US2019375393A1PendingUtilityA1

Apparatus and method for controlling start of engine for mild hybrid electric vehicle

Assignee: HYUNDAI MOTOR CO LTDPriority: Sep 9, 2016Filed: Aug 22, 2019Published: Dec 12, 2019
Est. expirySep 9, 2036(~10.1 yrs left)· nominal 20-yr term from priority
Inventors:Hwa Yong Jang
H02J 2105/30H02J 7/90B60K 6/485B60W 2556/50B60W 2555/20H02J 7/342B60W 10/06F02N 11/0803B60L 50/61F02N 11/0862B60W 2710/08B60L 2260/50H02J 7/34F02N 2011/0888B60W 10/08F02N 11/0866B60L 2240/62Y02T90/16F02N 2300/2002B60L 58/12F02N 11/04F02N 2300/2011B60W 10/26B60W 2510/244Y10S903/93B60L 2210/10B60W 2710/06B60Y 2200/92B60L 50/16B60K 6/26H02J 7/1423B60R 16/03B60W 2710/248B60K 6/442B60W 20/12B60W 2550/402B60W 2550/12B60W 20/10Y02T90/12Y02T90/14B60L 53/53B60L 53/24B60L 58/13B60W 20/13B60L 58/10Y02T10/72Y02T10/62Y02T10/7072Y02T10/70
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Claims

Abstract

An apparatus for controlling a start of an engine for a mild hybrid electric vehicle includes: a mild hybrid starter & generator (MHSG) starting an engine; a first battery connected to the MHSG through a first power cable and supplying electric power to the MHSG; a low voltage DC-DC converter (LDC) converting voltage supplied from the first battery into low voltage; a second battery supplying the low voltage to an electric load that uses the low voltage; an ignition switch including a first contact point and a second contact point; a data detector detecting data for controlling the engine start for a mild hybrid electric vehicle; and a controller determining whether a charging condition of the second battery is satisfied based on the data, and charging the second battery with electric power of the first battery when the charging condition of the second battery is satisfied.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . An apparatus for controlling a start of an engine for a mild hybrid electric vehicle, the apparatus comprising:
 a mild hybrid starter and generator (MHSG) which starts an engine or generates electric power by using an output of the engine;   a first battery which is connected to the MHSG through a first power cable and supplies electric power to the MHSG or is charged with electric power generated by the MHSG;   a low voltage DC-DC converter (LDC) which converts voltage supplied from the first battery into a low voltage;   a second battery which supplies the low voltage to an electric load that uses the low voltage;   an ignition switch which includes a first contact point and a second contact point;   a data detector which detects data for controlling the engine start of a mild hybrid electric vehicle; and   a controller which determines whether a charging condition of the second battery is satisfied based on the data, and charges the second battery with electric power of the first battery when the charging condition of the second battery is satisfied,   wherein the MHSG is connected with the second battery through a second power cable, and   wherein the controller compares an estimated time with a reference time when a destination is set, and determines whether the charging condition of the second battery is satisfied when the estimated time is shorter than the reference time.   
     
     
         2 . An apparatus for controlling a start of an engine for a mild hybrid electric vehicle, the apparatus comprising:
 a mild hybrid starter and generator (MHSG) which starts an engine or generates electric power by using an output of the engine;   a first battery which is connected to the MHSG through a first power cable and supplies electric power to the MHSG or is charged with electric power generated by the MHSG;   a low voltage DC-DC converter (LDC) which converts voltage supplied from the first battery into a low voltage;   a second battery which supplies the low voltage to an electric load that uses the low voltage;   an ignition switch which includes a first contact point and a second contact point;   a data detector which detects data for controlling the engine start of a mild hybrid electric vehicle; and   a controller which determines whether a charging condition of the second battery is satisfied based on the data, and charges the second battery with electric power of the first battery when the charging condition of the second battery is satisfied,   wherein the MHSG is connected with the second battery through a second power cable, and   wherein the controller determines whether the first contact point of the ignition switch is selected when a destination is not set, and determines whether the charging condition of the second battery is satisfied when the first contact point of the ignition switch is selected.   
     
     
         3 . The apparatus of  claim 1 , wherein the charging condition of the second battery is satisfied when an outdoor temperature is equal to or lower than a reference temperature and a state of charge (SOC) of the second battery is equal to or lower than a first reference SOC. 
     
     
         4 . The apparatus of  claim 1 , wherein when the second contact point of the ignition switch is selected, the controller determines whether a discharging condition of the second battery is satisfied based on the data, and when the discharging condition of the second battery is satisfied, the controller starts the engine by supplying electric power of the second battery to the MHSG through the second power cable. 
     
     
         5 . The apparatus of  claim 4 , wherein the discharging condition of the second battery is satisfied when the SOC of the first battery is equal to or lower than a second reference SOC. 
     
     
         6 . The apparatus of  claim 4 , wherein when the discharging condition of the second battery is not satisfied, the controller starts the engine by supplying electric power of the first battery to the MHSG. 
     
     
         7 . The apparatus of  claim 1 , wherein the data detector includes:
 a navigation device which determines a route of the mild hybrid electric vehicle from a current position to the destination;   a first SOC sensor which detects the SOC of the first battery;   a second SOC sensor which detects the SOC of the second battery; and   an outdoor temperature sensor which detects an outdoor temperature outside the mild hybrid electric vehicle.   
     
     
         8 . The method of  claim 9 , wherein the step of determining whether the charging condition of the second battery is satisfied is performed when a destination is set and an estimated time is shorter than a reference time. 
     
     
         9 . A method for controlling a start of an engine for a mild hybrid electric vehicle, wherein the mild hybrid electric vehicle includes: a mild hybrid starter & generator (MHSG) which starts an engine or generates electric power by using an output of the engine; a first battery which is connected to the MHSG through a first power cable; a low voltage DC-DC converter (LDC) which converts voltage supplied from the first battery into low voltage; a second battery which is connected to the MHSG through a second power cable and supplies the low voltage to an electric load that uses the low voltage; and an ignition switch which includes a first contact point and a second contact point, the method comprising steps of:
 detecting, by a data detector, data for controlling the engine start; 
 determining, by a controller, whether a charging condition of the second battery is satisfied based on the data; 
 charging, by the controller, the second battery with electric power of the first battery when the charging condition of the second battery is satisfied; 
 determining, by the controller, whether a discharging condition of the second battery is satisfied based on the data when the second contact point of the ignition switch is selected; and 
 starting, by the controller, the engine by supplying electric power of the second battery to the MHSG through the second power cable when the discharging condition of the second battery is satisfied, 
 wherein the step of determining whether the charging condition of the second battery is satisfied is performed when the first contact point of the ignition switch is selected. 
 
     
     
         10 . The method of  claim 9 , wherein the charging condition of the second battery is satisfied when an outdoor temperature is equal to or lower than a reference temperature and a state of charge (SOC) of the second battery is equal to or lower than a first reference SOC. 
     
     
         11 . The method of  claim 9 , wherein the step of determining whether the discharging condition of the second battery is satisfied is performed when the second contact point of the ignition switch is selected. 
     
     
         12 . The method of  claim 9 , wherein the discharging condition of the second battery is satisfied when the SOC of the first battery is equal to or lower than a second reference SOC. 
     
     
         13 . The method of  claim 9 , further comprising starting the engine by supplying electric power of the first battery to the MHSG when the discharging condition of the second battery is not satisfied.

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