IP Library Granted Patent US 8,145,064
Granted Patent B2
US 8,145,064 · App. 12/234,162 · Granted Mar 27, 2012

System and method for suppressing noise by frequency dither

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Quick Facts
Patent No.
US 8,145,064
App. No.
12/234,162
Granted
Mar 27, 2012
Kind
B2
Abstract

A system for suppressing noise by frequency dither includes a transmitter, receiver and a frequency dither circuit, as well as a cavity along a propagation path of the electromagnetic signal between the transmitter and the receiver. The transmitter is configured to transmit an electromagnetic signal to the receiver at each of one or more selectable frequencies. The frequency dither circuit is configured to apply a frequency dither to the electromagnetic signal transmitted from the transmitter to the receiver at each of the selectable frequencies. In this regard, the applied frequency dither has a span having been selected as a function of a minimum frequency period of an expected standing wave in the system, and a rate having been selected as a function of a signal processing bandwidth for sampling a frequency spectrum including the selectable frequencies.

Claims (67)

1. A system comprising:

a transmitter and receiver, the transmitter being configured to transmit an electromagnetic signal to the receiver at each of one or more selectable frequencies, the system including a cavity along a propagation path of the electromagnetic signal between the transmitter and the receiver; and

a frequency dither circuit configured to apply a frequency dither to the electromagnetic signal transmitted from the transmitter to the receiver at each of the one or more selectable frequencies, the applied frequency dither having a selected span and rate, the span having been selected as a function of a minimum frequency period of an expected standing wave in the system, and the rate having been selected as a function of a signal processing bandwidth for sampling a frequency spectrum including the one or more selectable frequencies.

2. A system according to claim 1 , wherein the frequency dither circuit is configured to apply the frequency dither with a span having been selected as at least the minimum frequency period, the minimum frequency period having been determined as a function of a free spectral range of the cavity, or from measurement of a transmission function of the system.

3. A system according to claim 1 , wherein the frequency dither circuit is configured to apply the frequency dither with a span having been selected also based upon a modulation depth of the expected standing wave.

4. A system according to claim 1 further comprising:

a transmitter bias modulator configured to generate a modulated signal for biasing the transmitted electromagnetic signal, wherein the frequency dither circuit is configured to apply the frequency dither with a rate having been selected as greater than the signal processing bandwidth, the signal processing bandwidth having been determined based upon the modulated signal.

5. A system according to claim 1 , wherein the receiver is configured to average the electromagnetic signal at the dither frequency received thereat.

6. A system according to claim 1 , wherein the transmitter and receiver comprise a photomixer transmitter and a photomixer receiver of a spectrometer system.

7. A system according to claim 1 , wherein the system includes a first propagation path of the electromagnetic signal to the transmitter, and a second propagation path of the other electromagnetic signal to the receiver, and wherein the system further comprises:

an arrangement located along either of the first or second propagation paths, or along each of the first and second propagation paths, the arrangement configured to alter the length of a respective propagation path such that the difference of the lengths of the first and second propagation paths is altered at a pre-selected rate during transmission of the electromagnetic signal from the transmitter to the receiver, and receipt of the electromagnetic signal and the other electromagnetic signal at the receiver.

8. A system according to claim 7 , wherein the pre-selected rate comprises a rate selected as a function of the frequency at which the electromagnetic signal is transmitted.

9. A system according to claim 8 , wherein the pre-selected rate comprises a rate selected to span one or more periods of the electromagnetic signal transmitted at a respective frequency over a dwell time.

10. A system according to claim 7 , wherein the pre-selected rate comprises a rate ω FS selected to effectuate a path length modulation at a frequency:

ω

F

S

=

2

π

λ

n

F

S

F

where λ represents the wavelength of the electromagnetic signal at a respective frequency, n F represents the index of refraction of a propagating medium of the propagation paths, and S F represents the pre-selected rate.

11. A method comprising:

selecting a frequency dither, including:

selecting a span of the frequency dither as a function of a minimum frequency period of an expected standing wave in a system including a cavity along a propagation path of an electromagnetic signal between a transmitter and a receiver; and

selecting a rate of the frequency dither as a function of a signal processing bandwidth for sampling a frequency spectrum including one or more selectable frequencies; and

applying the frequency dither to an electromagnetic signal transmitted from the transmitter to the receiver at each of the one or more selectable frequencies, the applied frequency dither having the selected span and rate.

12. A method according to claim 11 , wherein selecting a span comprises selecting a span of at least the minimum frequency period, the minimum frequency period being determined as a function of a free spectral range of the cavity, or from measurement of a transmission function of the system.

13. A method according to claim 11 , wherein selecting a span comprises selecting a span also based upon a modulation depth of the expected standing wave.

14. A method according to claim 11 further comprising:

generating a modulated signal for biasing the transmitted electromagnetic signal, wherein selecting a rate comprises selecting a rate greater than the signal processing bandwidth, the signal processing bandwidth being determined based upon the modulated signal.

15. A method according to claim 11 further comprising averaging the electromagnetic signal received at the receiver.

16. A method according to claim 11 , wherein applying the frequency dither comprises applying the frequency dither to an electromagnetic signal transmitted from the transmitter to the receiver of a spectrometer system including a photomixer transmitter and a photomixer receiver.

17. A method according to claim 11 further comprising:

selecting a rate of altering the difference of the lengths of first and second propagation paths, the first propagation path being of an electromagnetic signal to the transmitter configured to transmit the electromagnetic signal to the receiver, the receiver being configured to receive the electromagnetic signal and another electromagnetic signal for mixing therewith, and the second propagation path being of the other electromagnetic signal to the receiver; and

altering the length of either or both of the first or second propagation paths as the electromagnetic signal is transmitted from the transmitter to the receiver, and the electromagnetic signal and the other electromagnetic signal are received at the receiver, either or both of the propagation paths being altered such that the difference of the lengths of the first and second propagation paths is altered at the selected rate.

18. A method according to claim 17 , wherein selecting a rate comprises selecting a rate as a function of the frequency at which the electromagnetic signal is transmitted.

19. A method according to claim 18 , wherein selecting a rate comprises selecting a rate to span one or more periods of the electromagnetic signal transmitted at a respective frequency over a dwell time.

20. A method according to claim 17 , wherein selecting a rate comprises selecting a rate ω FS to effectuate a path length modulation at a frequency:

ω

F

S

=

2

π

λ

n

F

S

F

where λ represents the wavelength of the electromagnetic signal at a respective frequency, n F represents the index of refraction of a propagating medium of the propagation paths, and S F represents the selected rate.

Assignments (3)
ASSIGNMENT AND ASSUMPTION AGREEMENT AND BILL OF SALE Recorded Sep 2, 2020
From: GOODRICH CORPORATION; RAYTHEON TECHNOLOGIES CORPORATION
To: DANBURY MISSION TECHNOLOGIES, LLC (FORMERLY KNOWN AS AMERGINT EO SOLUTIONS, LLC)
Reel/Frame 053680/0799 →
PATENT SECURITY AGREEMENT Recorded Sep 1, 2020
From: DANBURY MISSION TECHNOLOGIES, LLC; TETHERS UNLIMITED, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 053663/0239 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2008
From: MAJEWSKI, ALEXANDER J; ABREU, RENE
To: GOODRICH CORPORATION
Reel/Frame 021558/0742 →