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Anti-skid brake control system for automotive brake system with projection of vehicular speed representative data on the basis of longitudinal acceleration exerted on vehicle body

  • US 4,964,047 A
  • Filed: 09/02/1988
  • Issued: 10/16/1990
  • Est. Priority Date: 09/04/1987
  • Status: Expired due to Term
First Claim
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1. An anti-skid brake control system for an automotive brake system comprising:

  • a hydraulic brake circuit comprising means for building up braking fluid pressure according to operational magnitude of a manually operable braking member and braking force generating means associated with a vehicular wheel for generating a braking force to decelerate said vehicular wheel;

    pressure adjusting means, disposed within said hydraulic circuit, for adjusting pressure of a working fluid to be delivered to said braking force generating means, said pressure adjusting means being operable at least in a first mode for increasing braking pressure in said braking force generating means and in a second mode for decreasing said braking pressure in said braking force generating means;

    first sensor means for monitoring rotation speed of said vehicular wheel to produce a wheel speed indicative sensor signal value representative of rotation speed of said vehicular wheel;

    second sensor means for monitoring longitudinal acceleration exerted on a vehicular body by producing a longitudinal acceleration indicative sensor signal value;

    first means for detecting a predetermined vehicular braking condition satisfying a predetermined anti-skid brake control condition for initiating anti-skid control operation;

    second means for latching a first wheel speed indicative value corresponding to said wheel speed indicative sensor signal value at a predetermined timing in each skid cycle and for arithmetically deriving a vehicular deceleration indicative datum on the basis of said longitudinal acceleration indicative sensor signal value, and for driving a gradient of vehicular speed during vehicular deceleration on the basis of said longitudinal acceleration indicative sensor signal value;

    third means for deriving a projected vehicular speed representative datum based on said first wheel speed indicative value and utilizing said gradient of vehicular speed; and

    fourth means for controlling said pressure adjusting means between said first and second modes for maintaining said rotation speed of said vehicular wheel in a predetermined optimal relationship with said projected vehicular speed representative datum.

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