IP Library Granted Patent US 9,537,689
Granted Patent B2
US 9,537,689 · App. 13/528,347 · Granted Jan 3, 2017

Method and apparatus for identifying co-channel interference

Inventors: Guangcai Zhou (Agoura Hills, CA); Ernest C. Chen (San Pedro, CA); Joseph Santoru (Agoura Hills, CA); Judith M. Wang (Irvine, CA)
Assignee: The DirecTV Group, Inc.
H04L27/0014H04B7/1858H04L1/20H04L1/208H04L25/03866H04N5/21H04N7/163H04N7/1675H04N21/2347H04N21/6143H04L2001/0093H04L2027/0034H04L2027/0067H04L2027/0087H04N5/4401H04N17/004
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,537,689
App. No.
13/528,347
Granted
Jan 3, 2017
Kind
B2
Abstract

Methods and apparatuses identifying a co-channel interference signal in communications systems are disclosed. An exemplary method comprises generating an interference signal by subtracting a reconstructed desired signal from an at least partially demodulated composite signal, and generating synchronization statistics of interference signal using different scrambling codes. The interference signal is identified as the signal associated with the scrambling code that was used to generate an interference signal having a desired synchronization statistic.

Claims (30)

1. In a system receiving a composite signal comprising a desired signal having a desired frame including desired synchronization data and an interference signal, a method of receiving the desired signal and rejecting the interference signal, comprising the steps of:

demodulating the composite signal;

acquiring a phase of the desired synchronization data of the demodulated composite signal;

tracking the acquired phase of the demodulated composite signal according to phase tracking information;

sensing if the tracked phase of the demodulated composite signal is being drawn away from the desired signal by the interference signal; and

choosing whether to update the phase tracking information according to whether the tracked phase of the demodulated composite signal is sensed to be being drawn away from the desired signal by the interference signal;

wherein the sensing if the tracked phase of the demodulated composite signal is being drawn away from the desired signal by the interference signal is performed according to a statistical model of an expected phase of the desired synchronization data.

2. In a system receiving a composite signal comprising a desired signal having a desired frame including desired synchronization data and an interference signal, a method of receiving the desired signal and rejecting the interference signal, comprising the steps of:

demodulating the composite signal;

acquiring a phase of the desired synchronization data of the demodulated composite signal;

tracking the acquired phase of the demodulated composite signal according to phase tracking information;

sensing if the tracked phase of the demodulated composite signal is being drawn away from the desired signal by the interference signal; and

choosing whether to update the phase tracking information according to whether the tracked phase of the demodulated composite signal is sensed to be being drawn away from the desired signal by the interference signal;

updating the phase tracking information only if the tracking of the acquired phase of the demodulated composite signal is not drawn away from the desired signal by the interference signal;

wherein the interference signal comprises an interfering frame including interfering synchronization data and wherein:

the step of sensing if the tracked the phase of the demodulated composite signal is being drawn away from the desired signal by the interference signal comprises the step of:

sensing if the tracked phase of the demodulated composite signal is drawn away from a phase of the desired synchronization data and to a phase of the interfering synchronization data;

the step of updating the phase tracking information only if the tracking of the acquired phase of the demodulated composite signal is not drawn away from the desired signal by the interference signal comprises the step of:

updating the phase tracking information only if the tracking of the acquired phase of the demodulated composite signal is not drawn away from the phase of the desired synchronization data and to the phase of the interfering synchronization data.

3. In a system receiving a composite signal comprising a desired signal having a desired frame including desired synchronization data and an interference signal, an apparatus for receiving the desired signal and rejecting the interference signal, comprising:

a demodulator for demodulating the composite signal, acquiring a phase of the desired synchronization data of the demodulated composite signal, and for tracking the acquired phase of the demodulated composite signal according to phase tracking information; and

a carrier synchronization module for sensing if the tracked phase of the demodulated composite signal is being drawn away from the desired signal by the interference signal, and for choosing whether to update the phase tracking information according to whether the tracked phase of the demodulated composite signal is sensed to be being drawn away from the desired signal by the interference signal;

wherein the carrier synchronization module senses if the tracked phase of the demodulated composite signal is being drawn away from the desired signal by the interference signal according to a statistical model of an expected phase of the desired synchronization data.

4. In a system receiving a composite signal comprising a desired signal having a desired frame including desired synchronization data and an interference signal, an apparatus for receiving the desired signal and rejecting the interference signal, comprising:

a demodulator for demodulating the composite signal, acquiring a phase of the desired synchronization data of the demodulated composite signal, and for tracking the acquired phase of the demodulated composite signal according to phase tracking information; and

a carrier synchronization module for sensing if the tracked phase of the demodulated composite signal is being drawn away from the desired signal by the interference signal, and for choosing whether to update the phase tracking information according to whether the tracked phase of the demodulated composite signal is sensed to be being drawn away from the desired signal by the interference signal;

wherein the carrier synchronization module updates the phase tracking information only if the tracking of the acquired phase of the demodulated composite signal is not drawn away from the desired signal by the interference signal; and

wherein the interference signal comprises an interfering frame including interfering synchronization data and wherein the carrier synchronization module:

senses if the tracked the phase of the demodulated composite signal is being drawn away from the desired signal by the interference signal by sensing if the tracked phase of the demodulated composite signal is drawn away from a phase of the desired synchronization data and to a phase of the interfering synchronization data; and

updates the phase tracking information only if the tracking of the acquired phase of the demodulated composite signal is not drawn away from the desired signal by the interference signal by updating the phase tracking information only if the tracking of the acquired phase of the demodulated composite signal is not drawn away from the phase of the desired synchronization data and to the phase of the interfering synchronization data.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2015
From: ZHOU, GUANGCAI; CHEN, ERNEST C.; SANTORU, JOSEPH; WANG, JUDITH M.
To: THE DIRECTV GROUP, INC.
Reel/Frame 037028/0816 →
Continuity (4)
Continuation 12098235 · Apr 4, 2008
Continuation In Part 11102958 · Apr 11, 2005
Provisional Application 60561418 · Apr 12, 2004
Related Publication 20120257697A1 · Oct 11, 2012