IP Library › Granted Patent US 10,419,598
Granted Patent B2
US 10,419,598 · App. 15/864,691 · Granted Sep 17, 2019

System and method for determining compromised driving

Inventor: Sascha Simon (Warwick, NY)
Assignee: Sfara, Inc.
H04M1/72577H04W4/025G07C5/008H04M1/72519H04M1/72522H04M1/72569H04W4/027H04W48/04H04W88/02
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Quick Facts
Patent No.
US 10,419,598
App. No.
15/864,691
Granted
Sep 17, 2019
Kind
B2
Abstract

A device is provided for use with a database having stored therein a stored signature corresponding to non-compromised driving by a user of a vehicle as detected by a device of the vehicle. The device includes a parameter detecting component that generates a parameter signature and an identifying component that generates a probability of non-compromised driving. The identifying component generates the probability of non-compromised driving so as to indicate that the user is driving the vehicle in a non-compromised manner or a compromised manner.

Claims (57)

1. A device, for use with a database having stored therein a stored signature corresponding to non-compromised driving by a user of a vehicle as detected by a device of the vehicle, said device comprising:

a device location determining component operable to determine whether the device is of the vehicle;

a parameter detecting component operable to detect a parameter and to generate a parameter signature based on the detected parameter if said device location determining component determines that the device is of the vehicle;

an accessing component operable to access the stored signature from the database;

an identifying component operable to generate a probability of non-compromised driving based on the parameter signature and the stored signature; and

a mode controlling component operable to instruct the device to operate in a vehicle mode when said location determining component determines that the device is located in the vehicle,

wherein said identifying component is operable to generate the probability of non-compromised driving so as to indicate whether that the user is driving the vehicle in a non-compromised manner or a compromised manner, and

wherein said a mode controlling component is operable to instruct the device to operate in the vehicle mode further when said identifying component generates the probability so as to indicate that that the user is driving the vehicle in a non-compromised manner.

2. The device of claim 1 , further comprising:

a texting component operable to enable a user to perform at least one of creating an outgoing text and accessing a received text,

wherein said parameter detecting component is operable to detect, as the predetermined parameter, the user performing at least one of creating the outgoing text and accessing the received text via said texting component.

3. The device of claim 2 , wherein said parameter detecting component comprises a detecting component operable to detect at least one of magnetic fields, electric fields, electro-magnetic fields, velocity, acceleration, angular velocity, angular acceleration, geodetic position, sound, temperature, an image, a Blue Tooth signal, a Wi-Fi signal, light, vibrations, pressure, biometrics, contents of surrounding atmosphere, a change in electric fields, a change in magnetic fields, a change in electro-magnetic fields, a change in velocity, a change in acceleration, a change in angular velocity, a change in angular acceleration, a change in geodetic position, a change in sound, a change in temperature, a change in light, a change in vibrations, a change in pressure, a change in biometrics, a change in contents of surrounding atmosphere and combinations thereof.

4. The device of claim 3 , further comprising:

a microphone component,

wherein said parameter detecting component is operable to detect, as the predetermined parameter, the user speaking via the microphone.

5. The device of claim 1 , wherein said parameter detecting component is further operable to provide the parameter signature to the database.

6. The device of claim 1 , wherein said parameter detecting component operable to detect a second predetermined parameter and to generate the parameter signature based on the detected predetermined parameter and the detected second predetermined parameter.

7. The device of claim 1 , further comprising:

a microphone component,

wherein said parameter detecting component is operable to detect, as the predetermined parameter, the user speaking via the microphone.

8. A method of using a database having stored therein, a stored signature corresponding to non-compromised driving of a vehicle as detected by a device of the vehicle, said method comprising:

determining, via a device location determining component, whether the device is of the vehicle;

detecting, via a parameter detecting component, a parameter;

generating, via the parameter detecting component, a parameter signature based on the detected parameter if the device location determining component determines that the device is located in the vehicle;

accessing, via an accessing component, the stored signature from the database;

generating, via an identifying component, a probability of non-compromised driving based on the parameter signature and the stored signature; and

instructing, via a mode controlling component, the device to operate in a vehicle mode when the location determining component determines that the device is located in the vehicle,

wherein said generating a probability of non-compromised driving comprises generating the probability of non-compromised driving so as to indicate that the user is driving the vehicle in a non-compromised manner or a compromised manner, and

wherein said instructing the device to operate in a vehicle mode comprises instructing the device to operate in the vehicle mode additionally when the identifying component generates the probability of non-compromised driving so as to indicate that that the user is driving the vehicle in a compromised manner.

9. The method of claim 8 , further comprising:

enabling, via a texting component, a user to perform at least one of creating an outgoing text and accessing a received text,

wherein said detecting, via a parameter detecting component, a predetermined parameter comprises detecting, as the predetermined parameter, the user performing at least one of creating the outgoing text and accessing the received text via the texting component.

10. The method of claim 9 , wherein said detecting, as the predetermined parameter, the user performing at least one of creating the outgoing text and accessing the received text via the texting component comprises detecting at least one of magnetic fields, electric fields, electro-magnetic fields, velocity, acceleration, angular velocity, angular acceleration, geodetic position, sound, temperature, an image, a Blue Tooth signal, a Wi-Fi signal, light, vibrations, pressure, biometrics, contents of surrounding atmosphere, a change in electric fields, a change in magnetic fields, a change in electro-magnetic fields, a change in velocity, a change in acceleration, a change in angular velocity, a change in angular acceleration, a change in geodetic position, a change in sound, a change in temperature, a change in light, a change in vibrations, a change in pressure, a change in biometrics, a change in contents of surrounding atmosphere and combinations thereof.

11. The method of claim 10 , wherein said parameter detecting component is operable to detect, as the predetermined parameter, the user speaking via a microphone.

12. The method of claim 8 , further comprising providing, via the parameter detecting component, the parameter signature to the database.

13. The method of claim 8 , further comprising:

detecting, via the parameter detecting component, a second predetermined parameter,

wherein said generating the parameter signature comprises generating the parameter signature based on the detected predetermined parameter and the detected second predetermined parameter.

14. The method of claim 8 , wherein said parameter detecting component is operable to detect, as the predetermined parameter, the user speaking via a microphone.

15. A non-transitory, tangible, computer-readable media having computer-readable instructions stored thereon, for use with a database having stored therein, a stored signature corresponding to non-compromised driving of a vehicle as detected by a device of the vehicle, the computer-readable instructions being capable of being read by a computer and being capable of instructing the computer to perform the method comprising:

determining, via a device location determining component, whether the device is of the vehicle;

detecting, via a parameter detecting component, a parameter;

generating, via the parameter detecting component, a parameter signature based on the detected parameter if the device location determining component determines that the device is located in the vehicle;

accessing, via an accessing component, the stored signature from the database;

generating, via an identifying component, a probability of non-compromised driving based on the parameter signature and the stored signature; and

instructing, via a mode controlling component, the device to operate in a vehicle mode when the location determining component determines that the device is located in the vehicle,

wherein said generating a probability of non-compromised driving comprises generating the probability of non-compromised driving so as to indicate that the user is driving the vehicle in a non-compromised manner or a compromised manner, and

wherein said instructing the device to operate in a vehicle mode comprises instructing the device to operate in the vehicle mode additionally when the identifying component generates the probability of non-compromised driving so as to indicate that that the user is driving the vehicle in a compromised manner.

16. The non-transitory, tangible, computer-readable media of claim 15 , the computer-readable instructions being capable of being read by a computer and being capable of instructing the computer to perform the method further comprising:

enabling, via a texting component, a user to perform at least one of creating an outgoing text and accessing a received text,

wherein said detecting, via a parameter detecting component, a predetermined parameter comprises detecting, as the predetermined parameter, the user performing at least one of creating the outgoing text and accessing the received text via the texting component.

17. The non-transitory, tangible, computer-readable media of claim 16 , wherein the computer-readable instructions are capable of instructing the computer to perform the method such that said detecting, as the predetermined parameter, the user performing at least one of creating the outgoing text and accessing the received text via the texting component comprises detecting at least one of magnetic fields, electric fields, electro-magnetic fields, velocity, acceleration, angular velocity, angular acceleration, geodetic position, sound, temperature, an image, a Blue Tooth signal, a Wi-Fi signal, light, vibrations, pressure, biometrics, contents of surrounding atmosphere, a change in electric fields, a change in magnetic fields, a change in electro-magnetic fields, a change in velocity, a change in acceleration, a change in angular velocity, a change in angular acceleration, a change in geodetic position, a change in sound, a change in temperature, a change in light, a change in vibrations, a change in pressure, a change in biometrics, a change in contents of surrounding atmosphere and combinations thereof.

18. The non-transitory, tangible, computer-readable media of claim 17 , wherein the computer-readable instructions are capable of instructing the computer to perform the method such that said parameter detecting component is operable to detect, as the predetermined parameter, the user speaking via a microphone.

19. The non-transitory, tangible, computer-readable media of claim 15 , the computer-readable instructions being capable of being read by a computer and being capable of instructing the computer to perform the method further comprising providing, via the parameter detecting component, the parameter signature to the database.

20. The non-transitory, tangible, computer-readable media of claim 15 , the computer-readable instructions being capable of being read by a computer and being capable of instructing the computer to perform the method further comprising:

detecting, via the parameter detecting component, a second predetermined parameter,

wherein said generating the parameter signature comprises generating the parameter signature based on the detected predetermined parameter and the detected second predetermined parameter.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 24, 2020
From: SIMON, SASCHA
To: SFARA INC.
Reel/Frame 053031/0975 →
Continuity (1)
Related Publication 20190215399A1 · Jul 11, 2019