EP1008482A2

Adaptive cruise control system and methodology, including control of inter-vehicle spacing

Abstract

Disclosed herein is a headway control (32) for an adaptive cruise control system based on a basic headway control law derived from feedback linearization techniques. The usefulness of the linear approximations is demonstrated, and basic attributes of data which are believed important to system response are introduced. Certain modifications to a basic headway controller for enabling system performance to better meet driver expectations under real road conditions are made as a result of empirical information.

EP1008482A2, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Projected expiry passed 3 December 2019, 6.8 years ago.

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10 claims: 3 independent, 7 dependent

  1. 1
    An automotive vehicle comprising:a powertrain comprising an engine having a throttle that is selectively operated to apply an acceleration force to the vehicle via wheels on which the vehicle is supported and propelled along an underlying surface;a vehicle speed control (22) for selectively throttling the engine via the throttle to null discrepancy between actual vehicle speed and preset vehicle speed;range and range rate apparatus (28) for providing range and range rate signals corresponding to range and range rate to an immediately preceding lead vehicle;and a headway controller (30) that acts via the vehicle speed control (22) for nulling discrepancy between range to the lead vehicle obtained by the ranging apparatus and a reference range that varies with timed headway;wherein the range and range rate apparatus (28) and a vehicle speed sensor (26) close feedback loops to the headway controller (30), the headway controller (30) develops a speed reference signal which provides a command input to the vehicle speed control, and the speed reference signal comprises an algebraic summation of a term that is proportional to the vehicle's own speed as measured by the vehicle speed sensor, of a term that is proportional to range to the lead vehicle as measured by the range signal, and of a term that is proportional to range rate to the lead vehicle as measured by the range rate signal.
  2. 3
    An automotive vehicle comprising:a powertrain comprising an engine having a throttle that is selectively operated to apply an acceleration force to the vehicle via wheels on which the vehicle is supported and propelled along an underlying surface;a vehicle speed control for selectively throttling the engine via the throttle to null discrepancy between actual vehicle speed and preset vehicle speed;range and range rate apparatus for providing range and range rate signals corresponding to range and range rate to an immediately preceding lead vehicle;and a headway controller that acts via the vehicle speed control for nulling discrepancy between range to the lead vehicle obtained by the ranging apparatus and a reference range that varies with timed headway;wherein the range and range rate apparatus and a vehicle speed sensor close feedback loops to the headway controller, the headway controller develops a speed reference signal which provides a command input to the vehicle speed control, and the headway controller function for accelerating and decelerating the vehicle is mathematically defined by a piecewise continuous surface wherein change in the speed reference signal per unit of time measurement is defined as a function of both range error and range rate by the maximum function: where the values of k p, , k d,s , k p,c , and k p,s are selected to provide relatively less rigid feel for some sets of values of range error and range rate and relatively more rigid feel for other sets of values of range error and range rate.
  3. 6
    An automotive vehicle comprising:a powertrain comprising an engine having a throttle that is selectively operated to apply an acceleration force to the vehicle via wheels on which the vehicle is supported and propelled along an underlying surface;a vehicle speed control for selectively throttling the engine via the throttle to null discrepancy between actual vehicle speed and preset vehicle speed;range and range rate apparatus for providing range and range rate signals corresponding to range and range rate to an immediately preceding lead vehicle;a headway controller that is operable to different modes including an adaptive cruise control mode, that forms a portion of a closed-loop control wherein the range and range rate signals and a vehicle speed signal corresponding to actual vehicle speed provide closed loop feedback to the headway controller, and that develops a speed reference signal which provides a command signal input to the vehicle speed control for causing the vehicle speed control to null discrepancy between range to the lead vehicle as measured by the range signal and a reference range that varies with timed headway when the adaptive cruise control mode assumes a follow state;and upon losing the track of the lead vehicle while actual vehicle speed is less than preset speed, the headway controller is operable to transition from the follow state of the adaptive cruise control mode to a resume state of the adaptive cruise control mode to return vehicle speed toward preset vehicle speed as a function of lateral acceleration of the vehicle.