EP3869480A2

Systems and methods for detecting a sitting duck scenario

Abstract

Systems and methods for detecting a sitting duck scenario of a vehicle on or near a road are disclosed. The current location and speed of the vehicle are used for different comparisons and/or determinations, including a comparison to road-specific information to determine whether the vehicle is in a particular proximity of a highway, and a determination whether the vehicle has been stationary continuously for at least a specified duration. Additional comparisons and/or determinations may be used. If such an occurrence has been detected, one or more notifications are generated, and provided to one or more of the vehicle operator and/or a remote computing server.

EP3869480A2, drawing sheet 1
Sheet 1 of 5

Term

14.4 yearsto projected expiry

Projected expiry 16 February 2041, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

14 claims: 10 independent, 4 dependent

  1. 1
    A system (100) configured for detecting a sitting duck scenario of a vehicle (12) on or near a road (300,400), the vehicle being operated by a vehicle operator, the system comprising:one or more hardware processors (104) configured by machine-readable instructions to: obtain (202) output signals conveying information pertaining to the vehicle and to operation of the vehicle;determine (204) a current speed of the vehicle (12), wherein the determination of the current speed is based on the output signals;determine (206) a current location of the vehicle (12), wherein the determination of the current location is based on the output signals;obtain (208) road-specific information for one or more roads near the current location of the vehicle (12), wherein the road-specific information includes: i ) one or more types of road pertaining to the one or more roads near the current location of the vehicle, and ii ) one or more types of geographical location information pertaining to the one or more roads;make a first determination (210) whether the current location of the vehicle is on or within a particular proximity of highways, wherein the highways are public roads heading in one or more directions, having one or more traffic lanes (301,302,303,304;401,402,403,404) heading in the one or more directions, wherein the one or more traffic lanes are intended to include vehicular traffic, wherein the first determination is based on the current location and the obtained road-specific information, and wherein the particular proximity is determined based on a distance threshold;make a second determination (212) whether the vehicle has been stationary continuously for at least a specified duration;detect an occurrence (214) of a particular vehicle event responsive to a combination of at least two determinations, wherein the at least two determinations include the first determination that the current location of the vehicle is on or within the particular proximity of highways and the second determination that the vehicle has been stationary continuously for at least the specified duration;responsive to detection of the occurrence of the particular vehicle event, generate (216) one or more notifications regarding the particular vehicle event;and provide (218) the one or more notifications to one or more of the vehicle operator and/or a remote computing server.
  2. 4
    The system (100) according to one or more of claims 1 to 3, wherein the first determination includes a determination whether any part of the vehicle is within a specified minimum distance of any part of the highway, wherein the specified minimum distance is at least 25 feet.
  3. 5
    The system (100) according to claim one or more of claims 1 to 4, wherein the one or more hardware processors are further configured by machine-readable instructions to:determine whether the vehicle was traveling at least 50 mph for at least 5 minutes in a particular time frame, wherein the particular time frame includes a duration of at least 10 minutes immediately preceding the specified duration for the second determination that the vehicle has been stationary.
  4. 6
    The system (100) according to one or more of claims 1 to 5, wherein determining the current location of the vehicle includes determining a current road selected from the one or more roads such that the current road is closer to the current location of the vehicle than other roads in the one or more roads, wherein the current road has a centerline between traffic lanes heading in opposite directions, wherein the combination of at least two determinations includes a determination that the vehicle is stationary in an orientation parallel to the current road, and wherein the first determination is that the current location of the vehicle is within 50 feet of the centerline of the current road.
  5. 7
    The system (100) according to one or more of claims 1 to 6, wherein the distance threshold used to determine the particular proximity varies based on one or more of ( i ) a particular type of a road closest to the current location of the vehicle, ( ii ) a particular type of the obtained geographical location information, ( iii ) how many traffic lanes are heading in the same direction as the vehicle at the current location of the vehicle, ( iv ) how many traffic lanes form the road closest to at the current location of the vehicle, and ( v ) a speed limit for the road closest to at the current location of the vehicle.
  6. 8
    A method for detecting a sitting duck scenario of a vehicle (12) on or near a road (300,400), the vehicle being operated by a vehicle operator, the method comprising:obtaining (202) output signals conveying information pertaining to the vehicle and to operation of the vehicle;determining (204) a current speed of the vehicle based on the output signals;determining (206) a current location of the vehicle based on the output signals;obtaining (208) road-specific information for one or more roads near the current location of the vehicle, wherein the road-specific information includes one or more types of road pertaining to the one or more roads near the current location of the vehicle, and one or more types of geographical location information pertaining to the one or more roads;making (210) a first determination whether the current location of the vehicle is on or within a particular proximity of highways, wherein the highways are public roads heading in one or more directions, having one or more traffic lanes (301,302,303,304;401,402,403,404) heading in the one or more directions, wherein the one or more traffic lanes are intended to include vehicular traffic, wherein the first determination is based on the current location and the obtained road-specific information, and wherein the particular proximity is determined based on a distance threshold;making (212) a second determination whether the vehicle has been stationary continuously for at least a specified duration;detecting (214) an occurrence of a particular vehicle event responsive to a combination of at least two determinations, wherein the at least two determinations include the first determination that the current location of the vehicle is on or within the particular proximity of highways and the second determination that the vehicle has been stationary continuously for at least the specified duration;responsive to detection of the occurrence of the particular vehicle event, generating (216) one or more notifications regarding the particular vehicle event;and providing (218) the one or more notifications to one or more of the vehicle operator and/or a remote computing server.
  7. 11
    The method according to one or more of claims 8 to 10, wherein the first determination includes a determination whether any part of the vehicle (12) is within a specified minimum distance of any part of the highway, wherein the specified minimum distance is at least 25 feet.
  8. 12
    The method according to one or more of claims 8 to 11, further comprising:determining whether the vehicle (12) was traveling at least 50 mph for at least 5 minutes in a particular time frame, wherein the particular time frame includes a duration of at least 10 minutes immediately preceding the specified duration for the second determination that the vehicle has been stationary.
  9. 13
    The method according to one or more of claims 8 to 12, wherein determining the current location of the vehicle (12) includes determining a current road selected from the one or more roads such that the current road is closer to the current location of the vehicle than other roads in the one or more roads, wherein the current road has a centerline between traffic lanes heading in opposite directions, wherein the combination of at least two determinations includes a determination that the vehicle is stationary in an orientation parallel to the current road, and wherein the first determination is that the current location of the vehicle is within 50 feet of the centerline of the current road.
  10. 14
    The method according to one or more of claims 8 to 13, wherein the distance threshold used to determine the particular proximity varies based on one or more of ( i ) a particular type of a road closest to the current location of the vehicle, ( ii ) a particular type of the obtained geographical location information, ( iii ) how many traffic lanes are heading in the same direction as the vehicle at the current location of the vehicle, ( iv ) how many traffic lanes form the road closest to at the current location of the vehicle, and ( v ) a speed limit for the road closest to at the current location of the vehicle (12).