IP Library › Granted Patent US 10,091,562
Granted Patent B2
US 10,091,562 · App. 15/255,195 · Granted Oct 2, 2018

Electromagnetic communication from waveguide confinement

Inventors: Joseph V. Mantese (Ellington, CT); Kurt J. Sobanski (Glastonbury, CT); Brian L. McCabe (Orange, CT); Joseph Zacchio (Wethersfield, CT)
Assignee: UNITED TECHNOLOGIES CORPORATION
H04Q1/116F01D21/003F02C3/04F02C9/00F02K3/06G01M15/14G06K7/10188G07C5/008G07C5/0808H01P3/122H01P5/02H01Q5/55H04B1/02H04B15/02H04L12/40045H04L41/0803H04Q1/28H04Q9/00H04W12/04H05K9/0081F05D2220/32F05D2220/323F05D2260/80F05D2270/54F05D2270/80H04L67/10H04L67/12H04L2012/40273H04Q2209/40H04W84/12H04W84/18
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Quick Facts
Patent No.
US 10,091,562
App. No.
15/255,195
Granted
Oct 2, 2018
Kind
B2
Abstract

A system of a machine includes a network of a plurality of sensing/control/identification devices distributed throughout the machine. Each of the sensing/control/identification devices is associated with at least one sub-system component of the machine and operable to communicate through a plurality of electromagnetic signals. Shielding surrounds at least one of the sensing/control/identification devices to contain the electromagnetic signals proximate to the at least one sub-system component. A waveguide is operable to route a portion of the electromagnetic signals through a waveguide transmitter interface, a waveguide medium, and a waveguide transition interface to the at least one of the sensing/control/identification devices. A remote processing unit is operable to communicate with the network of the sensing/control/identification devices through the electromagnetic signals.

Claims (32)

1. A system of a machine, the system comprising:

a network of a plurality of sensing/control/identification devices distributed throughout the machine, each of the sensing/control/identification devices associated with at least one sub-system component of the machine and operable to communicate through a plurality of electromagnetic signals;

shielding surrounding at least one of the sensing/control/identification devices to contain the electromagnetic signals proximate to the at least one sub-system component;

a waveguide operable to route a portion of the electromagnetic signals through a waveguide transmitter interface, a waveguide medium, and a waveguide transition interface to the at least one of the sensing/control/identification devices; and

a remote processing unit operable to communicate with the network of the sensing/control/identification devices through the electromagnetic signals.

2. The system as recited in claim 1 , wherein the waveguide is operable to transmit the portion of the electromagnetic signals from confinement of the waveguide to an enclosed free space within the shielding.

3. The system as recited in claim 1 , wherein the waveguide comprises a first portion between the waveguide transmitter interface and the waveguide transition interface.

4. The system as recited in claim 3 , wherein the waveguide further comprises a second portion between the waveguide transition interface and a secondary waveguide transition interface.

5. The system as recited in claim 4 , wherein the second portion comprises a second waveguide medium that is different from the waveguide medium of the first portion.

6. The system as recited in claim 4 , wherein the waveguide transmitter interface is in a first environment and the secondary waveguide transition interface is in a second environment having one or more of a different temperature and a different pressure than the first environment.

7. The system as recited in claim 4 , wherein the waveguide transition interface comprises a transition window operable to pass a frequency range of interest between the first portion and the second portion of the waveguide.

8. A system for a gas turbine engine, the system comprising:

a network of a plurality of sensing/control/identification devices distributed throughout the gas turbine engine, each of the sensing/control/identification devices associated with at least one sub-system component of the gas turbine engine and operable to communicate through a plurality of electromagnetic signals;

shielding surrounding at least one of the sensing/control/identification devices to contain the electromagnetic signals proximate to the at least one sub-system component;

a waveguide operable to route a portion of the electromagnetic signals through a waveguide transmitter interface, a waveguide medium, and a waveguide transition interface to the at least one of the sensing/control/identification devices; and

a remote processing unit operable to communicate with the network of the sensing/control/identification devices through the electromagnetic signals.

9. The system as recited in claim 8 , wherein the at least one sub-system component is part of at least one of a fan section, a compressor section, a combustor section and a turbine section of the gas turbine engine, and the at least one sub-system component contains a parameter of interest to a control and health monitoring system, wherein the parameter of interest is one of a pressure, a temperature, a speed, a position, vibration and proximity or any other relevant physically measurable parameter, and further wherein the waveguide is operable to transmit the portion of the electromagnetic signals from confinement of the waveguide to an enclosed free space within the shielding.

10. The system as recited in claim 8 , wherein the waveguide comprises a first portion between the waveguide transmitter interface and the waveguide transition interface, and the waveguide further comprises a second portion between the waveguide transition interface and a secondary waveguide transition interface.

11. The system as recited in claim 10 , the second portion comprises a second waveguide medium that is different from the waveguide medium of the first portion.

12. The system as recited in claim 10 , wherein the waveguide transmitter interface is in a first environment and the secondary waveguide transition interface is in a second environment having one or more of a different temperature and a different pressure than the first environment.

13. The system as recited in claim 10 , wherein the waveguide transition interface comprises a transition window operable to pass a frequency range of interest between the first portion and the second portion of the waveguide.

14. A method of establishing electromagnetic communication from waveguide confinement, the method comprising:

configuring a remote processing unit to power and communicate with a network of a plurality of sensing/control/identification devices in the machine using a plurality of electromagnetic signals;

forming a shielded volume associated with at least one sub-system component of the machine, wherein the shielded volume surrounds at least one of the sensing/control/identification devices to contain the electromagnetic signals proximate to the at least one sub-system component;

routing a portion of the electromagnetic signals to the at least one of the sensing/control/identification devices through a waveguide comprising a waveguide transmitter interface, a waveguide medium, and a waveguide transition interface; and

linking a transmission path between the remote processing unit and the shielded volume.

15. The method as recited in claim 14 , wherein the waveguide is operable to transmit the portion of the electromagnetic signals from confinement of the waveguide to an enclosed free space within the shielded volume.

16. The method as recited in claim 14 , wherein the waveguide comprises a first portion between the waveguide transmitter interface and the waveguide transition interface.

17. The method as recited in claim 16 , wherein the waveguide further comprises a second portion between the waveguide transition interface and a secondary waveguide transition interface.

18. The method as recited in claim 17 , wherein the second portion comprises a second waveguide medium that is different from the waveguide medium of the first portion.

19. The method as recited in claim 17 , wherein the waveguide transmitter interface is in a first environment and the secondary waveguide transition interface is in a second environment having one or more of a different temperature and a different pressure than the first environment.

20. The method as recited in claim 17 , wherein the waveguide transition interface comprises a transition window operable to pass a frequency range of interest between the first portion and the second portion of the waveguide.

Assignments (4)
CHANGE OF NAME Recorded Jul 27, 2023
From: RAYTHEON TECHNOLOGIES CORPORATION
To: RTX CORPORATION
Reel/Frame 064714/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE AND REMOVE PATENT APPLICATION NUMBER 11886281 AND ADD PATENT APPLICATION NUMBER 14846874. TO CORRECT THE RECEIVING PARTY ADDRESS PREVIOUSLY RECORDED AT REEL: 054062 FRAME: 0001. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF ADDRESS. Recorded Mar 4, 2021
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 055659/0001 →
CHANGE OF NAME Recorded Sep 4, 2020
From: UNITED TECHNOLOGIES CORPORATION
To: RAYTHEON TECHNOLOGIES CORPORATION
Reel/Frame 054062/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 2, 2016
From: MANTESE, JOSEPH V.; SOBANSKI, KURT J.; MCCABE, BRIAN L.; ZACCHIO, JOSEPH
To: UNITED TECHNOLOGIES CORPORATION
Reel/Frame 039620/0869 →
Continuity (3)
Continuation In Part 15114234
Provisional Application 61946064 · Feb 28, 2014
Related Publication 20160369704A1 · Dec 22, 2016