WO2017215141A1 - 冰箱的控制方法及装置 - Google Patents

冰箱的控制方法及装置 Download PDF

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Publication number
WO2017215141A1
WO2017215141A1 PCT/CN2016/099316 CN2016099316W WO2017215141A1 WO 2017215141 A1 WO2017215141 A1 WO 2017215141A1 CN 2016099316 W CN2016099316 W CN 2016099316W WO 2017215141 A1 WO2017215141 A1 WO 2017215141A1
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WO
WIPO (PCT)
Prior art keywords
refrigerator
preset
temperature
time interval
closed
Prior art date
Application number
PCT/CN2016/099316
Other languages
English (en)
French (fr)
Inventor
金松哲
闵龙
李凌云
Original Assignee
南京创维家用电器有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 南京创维家用电器有限公司 filed Critical 南京创维家用电器有限公司
Publication of WO2017215141A1 publication Critical patent/WO2017215141A1/zh

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D21/00Defrosting; Preventing frosting; Removing condensed or defrost water
    • F25D21/06Removing frost
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D29/00Arrangement or mounting of control or safety devices
    • F25D29/003Arrangement or mounting of control or safety devices for movable devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D29/00Arrangement or mounting of control or safety devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D2700/00Means for sensing or measuring; Sensors therefor
    • F25D2700/02Sensors detecting door opening

Definitions

  • the invention relates to the technical field of refrigerators, and in particular to a method and a device for controlling a refrigerator.
  • the refrigerator can operate normally according to the corresponding settings without frequent opening and closing of the door.
  • the invention provides a control method and device for a refrigerator, which aims to solve the technical problem that the defrosting is bad when the external environment temperature of the refrigerator is large and the door is operated frequently.
  • the present invention provides a method for controlling a refrigerator, and the method for controlling the refrigerator includes the following steps:
  • the present invention also provides a control device for a refrigerator, the control device of the refrigerator comprising:
  • the first judging module is configured to determine whether the number of times that the refrigerator door is continuously opened or closed during the preset first time interval is greater than a first preset number of times, wherein the refrigerator is opened or closed at the time of the last refrigerator The time interval between the time points when the door is opened or closed is less than the second preset time interval, and the number of times the refrigerator door is continuously opened or closed is updated, and the second preset time interval is smaller than the first time interval;
  • an adjusting module configured to increase a refrigerating on/off temperature and a defrosting stop temperature of the refrigerator when the number of times that the refrigerator door is continuously opened or closed is greater than the first preset number of times in the preset first time interval, and The number of times of the switch is cleared, wherein the duration of operation of the refrigerator according to the adjusted working mode is a first preset duration.
  • the invention determines whether the number of times that the refrigerator door is continuously opened or closed in a preset first time interval is greater than a first preset number of times, and then the refrigerator door is continuously opened or closed in a preset first time interval.
  • the number of times is greater than the first preset number of times, increasing the refrigerating on/off temperature and the defrosting stop temperature of the refrigerator, and clearing the number of times of the switch; and increasing the refrigerating on/off temperature of the refrigerator
  • the frost stops the temperature, so that the refrigerator operates according to the adjusted working mode within the first preset time period, which reduces the amount of frost generated in the refrigerator and improves the defrosting ability of the refrigerator, avoids the phenomenon of defrosting, and can avoid the refrigerator. Problems such as air duct freezing, cold storage and cold.
  • FIG. 1 is a schematic flow chart of a first embodiment of a method for controlling a refrigerator according to the present invention
  • FIG. 2 is a schematic diagram of a refinement process of determining whether the number of times that the number of switches of the refrigerator door is continuously opened or closed is greater than the first preset number in the preset first time interval in the second embodiment of the control method of the refrigerator of the present invention
  • FIG. 3 is a schematic flow chart of a third embodiment of a method for controlling a refrigerator according to the present invention.
  • FIG. 4 is a schematic diagram showing a refinement process of determining whether the number of times that the number of switches of the refrigerator door is continuously opened or closed is greater than the first preset number in the preset first time interval in the fourth embodiment of the control method of the refrigerator of the present invention
  • FIG. 5 is a schematic flow chart showing the steps of increasing the refrigerating on/off temperature and the defrosting stop temperature of the refrigerator in the fifth embodiment of the control method of the refrigerator according to the present invention
  • FIG. 6 is a schematic diagram of functional modules of a first embodiment of a control device for a refrigerator according to the present invention.
  • FIG. 7 is a schematic diagram of a refinement function module of a first judging module in a second embodiment of a control device for a refrigerator according to the present invention.
  • FIG. 8 is a schematic diagram of functional modules of a third embodiment of a control device for a refrigerator according to the present invention.
  • FIG. 9 is a schematic diagram of a refinement function module of a first judging module in a fourth embodiment of a control device for a refrigerator according to the present invention.
  • FIG. 10 is a schematic diagram of a refinement function module of an adjustment module in a fifth embodiment of a control device for a refrigerator according to the present invention.
  • the invention provides a method of controlling a refrigerator.
  • 1 is a schematic flow chart of a first embodiment of a method for controlling a refrigerator according to the present invention.
  • control method of the refrigerator includes:
  • Step S10 determining whether the number of times that the refrigerator door is continuously opened or closed during the preset first time interval is greater than a first preset number of times, wherein the refrigerator door is opened or closed at the time when the refrigerator door is opened or closed. Updating a time interval between time points less than a second preset time interval, updating a number of times that the refrigerator door is continuously opened or closed, the second preset time interval being smaller than the first time interval;
  • the refrigerator is provided with a door light switch for detecting whether the opening and closing door of the refrigerator is opened, and lighting the light in the refrigerator when the opening and closing door is opened, thereby obtaining the door light of the refrigerator in real time.
  • the switch information is then used to accurately determine whether the door of the refrigerator is opened or not based on the acquired door light switch information.
  • the update is The number of times the switch door of the refrigerator is turned on, specifically, the number of times of the switch is increased by 1, and the second preset time interval is smaller than the first time interval.
  • Step S20 increasing the refrigerating on/off temperature and the defrosting stop temperature of the refrigerator when the number of times that the refrigerator door is continuously opened or closed is greater than the first preset number of times in the preset first time interval.
  • the number of times of the switch is cleared, wherein the duration of operation of the refrigerator according to the adjusted working mode is a first preset duration.
  • the refrigerating opening temperature of the refrigerator, the refrigerating stop temperature and the defrosting stop temperature are increased, and the refrigerator is operated after being adjusted.
  • the working mode can reduce the amount of frost generated in the refrigerator and improve the defrosting ability of the refrigerator to avoid the phenomenon of defrosting, wherein the operating time of the refrigerator in the adjusted working mode is the first preset duration.
  • the refrigerator door is continuously opened or within a preset first time interval.
  • the number of closed switches is greater than the first preset number of times, the refrigerating on/off temperature and the defrosting stop temperature of the refrigerator are increased, and the number of times of switching is cleared; and the refrigerating on/off of the refrigerator is increased.
  • Temperature and defrosting stop temperature so that the refrigerator operates according to the adjusted working mode within the first preset time period, which reduces the amount of frost generated in the refrigerator and improves the defrosting ability of the refrigerator, thereby avoiding the phenomenon of defrosting, and It can avoid problems such as ice formation in the refrigerator, cold storage and cold.
  • step S10 includes:
  • step S11 when it is detected that the refrigerator door is opened or closed, and the current outdoor ambient temperature is greater than the preset temperature, the time interval between the time when the refrigerator door is opened or closed and the time when the last refrigerator door is opened or closed is obtained. ;
  • the preset temperature can be set by the user.
  • the preset temperature is 29 C°
  • the outdoor ambient temperature is collected by the temperature sensor.
  • Step S12 when the time interval is less than the second preset time interval, updating the number of times of switching of the refrigerator door;
  • updating the number of times of opening and closing the refrigerator door means adding 1 to the number of times of opening and closing the refrigerator door.
  • Step S13 when the number of times of the switch is greater than the first preset number of times, determining whether the time interval between the time point when the refrigerator door is opened or closed and the time when the first refrigerator door is opened or closed corresponding to the number of times of the switch is less than Determining a first time interval, wherein, when the time interval is less than the preset first time interval, determining that the number of consecutive opening or closing of the refrigerator door in the preset first time interval is greater than a first preset number of times;
  • the number of times of switching is cleared when the time interval between the time when the refrigerator door is opened or closed and the time when the first refrigerator door is opened or closed corresponding to the number of times of the switch is greater than or equal to the preset first time interval.
  • Step S14 when the time interval between the time when the refrigerator door is opened or closed and the time when the first refrigerator door is opened or closed corresponding to the number of times of the switch is greater than or equal to the preset first time interval, the refrigerator is The number of times the door is turned on is cleared.
  • the time point when the refrigerator door is opened or closed is obtained, and the time when the last refrigerator door is opened or closed.
  • Time interval when the time interval is less than the second preset time interval, updating the number of times of opening and closing of the refrigerator door, and then determining that the refrigerator door is opened or closed when the number of times of the switch is greater than the first preset number of times Whether the time interval between the time point of the first refrigerator door corresponding to the number of switches and the time when the first refrigerator door is opened or closed is less than a preset first time interval, wherein when the time interval is less than the preset first time interval, the determination is in advance The number of times that the refrigerator door is continuously opened or closed in the first time interval is greater than the first preset number of times, and it is determined whether the refrigerator needs to be accurately determined according to the preset first time interval and the preset second time interval. Refrigeration on/off temperature and defrosting stop temperature increase
  • control method of the refrigerator of the present invention is proposed based on the second embodiment.
  • the control method of the refrigerator further includes:
  • step S30 when the duration of the operation of the refrigerator according to the adjusted working mode reaches the second preset duration, it is determined whether the number of consecutively opening or closing the refrigerator door in the preset third time interval is greater than the second time. a preset number of times, wherein the second preset number of times is less than the first preset number of times, and the third time interval is smaller than the time interval obtained by subtracting the second preset duration from the first preset duration;
  • the execution continues when the refrigerator door is detected to be opened or closed, and the current outdoor ambient temperature is greater than the preset temperature.
  • step S40 when the number of times that the refrigerator door is continuously opened or closed is greater than the second preset number of times in the preset third time interval, the refrigerator is continuously operated according to the adjusted working mode within the first preset time period.
  • the duration of the operation of the refrigerator according to the adjusted working mode reaches the second preset duration, it is determined whether the number of times that the refrigerator door is continuously opened or closed during the preset third time interval is greater than And the second preset number of times, and then, when the number of times that the refrigerator door is continuously opened or closed is greater than the second preset number of times in the preset third time interval, continuing to operate according to the adjusted working mode within the first preset time period.
  • the refrigerator realizes that if the refrigerator is exiting the adjusted working mode, if there is a situation in which the refrigerator door is continuously opened or closed, the refrigerator is continuously operated according to the adjusted working mode within the first preset time period, thereby further reducing the refrigerator.
  • the resulting cream increases the defrosting ability of the refrigerator.
  • step S10 includes:
  • step S15 when it is detected that the refrigerator door is opened or closed, and the current outdoor ambient temperature is greater than the preset temperature, the time interval between the time when the refrigerator door is opened or closed and the time when the last refrigerator door is opened or closed is obtained. ;
  • the preset temperature can be set by the user.
  • the preset temperature is 29 C°
  • the outdoor ambient temperature is collected by the temperature sensor.
  • step S16 when the time interval is less than the second preset time interval, the number of times of opening and closing of the refrigerator door is updated, wherein the first time interval is greater than the first preset number of times and the second preset time.
  • the number of times of switching the door of the refrigerator is increased by one.
  • the first time interval is greater than the first preset number of times and the second preset time interval. The product of.
  • Step S17 when the time interval is greater than or equal to the second preset time interval, clearing the number of times of opening and closing of the refrigerator door;
  • step S18 it is determined whether the number of times of switching of the refrigerator door is greater than the first preset number of times, wherein, when the number of times of switching of the refrigerator door is greater than the first preset number of times, determining that the preset first time interval is The number of times the refrigerator door is continuously opened or closed is greater than the first preset number of times.
  • the time between the time when the refrigerator door is opened or closed and the time when the last refrigerator door is opened or closed is obtained.
  • the number of times of switching the refrigerator door is updated when the time interval is less than the second preset time interval, wherein the first time interval is greater than the first preset number of times and the second preset time
  • the refrigerating on/off temperature and the defrosting stop temperature increase the efficiency of increasing the refrigerating on/off temperature and defrosting stop temperature of the refrigerator.
  • step S20 includes:
  • Step S21 acquiring a current refrigerating on temperature, a refrigerating stop temperature, a defrost stop temperature, a first temperature threshold, and a second temperature threshold of the refrigerator;
  • the refrigerating opening temperature refers to the temperature inside the refrigerator when the evaporator of the refrigerator is started, and the temperature inside the refrigerator when the refrigerating stop temperature of the refrigerator is stopped.
  • the first temperature threshold refers to the pre-refrigeration of the refrigerator and the refrigerating stop temperature. Set a change value, specifically, the first temperature threshold can be set to 2 C°.
  • the defrosting stop temperature refers to the maximum operating temperature of the defroster of the refrigerator. When the temperature of the defroster exceeds the temperature, the defroster stops working, and the second temperature threshold refers to a preset change value of the defrosting stop temperature of the refrigerator.
  • Step S22 increasing the refrigerating on temperature and the refrigerating stop temperature based on the first temperature threshold, and increasing the defrosting stop temperature based on the second temperature threshold.
  • the refrigerating on temperature plus the first temperature threshold is used as a new refrigerating opening temperature
  • the refrigerating stop temperature is added to the first temperature threshold as a new refrigerating stop temperature
  • the defrost stop temperature is added to the first temperature threshold as The new defrosting stops the temperature.
  • the defrosting ability of the refrigerator further avoids the phenomenon of defrosting.
  • FIG. 6 is a schematic diagram of functional modules of a first embodiment of a control device for a refrigerator according to the present invention.
  • control device of the refrigerator includes:
  • the first judging module 10 is configured to determine whether the number of times that the refrigerator door is continuously opened or closed during the preset first time interval is greater than a first preset number of times, wherein the refrigerator door is opened or closed at the time of the previous time Updating a number of times that the refrigerator door is continuously opened or closed when the time interval between the time when the refrigerator door is opened or closed is less than the second preset time interval, and the second preset time interval is smaller than the first time interval;
  • the refrigerator is provided with a door light switch for detecting whether the opening and closing door of the refrigerator is opened, and lighting the light in the refrigerator when the opening and closing door is opened, thereby obtaining the door light of the refrigerator in real time.
  • the switch information is then used to accurately determine whether the door of the refrigerator is opened or not based on the acquired door light switch information.
  • the update is The number of times the switch door of the refrigerator is turned on, specifically, the number of times of the switch is increased by 1, and the second preset time interval is smaller than the first time interval.
  • the adjusting module 20 is configured to increase the refrigerating on/off temperature and the defrosting stop temperature of the refrigerator when the number of times that the refrigerator door is continuously opened or closed is greater than the first preset number of times in the preset first time interval. And clearing the number of times of the switch, wherein the duration of operation of the refrigerator according to the adjusted working mode is a first preset duration.
  • the adjustment module 20 increases the refrigerating opening temperature of the refrigerator, the refrigerating stop temperature, and the defrosting stop temperature, and the refrigerator operates at The adjusted working mode can reduce the amount of frost generated in the refrigerator and improve the defrosting ability of the refrigerator to avoid the phenomenon of defrosting, wherein the operating time of the refrigerator in the adjusted working mode is the first preset duration.
  • the first determining module 10 determines whether the number of times that the refrigerator door is continuously opened or closed within a preset first time interval is greater than a first preset number of times, and then is performed within a preset first time interval.
  • the adjustment module 20 increases the refrigerating on/off temperature and the defrosting stop temperature of the refrigerator, and clears the number of times of the switch;
  • the refrigerating on/off temperature and the defrosting stop temperature of the refrigerator enable the refrigerator to operate according to the adjusted working mode within the first preset time period, thereby reducing the amount of frost generated in the refrigerator and improving the defrosting ability of the refrigerator, and avoiding The phenomenon of poor defrosting occurs, and it is possible to avoid problems such as ice formation in the refrigerator, cold storage and cold.
  • the first determining module 10 includes:
  • the first obtaining unit 11 is configured to: when detecting that the refrigerator door is opened or closed, and the current outdoor ambient temperature is greater than a preset temperature, obtain a time between when the refrigerator door is opened or closed and when the last refrigerator door is opened or closed. time interval;
  • the preset temperature can be set by the user.
  • the preset temperature is 29 C°
  • the outdoor ambient temperature is collected by the temperature sensor.
  • the first updating unit 12 is configured to update the number of times of opening and closing the refrigerator door when the time interval is less than the second preset time interval;
  • updating the number of times of opening and closing the refrigerator door by the first updating unit 12 means adding 1 to the number of times of opening and closing the refrigerator door.
  • the determining unit 13 is configured to determine, when the number of times of the switch is greater than the first preset number of times, a time between a time point when the refrigerator door is opened or closed and a time point when the first refrigerator door is opened or closed corresponding to the number of times of the switch Whether the interval is less than the preset first time interval, wherein, when the time interval is less than the preset first time interval, determining that the number of consecutive opening or closing of the refrigerator door in the preset first time interval is greater than the first preset number of times;
  • the number of times of switching is cleared when the time interval between the time when the refrigerator door is opened or closed and the time when the first refrigerator door is opened or closed corresponding to the number of times of the switch is greater than or equal to the preset first time interval.
  • the first setting unit 14 is configured to: when a time interval between when the refrigerator door is opened or closed, a time interval between when the first refrigerator door is opened or closed corresponding to the number of times of the switch is greater than or equal to a preset first time interval , clear the number of times the refrigerator door is turned on and off.
  • the first acquiring unit 11 acquires the time point when the refrigerator door is opened or closed and the last refrigerator door is opened or closed.
  • the determining unit 13 determines whether the time interval between the time point when the refrigerator door is opened or closed and the time when the first refrigerator door is opened or closed corresponding to the number of times of the switch is less than a preset first time interval, wherein, at the time When the interval is less than the preset first time interval, it is determined that the number of consecutive opening or closing of the refrigerator door in the preset first time interval is greater than the first preset number of times, which is achieved according to the preset first time interval and the preset second time.
  • the time interval accurately determines whether it is necessary to
  • control device of the refrigerator further includes:
  • the second judging module 30 is configured to determine, when the duration of the operation of the refrigerator according to the adjusted working mode reaches the second preset duration, the switch that continuously opens or closes the refrigerator door within a preset third time interval. Whether the number of times is greater than the second preset time, wherein the second preset time is smaller than the first preset time, and the third time interval is smaller than the first preset time minus the second preset time time interval;
  • the execution continues when the refrigerator door is detected to be opened or closed, and the current outdoor ambient temperature is greater than the preset temperature.
  • the running module 40 is configured to continue to operate according to the adjusted working mode within the first preset time period when the number of times the switch of the refrigerator door is continuously opened or closed is greater than the second preset number of times in the preset third time interval. refrigerator.
  • the second determining module 30 determines that the refrigerator door is continuously opened or closed within a preset third time interval. Whether the number of times of the switch is greater than the second preset number of times, and then, when the number of times that the door of the refrigerator door is continuously opened or closed is greater than the second preset number of times in the preset third time interval, the running module 40 continues to follow the first preset time period.
  • the adjusted working mode runs the refrigerator, and when the refrigerator exits the adjusted working mode, if there is a situation in which the refrigerator door is continuously opened or closed, the operation mode is continued according to the adjusted working mode within the first preset time period.
  • the refrigerator further reduces the frost generated in the refrigerator and improves the defrosting ability of the refrigerator.
  • the first determining module 10 includes:
  • the second obtaining unit 15 is configured to: when detecting that the refrigerator door is opened or closed, and the current outdoor ambient temperature is greater than the preset temperature, acquire a time point when the refrigerator door is opened or closed and a time point when the last refrigerator door is opened or closed Time interval between
  • the preset temperature can be set by the user.
  • the preset temperature is 29 C°
  • the outdoor ambient temperature is collected by the temperature sensor.
  • the second updating unit 16 is configured to update the number of times of opening and closing the refrigerator door when the time interval is less than the second preset time interval, wherein the first time interval is greater than the first preset number of times and the The product of the second preset time interval;
  • the number of times of switching the door of the refrigerator is increased by one.
  • the first time interval is greater than the first preset number of times and the second preset time interval. The product of.
  • the second setting unit 17 is configured to clear the number of times of opening and closing the refrigerator door when the time interval is greater than or equal to the second preset time interval;
  • the determining unit 18 is configured to determine whether the number of times of opening and closing the refrigerator door is greater than the first preset number of times, wherein when the number of times of switching of the refrigerator door is greater than the first preset number of times, determining that the number is first The number of times the refrigerator door is continuously opened or closed continuously during the time interval is greater than the first preset number of times
  • the second acquiring unit 15 acquires the time point when the refrigerator door is opened or closed and the time when the last refrigerator door is opened or closed. a time interval between the points, and then when the time interval is less than the second preset time interval, the second updating unit 16 updates the number of times of switching of the refrigerator door, wherein the first time interval is greater than the first pre- Setting the number of times and the second preset time interval, and then determining unit 18 determines whether the number of times of switching of the refrigerator door is greater than the first preset number of times, and realizing the preset first time interval and the preset second
  • the time interval accurately determines whether it is necessary to increase the refrigerating on/off temperature and the defrosting stop temperature of the refrigerator, and increases the refrigerating on/off temperature and the defrosting stop temperature efficiency of the refrigerator.
  • the adjustment module 20 includes:
  • the third obtaining unit 21 is configured to acquire a current refrigerating on temperature, a refrigerating stop temperature, a defrosting stop temperature, a first temperature threshold, and a second temperature threshold of the refrigerator;
  • the refrigerating opening temperature refers to the temperature inside the refrigerator when the evaporator of the refrigerator is started, and the temperature inside the refrigerator when the refrigerating stop temperature of the refrigerator is stopped.
  • the first temperature threshold refers to the pre-refrigeration of the refrigerator and the refrigerating stop temperature. Set a change value, specifically, the first temperature threshold can be set to 2 C°.
  • the defrosting stop temperature refers to the maximum operating temperature of the defroster of the refrigerator. When the temperature of the defroster exceeds the temperature, the defroster stops working, and the second temperature threshold refers to a preset change value of the defrosting stop temperature of the refrigerator.
  • the adjusting unit 22 is configured to increase the refrigerating on temperature and the refrigerating stop temperature based on the first temperature threshold, and increase the defrosting stop temperature based on the second temperature threshold.
  • the adjusting unit 22 adds the refrigerating opening temperature plus the first temperature threshold as a new refrigerating opening temperature, the refrigerating stop temperature plus the first temperature threshold as a new refrigerating stop temperature, and adds the defrosting stop temperature to the first The temperature threshold is used as the new defrosting stop temperature.
  • the current refrigerating on temperature, the refrigerating stop temperature, the defrosting stop temperature, the first temperature threshold, and the second temperature threshold of the refrigerator are acquired by the third obtaining unit 21, and then the adjusting unit 22 increases based on the first temperature threshold.
  • the refrigerating opening temperature and the refrigerating stop temperature are increased, and the defrosting stop temperature is increased based on the second temperature threshold, and the frost generated in the refrigerator is lowered by increasing the refrigerating opening temperature and the refrigerating stop temperature, and the defrosting stop temperature is increased. Extend the defrosting time of the refrigerator, improve the defrosting ability of the refrigerator, and further avoid the phenomenon of defrosting.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Defrosting Systems (AREA)

Abstract

提供一种冰箱的控制方法,包括:判断在预设第一时间间隔内冰箱门连续打开或者关闭的开关次数是否大于第一预设次数;在预设第一时间间隔内冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大冰箱的冷藏开启/停止温度及化霜停止温度,并将开关次数清零。同时提供了一种冰箱的控制装置。该冰箱的控制方法和控制装置实现了增大冰箱的冷藏开启/停止温度及化霜停止温度,使冰箱在第一预设时长内按照调整后的工作模式运行,降低了冰箱内霜产生的量及提高了冰箱的化霜能力。

Description

冰箱的控制方法及装置
技术领域
本发明涉及冰箱技术领域,尤其涉及一种冰箱的控制方法及装置。
背景技术
目前,冰箱在运行过程中,在没有频繁开关门情况下,冰箱能够根据相应的设置正常运行。
但是,在冰箱所处外界环境温度较大、并且开关门动作比较频繁时,由于频繁的开关门导致热气侵入较多,蒸发器上就容易着霜,若此时冰箱依旧按照当前的设置运行,就容易产生化霜不良等问题。
发明内容
本发明提供一种冰箱的控制方法及装置,旨在解决在冰箱所处外界环境温度较大、并且开关门动作比较频繁时化霜不良的技术问题。
为实现上述目的,本发明提供的一种冰箱的控制方法,所述冰箱的控制方法包括以下步骤:
判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,其中,在冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔小于第二预设时间间隔,则更新冰箱门连续打开或者关闭的开关次数,所述第二预设时间间隔小于所述第一时间间隔;
在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零,其中,所述冰箱按照调整后的工作模式运行的时长为第一预设时长。
此外,为实现上述目的,本发明还提供一种冰箱的控制装置,所述冰箱的控制装置包括:
第一判断模块,用于判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,其中,在冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔小于第二预设时间间隔,则更新冰箱门连续打开或者关闭的开关次数,所述第二预设时间间隔小于所述第一时间间隔;
调整模块,用于在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零,其中,所述冰箱按照调整后的工作模式运行的时长为第一预设时长。
本发明通过判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,接着在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零;实现了增大所述冰箱的冷藏开启/停止温度及化霜停止温度,使冰箱在第一预设时长内按照调整后的工作模式运行,降低了冰箱内霜产生的量及提高了冰箱的化霜能力,避免发生化霜不良的现象,并能够避免冰箱产生风道结冰、冷藏过冷等问题。
附图说明
图1为本发明冰箱的控制方法第一实施例的流程示意图;
图2为本发明冰箱的控制方法第二实施例中判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数步骤的细化流程示意图;
图3为本发明冰箱的控制方法第三实施例的流程示意图;
图4为本发明冰箱的控制方法第四实施例中判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数步骤的细化流程示意图;
图5为本发明冰箱的控制方法第五实施例中增大所述冰箱的冷藏开启/停止温度及化霜停止温度步骤的细化流程示意图;
图6为本发明冰箱的控制装置第一实施例的功能模块示意图;
图7为本发明冰箱的控制装置第二实施例中第一判断模块的细化功能模块示意图;
图8为本发明冰箱的控制装置第三实施例的功能模块示意图;
图9为本发明冰箱的控制装置第四实施例中第一判断模块的细化功能模块示意图;
图10为本发明冰箱的控制装置第五实施例中调整模块的细化功能模块示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明提供一种冰箱的控制方法。参照图1,图1为本发明冰箱的控制方法第一实施例的流程示意图。
在本实施例中,该冰箱的控制方法包括:
步骤S10,判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,其中,在冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔小于第二预设时间间隔,则更新冰箱门连续打开或者关闭的开关次数,所述第二预设时间间隔小于所述第一时间间隔;
一般情况下,冰箱均设有门灯开关,该门灯开关用于检测冰箱的开关门是否被打开,并在开关门被打开时点亮冰箱内的灯,因此,通过实时获取冰箱的门灯开关信息,而后根据获取到的门灯开关信息能够准确的确定冰箱的开关门是否被打开。在检测到所述冰箱的开关门被打开时,若冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔小于第二预设时间间隔,则更新所述冰箱的开关门的开关次数,具体地,将开关次数加1,并且第二预设时间间隔小于所述第一时间间隔。
步骤S20,在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零,其中,所述冰箱按照调整后的工作模式运行的时长为第一预设时长。
在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大冰箱的冷藏开启温度及冷藏停止温度和化霜停止温度,冰箱运行在调整后的工作模式能够降低冰箱内霜产生的量及提高了冰箱的化霜能力,避免发生化霜不良的现象,其中,冰箱在调整后的工作模式运行的时长为第一预设时长。
本实施例中,通过判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,接着在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零;实现了增大所述冰箱的冷藏开启/停止温度及化霜停止温度,使冰箱在第一预设时长内按照调整后的工作模式运行,降低了冰箱内霜产生的量及提高了冰箱的化霜能力,避免发生化霜不良的现象,并能够避免冰箱产生风道结冰、冷藏过冷等问题。
基于第一实施例提出本发明冰箱的控制方法的第二实施例,参照图2,在本实施例中,步骤S10包括:
步骤S11,在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔;
其中,预设温度可以由用户进行设定,例如,预设温度为29C°,室外环境温度由温度传感器采集。通过获取此次冰箱门打开或者关闭的时间点以及上一次冰箱门打开或者关闭的时间点,然后计算得到时间间隔,具体地,由此次冰箱门打开或者关闭的时间点减去上一次冰箱门打开或者关闭的时间点得到时间间隔。
步骤S12,在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数;
具体地,更新所述冰箱门的开关次数是指将所述冰箱门的开关次数加1。
步骤S13,在所述开关次数大于第一预设次数时,确定此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔是否小于预设第一时间间隔,其中,在时间间隔小于预设第一时间间隔时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数;
在此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔大于或等于预设第一时间间隔时,将开关次数清零。
步骤S14,在此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔大于或等于预设第一时间间隔时,将所述冰箱门的开关次数清零。
通过上述方案实现开关次数的清零,便于后续继续通过该开关次数进行计数,实现了冰箱控制的连续及稳定性。
本实施例中,通过在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔,接着在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数,而后在所述开关次数大于第一预设次数时,确定此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔是否小于预设第一时间间隔,其中,在时间间隔小于预设第一时间间隔时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数,实现了根据预设第一时间间隔及预设第二时间间隔准确的判定是否需要增大所述冰箱的冷藏开启/停止温度及化霜停止温度,提高了增大所述冰箱的冷藏开启/停止温度及化霜停止温度效率。
基于第二实施例提出本发明冰箱的控制方法的第三实施例,参照图3,在本实施例中,在步骤S20之后,该冰箱的控制方法还包括:
步骤S30,在所述冰箱按照调整后的工作模式运行的时长达到所述第二预设时长时,判断在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第二预设次数,其中,所述第二预设次数小于所述第一预设次数,所述第三时间间隔小于所述第一预设时长减去第二预设时长得到的时间间隔;
在冰箱按照调整后的工作模式运行的过程中,运行的时长达到所述第二预设时长时,继续执行在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔,及在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数。
步骤S40,在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第二预设次数时,继续在第一预设时长内按照调整后的工作模式运行所述冰箱。
本实施例通过在所述冰箱按照调整后的工作模式运行的时长达到所述第二预设时长时,判断在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第二预设次数,接着在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第二预设次数时,继续在第一预设时长内按照调整后的工作模式运行所述冰箱,实现了在冰箱退出调整后的工作模式时,若存在连续打开或者关闭冰箱门的情况,则继续在第一预设时长内按照调整后的工作模式运行所述冰箱,进一步降低了冰箱内产生的霜并提高了冰箱的化霜能力。
基于第一实施例提出本发明冰箱的控制方法的第四实施例,参照图4,在本实施例中,步骤S10包括:
步骤S15,在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔;
其中,预设温度可以由用户进行设定,例如,预设温度为29C°,室外环境温度由温度传感器采集。通过获取此次冰箱门打开或者关闭的时间点以及上一次冰箱门打开或者关闭的时间点,然后计算得到时间间隔,具体地,由此次冰箱门打开或者关闭的时间点减去上一次冰箱门打开或者关闭的时间点得到时间间隔。
步骤S16,在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数,其中,所述第一时间间隔大于所述第一预设次数与所述第二预设时间间隔的乘积;
具体地,更新所述冰箱门的开关次数是指将所述冰箱门的开关次数加1,本实施例中,第一时间间隔大于所述第一预设次数与所述第二预设时间间隔的乘积。
步骤S17,在所述时间间隔大于或等于第二预设时间间隔时,将所述冰箱门的开关次数清零;
步骤S18,判断所述冰箱门的开关次数是否大于所述第一预设次数,其中,在所述冰箱门的开关次数大于所述第一预设次数时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数。
本实施例通过在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔,接着在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数,其中,所述第一时间间隔大于所述第一预设次数与所述第二预设时间间隔的乘积,而后判断所述冰箱门的开关次数是否大于所述第一预设次数,实现了根据预设第一时间间隔及预设第二时间间隔准确的判定是否需要增大所述冰箱的冷藏开启/停止温度及化霜停止温度,提高了增大所述冰箱的冷藏开启/停止温度及化霜停止温度效率。
基于第一实施例提出本发明冰箱的控制方法的第五实施例,参照图5,在本实施例中,步骤S20包括:
步骤S21,获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
其中,冷藏开启温度是指冰箱的蒸发器的启动时冰箱内部的温度,冷藏停止温度冰箱的蒸发器的停止时冰箱内部的温度,第一温度阈值是指冰箱冷藏开启温度、冷藏停止温度的预设变化值,具体地,第一温度阈值可以设置为2 C°。化霜停止温度是指冰箱的化霜器的最高工作温度,在化霜器的温度超过该温度时,化霜器停止工作,第二温度阈值是指冰箱化霜停止温度的预设变化值。
步骤S22,基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
具体地,将冷藏开启温度加上第一温度阈值作为新的冷藏开启温度,将冷藏停止温度加上第一温度阈值作为新的冷藏停止温度,并将化霜停止温度加上第一温度阈值作为新的化霜停止温度。
本实施例通过获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值,接着基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度,通过提高冷藏开启温度、冷藏停止温度降低冰箱内产生的霜,通过提高化霜停止温度延长冰箱的化霜时间,提高冰箱的化霜能力,进一步避免发生化霜不良的现象。
本发明进一步提供一种冰箱的控制装置。参照图6,图6为本发明冰箱的控制装置第一实施例的功能模块示意图。
在本实施例中,该冰箱的控制装置包括:
第一判断模块10,用于判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,其中,在冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔小于第二预设时间间隔,则更新冰箱门连续打开或者关闭的开关次数,所述第二预设时间间隔小于所述第一时间间隔;
一般情况下,冰箱均设有门灯开关,该门灯开关用于检测冰箱的开关门是否被打开,并在开关门被打开时点亮冰箱内的灯,因此,通过实时获取冰箱的门灯开关信息,而后根据获取到的门灯开关信息能够准确的确定冰箱的开关门是否被打开。在检测到所述冰箱的开关门被打开时,若冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔小于第二预设时间间隔,则更新所述冰箱的开关门的开关次数,具体地,将开关次数加1,并且第二预设时间间隔小于所述第一时间间隔。
调整模块20,用于在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零,其中,所述冰箱按照调整后的工作模式运行的时长为第一预设时长。
在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,调整模块20增大冰箱的冷藏开启温度及冷藏停止温度和化霜停止温度,冰箱运行在调整后的工作模式能够降低冰箱内霜产生的量及提高了冰箱的化霜能力,避免发生化霜不良的现象,其中,冰箱在调整后的工作模式运行的时长为第一预设时长。
本实施例中,通过第一判断模块10判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,接着在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时调整模块20,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零;实现了增大所述冰箱的冷藏开启/停止温度及化霜停止温度,使冰箱在第一预设时长内按照调整后的工作模式运行,降低了冰箱内霜产生的量及提高了冰箱的化霜能力,避免发生化霜不良的现象,并能够避免冰箱产生风道结冰、冷藏过冷等问题。
基于第一实施例提出本发明冰箱的控制装置的第二实施例,参照图7,在本实施例中,第一判断模块10包括:
第一获取单元11,用于在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭与上一次冰箱门打开或者关闭的时间点之间的时间间隔;
其中,预设温度可以由用户进行设定,例如,预设温度为29C°,室外环境温度由温度传感器采集。通过获取此次冰箱门打开或者关闭的时间点以及上一次冰箱门打开或者关闭的时间点,然后计算得到时间间隔,具体地,由此次冰箱门打开或者关闭的时间点减去上一次冰箱门打开或者关闭的时间点得到时间间隔。
第一更新单元12,用于在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数;
具体地,第一更新单元12更新所述冰箱门的开关次数是指将所述冰箱门的开关次数加1。
确定单元13,用于在所述开关次数大于第一预设次数时,确定此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔是否小于预设第一时间间隔,其中,在时间间隔小于预设第一时间间隔时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数;
在此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔大于或等于预设第一时间间隔时,将开关次数清零。
第一设置单元14,用于在此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔大于或等于预设第一时间间隔时,将所述冰箱门的开关次数清零。
本实施例中,通过在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,第一获取单元11获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔,接着在所述时间间隔小于第二预设时间间隔时,第一更新单元12更新所述冰箱门的开关次数,而后在所述开关次数大于第一预设次数时,确定单元13确定此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔是否小于预设第一时间间隔,其中,在时间间隔小于预设第一时间间隔时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数,实现了根据预设第一时间间隔及预设第二时间间隔准确的判定是否需要增大所述冰箱的冷藏开启/停止温度及化霜停止温度,提高了增大所述冰箱的冷藏开启/停止温度及化霜停止温度效率。
基于第二实施例提出本发明冰箱的控制装置的第三实施例,参照图8,在本实施例中,冰箱的控制装置还包括:
第二判断模块30,用于在所述冰箱按照调整后的工作模式运行的时长达到所述第二预设时长时,判断在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第二预设次数,其中,所述第二预设次数小于所述第一预设次数,所述第三时间间隔小于所述第一预设时长减去第二预设时长得到的时间间隔;
在冰箱按照调整后的工作模式运行的过程中,运行的时长达到所述第二预设时长时,继续执行在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔,及在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数。
运行模块40,用于在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第二预设次数时,继续在第一预设时长内按照调整后的工作模式运行所述冰箱。
本实施例通过在所述冰箱按照调整后的工作模式运行的时长达到所述第二预设时长时,第二判断模块30判断在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第二预设次数,接着在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第二预设次数时,运行模块40继续在第一预设时长内按照调整后的工作模式运行所述冰箱,实现了在冰箱退出调整后的工作模式时,若存在连续打开或者关闭冰箱门的情况,则继续在第一预设时长内按照调整后的工作模式运行所述冰箱,进一步降低了冰箱内产生的霜并提高了冰箱的化霜能力。
基于第一实施例提出本发明冰箱的控制装置的第四实施例,参照图9,在本实施例中,第一判断模块10包括:
第二获取单元15,用于在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔;
其中,预设温度可以由用户进行设定,例如,预设温度为29C°,室外环境温度由温度传感器采集。通过获取此次冰箱门打开或者关闭的时间点以及上一次冰箱门打开或者关闭的时间点,然后计算得到时间间隔,具体地,由此次冰箱门打开或者关闭的时间点减去上一次冰箱门打开或者关闭的时间点得到时间间隔。
第二更新单元16,用于在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数,其中,所述第一时间间隔大于所述第一预设次数与所述第二预设时间间隔的乘积;
具体地,更新所述冰箱门的开关次数是指将所述冰箱门的开关次数加1,本实施例中,第一时间间隔大于所述第一预设次数与所述第二预设时间间隔的乘积。
第二设置单元17,用于在所述时间间隔大于或等于第二预设时间间隔时,将所述冰箱门的开关次数清零;
判断单元18,用于判断所述冰箱门的开关次数是否大于所述第一预设次数,其中,在所述冰箱门的开关次数大于所述第一预设次数时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数
本实施例通过在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,第二获取单元15获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔,接着在所述时间间隔小于第二预设时间间隔时,第二更新单元16更新所述冰箱门的开关次数,其中,所述第一时间间隔大于所述第一预设次数与所述第二预设时间间隔的乘积,而后判断单元18判断所述冰箱门的开关次数是否大于所述第一预设次数,实现了根据预设第一时间间隔及预设第二时间间隔准确的判定是否需要增大所述冰箱的冷藏开启/停止温度及化霜停止温度,提高了增大所述冰箱的冷藏开启/停止温度及化霜停止温度效率。
基于第一实施例提出本发明冰箱的控制装置的第五实施例,参照图10,在本实施例中,调整模块20包括:
第三获取单元21,用于获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
其中,冷藏开启温度是指冰箱的蒸发器的启动时冰箱内部的温度,冷藏停止温度冰箱的蒸发器的停止时冰箱内部的温度,第一温度阈值是指冰箱冷藏开启温度、冷藏停止温度的预设变化值,具体地,第一温度阈值可以设置为2 C°。化霜停止温度是指冰箱的化霜器的最高工作温度,在化霜器的温度超过该温度时,化霜器停止工作,第二温度阈值是指冰箱化霜停止温度的预设变化值。
调整单元22,用于基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
具体地,调整单元22将冷藏开启温度加上第一温度阈值作为新的冷藏开启温度,将冷藏停止温度加上第一温度阈值作为新的冷藏停止温度,并将化霜停止温度加上第一温度阈值作为新的化霜停止温度。
本实施例通过第三获取单元21获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值,接着调整单元22基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度,通过提高冷藏开启温度、冷藏停止温度降低冰箱内产生的霜,通过提高化霜停止温度延长冰箱的化霜时间,提高冰箱的化霜能力,进一步避免发生化霜不良的现象。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (15)

  1. 一种冰箱的控制方法,其特征在于,所述冰箱的控制方法包括以下步骤:
    判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,其中,在冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔小于第二预设时间间隔,则更新冰箱门连续打开或者关闭的开关次数,所述第二预设时间间隔小于所述第一时间间隔;
    在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零,其中,所述冰箱按照调整后的工作模式运行的时长为第一预设时长。
  2. 如权利要求1所述的冰箱的控制方法,其特征在于,所述判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数的步骤包括:
    在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔;
    在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数;
    在所述开关次数大于第一预设次数时,确定此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔是否小于预设第一时间间隔,其中,在时间间隔小于预设第一时间间隔时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数;
    在此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔大于或等于预设第一时间间隔时,将所述冰箱门的开关次数清零。
  3. 如权利要求2所述的冰箱的控制方法,其特征在于,所述增大所述冰箱的冷藏开启/停止温度及化霜停止温度的步骤之后,所述冰箱的控制方法还包括:
    在所述冰箱按照调整后的工作模式运行的时长达到所述第二预设时长时,判断在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第二预设次数,其中,所述第二预设次数小于所述第一预设次数,所述第三时间间隔小于所述第一预设时长减去第二预设时长得到的时间间隔;
    在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第二预设次数时,继续在第一预设时长内按照调整后的工作模式运行所述冰箱。
  4. 如权利要求1所述的冰箱的控制方法,其特征在于,所述判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数的步骤包括:
    在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔;
    在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数,其中,所述第一时间间隔大于所述第一预设次数与所述第二预设时间间隔的乘积;
    在所述时间间隔大于或等于第二预设时间间隔时,将所述冰箱门的开关次数清零;
    判断所述冰箱门的开关次数是否大于所述第一预设次数,其中,在所述冰箱门的开关次数大于所述第一预设次数时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数。
  5. 如权利要求1所述的冰箱的控制方法,其特征在于,所述增大所述冰箱的冷藏开启/停止温度及化霜停止温度的步骤包括:
    获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
    基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
  6. 如权利要求2所述的冰箱的控制方法,其特征在于,所述增大所述冰箱的冷藏开启/停止温度及化霜停止温度的步骤包括:
    获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
    基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
  7. 如权利要求3所述的冰箱的控制方法,其特征在于,所述增大所述冰箱的冷藏开启/停止温度及化霜停止温度的步骤包括:
    获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
    基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
  8. 如权利要求4所述的冰箱的控制方法,其特征在于,所述增大所述冰箱的冷藏开启/停止温度及化霜停止温度的步骤包括:
    获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
    基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
  9. 一种冰箱的控制装置,其特征在于,所述冰箱的控制装置包括:
    第一判断模块,用于判断在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第一预设次数,其中,在冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔小于第二预设时间间隔,则更新冰箱门连续打开或者关闭的开关次数,所述第二预设时间间隔小于所述第一时间间隔;
    调整模块,用于在预设第一时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第一预设次数时,增大所述冰箱的冷藏开启/停止温度及化霜停止温度,并将所述开关次数清零,其中,所述冰箱按照调整后的工作模式运行的时长为第一预设时长。
  10. 如权利要求9所述的冰箱的控制装置,其特征在于,所述第一判断模块包括:
    第一获取单元,用于在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭与上一次冰箱门打开或者关闭的时间点之间的时间间隔;
    第一更新单元,用于在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数;
    确定单元,用于在所述开关次数大于第一预设次数时,确定此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔是否小于预设第一时间间隔,其中,在时间间隔小于预设第一时间间隔时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数;
    第一设置单元,用于在此次冰箱门打开或者关闭的时间点与所述开关次数对应的首次冰箱门打开或者关闭的时间点之间的时间间隔大于或等于预设第一时间间隔时,将所述冰箱门的开关次数清零。
  11. 如权利要求10所述的冰箱的控制装置,其特征在于,所述冰箱的控制装置还包括:
    第二判断模块,用于在所述冰箱按照调整后的工作模式运行的时长达到所述第二预设时长时,判断在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数是否大于第二预设次数,其中,所述第二预设次数小于所述第一预设次数,所述第三时间间隔小于所述第一预设时长减去第二预设时长得到的时间间隔;
    运行模块,用于在预设第三时间间隔内所述冰箱门连续打开或者关闭的开关次数大于第二预设次数时,继续在第一预设时长内按照调整后的工作模式运行所述冰箱。
  12. 如权利要求9所述的冰箱的控制装置,其特征在于,所述第一判断模块包括:
    第二获取单元,用于在检测到冰箱门打开或者关闭,且当前室外环境温度大于预设温度时,获取此次冰箱门打开或者关闭的时间点与上一次冰箱门打开或者关闭的时间点之间的时间间隔;
    第二更新单元,用于在所述时间间隔小于第二预设时间间隔时,更新所述冰箱门的开关次数,其中,所述第一时间间隔大于所述第一预设次数与所述第二预设时间间隔的乘积;
    第二设置单元,用于在所述时间间隔大于或等于第二预设时间间隔时,将所述冰箱门的开关次数清零;
    判断单元,用于判断所述冰箱门的开关次数是否大于所述第一预设次数,其中,在所述冰箱门的开关次数大于所述第一预设次数时,判定在预设第一时间间隔内所述冰箱门连续打开或者关闭的次数大于第一预设次数。
  13. 如权利要求9所述的冰箱的控制装置,其特征在于,所述调整模块包括:
    第三获取单元,用于获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
    调整单元,用于基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
  14. 如权利要求10所述的冰箱的控制装置,其特征在于,所述调整模块包括:
    第三获取单元,用于获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
    调整单元,用于基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
  15. 如权利要求11所述的冰箱的控制装置,其特征在于,所述调整模块包括:
    第三获取单元,用于获取所述冰箱当前的冷藏开启温度、冷藏停止温度、化霜停止温度、第一温度阈值及第二温度阈值;
    调整单元,用于基于所述第一温度阈值增大所述冷藏开启温度及冷藏停止温度,并基于所述第二温度阈值增大所述化霜停止温度。
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115111842A (zh) * 2022-06-20 2022-09-27 海信(山东)冰箱有限公司 冰箱及冰箱的控制方法
CN115265050A (zh) * 2021-04-29 2022-11-01 青岛海尔电冰箱有限公司 冰箱及其控制方法

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106958984A (zh) * 2017-03-08 2017-07-18 佛山市小鲜互联电器科技有限公司 一种冰箱变温室在显示屏上的控制方法
CN109466411A (zh) * 2018-11-16 2019-03-15 安徽省岳西县四达有限责任公司 一种基于冷藏运输车的冷藏管理系统
CN111182403A (zh) * 2019-12-31 2020-05-19 歌尔科技有限公司 耳机的控制方法、控制装置和计算机可读存储介质

Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4033240A1 (de) * 1990-10-19 1992-04-23 Diehl Gmbh & Co Steuerungseinrichtung fuer die abtauvorrichtung eines kuehl- bzw. gefriergeraetes
JPH04273981A (ja) * 1991-02-27 1992-09-30 Sharp Corp 冷凍冷蔵庫
EP0690277A1 (de) * 1994-05-30 1996-01-03 Bosch-Siemens HausgerÀ¤te GmbH Steuereinrichtung zum Betrieb eines Kühl- oder Gefriergerätes
CN1127348A (zh) * 1994-03-24 1996-07-24 东芝株式会社 冷藏库的除霜控制装置
KR100828008B1 (ko) * 2006-12-13 2008-05-08 주식회사 대우일렉트로닉스 기계식 냉장고의 제상 주기 제어방법 및 장치
US20090113902A1 (en) * 2007-11-05 2009-05-07 Hyoung Keun Lim Control method for a refrigerator
CN201314762Y (zh) * 2008-10-31 2009-09-23 海信科龙电器股份有限公司 一种门开关计数冰箱化霜控制系统
CN101726152A (zh) * 2008-10-21 2010-06-09 苏州三星电子有限公司 间冷冰箱的除霜控制方法
CN102927783A (zh) * 2012-11-26 2013-02-13 合肥美的荣事达电冰箱有限公司 一种冰箱及其控制方法
CN102954666A (zh) * 2012-11-21 2013-03-06 广东奥马电器股份有限公司 冰箱除霜控制方法
CN105466149A (zh) * 2015-12-31 2016-04-06 青岛海尔股份有限公司 冰箱及其自适应化霜控制方法

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP4445523B2 (ja) * 2007-06-26 2010-04-07 株式会社東芝 冷蔵庫
KR101809923B1 (ko) * 2012-01-17 2017-12-20 엘지전자 주식회사 가전기기, 가전기기 진단장치 및 그 방법
CN104833167A (zh) * 2015-02-27 2015-08-12 河南新飞电器有限公司 风冷冰箱化霜方法
CN204555508U (zh) * 2015-03-12 2015-08-12 合肥美的电冰箱有限公司 冰箱

Patent Citations (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4033240A1 (de) * 1990-10-19 1992-04-23 Diehl Gmbh & Co Steuerungseinrichtung fuer die abtauvorrichtung eines kuehl- bzw. gefriergeraetes
JPH04273981A (ja) * 1991-02-27 1992-09-30 Sharp Corp 冷凍冷蔵庫
CN1127348A (zh) * 1994-03-24 1996-07-24 东芝株式会社 冷藏库的除霜控制装置
EP0690277A1 (de) * 1994-05-30 1996-01-03 Bosch-Siemens HausgerÀ¤te GmbH Steuereinrichtung zum Betrieb eines Kühl- oder Gefriergerätes
KR100828008B1 (ko) * 2006-12-13 2008-05-08 주식회사 대우일렉트로닉스 기계식 냉장고의 제상 주기 제어방법 및 장치
US20090113902A1 (en) * 2007-11-05 2009-05-07 Hyoung Keun Lim Control method for a refrigerator
CN101726152A (zh) * 2008-10-21 2010-06-09 苏州三星电子有限公司 间冷冰箱的除霜控制方法
CN201314762Y (zh) * 2008-10-31 2009-09-23 海信科龙电器股份有限公司 一种门开关计数冰箱化霜控制系统
CN102954666A (zh) * 2012-11-21 2013-03-06 广东奥马电器股份有限公司 冰箱除霜控制方法
CN102927783A (zh) * 2012-11-26 2013-02-13 合肥美的荣事达电冰箱有限公司 一种冰箱及其控制方法
CN105466149A (zh) * 2015-12-31 2016-04-06 青岛海尔股份有限公司 冰箱及其自适应化霜控制方法

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115265050A (zh) * 2021-04-29 2022-11-01 青岛海尔电冰箱有限公司 冰箱及其控制方法
CN115111842A (zh) * 2022-06-20 2022-09-27 海信(山东)冰箱有限公司 冰箱及冰箱的控制方法

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