IP Library Granted Patent US 12695503
Granted Patent B2
US 12695503 · App. 18/117,766 · Granted Jul 28, 2026

System for extending vehicle Wi-Fi range

Inventors: Dmitry Ogorodnikov (Amherstburg, CA); Steven Anthony Chapekis (Escanaba, MI); Harald Christian Martinez (Northville, MI)
Assignee: Ford Global Technologies, LLC
H04B7/26H04B7/18502H04W28/0226
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Quick Facts
Patent No.
US 12695503
App. No.
18/117,766
Granted
Jul 28, 2026
Kind
B2
Abstract

A wireless network having a plurality of nodes include a main device at a starting location and configured to operate as a starting node; and a plurality of node devices serving as communication relays and connected in series forming a connection branch, the plurality of node devices including a first node device configured to deploy to a first location at a first distance from the starting location and wirelessly connect to the main device, and a second node device configured to deploy to a second location at a second distance from the first location and wirelessly connect to the first node device, wherein the second distance is shorter than the first distance.

Claims (34)

1 . A wireless network having a plurality of nodes comprising:

a main device at a starting location and configured to operate as a starting node; and

a plurality of node devices serving as communication relays and connected in series forming a connection branch, the plurality of node devices including:

a first node device configured to deploy to a first location at a first distance from the starting location and wirelessly connect to the main device via a first direct connection without an intermediary node in-between, and

a second node device configured to deploy to a second location at a second distance from the first location and wirelessly connect to the first node device via a second direct connection without an intermediary node in-between, wherein the second distance is shorter than the first distance,

wherein each node device of the plurality of node devices is provided with propulsion capability, and the main device is further configured to instruct each node device to deploy to a corresponding location.

2 . The wireless network of claim 1 , wherein the second distance is half of the first distance.

3 . The wireless network of claim 1 , wherein the plurality of node devices further include one or more subsequent node device connected in series forming an additional portion of the connection branch, wherein each subsequent serial connection has a shorter distance than a preceding connection.

4 . The network of claim 3 , wherein the shorter distance is half of the distance of the preceding connection.

5 . The network of claim 1 , wherein the main device is further configured to determine the location of each node device by at least one of: receiving location data from one or more of the node devices; or capture and analyze images of the node devices via a camera.

6 . The network of claim 1 , wherein at least one of the node devices is implemented as an aerial device.

7 . The network of claim 1 , wherein one or more of the node devices are configured to, responsive to detecting a loss of connection caused by one node device at issue, disconnect from the node device at issue and attempt to connect to a preceding node device that precedes the node device at issue.

8 . The network of claim 7 , wherein the one or more of the node devices are further configured responsive to inability to connect to the preceding node device, attempt to connect to a next preceding node that is further precedes the preceding node.

9 . The network of claim 1 , wherein one or more of the node devices are configured to, responsive to detecting a disconnection, move to a new location closer to the starting location.

10 . A wireless communication system, comprising:

a plurality of node devices each serving as a node and connected in series forming a connection branch, the plurality of node devices including:

a first node device configured to deploy to a first location at a first distance from a starting location and directly wirelessly connect to a main device located at the starting location,

a second node device configured to deploy to a second location at a second distance from the first location and directly wirelessly connect to the first node device, wherein the second distance is shorter than the first distance, and

a third node device configured to deploy to a third location at a third distance from the second location and wirelessly connect to the second node device, wherein the third distance is shorter than the second distance,

wherein each node device is integrated with an aerial device, and one or more of the node devices are configured to, responsive to detecting a loss of connection, relocate to a new location closer to the starting location.

11 . The wireless communication system of claim 10 , wherein the second distance is half of the first distance, and the third distance is half of the second distance.

12 . The wireless communication system of claim 10 , wherein each of the node devices are further configured to deploy to a corresponding location based on instructions received from the main device.

13 . A vehicle comprising:

a wireless transceiver configured to communicate with one or more of a plurality of node devices provided with moving capability; and

one or more controllers, programmed to:

responsive to arriving at a parking location, command a first node device of the plurality of node devices to deploy to a first location at a first distance from a parking location and directly connect to the wireless transceiver, and command a second node device of the plurality of node devices to deploy to a second location at a second distance from a first location and directly connect to the first node device, wherein the second distance is half of the first distance.

14 . The vehicle of claim 13 , further comprising:

a camera configured to capture images,

wherein the one or more controllers are further programmed to:

monitor the locations of the first node device and second node device by analyzing the images.

15 . The vehicle of claim 13 , wherein the one or more controllers are further programmed to access a wide area network via the transceiver through one or more of the plurality of node devices.

16 . The vehicle of claim 13 , further comprising:

a wired connector configured to receive data from a wide area network,

wherein the one or more controllers are further programmed to forward the data to one or more of the node devices via the transceiver.