VEHICLE TESTING DEVICE AND VEHICLE SPEED DEVIATION CALCULATION METHOD FOR VEHICLE TESTING DEVICE
20180348088 ยท 2018-12-06
Assignee
Inventors
Cpc classification
G01M17/0074
PHYSICS
International classification
Abstract
To obtain vehicle speed deviation data for changeover between accelerator and brake properly with inclination of a standard mode. In technique of calculating a changeover vehicle speed deviation from accelerator to brake in driving vehicle along standard mode (target vehicle speed) of vehicle drive pattern defined by time and vehicle speed within range of predetermined vehicle speed and time deviations from standard mode, an inclination AB of the standard mode is calculated by approximate differentiation of vehicle speed at a judgment standard point A of a current time instant on standard mode, first inclination AB is multiplied by an accelerator-to-brake changeover time deviation preset value t.sub.1, and the accelerator-to-brake changeover vehicle speed deviation from the judgment standard point A to a changeover judgment point E for changeover at the current time instant is calculated by addition of the product and an accelerator-to-brake changeover vehicle speed deviation preset value V.sub.1.
Claims
1.-5. (canceled)
6. A vehicle testing apparatus for performing vehicle tests by operating a vehicle on a chassis dynamometer, the vehicle testing apparatus comprising a vehicle speed deviation calculating section configured to calculate at least one of a first changeover vehicle speed deviation for changeover from an accelerator to a brake and a second changeover vehicle speed deviation for changeover from the brake to the accelerator in a vehicle speed following control to drive the vehicle along a standard mode of a vehicle drive pattern defined by time and a vehicle speed within a range of a deviation of a predetermined speed and a deviation of a predetermined time from the standard mode, the vehicle speed deviation calculating section being configured to perform at least one of a first calculating process of calculating a first inclination of the standard mode by approximate differentiation of the vehicle speed at a judgment standard point of a current time instant on the standard mode of the vehicle drive pattern, multiplying the first inclination of the standard mode by a first changeover time deviation preset value which is a preset value of a time deviation for changeover from the accelerator to the brake, and calculating the first changeover vehicle speed deviation from the judgment standard point to an accelerator-to-brake changeover judgment point for changeover from the accelerator to the brake at the current time instant by addition of a product determined by multiplication of the first inclination and the first changeover time deviation preset value and a first changeover vehicle speed deviation preset value which is a preset value of the vehicle speed deviation for the changeover from the accelerator to the brake, and a second calculating process of calculating a second inclination of the standard mode by approximate differentiation of the vehicle speed at a judgment standard point of the current time instant on the standard mode of the vehicle drive pattern, multiplying the second inclination of the standard mode by a second changeover time deviation preset value which is a preset value of the time deviation for changeover from the brake to the accelerator, and calculating the second changeover vehicle speed deviation from the judgment standard point to a brake-to-accelerator changeover judgment point for changeover from the brake to the accelerator at the current time instant by addition of a product determined by multiplication of the second inclination and the second changeover time deviation preset value and a second changeover vehicle speed deviation preset value which is a preset value of the vehicle speed deviation for the changeover from the brake to the accelerator.
7. The vehicle testing apparatus as claimed in claim 6, wherein an upper limit allowance line is defined as a line connecting upper limit points each of which is an upper limit point at a given time instant deviated from the standard point of the standard mode at the given time instant by the predetermined speed and the predetermined time, a lower limit allowance line is defined as a line connecting lower limit points each of which is a lower limit point at a given time instant deviated from the standard point of the standard mode at the given time instant by the predetermined speed and the predetermined time, an accelerator-to-brake changeover line is defined as a line connecting the accelerator-to-brake changeover judgment points each of which is the changeover judgment point for changeover from the accelerator to the brake at a given time instant in a standard mode running operation, a brake-to-accelerator changeover line is defined as a line connecting the brake-to-accelerator judgment points each of which is the changeover judgment point for changeover from the brake to the accelerator at a given time instant in the standard mode running operation, and at least one of the first or second changeover time deviation preset value and the first or second changeover vehicle speed deviation preset value is set at a third preset value within a range demarcated by the upper limit allowance line or the lower limit allowance line.
8. The vehicle testing apparatus as claimed in claim 6, wherein the vehicle testing apparatus further comprises a changeover control section configured to perform a changeover from the accelerator to the brake when a vehicle speed sensed at a time instant of a judgment standard point becomes higher than a first changeover line and to perform a changeover from the brake to the accelerator when the vehicle speed sensed at a time instant of a judgment standard point becomes lower than a second changeover line, the first changeover line being defined as an accelerator to brake changeover line connecting a plurality of accelerator to brake changeover judgment points of a sequence of time instants in a running operation of the standard mode, and the second changeover line being defined as an brake to accelerator changeover line connecting a plurality of brake to accelerator changeover judgment points of a sequence of time instants in a running operation of the standard mode.
9. A vehicle speed deviation calculating method of calculating at least one of a first changeover vehicle speed deviation for changeover from an accelerator to a brake and a second changeover vehicle speed deviation for changeover from the brake to the accelerator in a vehicle speed following control to drive the vehicle along a standard mode of a vehicle drive pattern defined by time and a vehicle speed within a range of a deviation of a predetermined speed and a deviation of a predetermined time from the standard mode, in a vehicle testing apparatus for performing vehicle tests by operating a vehicle on a chassis dynamometer, the vehicle speed deviation calculating method comprising at least one of a first calculating process of calculating a first inclination of the standard mode by approximate differentiation of the vehicle speed at a judgment standard point of a current time instant on the standard mode of the vehicle drive pattern, multiplying the first inclination of the standard mode by a first changeover time deviation preset value which is a preset value of a time deviation for changeover from the accelerator to the brake, and calculating the first changeover vehicle speed deviation from the judgment standard point to an accelerator-to-brake changeover judgment point for changeover from the accelerator to the brake at the current time instant by addition of a product determined by multiplication of the first inclination and the first changeover time deviation preset value and a first changeover vehicle speed deviation preset changeover time deviation preset value and a first changeover vehicle speed deviation preset value which is a preset value of the vehicle speed deviation for the changeover from the accelerator to the brake, and a second calculating process of calculating a second inclination of the standard mode by approximate differentiation of the vehicle speed at a judgment standard point of the current time instant on the standard mode of the vehicle drive pattern, multiplying the second inclination of the standard mode by a second changeover time deviation preset value which is a preset value of the time deviation for changeover from the brake to the accelerator, and calculating the second changeover vehicle speed deviation from the judgment standard point to a brake-to-accelerator changeover judgment point for changeover from the brake to the accelerator at the current time instant by addition of a product determined by multiplication of the second inclination and the second changeover time deviation preset value and a second changeover vehicle speed deviation preset value which is a preset value of the vehicle speed deviation for the changeover from the brake to the accelerator.
Description
BRIEF EXPLANATION OF THE DRAWINGS
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MODE(S) FOR CARRYING OUT THE INVENTION
[0042] Although the embodiment(s) of the present invention is explained hereinbelow with reference to the drawings, the present invention is not limited to the following embodiment(s).
[0043] The upper and lower limit allowance or tolerance lines of
[0044] In this practical example of the embodiment, the vehicle is driven to run between the upper and lower limit allowance lines according to a following policy or plan.
[0045] (1) In the case of acceleration to follow the standard mode
[0046] (1a) At a position far from the upper limit allowance line of the standard mode, the vehicle is operated to approach the standard mode by operating (controlling) the accelerator so as to increase or decrease the accelerator opening or accelerator depression.
[0047] (1b) At a position near the upper limit allowance line of the standard mode, the vehicle is operated by releasing the accelerator and depressing the brake or brake pedal.
[0048] (2) In the case of braking to follow the standard mode
[0049] (2a) At a position far from the lower limit allowance line of the standard mode, the vehicle is operated to approach the standard mode by operating (controlling) the brake so as to increase or decrease the depression degree of the brake.
[0050] (2b) At a position near the lower limit allowance line of the standard mode, the vehicle is operated by releasing the brake and depressing the accelerator.
[0051] In the case of the changeover operation between accelerator and brake in the above-mentioned phases (1b) and (2b), it is required to perform the changeover operation on the inner side of the upper limit allowance line or lower limit allowance line. Accordingly, as shown in
[0052] In
[0053] Each of the short sides of the one-dot chain rectangle for the changeover is made up of a preset or predetermined time deviation for changeover from accelerator to brake (a first changeover time deviation preset value which is a preset deviation of the time at the time of changeover from accelerator to brake), and a preset or predetermined time deviation for changeover from brake to accelerator (a second changeover time deviation preset value which is a preset deviation of the time at the time of changeover from brake to accelerator).
[0054]
[0055] In this example of the embodiment, the time deviation or time deviations are taken into account in the calculation of the first changeover vehicle speed deviation and second changeover vehicle speed deviation to respond to the inclination or slope of the standard mode.
[0056] (1) Calculation method of accelerator to brake changeover vehicle speed deviation and changeover operation
[0057] A drive target vehicle speed shown by a solid line in
[0058] A point A of the drive target vehicle speed is used as a standard point or reference point for judgment of changeover at a given time instant. From the judgement standard point A in the direction of the time axis, a time deviation at the changeover from accelerator to brake is set as an accelerator.fwdarw.brake changeover time deviation t.sub.1. From the judgement standard point A in the direction of the vehicle speed axis, a vehicle speed deviation at the changeover from accelerator to brake is set as an accelerator.fwdarw.brake changeover vehicle speed deviation V.sub.1. A point B is set as a point spaced from the point A by t.sub.1 and V.sub.1.
[0059] Then, an inclination AB (first inclination or slope: acceleration) is calculated by differentiating the drive target vehicle speed at the judgement standard point A by approximate differentiation such as difference method, and points C and D are determined by parallel translation or parallel displacement of the inclination AB in the speed increasing direction of the vehicle speed axis by equal lengths of v.sub.1.
[0060] Then, a vehicle speed deviation CE (=Vt.sub.1) is calculated by multiplying the inclination CD (having the same meaning as the first inclination AB) by the above-mentioned accelerator brake changeover time deviation (t.sub.1 (=CB).
[0061] Then, a vehicle speed deviation for changeover from accelerator to brake (the length of AE; first changeover vehicle speed deviation) is determined by addition of the accelerator.fwdarw.brake changeover vehicle speed deviation (set value) V.sub.1 (AC) and the above-mentioned vehicle speed deviation Vt.sub.1 (CE) obtained by the multiplication.
[0062] A point E is a changeover judgment point for the accelerator to brake changeover at a given time instant. Thus, a changeover line for the accelerator to brake changeover (one-dot chain line; one-dot chain line on the inner side of the upper limit allowance line of the solid line shown in
[0063] In the actual test drive, as shown in
[0064] (2) Calculation method of brake to accelerator changeover vehicle speed deviation and changeover operation
[0065] A drive target vehicle speed shown by a solid line in
[0066] A point A of the drive target vehicle speed is set as a standard point or reference point of criterion for changeover judgment at a given time instant. A time deviation from the judgment standard point A in the direction of the time axis at the time of the changeover from brake to acceleration is set as a brake.fwdarw.accelerator changeover time deviation t.sub.2. A vehicle speed deviation from the judgment standard point A in the direction of the vehicle speed axis at the time of the changeover from brake to accelerator is set as a brake.fwdarw.accelerator changeover vehicle speed deviation V.sub.2. A point B is a point spaced from the point A by t.sub.2. and V.sub.2.
[0067] Then, an inclination AB (second inclination or slope: deceleration) is calculated by differentiating the drive target vehicle speed at the judgement standard point A by approximate differentiation such as difference method and points C and D are determined by parallel translation of the inclination AB in the speed decreasing direction of the vehicle speed axis by equal lengths V.sub.2.
[0068] Then, a vehicle speed deviation CE (=Vt.sub.2) is calculated by multiplying the inclination CD (having the same meaning as the second inclination AB) by the above-mentioned brake.fwdarw.accelerator changeover time deviation t.sub.2 (=CB).
[0069] Then, a vehicle speed deviation for changeover from brake to accelerator (the length of AE; second changeover vehicle speed deviation) is determined by addition of the brake.fwdarw.accelerator changeover vehicle speed deviation (set value) V.sub.2 (AC) and the above-mentioned vehicle speed deviation Vt.sub.2 (CE) obtained by the multiplication.
[0070] A point E is a changeover judgment point for the brake to accelerator changeover at a given time instant. Thus, a changeover line for the brake to accelerator changeover (one-dot chain line; one-dot chain line on the inner side of the lower limit allowance line of the solid line shown in
[0071] In the actual test drive, as shown in
[0072] It is required to make a judgment as to the changeover from accelerator to brake or the changeover from brake to accelerator at the present time or current time instant during a running operation.
[0073] In
[0074] The set parameters or preset parameters are the accelerator to brake changeover vehicle speed deviation V.sub.1 (first changeover vehicle speed deviation preset value), the brake to accelerator changeover vehicle speed deviation V.sub.2 (second changeover vehicle speed deviation preset value), the accelerator to brake changeover time deviation t.sub.1 (first changeover time deviation preset value), and the brake to accelerator changeover time deviation t.sub.2 (second changeover time deviation preset value). If each of these set parameters V.sub.1, V.sub.2, t.sub.1 and t.sub.2 is set to a relatively small value, then the rectangle shown in
[0075] Conversely, if each of these set parameters V.sub.1, V.sub.2, t.sub.1 and t.sub.2 is set to a relatively great value which is smaller than the limit of the range of 2.0 km/h and 1.0 sec determined by the standard, the one-dot chain line rectangle shown in
[0076] Thus, the vehicle testing apparatus is arranged to calculate the vehicle speed deviation for changeover between accelerator and brake in accordance with the inclination or slope of the standard mode, and change over the operation of the test vehicle between the accelerator operation and the brake operation in accordance with the calculated vehicle speed deviation. For example, this vehicle testing apparatus is constructed as shown in
[0077] In the system of
[0078] A changeover control section 130 is arranged to define (form) the accelerator to brake changeover line, by the method mentioned in the explanation of
[0079] As mentioned above, the system according to this embodiment can obtain data of the vehicle speed deviation for changeover between accelerator and brake (the first changeover vehicle speed deviation for the changeover from accelerator to brake, the second changeover vehicle speed deviation for the changeover from brake to accelerator), adequately in accordance with the current inclination of the standard mode at the current time instant. Therefore, the system can improved the performance of following the vehicle speed in the vehicle speed following control, by operating the accelerator and brake in accordance with the thus-obtained changeover vehicle speed deviation data.