IP Library › Granted Patent US 9,162,683
Granted Patent B2
US 9,162,683 · App. 14/098,164 · Granted Oct 20, 2015

Method and system for starting engine during failure of starter motor of hybrid electric vehicle

Inventor: Sang Joon Kim (Seoul, KR)
Assignee: HYUNDAI MOTOR COMPANY
B60W50/029B60K6/48B60W10/02B60W10/06B60W10/08B60W20/40B60W20/50F02N11/006F02N11/108F02N15/022B60W2510/0275B60W2710/083F02N2300/104Y10S903/93
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Quick Facts
Patent No.
US 9,162,683
App. No.
14/098,164
Granted
Oct 20, 2015
Kind
B2
Abstract

A method of starting an engine when a starter motor of a hybrid electric vehicle has a failure includes identifying a request for starting the engine in a state where the starter motor has the failure. When the request for starting the engine is made in the state where the starter motor has the failure, a torque or a load of an engine clutch and a pressure of the engine clutch are determined. A torque of a driving motor is set to a smaller torque between a driving motor demanded torque and a torque obtained by subtracting the torque of the engine clutch from a maximum torque of the driving motor. The engine starts with the set torque of the driving motor while controlling the engine clutch.

Claims (28)

1. A method of starting an engine when a starter motor of a hybrid electric vehicle has a failure, the method comprising:

identifying a request for starting the engine in a state where the starter motor has the failure;

determining a torque or load of an engine clutch and a pressure of the engine clutch when the request for starting the engine is made in the state where the starter motor has the failure;

setting a torque of a driving motor to a smaller torque between a driving motor demanding torque and a torque obtained by subtracting the torque of the engine clutch from a maximum torque of the driving motor; and

starting the engine with the set torque of the driving motor while controlling the engine clutch,

wherein the torque or load of the engine clutch T clutch is calculated by Equations (1) and (2) below,

(J eng : engine rotational inertia, w eng — tgt : engine target speed, T eng — friction : engine friction torque),

J eng ·{dot over (w)} eng — tgt =−T clutch −T eng — friction   (Equation 1)

T clutch =−T eng — friction −J eng ·{dot over (w)} eng — tgt   (Equation 2),

and the engine rotational inertia is a pre-recognized value, the engine target speed is a predetermined value, and the engine friction torque is obtained through a predetermined test, and

wherein pressure (F) applied to the engine clutch is calculated by Equation (3) below,

F clutch =Friction coefficient×Effective radius×The number of friction surfaces×Sign  (Equation 3),

and the friction coefficient, the effective radius, and the number of friction surfaces are values determined according to a design specification of the engine clutch, and the sign is positive (+) when delta RPM is equal to or greater than 0, and the sign is negative (−) when delta RPM is smaller than 0.

2. The method of claim 1 , wherein a torque command value of the driving motor is a value obtained by adding the torque of the engine clutch to the torque of the driving motor.

3. A system of starting an engine when a starter motor of a hybrid electric vehicle has a failure, the system comprising:

an engine and a driving motor configured to provide power to the hybrid electric vehicle;

a starter motor configured to start the engine;

an engine clutch disposed between the engine and the driving motor and configured to split the power; and

a controller configured to start the engine with the driving motor when the starter motor has the failure, and control the engine clutch when the engine starts by the driving motor,

wherein a torque or load of the engine clutch T clutch is calculated by Equations (1) and (2) below,

(J eng : engine rotational inertia, w eng — tgt : engine target speed, T eng — friction : engine friction torque),

J eng ·{dot over (w)} eng — tgt =−T clutch −T eng — friction   (Equation 1)

T clutch =−T eng — friction −J eng ·{dot over (w)} eng — tgt   (Equation 2),

and the engine rotational inertia is a pre-recognized value, the engine target speed is a predetermined value, and the engine friction torque is obtained through a predetermined test, and

wherein pressure (F) applied to the engine clutch is calculated by Equation (3) below,

F clutch =Friction coefficient×Effective radius×The number of friction surfaces×Sign  (Equation 3),

and the friction coefficient, the effective radius, and the number of friction surfaces are values determined according to a design specification of the engine clutch, and the sign is positive (+) when delta RPM is equal to or greater than 0, and the sign is negative (−) when delta RPM is smaller than 0.

4. A non-transitory computer-readable recording medium comprising computer executable instructions of which cause a controller to perform the method according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 5, 2013
From: KIM, SANG JOON
To: HYUNDAI MOTOR COMPANY
Reel/Frame 031725/0851 →
Priority Claims (1)
KR 10-2013-0070450 · Jun 19, 2013 · national
Continuity (1)
Related Publication 20140379184A1 · Dec 25, 2014