IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0308256
(2007-06-13)
|
등록번호 |
US-8527095
(2013-09-03)
|
우선권정보 |
JP-2006-166474 (2006-06-15) |
국제출원번호 |
PCT/JP2007/061928
(2007-06-13)
|
§371/§102 date |
20090406
(20090406)
|
국제공개번호 |
WO2007/145258
(2007-12-21)
|
발명자
/ 주소 |
- Kikuchi, Yoshiaki
- Omi, Yasumitsu
- Wakao, Shinji
- Tsuchiya, Takenori
- Katashima, Mikio
- Nakashima, Kazuhiko
- Ishihara, Tetsuya
|
출원인 / 주소 |
- Toyota Jidosha Kabushiki Kaisha
|
대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
5 인용 특허 :
9 |
초록
▼
A cooling system constructed to cool down an accumulator mounted on a motor vehicle is herein presented. The cooling system sequentially controls an air blower to restrict the air blow to the accumulator, controls the air blow mode switchover module to switch over the active air blow mode after rest
A cooling system constructed to cool down an accumulator mounted on a motor vehicle is herein presented. The cooling system sequentially controls an air blower to restrict the air blow to the accumulator, controls the air blow mode switchover module to switch over the active air blow mode after restriction of the air blow to the accumulator, and controls the air blower to release the restriction of the air blow to the accumulator after the switchover of the active air blow mode by the air blow mode switchover module.
대표청구항
▼
1. A cooling system for cooling down an accumulator mounted on a motor vehicle, the cooling system comprising: an air blower configured to have multiple air blow modes of taking in an intake air from different air flow paths within the cooling system and blowing the intake air to the accumulator;an
1. A cooling system for cooling down an accumulator mounted on a motor vehicle, the cooling system comprising: an air blower configured to have multiple air blow modes of taking in an intake air from different air flow paths within the cooling system and blowing the intake air to the accumulator;an air blow mode switchover module configured to changeover a status of each air flow path within the cooling system between an open position and a closed position in each of the multiple air blow modes to thereby switch over to an active air blow mode from among the multiple air blow modes;a noise level detection-estimation module configured to detect or estimate a noise level in a passenger compartment of the motor vehicle; anda controller configured, in response to a switch over demand of the active air blow mode during air blow to the accumulator, to perform an air blow restriction changeover control in a case that the detected or estimated noise level is less than a preset reference level, while controlling the air blow mode switchover module to switch over to the active air blow mode without restriction of the air blow to the accumulator in a case that the detected or estimated noise level is not less than the preset reference level, wherein the air blow restriction changeover control sequentially controls: i) the air blower to restrict the air blow to the accumulator, ii) the air blow mode switchover module to switch over to the active air blow mode after restriction of the air blow to the accumulator, and iii) the air blower to release the restriction of the air blow to the accumulator after the switch over to the active air blow mode by the air blow mode switchover module, andwhen a detected speed of the motor vehicle is not lower than a reference speed, a position of a damper is immediately changed over, andwhen a detected speed of the motor vehicle is lower than the reference speed, the air blower speed is restricted to a preset level, prior to changing over the position of the damper. 2. The cooling system in accordance with claim 1, wherein the cooling system is mounted on a motor vehicle equipped with an internal combustion engine,the noise level detection-estimation module has an engine rotation speed detector configured to detect a rotation speed of the internal combustion engine, andthe noise level detection-estimation module detects or estimates the noise level in the passenger compartment, based on the detected rotation speed of the internal combustion engine. 3. The cooling system in accordance with claim 1, wherein the cooling system is mounted on a motor vehicle equipped with an audio output module configured to output sound with an adjustable volume in the passenger compartment, andthe noise level detection-estimation module detects or estimates the noise level in the passenger compartment, based on a volume adjustment condition of the audio output module. 4. The cooling system in accordance with claim 1, wherein the motor vehicle is equipped with an air conditioner configured to condition air in the passenger compartment of the motor vehicle, andthe multiple air blow modes include a first air blow mode of taking in the air inside or outside of the passenger compartment of the motor vehicle and directly blowing the intake air to the accumulator and a second air blow mode of taking in the air cooled down by the air conditioner and blowing the cooled intake air to the accumulator. 5. The cooling system in accordance with claim 1, further comprising: a temperature-relevant parameter detector configured to detect a temperature-relevant parameter reflecting a temperature of the accumulator, whereinthe switch over demand of the active air blow mode is made based on the detected temperature-relevant parameter. 6. A method for controlling a cooling system, the cooling system including an air blower provided to have multiple air blow modes of taking in an intake air from different air flow paths within the cooling system and blowing the intake air to an accumulator mounted on a motor vehicle; and an air blow mode switchover module configured to changeover a status of each air flow path within the cooling system between an open position and a closed position in each of the multiple air blow modes to thereby switch over to an active air blow mode from among the multiple air blow modes, the method comprising: in response to a switch over demand of the active air blow mode during air blow to the accumulator, the method performs an air blow restriction changeover control in a case that a noise level in a passenger compartment of the motor vehicle is less than a preset reference level, while controlling the air blow mode switchover module to switch over to the active air blow mode without restriction of the air blow to the accumulator in a case that the noise level in the passenger compartment is not less than the preset reference level, wherein the air blow restriction changeover control sequentially controls: i) the air blower to restrict the air blow to the accumulator, ii) the air blow mode switchover module to switch over to the active air blow mode after restriction of the air blow to the accumulator, and iii) the air blower to release the restriction of the air blow to the accumulator after the switch over of the active air blow mode by the air blow mode switchover module,when a detected speed of the motor vehicle is not lower than a reference speed, a position of a damper is immediately changed over, andwhen a detected speed of the motor vehicle is lower than the reference speed, the air blower speed is restricted to a preset level, prior to changing over the position of the damper. 7. The method in accordance with claim 6, wherein the method performs the controlling in a motor vehicle equipped with an internal combustion engine, and the control method determines the noise level in the passenger compartment based on a rotation speed of the internal combustion engine and controls the air blow mode switchover module to switch over to the active air blow mode. 8. The method in accordance with claim 6, wherein the method performs the controlling in a motor vehicle equipped with an audio output device configured to output sound with an adjustable volume in the passenger compartment, andthe method determines the noise level in the passenger compartment based on a volume adjustment condition of the audio output device and controls the air blow mode switchover module to switch over to the active air blow mode.
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