IP Library Granted Patent US 10,355,771
Granted Patent B1
US 10,355,771 · App. 15/985,223 · Granted Jul 16, 2019

RF repeater and mobile unit with cancellation of interference from a repeated signal

Inventors: Randall T Clark (Beavercreek, OH); Nathan Thomas Kornbau (Beavercreek, OH); Jeremy Micah North (Dayton, OH)
Assignee: Resonant Sciences, LLC
H04B7/15514H04B1/1018H04B7/15535H04B7/15571H04W16/26H04B7/1555
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Quick Facts
Patent No.
US 10,355,771
App. No.
15/985,223
Granted
Jul 16, 2019
Kind
B1
Abstract

A radio frequency repeater device includes a receive antenna that receives a receive signal having a first frequency. A transmit antenna transmits a repeat signal at the first frequency, the repeat signal being an amplified version of the receive signal. A signal filter communicates with the receive antenna and transmit antenna, the signal filter being operable to amplify quadrature and non-quadrature components of an input signal associated with the repeat signal to produce a filtered repeat signal. A coupler combines the receive signal with the filtered repeat signal in such a way that the filtered repeat signal cancels interference from the transmitted repeat signal in the receive signal.

Claims (60)

1. A cellular communications method comprising, in a cellular communications network:

(a) receiving by a first mobile unit a wirelessly transmitted signal from a second mobile unit or a base station;

(b) forming a repeat signal by the first mobile unit, the repeat signal being an amplified version of the wirelessly transmitted signal in (a);

(c) transmitting the repeat signal from the first mobile unit; and

(d) cancelling interference caused by transmitting the repeat signal in (c) using a signal filter on the first mobile unit that amplifies quadrature and non-quadrature components of an input signal associated with the repeat signal to produce a filtered repeat signal;

wherein the quadrature components of the input signal are 90 degrees out of phase with each other and the non-quadrature components of the input signal are not 90 degrees out of phase with each other.

2. The method of claim 1 , wherein the wirelessly transmitted signal and signal transmitted in (c) have overlapping frequencies.

3. The method of claim 1 , wherein the wirelessly transmitted signal is being received at the same time the signal transmitted in (c) is being transmitted.

4. The method of claim 1 , wherein the first mobile unit is a cellular telephone.

5. The method of claim 1 , wherein the signal filter includes a signal weight adjuster adapted to impart separate signal weights to the quadrature and non-quadrature components of the input signal.

6. The method of claim 1 , wherein the first mobile unit is configured to transmit and receive signals at the same frequency simultaneously.

7. An electronic device comprising:

a mobile unit having an antenna that transmits and receives radio signals within a cellular network, the mobile unit including:

a repeater in communication with a receive signal path and transmit signal path, the repeater being operable to pass a repeated signal associated with the receive signal to the transmit signal path; and

a signal filter communicating with the receive signal path and transmit signal path, the signal filter being operable to amplify quadrature and non-quadrature components of an input signal associated with the repeat signal to produce a filtered repeat signal and to cancel interference caused by the repeated signal in the receive signal path with the filtered repeat signal;

wherein the quadrature components of the input signal are 90 degrees out of phase with each other and the non-quadrature components of the input signal are not 90 degrees out of phase with each other.

8. The device of claim 7 , wherein the mobile unit transmits and receives radio signals at overlapping frequencies.

9. The device of claim 7 , wherein the mobile unit transmits and receives radio signals at overlapping frequencies simultaneously.

10. The device of claim 7 , wherein the signal filter includes a signal weight adjuster adapted to impart separate signal weights to the quadrature and non-quadrature components of the input signal.

11. The device of claim 7 , wherein the mobile unit is a cellular telephone.

12. A radio frequency repeater device comprising:

a receive antenna that receives a receive signal having a first frequency;

a transmit antenna that transmits a repeat signal at the first frequency, the repeat signal being an amplified version of the receive signal;

a signal filter communicating with the receive antenna and transmit antenna, the signal filter being operable to amplify quadrature and non-quadrature components of an input signal associated with the repeat signal to produce a filtered repeat signal; and

a coupler that combines the receive signal with the filtered repeat signal in such a way that the filtered repeat signal cancels interference from the transmitted repeat signal in the receive signal;

wherein the quadrature components of the input signal are 90 degrees out of phase with each other and the non-quadrature components of the input signal are not 90 degrees out of phase with each other.

13. The device of claim 12 , wherein the transmit antenna and receive antenna are the same antenna.

14. The device of claim 12 , wherein the signal filter includes a signal weight adjuster adapted to impart separate signal weights to the quadrature and non-quadrature components of the input signal.

15. The device of claim 12 , wherein the transmit antenna and receive antenna transmit and receive at overlapping frequencies simultaneously.

16. The device of claim 12 on a cellular telephone.

17. A cellular communications method comprising, in a cellular communications network:

(a) receiving by a first mobile unit a wirelessly transmitted signal from a second mobile unit or a base station;

(b) forming a repeat signal by the first mobile unit, the repeat signal being an amplified version of the wirelessly transmitted signal in (a);

(c) transmitting the repeat signal from the first mobile unit; and

(d) cancelling interference caused by transmitting the repeat signal in (c) using a signal filter on the first mobile unit that amplifies quadrature and non-quadrature components of an input signal associated with the repeat signal to produce a filtered repeat signal;

wherein the signal filter includes a signal weight adjuster adapted to impart separate signal weights to the quadrature and non-quadrature components of the input signal.

18. The method of claim 17 , wherein the wirelessly transmitted signal and signal transmitted in (c) have overlapping frequencies.

19. The method of claim 17 , wherein the wirelessly transmitted signal is being received at the same time the signal transmitted in (c) is being transmitted.

20. The method of claim 17 , wherein the first mobile unit is a cellular telephone.

21. The method of claim 17 , wherein the quadrature components of the input signal are 90 degrees out of phase with each other and the non-quadrature components of the input signal are not 90 degrees out of phase with each other.

22. The method of claim 17 , wherein the first mobile unit is configured to transmit and receive signals at the same frequency simultaneously.

23. An electronic device comprising:

a mobile unit having an antenna that transmits and receives radio signals within a cellular network, the mobile unit including:

a repeater in communication with a receive signal path and transmit signal path, the repeater being operable to pass a repeated signal associated with the receive signal to the transmit signal path; and

a signal filter communicating with the receive signal path and transmit signal path, the signal filter being operable to amplify quadrature and non-quadrature components of an input signal associated with the repeat signal to produce a filtered repeat signal and to cancel interference caused by the repeated signal in the receive signal path with the filtered repeat signal;

wherein the signal filter includes a signal weight adjuster adapted to impart separate signal weights to the quadrature and non-quadrature components of the input signal.

24. The device of claim 23 , wherein the mobile unit transmits and receives radio signals at overlapping frequencies.

25. The device of claim 23 , wherein the mobile unit transmits and receives radio signals at overlapping frequencies simultaneously.

26. The device of claim 23 , wherein the quadrature components of the input signal are 90 degrees out of phase with each other and the non-quadrature components of the input signal are not 90 degrees out of phase with each other.

27. The device of claim 23 , wherein the mobile unit is a cellular telephone.

28. A radio frequency repeater device comprising:

a receive antenna that receives a receive signal having a first frequency;

a transmit antenna that transmits a repeat signal at the first frequency, the repeat signal being an amplified version of the receive signal;

a signal filter communicating with the receive antenna and transmit antenna, the signal filter being operable to amplify quadrature and non-quadrature components of an input signal associated with the repeat signal to produce a filtered repeat signal; and

a coupler that combines the receive signal with the filtered repeat signal in such a way that the filtered repeat signal cancels interference from the transmitted repeat signal in the receive signal;

wherein the signal filter includes a signal weight adjuster adapted to impart separate signal weights to the quadrature and non-quadrature components of the input signal.

29. The device of claim 28 , wherein the transmit antenna and receive antenna are the same antenna.

30. The device of claim 28 , wherein the quadrature components of the input signal are 90 degrees out of phase with each other and the non-quadrature components of the input signal are not 90 degrees out of phase with each other.

31. The device of claim 28 , wherein the transmit antenna and receive antenna transmit and receive at overlapping frequencies simultaneously.

32. The device of claim 28 on a cellular telephone.

Assignments (2)
SECURITY INTEREST Recorded Sep 1, 2023
From: RESONANT SCIENCES LLC
To: LBC CREDIT AGENCY SERVICES, LLC, AS AGENT
Reel/Frame 064774/0769 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2018
From: CLARK, RANDALL T.; KORNBAU, NATHAN THOMAS; NORTH, JEREMY MICAH
To: RESONANT SCIENCES, LLC
Reel/Frame 046351/0301 →
Continuity (1)
Provisional Application 62509234 · May 22, 2017
Cited By (1)
US 12,356,238