IP Library › Granted Patent US 7,996,124
Granted Patent B2
US 7,996,124 · App. 12/228,218 · Granted Aug 9, 2011

Method for controlling fuel cell vehicle

Assignee: Hyundai Motor Company
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Quick Facts
Patent No.
US 7,996,124
App. No.
12/228,218
Granted
Aug 9, 2011
Kind
B2
Abstract

In one aspect a method for controlling a fuel cell vehicle is provided, comprising generating a torque (T ACCEL ) calculated based or an accelerator pedal depression value upon completion of start-up of a fuel cell and entering a fuel cell only mode; performing a torque limit control for the torque (T ACCEL ) calculated based on the accelerator pedal depression value; performing charging from the fuel cell to a power storage means while the vehicle moves slowly by the torque limit control under the fuel cell only mode; and directly connecting the fuel cell to the power storage means by a main relay to enter a hybrid mode, when a voltage difference between the fuel cell and the power storage means is within a predetermined range. Preferred methods can protect the fuel cell, reduce the time for vehicle start-up and improve driving performance.

Claims (15)

1. A method for controlling a fuel cell vehicle, the method comprising:

generating a torque (T ACCEL ) calculated based on an accelerator pedal depression value upon completion of start-up of a fuel cell and entering a fuel cell only mode;

performing a torque limit control for the torque (T ACCEL ) calculated based on the accelerator pedal depression value;

performing charging from the fuel cell to a power storage means while the vehicle moves slowly by the torque limit control under the fuel cell only mode; and

directly connecting the fuel cell to the power storage means by a main relay to enter a hybrid mode, when a voltage difference between the fuel cell and the power storage means is within a predetermined range,

wherein the charging of the power storage means is performed by a current limit control according to a duty ratio control of an insulated gate bipolar transistor (IGBT) of an initial charging device, connected between the fuel cell and the power storage means, before the fuel cell and the power storage means are directly connected.

2. The method of claim 1 , wherein, in the torque limit control, the torque (T ACCEL ) calculated based on the accelerator pedal depression value is obtained by multiplying a maximum motor torque (T MAX ) by an accelerator pedal depression value (β Dep : 0 to 1), and a limited torque is calculated by multiplying the torque (T ACCEL ) by a torque correction factor (α) having a constant value.

3. The method of claim 2 , wherein the torque correction factor (α) is gradually increased when the fuel cell only mode is changed to the hybrid mode, where the fuel cell and the power storage means are directly connected and, if the torque correction factor (α) is increased up to a predetermined maximum value, a normal operation is performed without any torque limit control.

4. A method for controlling a fuel cell vehicle, the method comprising:

generating a torque (T ACCEL ) calculated based on an accelerator pedal depression value upon completion of start-up of a fuel cell and entering a fuel cell only mode;

performing a torque limit control for the torque (T ACCEL ) calculated based on the accelerator pedal depression value;

performing charging from the fuel cell to a power storage means while the vehicle moves slowly by the torque limit control under the fuel cell only mode; and

directly connecting the fuel cell to the power storage means by a main relay to enter a hybrid mode, when a voltage difference between the fuel cell and the power storage means is within a predetermined range,

wherein, in the torque limit control, the torque (T ACCEL ) calculated based on the accelerator pedal depression value is obtained by multiplying a maximum motor torque (T MAX ) by an accelerator pedal depression value (β Dep : 0 to 1), and a limited torque is calculated by multiplying the torque (T ACCEL ) by a torque correction factor (α) having a constant value.

5. The method of claim 4 , wherein the torque correction factor (α) is gradually increased when the fuel cell only mode is changed to the hybrid mode, where the fuel cell and the power storage means are directly connected and, if the torque correction factor (α) is increased up to a predetermined maximum value, a normal operation is performed without any torque limit control.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2008
From: KWON, SANG UK; JEON, SOON II
To: HYUNDAI MOTOR COMPANY
Reel/Frame 021427/0177 →
Priority Claims (1)
KR 10-2008-0018722 · Feb 29, 2008 · national
Continuity (1)
Related Publication 20090222157A1 · Sep 3, 2009