EP0809898A2

Multi-point to point communication system

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 6 February 2016, 10.6 years ago.

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123 claims: 20 independent, 103 dependent

  1. 1
    Claims of equivalent WO 9624989 A2 WHAT IS CLAIMED IS:1. A bi-directional multi-point to point communication system, comprising: a hybrid fiber/coax distribution network having an optical fiber portion and a coaxial cable portion;a head end terminal for downstream transmission of downstream control data and downstream telephony information in a first frequency bandwidth over the hybrid fiber/coax distribution network and for receipt of upstream telephony information and upstream control data in a second frequency bandwidth over the hybrid fiber/coax distribution network, the head end terminal including: head end multicarrier modem means for modulating at least downstream telephony information on a plurality of orthogonal carriers in the first frequency bandwidth and for demodulating at least upstream telephony information modulated on a plurality of orthogonal carriers in the second frequency bandwidth;head end controller means operatively connected to the head end multicarrier modem means for controlling transmission of the downstream telephony information and downstream control data and for controlling receipt of the upstream control data and upstream telephony information;at least one service unit, each associated with at least one remote unit and operatively connected to the hybrid fiber/coax distribution network for upstream transmission of upstream telephony information and upstream control data in the second frequency bandwidth and for receipt of the downstream control data and downstream telephony information in the first frequency bandwidth, each service unit including: service unit multicarrier modem means for modulating at least the upstream telephony information on at least one carrier orthogonal at the head end terminal to at least one other carrier of the second frequency bandwidth and for demodulating at least the downstream telephony information modulated on at least a band of a plurality of orthogonal carriers in the first frequency bandwidth;service unit controller means operatively connected to the service unit multicarrier modem means for controlling the modulation of and demodulation performed by the service unit multicarrier modem means.
  2. 24
    A communication system, comprising:a distribution network between a head end terminal and at least one remote unit, the head end terminal for receipt of upstream telephony information and upstream control data in a frequency bandwidth over the distribution network, the head end terminal including: head end multicarrier means for demodulating at least upstream telephony information modulated on a plurality of orthogonal carriers in the frequency bandwidth, the head end multicarrier means including polyphase filter means for filtering the at least upstream telephony information modulated on the plurality of orthogonal carriers to provide ingress protection for the modulated orthogonal carriers;and head end controller means operatively connected to the head end multicarrier means for controlling receipt of the upstream control data and upstream telephony information;at least one service unit multicarrier means, each associated with at least one remote unit and operatively connected to the distribution network for modulating at least upstream telephony information on at least one carrier orthogonal at the head end terminal to at least one other carrier in the frequency bandwidth;and service unit controller means operatively connected to the service unit multicarrier means for controlling the modulation performed by the service unit multicarrier means.
  3. 30
    A method of polyphase filtering in a communication system, comprising the steps of:receiving a plurality of modulated orthogonal carriers in a frequency bandwidth having at least telephony information modulated thereon;and filtering sets of the plurality of the modulated orthogonal carriers to provide ingress protection for the modulated orthogonal carriers.
  4. 31
    A method of polyphase filtering in a communication system, comprising the steps of:receiving a plurality of orthogonal carriers having modulated telephony information thereon, the plurality of orthogonal carriers including a first and second plurality of noncontiguous channel sets;filtering the first plurality of noncontiguous channel sets and passing a first plurality of channels of each channel set of the first plurality of noncontiguous channel sets;and filtering the second plurality of noncontiguous channel sets and passing a second plurality of channels of each channel set of the second plurality of noncontiguous channel sets, wherein the second plurality of channels passed include channels of the first plurality of noncontiguous channel sets not passed when filtering the first plurality of noncontiguous channel sets.
  5. 32
    A receiver apparatus, comprising:means for receiving a frequency bandwidth including a plurality of modulated orthogonal carriers;and at least one polyphase filter to provide ingress protection for the frequency bandwidth by filtering a plurality of channel sets of the modulated orthogonal carriers.
  6. 35
    A communication system, comprising:a distribution network between a head end terminal and at least one remote unit, the head end terminal for receipt of upstream telephony information and upstream control data in a frequency bandwidth over the distribution network, the head end terminal including: head end multicarrier means for demodulating at least upstream telephony information modulated on a plurality of orthogonal carriers in the frequency bandwidth, the head end multicarrier means including tunable notch filter means for filtering the at least upstream telephony information modulated on the plurality of orthogonal carriers to prevent passage of corrupted modulated orthogonal carriers;and head end controller means operatively connected to the head end multicarrier means for controlling receipt of the upstream control data and upstream telephony information;at least one service unit multicarrier means, each associated with at least one remote unit and operatively connected to the distribution network for modulating at least upstream telephony information on at least one carrier orthogonal at the head end terminal to at least one other carrier in the frequency bandwidth;and service unit controller means operatively connected to the service unit multicarrier means for controlling the modulation performed by the service unit multicarrier means.
  7. 36
    A method for monitoring at least one telephony communication n-bit channel wherein one of the bits being a parity bit, the method comprising the steps of:sampling the parity bit of the n-bit channel;and deriving a probable bit error rate from the sampling of the parity bit.
  8. 42
    A method for monitoring at least one telephony communication n-bit channel wherein one of the bits being a parity bit, the method comprising the steps of:sampling the parity bit of the n-bit channel;deriving a probable bit error rate from the sampling of the parity bit over a time period;and comparing the probable bit error rate over the time period to a pre¬ determined bit error rate value to determine if the n-bit channel is corrupted.
  9. 53
    A method for monitoring at least one telephony communication n-bit channel wherein one of the bits being a parity bit, the method comprising the steps of:sampling the parity bit of the n-bit channel over a first time period;deriving a probable bit error rate from the sampling of the parity bit over the first time period;comparing the probable bit error rate over the first time period to a pre-determined bit error rate value to determine if the n-bit channel is corrupted;and accumulating a probable bit error rate over a plurality of successive time periods if the n-bit channel is not corrupted.
  10. 62
    A method for monitoring at least one telephony communication n-bit channel wherein one of the bits being a parity bit, the method comprising the steps of:sampling the parity bit of the n-bit channel;deriving a probable bit error rate from the sampling of the parity bit over a first time period;comparing the probable bit error rate over the first time period to a first pre-determined bit error rate value to determine if the n-bit channel is corrupted;deriving a probable bit error rate from the sampling of the parity bit over a second time period, the second time period being longer than the first time period and running concurrently with the first time period;and comparing the probable bit error rate over the second time period to a second pre-determined bit error rate value to determine if the n-bit channel is corrupted.
  11. 67
    A method for monitoring at least one telephony communication channel, the method comprising the steps of:equalizing a signal on the channel;and monitoring the equalization of the signal to produce a probable bit error rate as a function of the equalization.
  12. 73
    A method for monitoring at least one unallocated telephony communication channel, the method comprising the steps of:periodically monitoring the at least one unallocated telephony communication channel, the monitoring step including the steps of: equalizing a signal on the at least one unallocated telephony communication channel, and monitoring the equalization of the signal to produce error data as a function of the equalization;accumulating error data for the at least one unallocated telephony communication channel;and allowing the at least one unallocated telephony communication channel to be allocated based on the error data.
  13. 82
    An apparatus for monitoring at least one telephony communication channel comprising an equalizer;and means for monitoring the equalizer to generate a signal to noise ratio estimate and for generating a probable bit error rate as a function of the signal to noise ratio estimate.
  14. 83
    A multi-point to point communication system, comprising:a distribution network;a head end terminal for downstream transmission of downstream control data and downstream telephony information in a first frequency bandwidth over the distribution network and for receipt of upstream telephony information and upstream control data in a second frequency bandwidth over the distribution network, the head end terminal including: head end multicarrier modem means for modulating at least downstream telephony information on a plurality of orthogonal carriers in the first frequency bandwidth and for demodulating at least upstream telephony information modulated on a plurality of orthogonal carriers in the second frequency bandwidth;head end controller means operatively connected to the head end multicarrier modem means for controlling transmission of the downstream telephony information and downstream control data and for controlling receipt of the upstream control data and upstream telephony information;a plurality of service units, each service unit associated with at least one remote unit and operatively connected to the distribution network for upstream transmission of upstream telephony information and upstream control data in the second frequency bandwidth and for receipt of downstream control data and downstream telephony information in the first frequency bandwidth, each service unit including: service unit multicarrier modem means for modulating at least upstream telephony information on at least one carrier orthogonal at the head end terminal to at least one other carrier in the second frequency bandwidth and for demodulating at least downstream telephony information modulated on a plurality of orthogonal carriers in the first frequency bandwidth;service unit controller means operatively connected to the service unit multicarrier modem means for controlling the modulation of and demodulation performed by the service unit multicarrier modem means, the service unit controller means for adjusting at least one local transmission characteristic in response to an adjustment command from the head end controller means transmitted in the downstream control data to the at least one remote unit;the head end controller means further including: detection means for detecting the at least one local transmission characteristic of the service unit modem means associated with the at least one remote unit and for generating the adjustment command as a function of the detected at least one transmission characteristic for transmittal to the service unit modem means associated with the at least one remote unit in the downstream control data.
  15. 106
    A distributed loop method for a multi-point to point communication system, the communication system having a plurality of orthogonal carriers in a first frequency bandwidth for downstream transmission from a head end to a plurality of remote units and a plurality of carriers orthogonal at the head end in a second frequency bandwidth for upstream transmission from the plurality of remote units to the head end, each plurality of orthogonal carriers having at least one control channel associated therewith, the method comprising the steps of:detecting symbol timing at the head end of data transmitted upstream from at least one of the remote units;generating at the head end a symbol timing adjustment command based on the detected symbol timing;transmitting the symbol timing adjustment command to the at least one remote unit over the at least one control channel associated with the plurality of orthogonal carriers in the first frequency bandwidth;and adjusting symbol timing at the remote unit as a function of the symbol timing adjustment command.
  16. 111
    1 1 1. A multi-point to point communication system, comprising:a distribution network between a head end terminal and a plurality of remote units, the head end terminal for downstream transmission of downstream control data and downstream telephony information in a first frequency bandwidth over the distribution network and for receipt of upstream telephony information and upstream control data in a second frequency bandwidth over the distribution network, the head end terminal including: head end multicarrier modem means for modulating at least downstream telephony information on a plurality of orthogonal carriers in a plurality of regions of the first frequency bandwidth and for demodulating at least upstream telephony information modulated on a plurality of orthogonal carriers of a plurality of regions in the second frequency bandwidth, the plurality of orthogonal carriers in each of the regions including a plurality of telephony information channels for transmission of telephony information thereon, each of the regions having at least one control channel associated therewith for transmission of control data;and head end controller means operatively connected to the head end multicarrier modem means for controlling transmission of the downstream telephony information and downstream control data and for controlling receipt of the upstream control data and upstream telephony information;and a plurality of service unit modem means, each service unit modem means associated with at least one remote unit and operatively connected to the distribution network for upstream transmission of upstream telephony information and upstream control data in one of the plurality of regions of the second frequency bandwidth and for receipt of the downstream control data and downstream telephony information in one of the plurality of regions in the first frequency bandwidth, each service unit modem means including: means for scanning each of the plurality of regions in the first frequency bandwidth and for locking onto the at least one control channel in each of the plurality of regions to detect a unique identifier for each service unit modem means to determine which region of the first frequency bandwidth the service unit modem means is to receive information from the head end terminal within.
  17. 113
    1 13. A multi-point to point communication system having a distribution network between a head end and a plurality of remote units, comprising:means for transmitting from the head end a plurality of modulated orthogonal carriers having telephony information modulated thereon in a plurality of regions of a first frequency bandwidth, each of the regions having at least one control channel associated therewith having control information modulated thereon;and means, at each remote unit, for scanning each of the plurality of regions in the first frequency bandwidth and for locking onto the at least one control channel associated with each of the plurality of regions to detect a unique identifier to determine which region of the first frequency bandwidth the remote unit is to receive information from the head end within.
  18. 114
    1 14. A method of establishing communication between a head end and a plurality of remote units in a multi-point to point communication system, comprising the steps of:transmitting information from the head end to the plurality of remote units in a plurality of regions of a first frequency bandwidth, each of the regions having at least one control channel associated therewith, identification information corresponding to each of n remote units of the plurality of remote units being periodically transmitted from the head end on the at least one control channel of one of the plurality of regions of the first frequency bandwidth during a first predetermined time period, the identification information for each of the plurality of n remote units being transmitted out of phase with respect to the identification information for the other n remote units;and scanning, at each of the n remote units, the at least one control channel of each of the plurality of regions in the first frequency bandwidth to detect identification information corresponding to each of the n remote units to identify a particular region of the plurality of regions that each of the n remote units is to use for receiving information from the head end.
  19. 120
    A multi-point to point communication system having a distribution network between a head end and a plurality of remote units, comprising:means for transmitting information from the head end to the plurality of remote units in a plurality of regions of a first frequency bandwidth, each of the regions having at least one control channel associated therewith, the transmitting means further for periodically transmitting identification information corresponding to each remote unit of a set of n remote units of the plurality of remote units on the at least one control channel of one of the plurality of regions of the first frequency bandwidth during a first predetermined time period of an identification and synchronization time period, the identification information for each remote unit of the set of n remote units being transmitted out of phase with respect to the identification information for the other remote units of the set of n remote units;means, at each of the n remote units, for scanning the at least one control channel of each of the plurality of regions in the first frequency bandwidth to detect identification information during the first predetermined time period corresponding to each of the n remote units to identify a particular region of the plurality of regions that each of the n remote units is to use for receiving information from the head end;means, at each of the n remote units, for modulating at least upstream telephony information on at least one carrier in a second frequency bandwidth orthogonal at the head end terminal to at least one other carrier in the second frequency bandwidth and for adjusting at least one local transmission characteristic in response to an adjustment command from the head end;and means at the head end for detecting the at least one local transmission characteristic of each of the n remote units and for generating the adjustment commands as a function of the detected at least one transmission characteristic for transmittal to the n remote units to serially perform synchronization for each of the n remote units during a second predetermined time period of the identification and synchronization time period.
  20. 122
    A scanning method for establishing communication between a head end and a plurality of remote units in a multi-point to point communication system, comprising the steps of:transmitting information from the head end to the plurality of remote units in a plurality of regions of a first frequency bandwidth, each of the regions having at least one control channel associated therewith, identification information corresponding to each of the remote units of the plurality of remote units being periodically transmitted from the head end on the at least one control channel of one of the plurality of regions of the first frequency bandwidth;and scanning, at each of the remote units, the at least one control channel of each of the plurality of regions in the first frequency bandwidth to detect identification information corresponding to each of the remote units to identify a particular region of the plurality of regions that each of the remote units is to use for receiving information from the head end.
Independent claims20