IP Library Granted Patent US 7,580,347
Granted Patent B2
US 7,580,347 · App. 11/736,998 · Granted Aug 25, 2009

Synchronization of remote units using multiple adjustments

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Quick Facts
Patent No.
US 7,580,347
App. No.
11/736,998
Granted
Aug 25, 2009
Kind
B2
Abstract

Systems and methods for course and fine synchronization are provided. In one embodiment, a method comprises establishing communication between a first remote of a plurality of remote units and a host, the plurality of remote units coupled to the host in a multipoint-to-point configuration; transmitting up to a plurality of tones from the first remote, the tones modulated with upstream information using orthogonal frequency division multiplexing (OFDM); making a first adjustment in a manner in which transmissions are transmitted from the first remote on at least one of the tones, the first adjustment varying the alignment of the transmissions received at the host; and making a second adjustment in the manner in which transmissions are transmitted from the first remote on the at least one of the tones, the second adjustment varying the alignment of the transmissions received at the host, wherein the second adjustment is finer the first adjustment.

Claims (26)

1. A method for a remote unit of an orthogonal frequency division multiplexing multipoint-to-point communications system, the method comprising:

transmitting up to a plurality of tones from a first remote unit, the up to a plurality of tones modulated with upstream information using orthogonal frequency division multiplexing and configured to combine with tones from at least one other remote unit to form an orthogonal frequency division multiplexing waveform of spectrally overlapping orthogonal carriers;

transmitting a first signal from the first remote unit, the first signal providing for a first adjustment of a manner in which transmissions are transmitted from the first remote unit on at least one of the up to a plurality of tones, the first adjustment varying the alignment of the transmissions as received at the host unit; and

transmitting a second signal from the first remote unit, the second signal providing for a second adjustment of the manner in which transmissions are transmitted from the first remote unit on the at least one of the up to a plurality of tones, the second adjustment varying the alignment of the transmissions as received at the host unit, wherein the second signal is different than the first signal.

2. The method of claim 1 further comprising:

adjusting 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.

3. The method of claim 2 , wherein adjusting at least one characteristic of the plurality of tones comprises adjusting at least one of a carrier frequency, a carrier amplitude, and a phase.

4. A method for an orthogonal frequency division multiplexing multipoint-to-point communications system, the method comprising:

establishing communication between a first remote unit of a plurality of remote units and a host unit, the plurality of remote units communicatively coupled to the host unit in a multipoint-to-point configuration;

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

causing a first remote unit of the plurality of remote units to make a first adjustment in a manner in which transmissions are transmitted from the first remote unit on at least one of the plurality of tones based on a first signal received from the first remote unit, the first adjustment varying the alignment of the transmissions as received at the host unit; and

causing the first remote unit of the plurality of remote units to make a second adjustment in the manner in which transmissions are transmitted from the first remote unit on the at least one of the plurality of tones based on a second signal received from the first remote unit, the second adjustment varying the alignment of the transmissions as received at the host unit, wherein the second signal is different than the first signal.

5. The method of claim 4 , wherein receiving the orthogonal frequency division multiplexing waveform at the host unit further comprises receiving a plurality of tones from more than one of the plurality of remote units.

6. The method of claim 4 , wherein receiving the orthogonal frequency division multiplexing waveform at the host unit further comprises receiving a plurality of tones from one of the plurality of remote units.

7. The method of claim 4 , wherein receiving the orthogonal frequency division multiplexing waveform further comprises receiving a wireless orthogonal frequency division multiplexing waveform via a wireless distribution network.

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 an orthogonal frequency division multiplexing waveform;

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

wherein the multipoint-to-point host unit is configured to make adjustments to a manner in which transmissions are transmitted from each of the plurality of remote units on the plurality of tones based on a first signal and a second signal received from each of the plurality of remote units, wherein the first signal is different than the second signal.

9. The system of claim 8 , wherein the adjustments vary an alignment of the transmissions as received at the host unit.

10. The system of claim 8 , wherein the plurality of remote units each include a modulator for modulating up to a plurality of tones with upstream information 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.

11. The system of claim 10 , wherein the modulator is configured to adjust at least one of a carrier frequency, a carrier amplitude, and a phase.

12. The system of claim 8 , further comprising a distribution network coupled between the multipoint-to-point host unit and the plurality of remote units.

13. The system of claim 9 , wherein the distribution network comprises one of a wireless system and a hybrid fiber/coax network.

14. The system of claim 8 , wherein the plurality of tones are transmitted concurrently from at least two of the plurality of remote units.

Assignments (3)
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 INVENTOR NAME THOMAS G. TUCKER AND EXECUTION DATE OF JOE HALL 01/31/1997 PREVIOUSLY RECORDED ON REEL 022071 FRAME 0467. ASSIGNOR(S) HEREBY CONFIRMS THE THOMAS C. TUCKER JOE HALL'S EXECUTION DATE: 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 022729/0029 →
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 G.; 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 022071/0467 →