EP1069000A1

Method for identifying the presence and orientation of an object in a vehicle

Abstract

A method for determining the location of an object in a passenger compartment of a vehicle in which ultrasonic waves are transmitted from a first transducer into the passenger compartment, waves reflected off an object in the passenger compartment are received by the first transducer and a first distance from the first transducer to the object is calculated based on the time difference between the transmitted waves and reflected waves when received by the first transducer. Further, different ultrasonic waves are transmitted from a second transducer into the passenger compartment which then receives reflected waves off the object and a second distance from the second transducer to the object is calculated based on the time difference between the transmitted waves and reflected waves when received by the second transducer. The approximate location of the object in the passenger compartment is determined based on the first distance and the second distance.

EP1069000A1, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 15 July 2019, 7.2 years ago.

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

27 claims: 4 independent, 23 dependent

  1. 1
    A method for determining the location of an object in a passenger compartment of a vehicle, comprising the steps of:arranging a first ultrasonic transducer on a ceiling of the vehicle and a second ultrasonic transducer at a different location in the vehicle such that a first axis connecting the first and second transducers is substantially parallel to a second axis traversing a volume in the passenger compartment above a seat in which the object is situated, transmitting ultrasonic waves from the first transducer into the passenger compartment;receiving ultrasonic waves reflected off an object in the passenger compartment by means of the first transducer;calculating a first distance from the first transducer to the object based on the time difference between the transmitted waves and reflected waves when received by the first transducer;transmitting different ultrasonic waves from the second transducer into the passenger compartment;receiving ultrasonic waves reflected off the object in the passenger compartment by means of the second transducer;calculating a second distance from the second transducer to the object based on the time difference between the transmitted waves and reflected waves when received by the second transducer;and determining an approximate location of the object in the passenger compartment based on the first distance and the second distance.
  2. 11
    A method for identifying an object in a passenger compartment, comprising the steps of:mounting at least first and second ultrasonic transducers at different locations in the passenger compartment;conducting training identification tests on a plurality of different classes of objects when situated in the passenger compartment, each of said tests comprising the steps of transmitting ultrasonic waves from the first transducer into the passenger compartment, receiving waves reflected off the object by means of the first transducer, transmitting different ultrasonic waves from the second transducer into the passenger compartment, receiving waves reflected off the object by means of the second transducer, and associating an object class with data from each test, generating a pattern recognition algorithm from the training test results and associated object classes such that the algorithm is able to process information from the reflected waves from the first and second transducers and provide the identification of the class of the object;transmitting ultrasonic waves from the first transducer into the passenger compartment when identification of an object in the passenger compartment is desired;receiving waves reflected off the object by means of the first transducer;transmitting different ultrasonic waves from the second transducer into the passenger compartment when identification of the object in the passenger compartment is desired;receiving waves reflected off the object by means of the second transducer;and applying the algorithm based on the first and second reflected waves to identify the object in the passenger compartment.
  3. 23
    A method for determining the location of an object in a passenger compartment of a vehicle, comprising the steps of:arranging a first receiver on a ceiling of the vehicle and a second receiver at a different location in the vehicle such that a first axis connecting the first and second receivers is substantially parallel to a second axis transversing a volume in the passenger compartment above a seat in which the object is situated;mounting a third receiver at a different location in the passenger compartment than the first and second receivers, each receiver comprising distance measurement means;calculating a first distance from the first receiver to the object based on the output of the first receiver;calculating a second distance from the second receiver to the object based on the output of the second receiver;calculating a third distance from the third receiver to the object based on the output of the third receiver;and determining an approximate location of the object in the passenger compartment based on the first distance, the second distance and the third distance.
  4. 27
    A method for determining the location of an object in a passenger compartment of a vehicle, comprising the steps of:transmitting ultrasonic waves from a first transducer into the passenger compartment;receiving waves reflected off an object in the passenger compartment by means of the first transducer;calculating a first distance from the first transducer to the object based on the time difference between the transmitted waves and reflected waves when received by the first transducer;transmitting different ultrasonic waves from a second transducer into the passenger compartment;receiving waves reflected off the object in the passenger compartment by means of the second transducer;calculating a second distance from the second transducer to the object based on the time difference between the transmitted waves and reflected waves when received by the second transducer;and determining an approximate location of the object in the passenger compartment based on the first distance and the second distance;said first and second distance calculation steps comprising the step of applying an algorithm generated by means of a neural network computer program based on the time distribution of the echo pattern of the reflected waves in order to determine the distance from the respective transducer to the object.