IP Library Granted Patent US 9,825,665
Granted Patent B2
US 9,825,665 · App. 14/722,641 · Granted Nov 21, 2017

Self-interference cancellation for full-duplex communication using a phase and gain adjusted transmit signal

Inventors: Alex Mirzaei (Irvine, CA); Hooman Darabi (Laguna Niguel, CA)
Assignee: Avago Technologies General IP (Singapore) Pte. Ltd.
H04B1/525
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Quick Facts
Patent No.
US 9,825,665
App. No.
14/722,641
Granted
Nov 21, 2017
Kind
B2
Abstract

The present disclosure is directed to an apparatus and method for cancelling self-interference caused by full-duplex communication. In a full-duplex communication device, the receiver will generally experience significant self-interference from the full-duplex communication device's own transmitter transmitting a strong outbound signal over the same channel that the receiver is to receive a weak inbound signal. The apparatus and method are configured to adjust a phase and gain of the outbound signal provided at the output of a power amplifier (PA) and inject the phase and gain adjusted outbound signal at the input of a low-noise amplifier (LNA) to cancel the interference from the outbound signal in the inbound signal.

Claims (41)

1. An apparatus comprising:

a power amplifier (PA) configured to provide, at an output of the PA, an outbound signal at a carrier frequency to an antenna;

a low-noise amplifier (LNA) configured to receive, at an input of the LNA, an inbound signal at the carrier frequency from the antenna; and

a self-interference cancellation module configured to adjust a phase and gain of the outbound signal provided at the output of the PA and inject the phase and gain adjusted outbound signal at the input of the LNA to cancel interference from the outbound signal in the inbound signal, wherein the self-interference cancellation module is configured to adjust the phase of the outbound signal provided at the output of the PA by controllably coupling, using switches, passive elements between the input of the LNA and differential ends of the output of the PA in different combinations.

2. The apparatus of claim 1 , wherein the self: interference cancellation module is configured to adjust the phase and gain of the outbound signal provided at the output of the PA based on a phase and gain of the interference from the outbound signal in the inbound signal.

3. The apparatus of claim 1 , wherein the self-interference cancellation module includes a resistor and a capacitor.

4. The apparatus of claim 3 , wherein the resistance of the resistor and the capacitance of the capacitor are configured to be adjusted to adjust the gain and phase of the outbound signal.

5. The apparatus of claim 1 , wherein the self-interference cancellation module includes:

a first resistor controllably coupled between a first differential end of the output of the PA and the input of the LNA,

a first capacitor controllably coupled between the first differential end of the output of the PA and the input of the LNA,

a second resistor controllably coupled between a second differential end of the output of the PA and the input of the LNA, and

a second capacitor controllably coupled between the second differential end of the output of the PA and the input of the LNA.

6. The apparatus of claim 5 , wherein the resistances of the first and second resistors and the capacitances of the first and second capacitors are configured to be adjusted to adjust the gain and phase of the outbound signal.

7. The apparatus of claim 5 , based on the phase of the interference from the outbound signal in the inbound signal, coupling at most one of the first resistor between the first differential end of the output of the PA and the input of the LNA or the second resistor between the second differential end of the output of the PA and the input of the LNA.

8. The apparatus of claim 5 , based on the phase of the interference from the outbound signal in the inbound signal, coupling at most one of the first capacitor between the first differential end of the output of the PA and the input of the LNA or the second capacitor between the second differential end of the output of the PA and the input of the LNA.

9. The apparatus of claim 1 , further comprising a circulator coupled between the antenna and the output of the PA and coupled between the antenna and the input of the LNA.

10. An apparatus comprising:

a first self-interference cancellation module configured to inject a phase and gain adjusted version of a first outbound signal, provided at an output of a first power amplifier (PA), at an input of a low-noise amplifier (LNA) to cancel interference from the first outbound signal in an inbound signal; and

a second self-interference cancellation module configured to inject a phase and gain adjusted version of a second outbound signal, provided at an output of a second PA, at the input of the LNA to cancel interference from the second outbound signal in the inbound signal,

wherein the first outbound signal, the second outbound signal, and the inbound signal are all at a same carrier frequency.

11. The apparatus of claim 10 , wherein the first self-interference cancellation module is configured to adjust the phase and gain of the first outbound signal based on a phase and gain of the interference from the first outbound signal in the inbound signal.

12. The apparatus of claim 10 , wherein the first self-interference cancellation module includes a resistor and a capacitor.

13. The apparatus of claim 12 , wherein the resistance of the resistor and the capacitance of the capacitor is configured to be adjusted to adjust the gain and phase of the first outbound signal.

14. The apparatus of claim 10 , wherein the first self-interference cancellation module includes:

a first resistor controllably coupled between a first differential end of the output of the first PA and the input of the LNA,

a first capacitor controllably coupled between the first differential end of the output of the first PA and the input of the LNA,

a second resistor controllably coupled between a second differential end of the output of the first PA and the input of the LNA, and

a second capacitor controllably coupled between the second differential end of the output of the first PA and the input of the LNA.

15. The apparatus of claim 14 , wherein the resistances of the first and second resistors and the capacitances of the first and second capacitors are configured to be adjusted to adjust the gain and phase of the first outbound signal.

16. An apparatus comprising:

a power amplifier (PA) configured to provide, at a differential output of the PA, an outbound signal at a carrier frequency to an antenna;

a low-noise amplifier (LNA) configured to receive, at an input of the LNA, an inbound signal at the carrier frequency from the antenna; and

a self-interference cancellation module configured to cancel interference from the outbound signal in the inbound signal at the input of the LNA, the self-interference cancellation module comprising:

a first resistor controllably coupled, using a first switch, between a first differential end of the output of the PA and the input of the LNA,

a first capacitor controllably coupled, using a second switch, between the first differential end of the output of the PA and the input of the LNA,

a second resistor controllably coupled, using a third switch, between a second differential end of the output of the PA and the input of the LNA, and

a second capacitor controllably coupled, using a fourth switch, between the second differential end of the output of the PA and the input of the LNA.

17. The apparatus of claim 16 , wherein the self-interference cancellation module is configured to adjust the phase and gain of the outbound signal based on a phase and gain of the interference from the outbound signal in the inbound signal.

18. The apparatus of claim 16 , wherein the resistances of the first and second resistors and the capacitances of the first and second capacitors are configured to be adjusted to adjust the gain and phase of the outbound signal provided at the output of the PA.

19. The apparatus of claim 16 , based on the phase of the interference from the outbound signal in the inbound signal, coupling at most one of the first resistor between the first differential end of the output of the PA and the input of the LNA or the second resistor between the second differential end of the output of the PA and the input of the LNA.

20. The apparatus of claim 16 , based on the phase of the interference from the outbound signal in the inbound signal, coupling at most one of the first capacitor between the first differential end of the output of the PA and the input of the LNA or the second capacitor between the second differential end of the output of the PA and the input of the LNA.

Assignments (6)
CORRECTIVE ASSIGNMENT TO CORRECT THE EXECUTION DATE PREVIOUSLY RECORDED AT REEL: 047422 FRAME: 0464. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER. Recorded Mar 6, 2019
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 048883/0702 →
MERGER Recorded Oct 5, 2018
From: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
To: AVAGO TECHNOLOGIES INTERNATIONAL SALES PTE. LIMITED
Reel/Frame 047422/0464 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS Recorded Feb 3, 2017
From: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
To: BROADCOM CORPORATION
Reel/Frame 041712/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2017
From: BROADCOM CORPORATION
To: AVAGO TECHNOLOGIES GENERAL IP (SINGAPORE) PTE. LTD.
Reel/Frame 041706/0001 →
PATENT SECURITY AGREEMENT Recorded Feb 11, 2016
From: BROADCOM CORPORATION
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 037806/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2015
From: MIRZAEI, ALEX; DARABI, HOOMAN
To: BROADCOM CORPORATION
Reel/Frame 035724/0257 →
Continuity (1)
Related Publication 20160352386A1 · Dec 1, 2016