channel path are determined by measuring the signal-to-noise (“SNR”) characteristics of the received probe signal at the one receiving node.

4. A method for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the method comprising:

transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

determining the common bit-loading modulation scheme from the received plurality of response signals;

receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

determining the transmission characteristics of the channel path at the one receiving node; and

transmitting a response signal from the one receiving node to the transmitting node; and

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node;

wherein determining a common bit-loading modulation scheme includes:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes;

wherein the probe signal utilizes a bit-loaded modulation scheme that is capable of being received by all the receiving nodes within the sub-plurality of receiving nodes; and

wherein the transmission characteristics of the channel path are determined by measuring the product-error rate (“PER”) characteristics of the received probe signal at the one receiving node.

5. A method for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the method comprising:

transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

determining the common bit-loading modulation scheme from the received plurality of response signals;

receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

determining the transmission characteristics of the channel path at the one receiving node;

transmitting a response signal from the one receiving node to the transmitting node; and

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node;

wherein determining a common bit-loading modulation scheme includes:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes; and

wherein each bit-loading modulation scheme utilizes a quadrature phase shift keying (“QPSK”) modulation scheme.

6. A method for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the method comprising:

transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

determining the common bit-loading modulation scheme from the received plurality of response signals;

receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

determining the transmission characteristics of the channel path at the one receiving node;

transmitting a response signal from the one receiving node to the transmitting node; and

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein determining a common bit-loading modulation scheme includes:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes; and

wherein the each bit-loading modulation scheme utilizes quadrature amplitude modulation (“QAM”).

7. The method of claim 6 , wherein each bit-loading modulation scheme is chosen from the group essentially consisting of 64 QAM modulation, 128 QAM modulation, 256 QAM modulation, 512 QAM modulation and 1024 QAM modulation.

8. A non-transitory computer-readable medium having software for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the computer-readable medium comprising:

logic configured for transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

logic configured for receiving a plurality of response signals from the subplurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

logic configured for determining the common bit-loading modulation scheme from the received plurality of response signals;

logic configured for receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

logic configured for determining the transmission characteristics of the channel path at the one receiving node;

logic configured for transmitting a response signal from the one receiving node to the transmitting node;

logic configured for generating the response signal, wherein the response signal utilizes a bitloading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path; and

logic configured for transmitting a broadcast signal from the transmitting node to the plurality of receiving nodes, wherein the broadcast signal utilizes the common bit-loaded modulation scheme;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein the logic configured for determining a common bit-loading modulation scheme includes:

logic configured comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

logic configured determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes.

9. A non-transitory computer-readable medium having software for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the computer-readable medium comprising:

logic configured for transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

logic configured for receiving a plurality of response signals from the subplurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

logic configured for determining the common bit-loading modulation scheme from the received plurality of response signals;

logic configured for receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

logic configured for determining the transmission characteristics of the channel path at the one receiving node;

logic configured for transmitting a response signal from the one receiving node to the transmitting node; and

logic configured for generating the response signal, wherein the response signal utilizes a bitloading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein the logic configured for determining a common bit-loading modulation scheme includes:

logic configured for comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

logic configured for determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes; and

wherein the probe signal utilizes a bit-loaded modulation scheme that is capable of being received by all the receiving nodes within the sub-plurality of receiving nodes.

10. A non-transitory computer-readable medium having software for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the computer-readable medium comprising:

logic configured for transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

logic configured for receiving a plurality of response signals from the subplurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

logic configured for determining the common bit-loading modulation scheme from the received plurality of response signals;

logic configured for receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

logic configured for determining the transmission characteristics of the channel path at the one receiving node;

logic configured for transmitting a response signal from the one receiving node to the transmitting node; and

logic configured for generating the response signal, wherein the response signal utilizes a bitloading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein the logic configured for determining a common bit-loading modulation scheme includes:

logic configured for comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

logic configured for determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes; and

wherein the transmission characteristics of the channel path are determined by logic configured for measuring the signal-to-noise (“SNR”) characteristics of the received probe signal at the one receiving node.

11. A non-transitory computer-readable medium having software for determining a common bit-loading modulation scheme for communicating between a plurality of nodes in a broadband cable network (“BCN”), the computer-readable medium comprising:

logic configured for transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

logic configured for receiving a plurality of response signals from the subplurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

logic configured for determining the common bit-loading modulation scheme from the received plurality of response signals;

logic configured for receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

logic configured for determining the transmission characteristics of the channel path at the one receiving node;

logic configured for transmitting a response signal from the one receiving node to the transmitting node; and

logic configured for generating the response signal, wherein the response signal utilizes a bitloading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmission characteristics of the channel path are determined by measuring the bit-error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein the logic configured for determining a common bit-loading modulation scheme includes:

logic configured for comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

logic configured for determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes; and

wherein the transmission characteristics of the channel path are determined by logic configured for measuring the product-error rate (“PER”) characteristics of the received probe signal at the one receiving node.

12. A broadband cable network (“BCN”) for determining a common bitloading modulation scheme for communicating between a plurality of nodes in the BCN, the BCN comprising:

a) a transmitting node within the plurality of nodes, the transmitting node capable of sending a probe signal;

b) a sub-plurality of receiving nodes within the plurality of nodes wherein the subplurality of receiving nodes are capable of transmitting a sub-plurality of response signals in response to receiving the probe signal, wherein the sub-plurality of response signals includes a plurality of bit-loading modulation schemes, wherein each bit-loading modulation scheme of the plurality of bit-loading modulation schemes is determined by a receiving node within the sub-plurality of receiving nodes; and

wherein the transmitting node is capable of determining the common bit-loading modulation scheme from the sub-plurality of response signals; and

wherein a receiving node within the sub-plurality of receiving nodes is capable of:

receiving the probe signal at the receiving node through a channel path of transmission;

determining the transmission characteristics of the channel path at the receiving node;

transmitting a response signal, of the sub-plurality of response signals, from the receiving node to the transmitting node;

determining the transmission characteristics of the channel path by measuring the bit error rate (“BER”) characteristics of the received probe signal at the one receiving node;

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the receiving node in response to determining the transmission characteristics of the channel path; and

determining the transmission characteristics of the channel path by measuring the signal-to-noise (“SNR”) characteristics of the received probe signal at the receiving node;

wherein the transmitting node is capable of determining a common bit-loading modulation scheme by:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes.

13. A broadband cable network (“BCN”) for determining a common bitloading modulation scheme for communicating between a plurality of nodes in the BCN, the BCN comprising:

a) a transmitting node within the plurality of nodes, the transmitting node capable of sending a probe signal;

b) a sub-plurality of receiving nodes within the plurality of nodes wherein the subplurality of receiving nodes are capable of transmitting a sub-plurality of response signals in response to receiving the probe signal, wherein the sub-plurality of response signals includes a plurality of bit-loading modulation schemes, wherein each bit-loading modulation scheme of the plurality of bit-loading modulation schemes is determined by a receiving node within the sub-plurality of receiving nodes; and

wherein the transmitting node is capable of determining the common bit-loading modulation scheme from the sub-plurality of response signals; and

wherein a receiving node within the sub-plurality of receiving nodes is capable of:

receiving the probe signal at the receiving node through a channel path of transmission;

determining the transmission characteristics of the channel path at the receiving node;

transmitting a response signal, of the sub-plurality of response signals, from the receiving node to the transmitting node;

determining the transmission characteristics of the channel path by measuring the bit error rate (“BER”) characteristics of the received probe signal at the one receiving node;

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the receiving node in response to determining the transmission characteristics of the channel path; and

determining the transmission characteristics of the channel path by measuring the product-error rate (“PER”) characteristics of the received probe signal at the one receiving node; and

wherein the transmitting node is capable of determining a common bit-loading modulation scheme by:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes.

14. A broadband cable network (“BCN”) for determining a common bitloading modulation scheme for communicating between a plurality of nodes in the BCN, the BCN comprising:

a) a transmitting node within the plurality of nodes, the transmitting node capable of sending a probe signal;

b) a sub-plurality of receiving nodes within the plurality of nodes wherein the subplurality of receiving nodes are capable of transmitting a sub-plurality of response signals in response to receiving the probe signal, wherein the sub-plurality of response signals includes a plurality of bit-loading modulation schemes, wherein each bit-loading modulation scheme of the plurality of bit-loading modulation schemes is determined by a receiving node within the sub-plurality of receiving nodes; and

wherein the transmitting node is capable of determining the common bit-loading modulation scheme from the sub-plurality of response signals; and

wherein a receiving node within the sub-plurality of receiving nodes is capable of:

receiving the probe signal at the receiving node through a channel path of transmission;

determining the transmission characteristics of the channel path at the receiving node;

transmitting a response signal, of the sub-plurality of response signals, from the receiving node to the transmitting node;

determining the transmission characteristics of the channel path by measuring the bit error rate (“BER”) characteristics of the received probe signal at the one receiving node;

generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the receiving node in response to determining the transmission characteristics of the channel path;

wherein the transmitting node is capable of determining a common bit-loading modulation scheme by:

comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals, and

determining the common bit-loading modulation scheme in response to comparing the plurality of bit-loaded modulation schemes; and

wherein the transmitting node and the receiving nodes are the same type of devices.

15. A broadband cable network (“BCN”) for determining a common bitloading modulation scheme for communicating between a plurality of nodes in the BCN, the BCN comprising:

a) a transmitting node within the plurality of nodes, the transmitting node having means for sending a probe signal; and

b) a sub-plurality of receiving nodes within the plurality of nodes, wherein the sub-plurality of receiving nodes have means for transmitting a sub-plurality of response signals in response to receiving the probe signal, wherein the sub-plurality of response signals includes a plurality of bit-loading modulation schemes, wherein each bit-loading modulation scheme of the plurality of bit-loading modulation schemes is determined by a receiving node within the sub-plurality of receiving nodes; and

wherein the transmitting node includes means for determining the common bitloading modulation scheme from the sub-plurality of response signals;

wherein a receiving node within the sub-plurality of receiving nodes includes:

means for receiving the probe signal at the receiving node through a channel path of transmission;

means for determining the transmission characteristics of the channel path at the receiving node; and

means for transmitting a response signal, of the sub-plurality of response signals, from the receiving node to the transmitting node; and

wherein the means for determining a common bit-loading modulation scheme includes:

means for comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals; and

means for determining the common bit-loading modulation scheme in response to comparing all bit-loading modulation schemes within the plurality of bit-loading modulation schemes.

16. The BCN of claim 15 , wherein the receiving node includes means for determining the transmission characteristics of the channel path by measuring the bit error rate (“BER”) characteristics of the received probe signal at the one receiving node.

17. The BCN of claim 15 , wherein the receiving node includes means for determining the transmission characteristics of the channel path by measuring the signal-to-noise (“SNR”) characteristics of the received probe signal at the receiving node.

18. The BCN of claim 15 , wherein the transmitting node includes means for determining a common bit-loading modulation scheme.

19. The BCN of claim 15 , wherein the transmitting node and the receiving nodes are the same type of devices.

20. A broadband cable network (“BCN”) for determining a common bitloading modulation scheme for communicating between a plurality of nodes in the BCN, the BCN comprising:

means for transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

means for receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

means for determining the common bit-loading modulation scheme from the received plurality of response signals;

means for receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

means for determining the transmission characteristics of the channel path at the one receiving node;

means for transmitting a response signal from the one receiving node to the transmitting node;

means for generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path; and

means for transmitting a broadcast signal from the transmitting node to the plurality of receiving nodes, wherein the broadcast signal utilizes the common bit-loaded modulation scheme;

wherein the one receiving node includes means for determining the transmission characteristics of the channel path by measuring the bit error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein the means for determining a common bit-loading modulation scheme includes:

means for comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals; and

means for determining the common bit-loading modulation scheme in response to comparing all bit-loading modulation schemes within the plurality of bit-loading modulation schemes.

21. A broadband cable network (“BCN”) for determining a common bitloading modulation scheme for communicating between a plurality of nodes in the BCN, the BCN comprising:

means for transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

means for receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

means for determining the common bit-loading modulation scheme from the received plurality of response signals;

means for receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

means for determining the transmission characteristics of the channel path at the one receiving node;

means for transmitting a response signal from the one receiving node to the transmitting node; and

means for generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the one receiving node includes means for determining the transmission characteristics of the channel path by measuring the bit error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein the means for determining a common bit-loading modulation scheme includes:

means for comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals; and

means for determining the common bit-loading modulation scheme in response to comparing all bit-loading modulation schemes within the plurality of bit-loading modulation schemes; and

wherein the probe signal utilizes a bit-loaded modulation scheme that is capable of being received by all the receiving nodes within the sub-plurality of receiving nodes.

22. A broadband cable network (“BCN”) for determining a common bitloading modulation scheme for communicating between a plurality of nodes in the BCN, the BCN comprising:

means for transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

means for receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

means for determining the common bit-loading modulation scheme from the received plurality of response signals;

means for receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

means for determining the transmission characteristics of the channel path at the one receiving node;

means for transmitting a response signal from the one receiving node to the transmitting node; and

means for generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the one receiving node includes means for determining the transmission characteristics of the channel path by measuring the bit error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein the means for determining a common bit-loading modulation scheme includes:

means for comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals; and

means for determining the common bit-loading modulation scheme in response to comparing all bit-loading modulation schemes within the plurality of bit-loading modulation schemes; and

wherein each bit-loading modulation scheme utilizes a quadrature phase shift keying (“QPSK”) modulation scheme.

23. A broadband cable network (“BCN”) for determining a common bitloading modulation scheme for communicating between a plurality of nodes in the BCN, the BCN comprising:

means for transmitting a probe signal from a transmitting node within the plurality of nodes to a sub-plurality of receiving nodes within the plurality of nodes;

means for receiving a plurality of response signals from the sub-plurality of receiving nodes wherein each response signal includes a bit-loading modulation scheme determined by a corresponding receiving node;

means for determining the common bit-loading modulation scheme from the received plurality of response signals;

means for receiving the probe signal at one receiving node of the plurality of receiving nodes through a channel path of transmission;

means for determining the transmission characteristics of the channel path at the one receiving node;

means for transmitting a response signal from the one receiving node to the transmitting node; and

means for generating the response signal, wherein the response signal utilizes a bit-loading modulation scheme that is generated by the one receiving node in response to determining the transmission characteristics of the channel path;

wherein the one receiving node includes means for determining the transmission characteristics of the channel path by measuring the bit error rate (“BER”) characteristics of the received probe signal at the one receiving node; and

wherein the means for determining a common bit-loading modulation scheme includes:

means for comparing a plurality of bit-loading modulation schemes from the corresponding received plurality of response signals; and

means for determining the common bit-loading modulation scheme in response to comparing all bit-loading modulation schemes within the plurality of bit-loading modulation schemes; and

wherein the each bit-loading modulation scheme utilizes quadrature amplitude modulation (“QAM”) scheme.

24. The BCN of claim 23 , wherein each bit-loading modulation scheme is chosen from the group essentially consisting of 64 QAM modulation, 128 QAM modulation, 256 QAM modulation, 512 QAM modulation and 1024 QAM modulation.

Assignments (8)
RELEASE OF SECURITY INTEREST Recorded Jun 23, 2021
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SUCCESSION OF AGENCY (REEL 042453 / FRAME 0001) Recorded Jul 1, 2020
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SECURITY AGREEMENT Recorded May 12, 2017
From: MAXLINEAR, INC.; ENTROPIC COMMUNICATIONS, LLC (F/K/A ENTROPIC COMMUNICATIONS, INC.); EXAR CORPORATION
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