IP Library › Granted Patent US 11,473,737
Granted Patent B2
US 11,473,737 · App. 17/569,280 · Granted Oct 18, 2022

Devices and methods for impact detection and associated data transmission

Inventors: Adam J Selevan (Laguna Beach, CA); Daniel J Selevan (Laguna Beach, CA); James R Selevan (Laguna Beach, CA)
F21L4/08B65D25/20B65D25/30F21L2/00F21V23/0435H02J7/00034H02J7/0044F21Y2115/10
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Quick Facts
Patent No.
US 11,473,737
App. No.
17/569,280
Granted
Oct 18, 2022
Kind
B2
Abstract

Herein is described an invention that efficiently detects and reports vehicle impact with fixed or temporary roadway safety devices. A multitude of sensors may report road events via a single cellular or fiber optic gateway thereby substantially reducing acquisition and recurring cost. The use of a mesh network to connect these sensors provides low duty cycle monitoring. Extremely low-power circuitry that allows for multi-year battery life of small, light-weight solar photovoltaic panel is achievable through precise node-to-node timing. Radio transmission and reception is limited to a few milliseconds in each second. The novel mesh network architecture does not utilize an external coordinating signal, timing signal, or connection. Synchrony is maintained internal to the mesh network. Duty cycles of less than approximately 0.01% are achievable.

Claims (31)

1. A device configured for attachment to or positioning near a fixed safety asset that includes a crash attenuator, a crash cushion, or a cable barrier to detect a force applied to the fixed safety asset, a plurality of devices forming an array, the array and a gateway forming a local area network array, each device comprising:

at least one impact sensor located on the fixed safety asset to sense an impact on the fixed safety asset, the at least one impact sensor configured to send indication of the impact;

transmitter circuitry configured to communicate with the gateway via the local area network array; and

a processor and memory storing executable instructions that when executed cause a processor to receive the indication of the impact from the at least one impact sensor and transmit to the cloud server via the gateway messages that include one or more of the group consisting of location information, a time stamp associated with the impact, an acceleration profile of the impact, and an image;

wherein the transmitter circuitry is operative to automatically transmit radio frequency signals from one device to one or more neighbor devices in the array of the devices, without reference to a common reference signal, such that each device in the array of devices synchronizes transmit and receive time intervals and establishes low-power connectivity with at least one neighbor device in the array of devices to pass status through the array to be received by the gateway.

2. The device of claim 1 further comprising the gateway.

3. The device of claim 1 , wherein the processor further transmits a battery status report of the device.

4. The device of claim 1 , wherein the cloud server provides a graphical presentation of the acceleration profile to best characterize impact events to reduce false reports.

5. The device of claim 1 further comprising a camera, wherein the image is a video.

6. The device of claim 1 further comprising a camera, wherein the image is a still photograph.

7. The device of claim 1 , wherein the gateway is configured to communicate via fiber-optic, cellular, or wired connection.

8. The device of claim 1 , wherein the at least one sensor further senses speed, count, location, or traffic queue of vehicles in proximity to the at least one sensor.

9. The device of claim 1 , wherein the at least one sensor includes an accelerometer, tilt sensor, reflected light source, sound sensor, electrical sensor, ultra-sonic sensor, laser, LIDAR device, GNSS device, GPS device, time-of-flight ranging device, or magnetic proximity sensor.

10. The device of claim 1 , wherein the transmitter circuitry is further operative to automatically transmit radio frequency signals from the device to receiver circuitry within an approaching vehicle equipped to receive infrastructure-to-vehicle information.

11. A system to monitor one or more devices that are configured for attachment to or positioning near an associated fixed safety asset that includes a crash attenuator, a crash cushion, or a cable barrier to detect a force applied to the associated fixed safety asset, the system comprising:

a plurality of devices forming an array, the array and a gateway forming a local area network array, each device including:

at least one impact sensor located on the fixed safety asset to sense an impact on the fixed safety asset, the at least one impact sensor configured to send indication of the impact;

transmitter circuitry configured to communicate with the gateway via the local area network array, wherein the transmitter circuitry is operative to automatically transmit radio frequency signals from one device to one or more neighbor devices in the array of the devices, without reference to a common reference signal, such that each device in the array of devices synchronizes transmit and receive time intervals and establishes low-power connectivity with at least one neighbor device in the array of devices to pass status through the array to be received by the gateway; and

a processor and memory storing executable instructions that when executed cause the processor to receive the indication of the impact from the at least one impact sensor and transmit via the gateway messages that include one or more of the group consisting of location information, a time stamp associated with the impact, an acceleration profile of the impact, and an image; and

a cloud server configured to receive the messages from the device via the gateway.

12. The system of claim 11 , wherein the device further comprises the gateway.

13. The system of claim 11 , wherein the processor further transmits a battery status report of the device.

14. The system of claim 11 , wherein the cloud server provides a graphical presentation of the acceleration profile to best characterize impact events to reduce false reports.

15. The system of claim 11 , wherein the device further comprises a camera and the image is a video.

16. The system of claim 11 , wherein the device further comprises a camera and the image is a still photograph.

17. A method of monitoring a device configured for attachment to or positioning near a fixed safety asset that includes a crash attenuator, a crash cushion, or a cable barrier to detect a force applied to the fixed safety asset, a plurality of devices forming an array, the array and a gateway forming a local area network array, the method comprising:

receiving, at a cloud server, messages from the device via the gateway, the messages including one or more of the group consisting of location information, a time stamp associated with an impact, an acceleration profile of the impact, and an image, the device comprising at least one sensor located on the fixed safety asset to sense the impact on the fixed safety asset and transmitter circuitry configured to communicate with the gateway via the local area network array;

wherein the transmitter circuitry is operative to automatically transmit radio frequency signals from one device to one or more neighbor devices in the array of the devices, without reference to a common reference signal, such that each device in the array of devices synchronizes transmit and receive time intervals and establishes low-power connectivity with at least one neighbor device in the array of devices to pass status through the array to be received by the gateway.

18. The method of claim 17 further comprising communicating, by the gateway, using a fiber-optic, cellular, or wired connection.

19. The method of claim 17 , wherein the at least one sensor further senses speed, count, location, or traffic queue of vehicles in proximity to the at least one sensor and the at least one sensor includes an accelerometer, tilt sensor, reflected light source, sound sensor, electrical sensor, ultra-sonic sensor, laser, LIDAR device, GNSS device, GPS device, time-of-flight ranging device, or magnetic proximity sensor.

20. The method of claim 17 further comprising, with the transmitter circuitry, automatically transmitting radio frequency signals from the device to receiver circuitry within an approaching vehicle equipped to receive infrastructure-to-vehicle information.

Continuity (9)
Continuation 17145378 · Jan 10, 2021
Continuation In Part 16775055 · Jan 28, 2020
Continuation 15893420 · Feb 9, 2018
Continuation In Part 29613191 · Aug 8, 2017
Continuation In Part 29593694 · Feb 10, 2017
Provisional Application 62959184 · Jan 10, 2020
Provisional Application 62959847 · Jan 10, 2020
Provisional Application 62457638 · Feb 10, 2017
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