IP Library Granted Patent US 12,629,987
Granted Patent B2
US 12,629,987 · App. 18/665,822 · Granted May 19, 2026

Cooling device for electrically driven vehicle

Inventors: Chinami Morishima (Aki-gun, JP); Kanichi Yamaguchi (Aki-gun, JP); Katsutoshi Taninaka (Aki-gun, JP)
Assignee: Mazda Motor Corporation
B60H1/3205B60H1/00278B60H1/00507B60H2001/006B60H2001/325B60H2001/3258B60H2001/3272B60H2001/3277B60K11/02B60L58/26
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Quick Facts
Patent No.
US 12,629,987
App. No.
18/665,822
Granted
May 19, 2026
Kind
B2
Abstract

When at least one of a first condition that a set compressor rotational speed is equal to or less than a compressor rotational speed limit set in advance based on a predetermined noise regulation value and a second condition that a set fan rotational speed is equal to or less than a fan rotational speed limit set in advance based on the predetermined noise regulation value is not satisfied, a cooling device sets a corrected compressor rotational speed such that noise generated with actuation of a compressor and a fan reaches the predetermined noise regulation value or less, and sets a corrected fan rotational speed based on the corrected compressor rotational speed. The cooling device sets a lower value of the corrected fan rotational speed for a higher corrected compressor rotational speed.

Claims (30)

1 . A cooling device for an electrically driven vehicle, the cooling device configured to cool, by utilizing a coolant, an electric drive part mounted on a vehicle, the cooling device comprising:

a compressor that compresses the coolant;

a fan that draws outside air into a condensing device that condenses, by cooling, the coolant compressed by the compressor;

an electric drive part temperature detector that detects a temperature of the electric drive part;

a coolant pressure detector that detects a pressure of the coolant compressed by the compressor; and

a controller that controls the compressor and the fan,

wherein the controller:

calculates a required cooling capability at least based on a detected result from the electric drive part temperature detector,

calculates a set compressor rotational speed, which is a rotational speed of the compressor based on the required cooling capability, and

calculates a set fan rotational speed, which is a rotational speed of the fan based on a detected result from the coolant pressure detector,

wherein when both of a first condition that the set compressor rotational speed is equal to or less than a compressor rotational speed limit set in advance based on a predetermined noise regulation value and a second condition that the set fan rotational speed is equal to or less than a fan rotational speed limit set in advance based on the predetermined noise regulation value are satisfied, the controller actuates the compressor and the fan at the set compressor rotational speed and the set fan rotational speed, respectively,

wherein when at least one of the first condition and the second condition is not satisfied, the controller sets a corrected compressor rotational speed such that noise generated with actuation of the compressor and the fan reaches the predetermined noise regulation value or less, and the controller sets a corrected fan rotational speed based on the corrected compressor rotational speed, and actuates the compressor and the fan at the corrected compressor rotational speed and the corrected fan rotational speed, respectively, and

wherein the controller sets a lower value of the corrected fan rotational speed for a higher corrected compressor rotational speed,

wherein the controller sets the corrected compressor rotational speed and the corrected fan rotational speed such that the generated noise reaches the predetermined noise regulation value.

2 . The cooling device according to claim 1 , further comprising an outside air temperature detector that detects a temperature of the outside air,

wherein the controller sets the corrected compressor rotational speed and the corrected fan rotational speed by further taking into account the temperature of the outside air.

3 . The cooling device according to claim 1 , wherein for a plurality of combinations of the rotational speed of the compressor and the rotational speed of the fan at which the generated noise reaches the predetermined noise regulation value, the controller obtains cooling capabilities and sets a combination, among the plurality of combinations, having a cooling capability closest to the required cooling capability for the corrected compressor rotational speed and the corrected fan rotational speed.

4 . The cooling device according to claim 2 , wherein for a plurality of combinations of the rotational speed of the compressor and the rotational speed of the fan at which the generated noise reaches the predetermined noise regulation value, the controller obtains cooling capabilities and sets a combination, among the plurality of combinations, having a cooling capability closest to the required cooling capability for the corrected compressor rotational speed and the corrected fan rotational speed.

5 . The cooling device according to claim 3 , wherein when the combination includes more than one combination having the cooling capability closest to the required cooling capability, the controller sets a combination, among the more than one combination, having a lowest rotational speed of the compressor for the corrected compressor rotational speed and the corrected fan rotational speed.

6 . The cooling device according to claim 4 , wherein when the combination includes more than one combination having the cooling capability closest to the required cooling capability, the controller sets a combination, among the more than one combination, having a lowest rotational speed of the compressor for the corrected compressor rotational speed and the corrected fan rotational speed.

7 . The cooling device according to claim 1 ,

wherein the controller:

calculates a first compressor rotational speed candidate and a first fan rotational speed candidate, the first compressor rotational speed candidate being higher than the compressor rotational speed limit by a fixed rotational speed, the first fan rotational speed candidate being based on the first compressor rotational speed candidate, and

calculates a second compressor rotational speed candidate and a second fan rotational speed candidate, the second compressor rotational speed candidate being lower than the compressor rotational speed limit by the fixed rotational speed, the second fan rotational speed candidate being based on the second compressor rotational speed candidate, and

wherein for a first combination of the compressor rotational speed limit and the fan rotational speed limit, a second combination of the first compressor rotational speed candidate and the first fan rotational speed candidate, and a third combination of the second compressor rotational speed candidate and the second fan rotational speed candidate, the controller obtains cooling capabilities and the controller sets a combination, among the first, second, and third combinations, having a cooling capability closest to the required cooling capability for the corrected compressor rotational speed and the corrected fan rotational speed.

8 . The cooling device according to claim 2 ,

wherein the controller:

calculates a first compressor rotational speed candidate and a first fan rotational speed candidate, the first compressor rotational speed candidate being higher than the compressor rotational speed limit by a fixed rotational speed, the first fan rotational speed candidate being based on the first compressor rotational speed candidate, and

calculates a second compressor rotational speed candidate and a second fan rotational speed candidate, the second compressor rotational speed candidate being lower than the compressor rotational speed limit by the fixed rotational speed, the second fan rotational speed candidate being based on the second compressor rotational speed candidate, and

wherein for a first combination of the compressor rotational speed limit and the fan rotational speed limit, a second combination of the first compressor rotational speed candidate and the first fan rotational speed candidate, and a third combination of the second compressor rotational speed candidate and the second fan rotational speed candidate, the controller obtains cooling capabilities and the controller sets a combination, among the first, second, and third combinations, having a cooling capability closest to the required cooling capability for the corrected compressor rotational speed and the corrected fan rotational speed.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2024
From: MORISHIMA, CHINAMI; YAMAGUCHI, KANICHI; TANINAKA, KATSUTOSHI
To: MAZDA MOTOR CORPORATION
Reel/Frame 067432/0881 →
Priority Claims (1)
JP 2023-104014 · Jun 26, 2023 · national
Continuity (1)
Related Publication 20240424866A1 · Dec 26, 2024
References Cited (13)
US 11628704B2 · Bray · 2023 [cited by examiner]
US 20090002939A1 · Baugh · 2009 [cited by examiner]
US 20110146320A1 · Tomiyama · 2011 [cited by examiner]
US 20110176275A1 · Sato · 2011 [cited by examiner]
US 20120210741A1 · Fujiwara · 2012 [cited by examiner]
US 20150017492A1 · Takeuchi · 2015 [cited by examiner]
US 20190178548A1 · Lin · 2019 [cited by examiner]
US 20190219280A1 · Chitrala · 2019 [cited by examiner]
US 20210388752A1 · Chu · 2021 [cited by examiner]
US 20230116964A1 · Sun · 2023 [cited by examiner]
US 20230356561A1 · Srichai · 2023 [cited by examiner]
US 20250303818A1 · Zheng · 2025 [cited by examiner]
JP H10196364A · 1998 [cited by applicant]