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    • 2. 发明授权
    • Temperature controlling method and apparatus for refrigerator using
velocity control of rotary blade
    • 使用旋转叶片速度控制的冰箱温度控制方法和装置
    • US5907953A
    • 1999-06-01
    • US825178
    • 1997-03-27
    • Yun-seok KangHae-jin Park
    • Yun-seok KangHae-jin Park
    • F25D17/08F25B1/00F25D11/02F25D17/04F25D17/06G05B13/02G05D23/19
    • G05B13/0275F25D17/065G05D23/1931F25D17/045F25D2317/0672F25D2400/04F25D2700/123
    • A temperature controlling method and apparatus for a refrigerator by controlling the velocity of a rotary blade are provided. In the temperature controlling method, a fuzzy model for inferring an equilibrium velocity corresponding to the rotation velocity of the rotary blade, required for the temperature equilibrium within a refrigeration compartment, is constituted and then the fuzzy inference is performed based on the fuzzy model using the change in temperature measured at a predetermined number of portions within the refrigeration compartment to calculate the equilibrium velocity, thereby controlling the rotation velocity of the rotary blade according to the calculated equilibrium velocity. Accordingly, temperatures of each portion are accurately inferred from the fuzzy model using the values of temperature changes sensed by only a small number of temperature sensors and then the rotation velocity of the rotary blade is appropriately controlled according to the inferred positions into which cool air is to be discharged. As a result, the cool air is appropriately discharged into each portion according to the distance between the rotary blade and a target position, so that the optimal temperature equilibrium is obtained in the refrigeration compartment.
    • 提供了一种通过控制旋转刀片的速度的用于冰箱的温度控制方法和装置。 在温度控制方法中,构成用于推断与冷藏室内的温度平衡所需的旋转叶片的旋转速度对应的平衡速度的模糊模型,然后基于使用模糊模型的模糊模型进行模糊推理 根据计算的平衡速度来控制旋转叶片的旋转速度,由此在冷藏室内的预定数量的部分测量的温度变化来计算平衡速度。 因此,使用仅由少量温度传感器感测到的温度变化值,从模糊模型精确地推断出各部分的温度,然后根据冷空气所推断的位置适当地控制旋转叶片的旋转速度 出院 结果,根据旋转叶片和目标位置之间的距离,将冷空气适当地排放到每个部分中,使得在冷藏室中获得最佳温度平衡。
    • 4. 发明授权
    • Defrosting method and apparatus for freezer-refrigerator using GA-fuzzy
theory
    • 使用GA模糊理论的冷冻冰箱除霜方法和装置
    • US5673565A
    • 1997-10-07
    • US531088
    • 1995-09-20
    • Seong-wook JeongJae-in KimYun-seok Kang
    • Seong-wook JeongJae-in KimYun-seok Kang
    • F25D21/00F25D21/08G05B13/02G05B15/02G06F9/44G06N7/02F25D21/06
    • F25D21/006F25D2400/04F25D2500/04F25D2700/02F25D2700/12F25D2700/122F25D2700/14
    • There are described a defrosting method and apparatus for a freezer-refrigerator using a GA-fuzzy theory. A defrosting method for a freezer-refrigerator using a GA-fuzzy theory of the present invention comprises the step of: inputting reference learning data by experiment and actual data to a microcomputer; calculating each frost-quantity on evaporators for a freezing room and a cold-storage room from the input data; inferring each defrosting period for the freezing room and cold-storage room from each frost-quantity on the evaporators for the freezing room and cold-storage room by using a GA-fuzzy theory so that the defrosting periods can be synchronized with each other; and controlling a defrosting heater depending on each defrosting period. According to the present invention, a freezer-refrigerator can be defrosted by calculating each defrosting period of the freezing room and cold-storage room with precision and accuracy even at an input function which has many inflexion points and is impossible to differentiate, which is different from the conventional defrosting method using the crisp's logical algorithm consisting of `0` and `1`.
    • 描述了使用GA-模糊理论的冷冻冷藏柜的除霜方法和装置。 使用本发明的GA模糊理论的冷冻机的除霜方法包括以下步骤:通过实验和实际数据将参考学习数据输入到微型计算机; 从输入数据计算冷冻室和冷藏室的蒸发器上的每个霜冻量; 通过使用GA模糊理论推断冷冻室和冷藏室蒸发器上每个霜冻量的冷冻室和冷藏室的每个除霜期,使除霜期间相互同步; 并且根据每个除霜周期来控制除霜加热器。 根据本发明,即使在具有许多拐点的输入功能也不可能区分的情况下,通过精确地和精确地计算冷冻室和冷藏室的每个除霜周期并且不可能区分,可以解冻冷冻机 从使用由“0”和“1”组成的crisp逻辑算法的常规除霜方法。
    • 6. 发明授权
    • Temperature controlling method for refrigerator and apparatus therefor
    • 冰箱及其设备的温度控制方法
    • US5743104A
    • 1998-04-28
    • US820339
    • 1997-03-12
    • Jae-in KimYun-seok KangSeong-wook Jeong
    • Jae-in KimYun-seok KangSeong-wook Jeong
    • G05D23/00F25D17/06F25D17/08F25D29/00G05D23/19
    • F25D17/065F25D29/00G05D23/1932F25D2317/0653F25D2317/0672F25D2400/04F25D2700/122F25D2700/123F25D2700/14
    • A temperature controlling method for a refrigerator and an apparatus therefor are provided, in which a sensing error between temperature sensors is corrected, thereby maintaining the interior temperature of the refrigeration compartment in equilibrium. The temperature controlling method includes the steps of: sensing temperatures of the different locations within the refrigeration compartment using the plurality of temperature sensors several times when the temperatures in the refrigeration compartment are in equilibrium; calculating the average temperatures of the respective temperature sensors from a number of the temperatures respectively sensed by the plurality of temperature sensors; selecting one of the plurality of temperature sensors as a reference sensor and calculating error values of the average temperatures of the remaining temperature sensors with respect to that of the reference sensor; adding the error values of the respective temperature sensors to the temperatures directly sensed by the corresponding temperature sensors to obtain corrected temperature values; and controlling discharge of cool air based on the corrected temperature values. Also, the temperature controlling apparatus includes an operator for calculating corrected temperature values and a controller for controlling the discharge of the cool air.
    • 提供一种用于冰箱及其设备的温度控制方法,其中校正温度传感器之间的感测误差,从而保持冷藏室的内部温度平衡。 温度控制方法包括以下步骤:当冷藏室中的温度处于平衡状态时,使用多个温度传感器多次感测冷藏室内不同位置的温度; 从多个温度传感器分别感测的多个温度计算各个温度传感器的平均温度; 选择多个温度传感器中的一个作为参考传感器,并计算剩余温度传感器相对于参考传感器的平均温度的误差值; 将各个温度传感器的误差值加到由对应的温度传感器直接感测的温度以获得校正的温度值; 并基于校正的温度值控制冷气的排放。 此外,温度控制装置包括用于计算校正温度值的操作器和用于控制冷空气排放的控制器。