IP Library › Granted Patent US 10,449,873
Granted Patent B2
US 10,449,873 · App. 16/052,786 · Granted Oct 22, 2019

Cooling apparatus for in-vehicle device

Inventors: Fumiyuki Moriya (Tokyo, JP); Yuichi Tanaka (Tokyo, JP); Hiroshi Ienaga (Tokyo, JP)
Assignee: SUBARU CORPORATION
B60L58/26B60W20/15B60W20/17B60L2240/36B60L2240/68
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Quick Facts
Patent No.
US 10,449,873
App. No.
16/052,786
Granted
Oct 22, 2019
Kind
B2
Abstract

A cooling apparatus for an in-vehicle device includes a cooler, a traffic congestion determining unit, a cooling amount calculator, and a cooler controller. The cooling amount calculator calculates first and second cooling amounts respectively based on a heat-generation amount of a heat-generating device and a noise level inside a vehicle. The cooler controller controls the cooler on the basis of a set cooling amount. The cooler controller controls the cooler to cool the heat-generating device on the basis of the set cooling amount larger than the first cooling amount and equal to or smaller than the second cooling amount and limits a decrease rate of the set cooling amount to be smaller than an increase rate of the set cooling amount, on a condition that the traveling road is determined by the traffic congestion determining unit as being congested and the first cooling amount is smaller than the second cooling amount.

Claims (44)

1. A cooling apparatus for an in-vehicle device comprising:

a cooler configured to generate an operating noise with loudness that is based on an output of the cooler, and cool a heat-generating device mounted on a vehicle;

a traffic congestion determining unit configured to determine, on a basis of a traveling state of the vehicle, whether a traveling road on which the vehicle travels is congested;

a cooling amount calculator configured to calculate a first cooling amount and a second cooling amount, the first cooling amount being based on a heat-generation amount of the heat-generating device, the second cooling amount being based on a noise level inside the vehicle; and

a cooler controller configured to control an operation of the cooler on a basis of a set cooling amount, the cooler controller being configured to control the cooler to cool the heat-generating device on a basis of the set cooling amount that is larger than the first cooling amount and equal to or smaller than the second cooling amount and limit a rate of decrease in the set cooling amount to be smaller than a rate of increase in the set cooling amount, on a condition that the traveling road is determined by the traffic congestion determining unit as being congested and the first cooling amount is smaller than the second cooling amount.

2. The cooling apparatus for an in-vehicle device according to claim 1 , wherein, on a condition that the traveling road is determined by the traffic congestion determining unit as being congested and the first cooling amount is smaller than the second cooling amount, the cooler controller gradually decreases the set cooling amount on a basis of an elapsed time of a state in which the traveling road is determined as being congested and the first cooling amount is smaller than the second cooling amount.

3. The cooling apparatus for an in-vehicle device according to claim 1 , wherein the cooler controller controls the cooler to cool the heat-generating device on a basis of the second cooling amount or a cooling amount that is smaller than the second cooling amount, on a condition that the traveling road is determined by the traffic congestion determining unit as being congested and the first cooling amount is equal to or more than the second cooling amount.

4. The cooling apparatus for an in-vehicle device according to claim 1 , wherein the second cooling amount comprises a heat-generating device cooling amount that is directed to cooling of the heat-generating device and based on a maximum rotation speed of the cooler, the maximum rotation speed of the cooler falling within a range of the noise level that does not give a sense of discomfort to an occupant of the vehicle.

5. The cooling apparatus for an in-vehicle device according to claim 1 , wherein

the cooler comprises a cooling fan, and

the cooler controller controls the cooling fan to cause a rate of change in a rotation speed of the cooling fan upon decreasing the rotation speed to be smaller than a rate of change in the rotation speed upon increasing the rotation speed.

6. The cooling apparatus for an in-vehicle device according to claim 1 , wherein

the vehicle comprises an electric vehicle, and

the heat-generating device comprises a high-voltage battery configured to store electric power directed to traveling of the electric vehicle.

7. A cooling apparatus for an in-vehicle device comprising:

a cooler that generates an operating noise with loudness that is based on an output of the cooler, and cools a heat-generating device mounted on a vehicle; and

circuitry configured to

determine, on a basis of a traveling state of the vehicle, whether a traveling road on which the vehicle travels is congested,

calculate a first cooling amount and a second cooling amount, the first cooling amount being based on a heat-generation amount of the heat-generating device, the second cooling amount being based on a noise level inside the vehicle,

control an operation of the cooler on a basis of a set cooling amount,

control the cooler to cool the heat-generating device on a basis of the set cooling amount that is larger than the first cooling amount and equal to or smaller than the second cooling amount, on a condition that the traveling road is determined as being congested and the first cooling amount is smaller than the second cooling amount, and

limit a rate of decrease in the set cooling amount to be smaller than a rate of increase in the set cooling amount, on the condition that the traveling road is determined as being congested and the first cooling amount is smaller than the second cooling amount.

8. The cooling apparatus for an in-vehicle device according to claim 2 , wherein the cooler controller controls the cooler to cool the heat-generating device on a basis of the second cooling amount or a cooling amount that is smaller than the second cooling amount, on a condition that the traveling road is determined by the traffic congestion determining unit as being congested and the first cooling amount is equal to or more than the second cooling amount.

9. The cooling apparatus for an in-vehicle device according to claim 2 , wherein the second cooling amount comprises a heat-generating device cooling amount that is directed to cooling of the heat-generating device and based on a maximum rotation speed of the cooler, the maximum rotation speed of the cooler falling within a range of the noise level that does not give a sense of discomfort to an occupant of the vehicle.

10. The cooling apparatus for an in-vehicle device according to claim 3 , wherein the second cooling amount comprises a heat-generating device cooling amount that is directed to cooling of the heat-generating device and based on a maximum rotation speed of the cooler, the maximum rotation speed of the cooler falling within a range of the noise level that does not give a sense of discomfort to an occupant of the vehicle.

11. The cooling apparatus for an in-vehicle device according to claim 8 , wherein the second cooling amount comprises a heat-generating device cooling amount that is directed to cooling of the heat-generating device and based on a maximum rotation speed of the cooler, the maximum rotation speed of the cooler falling within a range of the noise level that does not give a sense of discomfort to an occupant of the vehicle.

12. The cooling apparatus for an in-vehicle device according to claim 2 , wherein

the cooler comprises a cooling fan, and

the cooler controller controls the cooling fan to cause a rate of change in a rotation speed of the cooling fan upon decreasing the rotation speed to be smaller than a rate of change in the rotation speed upon increasing the rotation speed.

13. The cooling apparatus for an in-vehicle device according to claim 3 , wherein

the cooler comprises a cooling fan, and

the cooler controller controls the cooling fan to cause a rate of change in a rotation speed of the cooling fan upon decreasing the rotation speed to be smaller than a rate of change in the rotation speed upon increasing the rotation speed.

14. The cooling apparatus for an in-vehicle device according to claim 8 , wherein

the cooler comprises a cooling fan, and

the cooler controller controls the cooling fan to cause a rate of change in a rotation speed of the cooling fan upon decreasing the rotation speed to be smaller than a rate of change in the rotation speed upon increasing the rotation speed.

15. The cooling apparatus for an in-vehicle device according to claim 2 , wherein

the vehicle comprises an electric vehicle, and

the heat-generating device comprises a high-voltage battery configured to store electric power directed to traveling of the electric vehicle.

16. The cooling apparatus for an in-vehicle device according to claim 3 , wherein

the vehicle comprises an electric vehicle, and

the heat-generating device comprises a high-voltage battery configured to store electric power directed to traveling of the electric vehicle.

17. The cooling apparatus for an in-vehicle device according to claim 8 , wherein

the vehicle comprises an electric vehicle, and

the heat-generating device comprises a high-voltage battery configured to store electric power directed to traveling of the electric vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2018
From: MORIYA, FUMIYUKI; TANAKA, YUICHI; IENAGA, HIROSHI
To: SUBARU CORPORATION
Reel/Frame 046535/0058 →
Priority Claims (1)
JP 2017-172588 · Sep 8, 2017 · national
Continuity (1)
Related Publication 20190077274A1 · Mar 14, 2019