IP Library Granted Patent US 7,756,060
Granted Patent B2
US 7,756,060 · App. 12/272,542 · Granted Jul 13, 2010

Tone allocation in multipoint-to-point communication using orthogonal frequency division multiplexing

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Quick Facts
Patent No.
US 7,756,060
App. No.
12/272,542
Granted
Jul 13, 2010
Kind
B2
Abstract

Systems and methods for OFDM tone allocation are provided. In one embodiment, an end-user communication device comprises: a first remote unit for communicating with a host unit using orthogonal frequency division multiplexing (OFDM), the host unit communicatively coupled to a plurality of remote units in a multipoint-to-point configuration, wherein OFDM waveform from distinct remote units of the plurality of remote units combine to a unified OFDM waveform at the host unit. The first remote unit is configured to transmit up to a plurality of tones, the up to a plurality of tones modulated with upstream information using OFDM. The first remote unit is configured to determine when bandwidth is needed for upstream transmission to the host unit. The first remote unit is configured to transmit a request for bandwidth to the host unit on a first tone of the plurality of tones, wherein access to the first tone is contention-based.

Claims (32)

1. An end-user communication device, the device comprising:

a first remote unit for communicating with a host unit using orthogonal frequency division multiplexing (OFDM), the host unit communicatively coupled to a plurality of remote units in a multipoint-to-point configuration, wherein OFDM waveform from distinct remote units of the plurality of remote units combine to a unified OFDM waveform at the host unit;

wherein the first remote unit is configured to transmit up to a plurality of tones, the up to a plurality of tones modulated with upstream information using orthogonal frequency division multiplexing;

wherein the first remote unit is configured to determine when bandwidth is needed for upstream transmission to the host unit; and

wherein the first remote unit is configured to transmit a request for bandwidth to the host unit on at least one tone of the plurality of tones, wherein access to the at least one tone is contention-based.

2. The device of claim 1 , wherein the first remote unit is further configured to retransmit the request for bandwidth when there is a collision on the first tone.

3. The device of claim 1 , wherein the first remote unit is further configured to retransmit the request for bandwidth using an exponential back-off procedure when there is a collision on the first tone.

4. The device of claim 1 , wherein the first remote unit comprises a logic circuit configured to detect a potential collision on the first tone between signals transmitted by the first remote unit and signals from another remote unit.

5. The device of claim 1 , the first remote unit including a modulator for modulating the up to a plurality of tones with upstream information using orthogonal frequency division multiplexing, wherein the modulator is configured to adjust at least one characteristic of the plurality of tones such that when any tones are transmitted from the first remote unit and at least one other remote unit of the plurality of remote units, the orthogonality of the tones when received at the host unit is improved.

6. The device of claim 1 , wherein the modulator is configured to adjust at least one of a carrier frequency, a carrier amplitude, and a timing.

7. A bidirectional communication system, the system comprising:

a host unit to communicate with a plurality of remote units using orthogonal frequency division multiplexing (OFDM), the plurality of remote units communicatively coupled to the host unit in a multipoint-to-point configuration; wherein OFDM waveform from distinct remote units of the plurality of remote units combine to a unified OFDM waveform at the host unit;

the host unit receiving an orthogonal frequency division multiplexing waveform, the orthogonal frequency division multiplexing waveform comprising a plurality of tones transmitted by the plurality of remote units;

wherein the host unit comprises a logic circuit configured to direct a modem to transmit information on at least one tone of the orthogonal frequency division multiplexing waveform based on whether the modem successfully receives a contention based request for bandwidth from a first remote unit of the plurality of remote units.

8. A bi-directional communication system, the system comprising:

a multipoint-to-point host unit; and

a plurality of remote units communicatively coupled to the multipoint-to-point host unit through a unified orthogonal frequency division multiplexing waveform, wherein OFDM waveform from distinct remote units of the plurality of remote units combine to the unified OFDM waveform at the multipoint-to-point host unit;

wherein the multipoint-to-point host unit is configured to receive the unified orthogonal frequency division multiplexing waveform, the unified orthogonal frequency division multiplexing waveform comprising a plurality of tones transmitted by the plurality of remote units;

wherein a first remote unit of the plurality of remote units is configured to transmit a request for bandwidth to the host unit on a first tone of the plurality of tones, wherein access to the first tone is contention-based;

wherein the multipoint-to-point host unit is configured to direct a modem to transmit information on at least one tone of the unified orthogonal frequency division multiplexing waveform based on whether the modem successfully receives the request for bandwidth from the first remote unit of the plurality of remote units.

9. The system of claim 8 , wherein the first remote unit is further configured to retransmit the request for bandwidth when there is a collision on the first tone.

10. The system of claim 8 , wherein the first remote unit is further configured to retransmit the request for bandwidth using an exponential back-off procedure when there is a collision on the first tone.

11. The system of claim 8 , wherein the first remote unit is configured to detect a potential collision on the first tone between signals transmitted by the first remote unit and signals from another remote unit.

12. The system of claim 8 , wherein the first remote unit is configured to detect a potential collision on the first tone based on whether the information is received from the multipoint-to-point host unit.

13. A system comprising:

a host unit;

a plurality of remote units using a multiple access scheme to communicate at the same time with the host unit using orthogonal frequency division multiplexing (OFDM);

wherein the host unit allocates orthogonal tones within the system to the plurality of remote units, and receives a unified OFDM waveform comprising OFDM signals from the plurality of remote units that combine to form the unified OFDM waveform;

wherein the host unit sends an adjustment signal to at least one of the remote units instructing the at least one remote unit to adjust the timing of transmissions from the remote unit to improve orthogonality of an OFDM waveform received at the host unit; and

wherein when the host unit detects that at least one of the orthogonal tones allocated to the at least one remote unit has become corrupted, the host unit allocates a different orthogonal tone to the at least one remote unit.

14. The system of claim 13 wherein the host unit monitors a bit error rate for orthogonal tones in use to detect when tones become corrupted.

15. The system of claim 13 wherein the host unit sends an adjustment signal to the at least one remote unit instructing the at least one remote unit to adjust a transmission characteristic of an upstream signal already transmitting payload data from the at least one remote unit to improve orthogonality of an OFDM waveform received at the host unit.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2011
From: ADC TELECOMMUNICATIONS, INC.
To: HTC CORPORATION
Reel/Frame 026390/0167 →
CORRECTIVE ASSIGNMENT TO CORRECT THE EXECUATION DATE OF JOE HALL FROM 01/31/1997 TO 01/21/1997 PREVIOUSLY RECORDED ON REEL 022071 FRAME 0612. ASSIGNOR(S) HEREBY CONFIRMS THE EXECUTION DATE OF JOE HALL IS 01/21/1997. Recorded Jun 1, 2009
From: DAPPER, MARK J.; GEILE, MICHAEL J.; HILL, TERRANCE J.; ROBERTS, HAROLD A.; ANDERSON, BRIAN D.; BREDE, JEFFREY; WADMAN, MARK S.; KIRSCHT, ROBERT J.; HERRMANN, JAMES J.; FORT, MICAHEL J.; BUSKA, STEVEN P.; SOLUM, JEFF; ENFIELD, DEBRA LEA; BERG, DARRELL; SMIGELSKI, THOMAS; TUCKER, THOMAS C.; HALL, JOE; LOGAJAN, JOHN M.; BOUALOUANG, SOMVAY; LOU, HENG; ELPERS, MARK D.; DOWNS, MATT; FERRIS, TAMMY; OPOCZYNSKI, ADAM; RUSSELL, DAVID S.; NELSON, CALVIN G.; SAMANT, NIRANJAN R.; CHIAPPETTA, JOSEPH F.; SARNIKOWSKI, SCOTT
To: ADC TELECOMMUNICATIONS, INC.
Reel/Frame 022762/0082 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CORRECT THE EXECUTION DATE OF JOE HILL FROM 01/31/1997 TO 01/21/1997. PREVIOUSLY RECORDED ON REEL 022071 FRAME 0612. ASSIGNOR(S) HEREBY CONFIRMS THE EXECUTION DATE OF JOE HILL IS 01/21/1997.. Recorded May 22, 2009
From: DAPPER, MARK J.; GEILE, MICHAEL J.; HILL, TERRANCE J.; ROBERTS, HAROLD A.; ANDERSON, BRIAN D.; BREDE, JEFFREY; WADMAN, MARK S.; KIRSCHT, ROBERT J.; HERRMANN, JAMES J.; FORT, MICHAEL J.; BUSKA, STEVEN P.; SOLUM, JEFF; ENFIELD, DEBRA LEA; BERG, DARRELL; SMIGELSKI, THOMAS; TUCKER, THOMAS C.; HALL, JOE; LOGAJN, JOHN M.; BOUALOUANG, SOMVAY; LOU, HENG; ELPERS, MARK D.; DOWNS, MATT; FERRIS, TAMMY; OPOCZYNSKI, ADAM; RUSSELL, DAVID S.; NELSON, CALVIN G.; SAMANT, NIRANJAN R.; CHIAPPETTA, JOSEPH F.; SARNIKOWSKI, SCOTT
To: ADC TELECOMMUNICATIONS, INC.
Reel/Frame 022729/0305 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CORRECT THE EXECUTION DATE OF JOE HALL FROM 01/31/1997 TO 01/21/1997. PREVIOUSLY RECORDED ON REEL 021852 FRAME 0789. ASSIGNOR(S) HEREBY CONFIRMS THE EXECUTION DATE OF JOE HALL IS 01/21/1997. Recorded May 22, 2009
From: DAPPER, MARK J.; GEILE, MICHAEL J.; HILL, TERRANCE J.; ROBERTS, HAROLD A.; ANDERSON, BRIAN D.; BREDE, JEFFREY; WADMAN, MARK S.; KIRSCHT, ROBERT J.; HERRMANN, JAMES J.; FORT, MICHAEL J.; BUSKA, STEVEN P.; SOLUM, JEFF; ENFIELD, DEBRA LEA; BERG, DARRELL; SMIGELSKI, THOMAS; TUCKER, THOMAS C.; HALL, JOE; LOGAJAN, JOHN M.; BOUALOUANG, SOMVAY; LOU, HENG; ELPERS, MARK D.; DOWNS, MATT; FERRIS, TAMMY; OPOCZYNSKI, ADAM; RUSSELL, DAVID S.; NELSON, CALVIN G.; SAMANT, NIRANJAN R.; CHIAPPETTA, JOSEPH F.; SARNIKOWSKI, SCOTT
To: ADC TELECOMMUNICATIONS, INC.
Reel/Frame 022729/0420 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2009
From: DAPPER, MARK J.; GEILE, MICHAEL J.; HILL, TERRANCE J.; ROBERTS, HAROLD A.; ANDERSON, BRIAN D.; BREDE, JEFFREY; WADMAN, MARK S.; KIRSCHT, ROBERT J.; HERRMANN, JAMES J.; FORT, MICHAEL J.; BUSKA, STEVEN P.; SOLUM, JEFF; ENFIELD, DEBRA LEA; BERG, DARRELL; SMIGELSKI, THOMAS; TUCKER, THOMAS C.; HALL, JOE; LOGAJAN, JOHN M.; BOUALOUANG, SOMVAY; LOU, HENG; ELPERS, MARK D.; DOWNS, MATT; FERRIS, TAMMY; OPOCZYNSKI, ADAM; RUSSELL, DAVID S.; NELSON, CALVIN G.; SAMANT, NIRANJAN R.; CHIAPPETTA, JOSEPH F.; SARNIKOWSKI, SCOTT
To: ADC TELECOMMUNICATIONS, INC.
Reel/Frame 022071/0612 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 18, 2008
From: DAPPER, MARK J.; GEILE, MICHAEL J.; HILL, TERRANCE J.; ROBERTS, HAROLD A.; ANDERSON, BRIAN D.; BREDE, JEFFREY; WADMAN, MARK S.; KIRSCHT, ROBERT J.; HERRMANN, JAMES J.; FORT, MICHAEL J.; BUSKA, STEVEN P.; SOLUM, JEFF; ENFIELD, DEBRA LEA; BERG, DARRELL; SMIGELSKI, THOMAS; TUCKER, THOMAS C.; HALL, JOE; LOGAJAN, JOHN M.; BOUALOUANG, SOMVAY; LOU, HENG; ELPERS, MARK D.; DOWNS, MATT; FERRIS, TAMMY; OPOCZYNSKI, ADAM; RUSSELL, DAVID S.; NELSON, CALVIN G.; SAMANT, NIRANJAN R.; CHIAPPETTA, JOSEPH F.; SARNIKOWSKI, SCOTT
To: ADC TELECOMMUNICATIONS, INC.
Reel/Frame 021852/0789 →