Nova Patents
AU764591B2

Collision avoidance system

Abstract

The Collision Avoidance System prevents collisions between vehicles and vehicular collisions with pedestrians, trains, and stationary objects by monitoring, controlling, documenting, and reporting the speed and position of vehicles. The system guards against speeding violations, moving violations, and particular safety hazards by invoking a reduction of vehicle speed or by restricting vehicle movement to control its position. This is primarily accomplished with the activation of a controllable road perturbation. The system also monitors pedestrians, school bus loading/unloading, traffic density, trains, environmental conditions that may affect driving, and traffic control systems to determine the action to take for collision prevention. The capability to monitor various parameters that may indicate an impending collision or detect parameters that indicate that conditions are more favorable for a collision allows the system to monitor an entire traffic environment to anticipate and thus prevent those collisions. The system integrates and synchronizes with existing traffic control devices and systems to ensure that it reinforces the traffic laws and safety intent of the environment in which it is installed. Sensors detect the status of objects within the traffic environment including the location and speed of vehicles. A computer is used to determine if the vehicles are adhering to the traffic laws or other safety concerns. Alarms may accompany the system output to inform the operator what must be done to prevent a collision. Additional sensors and cameras document the identity of violating vehicles as well as any resulting collisions and report the information to predetermined authorities through a multiple-channel communications interface. Authorities can remotely alter system operations to compensate for changes in traffic or weather conditions that demands a change in driving behavior in order to maintain safe travel. The system also allows emergency vehicles to pass unimpeded through the traffic environment.

AU764591B2, drawing sheet 1
Sheet 1 of 29

Term

Term ended

Expired 3 February 2020, 6.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

26 claims: 8 independent, 18 dependent

  1. 1
    The claims defining the invention are as follows:5 1. A collision avoidance system, comprising: a) at least one trigger sensor associated with a roadway, said at least one trigger sensor capable of sensing at least one parameter associated with one or more vehicles;b) at least one vehicle restrictor associated with said roadway, said at least io one restrictor comprising a member disposed generally transverse to said roadway, each said restrictor capable of being actuated to impede passage thereover of said vehicles;and c) a controller programmed to determine the likelihood of a collision involving any of said vehicles based on said vehicle parameters received from is said trigger sensors, programmed to determine at least one vehicle that should be slowed or stopped to avoid said collision based on said vehicle parameters, and programmed to determine at least one selected vehicle restrictor that is being approached by said selected vehicle, wherein said at least one selected vehicle restrictor is actuated by communication from said controller to impede the 20 passage of said selected vehicle to avoid said collision.
  2. 14
    16. A method for collision avoidance, comprising the steps of:a) sensing at least one parameter of at least one vehicle;b) determining the likelihood of a collision involving said at least one sensed vehicle based on said at least one vehicle parameter;20 c) determining at least one vehicle that should be slowed or stopped to avoid said collision based on said at least one vehicle parameter;d) determining at least one selected vehicle restrictor in a roadway, that is being approached by said selected vehicle based on said at least one vehicle parameter and said vehicle restrictor location;and 25 e) actuating said selected vehicle restrictor to control said selected vehicle to avoid said collision.
  3. 21
    23. A collision avoidance for use with a traffic control means capable of displaying a permissive or a non-permissive indicia, said system of collision avoidance, comprising:a) at least one vehicle restrictor associated with roadway, said at least one vehicle restrictor comprising a member disposed generally transverse to said roadway, capable of being actuated to impede passage thereover of at least one vehicle;and 25 b) a controller responsive to the status of the traffic control means, wherein said at least one vehicle restrictor is actuated by communication from said controller to impede the passage of at least one of the vehicles.
  4. 22
    24. A method of collision avoidance for use with a traffic control means capable of 30 displaying permissive or non-permissive indicia, said method of collision avoidance comprising the steps of:a) determining the permissive status of the traffic means that is associated with a roadway and is configured to permit the merging or alternate intersecting of vehicles, pedestrians, or trains;and (R:\LIBQ]982.doc:edg -29b) impeding vehicular movement associated with the roadway when the status of the traffic control means is not permissive.
  5. 23
    25. A method of collision avoidance, comprising the steps of:a) sensing at least one parameter of at least a first vehicle;b) sensing at least one parameter of at least a second vehicle;c) determining the likelihood of a collision involving said at least first vehicle and said at least second vehicle based on said vehicle parameters;and d) impeding the movement of at least one of said vehicles to avoid said collision.
  6. 24
    26. A method of collision avoidance, comprising the steps of:a) sensing at least one parameter of at least one vehicle;b) sensing at least one parameter of at least one pedestrian or at least one 15 train;c) determining the likelihood of a collision involving said at least one vehicle with said at least one pedestrian or said at least one train based on said at least one vehicle parameter and said at least one pedestrian or train parameter;and d) impeding the movement of at least one said vehicle to avoid said 20 collision.
  7. 25
    27. A collision avoidance system comprising:a) a traffic command signal associated with a roadway and initiated by a traffic control device;25 b) a plurality of vehicle restrictors each associated with said roadway, each said restrictor comprising an elongate member disposed generally transverse to said roadway, each said restrictor capable of being actuated to raise or lower relative to said roadway surface to impede passage thereover of vehicles;and c) a controller responsive to the status of said traffic command signal, 30 wherein said at least one selected vehicle restrictor is actuated by communication from said controller to impede the passage of said vehicles.
  8. 26
    28. A collision avoidance system substantially as herein described with reference to any one embodiment as shown in Figs. 1 to 12 of the accompanying drawings. [Rj\LIBQ]982.doc:edg -3029. A method for collision avoidance, said method substantially as herein described with reference to any one embodiment as shown in Figs. 1 to 12 of the accompanying drawings.