EP1566657A2

Collision detection system and method of estimating target crossing location

Abstract

A collision detection system and method of estimating a crossing location (C) are provided. The system includes a first sensor (12A) for sensing an object (16) in a field of view (15) and sensing a first range (R1) defined as the distance between the object (16) and the first sensor (12A). The system also includes a second sensor (12B) for sensing the object (16) in the field of view and sensing a second range (R2) defined by the distance between the object (16) and the second sensor (12B). The system further includes a controller (20) for processing the first and second range measurements (R1 and R2) and estimating a crossing location (C) of the object (16) as a function of the first and second range measurements (R1 and R2). The crossing location (C) is estimated using range (R) and range rate (R&) in a W-plane (80) in one embodiment and using a time domain approach (120) in another embodiment.

EP1566657A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 4 February 2025, 1.6 years ago.

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22 claims: 2 independent, 20 dependent

  1. 1
    A collision detection system comprising:a first sensor (12A) for sensing an object (16) in a field of view (15) and measuring a first range (R 1 ) defined as the distance between the object (16) and the first sensor (12A);a second sensor (12B) for sensing the object (16) in the field of view (15) and measuring a second range (R 2 ) defined by the distance between the object (16) and the second sensor (12B);and a controller (20) for processing the first and second range measurements (R 1 and R 2 ), said controller (20) further estimating a crossing location (C) of the object (16) as a function of the first and second range measurements (R 1 and R 2 ).
  2. 14
    A method of estimating a crossing location (C) of an object (16), said method comprising the steps of:sensing the presence of an object (16) in a field of view (15);tracking the object (16) with first and second sensors (12A and 12B);measuring (84) range (R 1 ) to the object (16) with the first sensor (12A);measuring (84) range (R 2 ) to the object (16) with the second sensor (12B), wherein the first and second sensors (12A and 12B) are separate from each other;and estimating (96) a crossing location (C) of the object (16) as a function of the range measurements (R 1 and R 2 ) from the first and second sensors (12A and 12B).
  3. 22
    The method as defined in claim 22 further comprising the step of generating a collision output signal (26) as a function of the estimated crossing location (C).