Claims
- 1. An antilock brake control apparatus comprising
- a) a vehicle wheel speed sensor;
- b) a modulator to set one mode for the vehicle wheel brake fluid, the mode selected from the group consisting of an increasing pressure mode, a decreasing pressure mode and a holding pressure mode,
- c) a controller for controlling said modulator, which makes a decision to determine of slippage is occurring based on vehicle wheel speed data from said vehicle wheel speed sensor, said controller selecting
- decreasing pressure mode on the detection of the initiation of vehicle slip,
- holding pressure mode on the detection of the recovery tendency of wheel slip, and
- increasing pressure mode on the detection of the termination of wheel slip, by comparing said vehicle wheel speed data with a standard threshold value for mode selection, said standard threshold value including a transition threshold value for determining the transition from said .[.holding.]. .Iadd.decreasing .Iaddend.pressure mode to said .[.increasing.]. .Iadd.holding .Iaddend.pressure mode, said transition threshold value being selected from at least two threshold values, High-.mu. for high frictional level condition and Low-.mu. for low frictional level condition, said High-.mu. being set as a lower barrier .[.in case of a.]. .Iadd.to .Iaddend.transition from said .[.holding.]. .Iadd.decreasing .Iaddend.pressure mode to said .[.increasing.]. .Iadd.holding .Iaddend.pressure mode than the Low-.mu.;
- .Iadd.said controller having: .Iaddend.
- means for a first determination, said means comparing the period of instability from the initiation of slippage to the termination of that slippage, with a previously set first threshold value;
- a means for a second determination, said means comparing the length of the period in which severe wheel slip is occurring with a previously fixed second threshold value; and
- a means for a third determination, said means comparing a maximum rotational acceleration of the vehicle wheel speed data with a previously fixed acceleration threshold value; and
- a condition changing means for changing the conditions for the transition from the decreasing pressure mode .[.and.]. .Iadd.to .Iaddend.the holding pressure mode.Iadd., by selecting one out of said at least two threshold values, .Iaddend.based on the results of the means for the first, second and third determinations,
- wherein said condition changing means selects the High-.mu. when the first determination means determines that the period of instability from the initiation of slippage to the termination of that slippage is smaller than a previously set first threshold value; or the third determination means determines that the maximum rotational acceleration of the vehicle wheel calculated from the vehicle wheel speed data exceeds the previously fixed acceleration threshold value, and said condition changing means selects the Low-.mu. when the second determination means determines that the length of the period in which severe wheel slip is occurring exceeds a previously fixed second threshold value.
- 2. An antilock brake control apparatus according to claim 1, wherein said standard threshold value is vehicle wheel acceleration.
- 3. An antilock brake control apparatus according to claim 1, wherein said Low-.mu. is greater than or equal to zero, and said High-.mu. is less than or equal to zero.
- 4. An antilock brake control apparatus according to claim 1, wherein said condition changing means selects the Low-.mu. in the case where a slip ratio exceeds a previously set slip ratio.
- 5. An antilock brake control apparatus according to claim 1, wherein said first and third .[.determination is done.]. .Iadd.determinations are performed .Iaddend.based on .[.the.]. data of the previous braking operation.
Priority Claims (1)
Number |
Date |
Country |
Kind |
1-293342 |
Nov 1989 |
JPX |
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Parent Case Info
.Iadd.This is a re-issue of application 07/610,519, filed Nov. 8, 1990, now U.S. Pat. No. 5,125,723..Iaddend.
US Referenced Citations (10)
Reissues (1)
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Number |
Date |
Country |
Parent |
610519 |
Nov 1990 |
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