IP Library Granted Patent US 10,875,386
Granted Patent B2
US 10,875,386 · App. 15/244,426 · Granted Dec 29, 2020

Variable compressor control for vehicle air conditioning

Inventors: David W. Cosgrove (Royal Oak, MI); Hidekazu Hirabayashi (Ann Arbor, MI); Stefan Young (Ann Arbor, MI); Daniel B. Gidcumb (West Bloomfield, MI)
Assignee: Toyota Motor Engineering & Manufacturing North America, Inc.
B60H1/3208B60H2001/327B60H2001/3266
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Quick Facts
Patent No.
US 10,875,386
App. No.
15/244,426
Granted
Dec 29, 2020
Kind
B2
Abstract

A vehicle heating, ventilating, and air conditioning (HVAC) system having a variable compressor can reduce a load applied to a vehicle powertrain during certain conditions. Systems and methods can determine if a power state of an HVAC system is activated, and whether an engine water temperature meets a forced HVAC recirculation intake threshold. Responsive to determining that the engine water temperature meets the forced HVAC recirculation intake threshold, a recirculation mode air source can be selected for the HVAC system. Responsive to the recirculation mode air source being selected, determining if at least one measured vehicle condition meets predetermined criteria. Responsive to determining that the at least one measured vehicle condition meets the predetermined criteria, the variable compressor can be operated according to a reduced duty map.

Claims (28)

1. A method of operating a heating, ventilating, and air conditioning (HVAC) system in a vehicle, the HVAC system including a variable compressor, the method sequentially comprising:

determining whether an engine water temperature is greater than or equal to a forced HVAC recirculation intake threshold;

responsive to determining that the engine water temperature is greater than or equal to the forced HVAC recirculation intake threshold, causing a recirculation mode air source to be selected without interrupting the operation of the variable compressor;

responsive to recirculation mode air source being selected, determining whether a fuel increasing control is on;

responsive to determining that the fuel increasing control is on, operating the variable compressor according to a reduced duty map, the reduced duty map including the variable compressor in an active state;

responsive to determining that the fuel increasing control is not on, determining whether the following vehicle conditions are met:

an engine oil temperature is above a predetermined engine oil temperature value;

a transmission oil temperature is above a predetermined transmission oil temperature value; and

an exhaust gas temperature is above a predetermined exhaust gas temperature value;

responsive to determining that at least one of the vehicle conditions is met, operating the variable compressor according to the reduced duty map; and

responsive to determining that none of the vehicle conditions are met, operating the variable compressor according to a normal duty map.

2. The method of claim 1 , wherein the reduced duty map includes lower max duties for a range of speeds of the variable compressor.

3. A vehicle heating, ventilating, and air conditioning (HVAC) system comprising:

a sensor system, the sensor system including a fuel control sensor, an engine oil temperature sensor, a transmission oil temperature sensor, and an exhaust gas temperature sensor;

an intake mode switch to select a source of air for an intake for the HVAC system;

a variable compressor configured for variable displacement according to a first duty map;

a controller operatively connected to the sensor system, the controller being programmed to initiate executable operations sequentially comprising:

determining whether an engine water temperature is greater than or equal to a forced HVAC recirculation intake threshold;

responsive to determining that the engine water temperature is greater than or equal to the forced HVAC recirculation threshold, causing the intake mode switch to select a recirculation mode air source without interrupting the operation of the variable compressor;

responsive to the recirculation mode air source being selected, determining whether a fuel increasing control is on;

responsive to determining that the fuel increasing control is on, operating the variable compressor according to a reduced duty map, the reduced duty map including the variable compressor in an active state;

responsive to determining that the fuel increasing control is not on, determining whether the following vehicle conditions are met:

an engine oil temperature is greater than a predetermined engine oil temperature value;

a transmission oil temperature is greater than a predetermined transmission oil temperature value; and

an exhaust gas temperature is greater than a predetermined exhaust gas temperature value;

responsive to determining that at least one of the vehicle conditions is met, operating the variable compressor according to the reduced duty map; and

responsive to determining that none of the vehicle conditions are met, operating the variable compressor according to the first duty map.

4. The system of claim 3 , wherein the reduced duty map includes lower max duties for a range of speeds of the variable compressor.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2021
From: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 055312/0539 →
CHANGE OF ADDRESS Recorded Nov 30, 2018
From: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
To: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 047688/0784 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 27, 2016
From: COSGROVE, DAVID W.; HIRABAYASHI, HIDEKAZU; YOUNG, STEFAN; GIDCUMB, DANIEL B.
To: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 039862/0488 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2016
From: COSGROVE, DAVID W.; HIRABAYASHI, HIDEKAZU; YOUNG, STEFAN; GIDCUMB, DANIEL B.
To: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.
Reel/Frame 039855/0632 →
Continuity (1)
Related Publication 20180056753A1 · Mar 1, 2018