IP Library › Granted Patent US 8,972,089
Granted Patent B2
US 8,972,089 · App. 13/777,196 · Granted Mar 3, 2015

Hybrid vehicle

Inventors: Daigo Ando (Nagoya, JP); Yukio Kobayashi (Kasugai, JP)
Assignee: Toyota Jidosha Kabushiki Kaisha
B60W20/108B60W10/06B60W10/08F02D41/221F02D41/3094F02N11/0814Y10S903/93Y02T10/6286F02D2041/224Y02T10/48
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Quick Facts
Patent No.
US 8,972,089
App. No.
13/777,196
Granted
Mar 3, 2015
Kind
B2
Abstract

A hybrid vehicle having a controller controls output torque of an engine and output torque of a generator motor so as to apply requested torque to a drive shaft. The controller performs engine intermittent operation to stop operation of the engine when a given engine operation stop condition is satisfied, and start the engine when a given engine start condition is satisfied. The controller makes an in-cylinder injection valve abnormality determination while causing a total amount of fuel to be injected from an in-cylinder injection valve, and makes a port injection valve abnormality determination while causing the total amount of fuel to be injected from a port injection valve. If at least one of abnormality determinations concerning the in-cylinder injection valve and the port injection valve has not been made, the engine is operated so that the load of the engine falls within a predetermined range.

Claims (12)

1. A hybrid vehicle, comprising:

an internal combustion engine including an in-cylinder injection valve that directly injects fuel into a combustion chamber, and a port injection valve that injects the fuel into an intake port that communicates with the combustion chamber;

an electric motor;

a power transmission mechanism that couples a drive shaft of the hybrid vehicle with the internal combustion engine so that torque can be transmitted therebetween, and couples the drive shaft with the electric motor so that torque can be transmitted therebetween;

a driving force control unit that performs (i) normal operation to control output torque of the internal combustion engine and output torque of the electric motor so as to apply torque required to be applied to the drive shaft, which is determined according to an amount of accelerator operation by a user, to the drive shaft, and performs (ii) engine intermittent operation to stop operation of the internal combustion engine and control the output torque of the electric motor so that the required torque is applied to the drive shaft when determining that a given condition for stopping operation of the internal combustion engine is satisfied, and start the internal combustion engine when determining that a given condition for starting the internal combustion engine is satisfied; and

an abnormality determining unit that makes an in-cylinder injection valve abnormality determination as to whether an abnormality occurs to the in-cylinder injection valve while causing a total amount of fuel included in an air-fuel mixture supplied to the internal combustion engine to be injected from the in-cylinder injection valve, and makes a port injection valve abnormality determination as to whether an abnormality occurs to the port injection valve while causing the total amount of fuel included in the air-fuel mixture to be injected from the port injection valve, wherein:

the driving force control unit includes an intermittent operation inhibiting unit that inhibits execution of the engine intermittent operation and keeps operating the internal combustion engine when a given condition for inhibiting execution of the engine intermittent operation is satisfied, and an operation executing unit that operates the internal combustion engine so that a load of the internal combustion engine falls within a predetermined range, when at least one of the in-cylinder injection valve abnormality determination and the port injection valve abnormality determination has not been made, during a period in which execution of the engine intermittent operation is inhibited whereby the internal combustion engine is kept operating; and

the abnormality determining unit makes the in-cylinder injection valve abnormality determination and the port injection valve abnormality determination, when the load of the internal combustion engine falls within the predetermined range.

2. The hybrid vehicle according to claim 1 , wherein the abnormality determining unit makes the port injection valve abnormality determination when the in-cylinder injection valve abnormality determination is not being made.

3. The hybrid vehicle according to claim 1 , wherein the operation executing unit operates the internal combustion engine so that the load of the internal combustion engine becomes equal to or smaller than an upper limit load of the predetermined range, when at least one of the in-cylinder injection valve abnormality determination and the port injection valve abnormality determination has not been made, during the period in which execution of the engine intermittent operation is inhibited whereby the internal combustion engine is kept operating, and

the abnormality determining unit makes the in-cylinder injection valve abnormality determination and the port injection valve abnormality determination, when the load of the internal combustion engine is equal to or smaller than the upper limit load of the predetermined range.

4. The hybrid vehicle according to claim 1 , wherein the driving force control unit determines that the condition for inhibiting the engine intermittent operation is satisfied, when a warm-up condition of the engine has not reached a given warm-up condition after a system of the hybrid vehicle is started.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2013
From: ANDO, DAIGO; KOBAYASHI, YUKIO
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 029877/0162 →
Priority Claims (1)
JP 2012-041032 · Feb 28, 2012 · national
Continuity (1)
Related Publication 20130226380A1 · Aug 29, 2013