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    • 7. 发明申请
    • REFRIGERATOR ENERGY AND TEMPERATURE CONTROL
    • 制冷能源和温度控制
    • US20120060526A1
    • 2012-03-15
    • US12957666
    • 2010-12-01
    • Jason Andrew MayBrian Michael SchorkBryan James Beckley
    • Jason Andrew MayBrian Michael SchorkBryan James Beckley
    • F25B1/00
    • F25D29/00F25B2600/0253F25B2600/111F25B2600/112F25D17/045F25D2700/12F25D2700/122Y02B30/741Y02B30/743
    • Apparatus and methodologies are provided to improve the refrigeration system by precisely controlling refrigerator compartment and heat exchanger temperatures through continuous modulation of device speeds or positions to match capacity with instantaneous load. A controller in a refrigerator is configured to provide a plurality of control loops to control various operational aspects of selected components in the refrigerator. A first loop controls the operating speed of a compressor based on temperature of the evaporator or based on the desired speed of an evaporator fan. A second control loop controls speed of an evaporator fan to maintain a prescribed freezer compartment temperature. A third control loop maintains a prescribed temperature in a fresh food compartment. In certain embodiments selected of the control loops may be thermodynamically coupled by way of thermal interaction between the various cooled compartments rather than being electrically coupled. The control loops may be individually configured as one of a proportional, proportional-integral, or proportional-integral-derivative control loop.
    • 提供了装置和方法,以通过对装置速度或位置的连续调制精确地控制冷藏室和热交换器温度来改善制冷系统,从而使容量与瞬时负载相匹配。 冰箱中的控制器被配置为提供多个控制回路以控制冰箱中所选部件的各种操作方面。 第一回路基于蒸发器的温度或基于蒸发器风扇的期望速度来控制压缩机的运行速度。 第二控制回路控制蒸发器风扇的速度以保持规定的冷冻室温度。 第三个控制回路在新鲜的食物室中保持规定的温度。 在某些实施例中,选择的控制回路可以通过各种冷却隔室之间的热相互作用热力学耦合,而不是电耦合。 控制回路可以单独配置为比例,比例积分或比例积分微分控制回路之一。
    • 9. 发明授权
    • Refrigerator energy and temperature control
    • 冰箱能量和温度控制
    • US08826679B2
    • 2014-09-09
    • US12957666
    • 2010-12-01
    • Jason Andrew MayBrian Michael SchorkBryan James Beckley
    • Jason Andrew MayBrian Michael SchorkBryan James Beckley
    • F25B41/00F25B49/00G01K13/00F25D17/04F25D17/06F25D29/00
    • F25D29/00F25B2600/0253F25B2600/111F25B2600/112F25D17/045F25D2700/12F25D2700/122Y02B30/741Y02B30/743
    • Apparatus and methodologies are provided to improve the refrigeration system by precisely controlling refrigerator compartment and heat exchanger temperatures through continuous modulation of device speeds or positions to match capacity with instantaneous load. A controller in a refrigerator is configured to provide a plurality of control loops to control various operational aspects of selected components in the refrigerator. A first loop controls the operating speed of a compressor based on temperature of the evaporator or based on the desired speed of an evaporator fan. A second control loop controls speed of an evaporator fan to maintain a prescribed freezer compartment temperature. A third control loop maintains a prescribed temperature in a fresh food compartment. In certain embodiments selected of the control loops may be thermodynamically coupled by way of thermal interaction between the various cooled compartments rather than being electrically coupled. The control loops may be individually configured as one of a proportional, proportional-integral, or proportional-integral-derivative control loop.
    • 提供了装置和方法,以通过对装置速度或位置的连续调制精确地控制冷藏室和热交换器温度来改善制冷系统,从而使容量与瞬时负载相匹配。 冰箱中的控制器被配置为提供多个控制回路以控制冰箱中所选部件的各种操作方面。 第一回路基于蒸发器的温度或基于蒸发器风扇的期望速度来控制压缩机的运行速度。 第二控制回路控制蒸发器风扇的速度以保持规定的冷冻室温度。 第三个控制回路在新鲜的食物室中保持规定的温度。 在某些实施例中,选择的控制回路可以通过各种冷却隔室之间的热相互作用热力学耦合,而不是电耦合。 控制回路可以单独配置为比例,比例积分或比例积分微分控制回路之一。