IP Library Granted Patent US 12,606,316
Granted Patent B2
US 12,606,316 · App. 18/381,575 · Granted Apr 21, 2026

Distributed wireless power distribution system

Inventor: Jeffrey A. Jouper (Outlook, WA)
Assignee: Astronics Advanced Electronic Systems Corp.
B64D41/00H02J50/001H02J50/20H02J50/402H02J50/80B64D2221/00
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Quick Facts
Patent No.
US 12,606,316
App. No.
18/381,575
Granted
Apr 21, 2026
Kind
B2
Abstract

A system and method to provide a power distribution network to wirelessly power sensors, micro powered devices and switches to perform passenger functions as needed. An example implementation in an aircraft is a switch used to control overhead reading lights, where the switch is wirelessly provided with power in order to operate, and where the switch communicates with and is controlled by a control system also by way of wireless communication. An alternative application may, for example, be a sensor placed within storage areas inaccessible to conventional wiring.

Claims (31)

1 . A wireless power distribution system located within a vehicle, comprising;

a plurality of power radiating antennas located within the vehicle, each antenna connected to and having an associated power box capable of providing power to each associated antenna, the power boxes being connected in a daisy-chain arrangement within the vehicle, at least one antenna receiving power by way of a conductor connected to a power box associated with an adjacent antenna and each antenna radiating an electromagnetic signal providing power in a local area adjacent to each antenna;

a plurality of energy harvesting devices operable to receive a portion of the radiated electromagnetic signals and provide power based on the received radiated electromagnetic signals to a plurality of remote electronic devices; and

a plurality of signal receiving antennas, each operable to receive a communication or status signal associated with one of said remote devices.

2 . The wireless power distribution system of claim 1 , wherein each power radiating antenna and each respective corresponding signal receiving antenna are formed as one antenna structure.

3 . The wireless power distribution system of claim 1 , wherein at least one of the signal receiving antennas comprises a patch receiver antenna.

4 . The wireless power distribution system of claim 1 , wherein at least one of the energy harvesting devices further comprises an energy harvesting antenna.

5 . The wireless power distribution system of claim 4 , wherein at least one of the remote electronic devices comprises a sensor or a switch.

6 . The wireless power distribution system of claim 5 , wherein at least one of the energy harvesting devices further comprises an RF to DC converter operable to convert electromagnetic signals received by the energy harvesting antenna into a DC signal for providing power to said sensor or switch.

7 . The wireless power distribution system of claim 6 , further comprising a controller operable to communicate with said sensor or switch.

8 . The wireless power distribution system of claim 7 , wherein said controller includes a microcontroller and is operable to receive a status signal from said sensor or switch, and provide said status signal to a transmit antenna operable to transmit said status signal in the form of an electromagnetic signal.

9 . The wireless power distribution system of claim 7 , wherein said controller includes a microcontroller and is operable to provide a control signal to said sensor or switch.

10 . A wireless power distribution system for an aircraft, comprising:

a plurality of power radiating antennas distributed along a long dimension of a fuselage of the aircraft, each antenna connected to and having an associated power box capable of providing power to each associated antenna, the power boxes being connected in a daisy-chain arrangement within the aircraft, at least one antenna receiving power by way of a conductor connected to a power box associated with an adjacent antenna and each antenna radiating an electromagnetic signal providing power in a local area adjacent to each antenna;

a plurality of energy harvesting devices operable to receive a portion of the radiated electromagnetic signals and provide power based on the received radiated electromagnetic signals to a plurality of sensors or switches located remotely within the fuselage;

a plurality of signal transmit antennas operable to transmit electromagnetic signals corresponding to a status of one of said sensors or switches; and

a plurality of signal receiving antennas, each operable to receive the electromagnetic signal associated with one of said sensors.

11 . The wireless power distribution system of claim 10 , wherein at least one of said power radiating antennas is located in a vicinity of a seat power box of the aircraft.

12 . The wireless power distribution system of claim 10 , wherein each power radiating antenna and each respective corresponding signal receiving antenna are formed as one antenna structure.

13 . The wireless power distribution system of claim 10 , wherein at least one of the signal receiving antennas comprises a patch receiver antenna.

14 . The wireless power distribution system of claim 10 , wherein at least one of the energy harvesting devices further comprises an energy harvesting antenna.

15 . The wireless power distribution system of claim 14 , wherein at least one of the energy harvesting devices further comprises an RF to DC converter operable to convert electromagnetic signals received by the energy harvesting antenna into a DC signal for providing power to said sensor or switch.

16 . The wireless power distribution system of claim 15 , further comprising a controller operable to communicate with said sensor or switch.

17 . The wireless power distribution system of claim 16 , wherein said controller includes a microcontroller and is operable to receive a status signal from said sensor or switch, and provide said status signal to a transmit antenna operable to transmit said status signal in the form of an electromagnetic signal.

18 . The wireless power distribution system of claim 17 , wherein said microcontroller is operable to control said sensor or switch.

19 . The wireless power distribution system of claim 10 , wherein the power radiating antennas are positioned with an overhead lighting system to provide power for devices in an overhead area of the aircraft fuselage, wherein such overhead devices include stowage bin sensor, oxygen mask and bottle status, or light sensors.

20 . A wireless power distribution system located within a vehicle, comprising:

a plurality of power radiating antennas located within the vehicle, each antenna connected to and having an associated power box capable of providing power to each associated antenna, the power boxes being connected in a daisy-chain arrangement within the vehicle and distributed throughout a coverage area, at least one antenna receiving power by way of a conductor connected to a power box associated with an adjacent antenna and each antenna radiating an electromagnetic signal providing power in a local area adjacent to each antenna;

a plurality of energy harvesting antennas operable to receive a portion of the radiated electromagnetic signals and provide power based on the received radiated electromagnetic signals to a plurality of sensors or switches located remotely within the coverage area;

at least one controller operable to receive a status signal from said sensor or switch, or provide a control signal to said sensor or switch, and further operable to provide said status signal to a transmit antenna operable to transmit said status signal in the form of an electromagnetic signal; and

a plurality of signal receiving antennas, each operable to receive the electromagnetic signal associated with one of said sensors.

Assignments (6)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2026
From: JOUPER, JEFFREY A.
To: ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.
Reel/Frame 074150/0599 →
SECURITY INTEREST Recorded Nov 13, 2025
From: ASTRONICS CORPORATION; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS TEST SYSTEMS INC.; ASTRONICS AEROSAT CORPORATION; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; PECO, INC.; DIAGNOSYS INC.
To: HSBC BANK USA, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 073580/0550 →
RELEASE OF SECURITY INTEREST Recorded Oct 23, 2025
From: HSBC BANK USA, NATIONAL ASSOCIATION, AS AGENT
To: ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; ASTRONICS AEROSAT CORPORATION; ASTRONICS CORPORATION; PECO, INC.; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS TEST SYSTEMS INC.; DIAGNOSYS INC.; LUMINESCENT SYSTEMS, INC.
Reel/Frame 073227/0325 →
RELEASE OF SECURITY INTEREST Recorded Dec 4, 2024
From: HSBC BANK USA, N.A., AS AGENT
To: ASTRONICS CORPORATION; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS AEROSAT CORPORATION; ASTRONICS TEST SYSTEMS INC.; LUMINESCENT SYSTEMS, INC.; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; PECO, INC.; DIAGNOSYS INC.
Reel/Frame 069491/0184 →
SECURITY INTEREST Recorded Sep 4, 2024
From: ASTRONICS ASEROSTAT CORPORATION; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS TEST SYSTEMS INC.
To: HSBC BANK USA, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 068478/0769 →
SECURITY INTEREST Recorded Jul 11, 2024
From: ASTRONICS CORPORATION; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS AEROSAT CORPORATION; ASTRONIC TEST SYSTEMS INC.; LUMINESCENT SYTEMS, INC.; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; PECO, INC.; DIAGNOSYS INC.
To: HSBC BANK USA, N.A.
Reel/Frame 068283/0900 →
Continuity (2)
Provisional Application 63417179 · Oct 18, 2022
Related Publication 20240124151A1 · Apr 18, 2024
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