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    • 2. 发明专利
    • Environmental control configuration
    • GB2559737A8
    • 2018-10-03
    • GB201702231
    • 2017-02-10
    • CENTRICA CONNECTED HOME LTD
    • NICOLA COMBENICOLAS MOUAZANJOHN GUTCH
    • F24F11/65F24F11/67
    • A configuration of an environmental controller (520, Fig. 12) of an environmental control system (500, Fig. 12), is set. The system (500, Fig. 12) comprises an appliance (540, 542, 544-546, 548, Fig. 12) suitable for influencing environmental parameters at a premises. A user query from a series of user queries (210, Fig. 2) is displayed, at 110, on a display of a user interface on the controller (520, Fig. 12) and a user input relating to an appliance (540, 542, 544-546, 548, Fig. 12) to be controlled is received, at 120, at the user interface. An expected connection configuration of physical connection terminals (1410-1520, Fig. 13) based on the user input is determined at 130 and connections at the physical connection terminals are detected at 140. The user input is validated at 150 by comparing the detected connections with the expected connection configuration. A control setting may be altered if the detected connections match the expected connections and an error message (320, Fig. 3) may be displayed if there is a divergence between expected connections and detected connections. A computer readable medium comprising code to perform the method and an environmental controller are also claimed.
    • 4. 发明专利
    • AIR CONDITIONER
    • CA2811870C
    • 2018-05-22
    • CA2811870
    • 2011-09-02
    • SHARP KK
    • NAGATA ITARUMISHIRO KAZUHISAONISHI RYOTA
    • F24F11/42F24F1/06F24F11/67F25B29/00F25B47/02
    • An air conditioner provided with: a compressor for operating the refrigeration cycle; an outdoor heat exchanger disposed outdoors; an indoor heat exchanger disposed indoors; an outdoor fan for supplying outdoor air to the outdoor heat exchanger; and an indoor fan for supplying indoor air to the indoor heat exchanger, the air conditioner being configured so that heating operation is performed by driving both the indoor fan and the outdoor fan and by causing the refrigerant to flow in one direction through both the indoor heat exchanger and the outdoor heat exchanger and so that, when the outdoor heat exchanger is frosted, defrost operation in which both the indoor fan and the outdoor fan are stopped is performed by causing the refrigerant to flow in the opposite direction to the direction of the flow of the refrigerant in the heating operation. When a defrost failure is caused by the defrost operation, preparatory defrost operation in which the refrigerant is caused to flow in the same direction as that in the heating operation, the outdoor fan is driven, and the indoor fan is stopped is performed for a predetermined period of time, and after that, the defrost operation is resumed.
    • 6. 发明专利
    • Air-conditioning system
    • AU2020434523A1
    • 2022-09-08
    • AU2020434523
    • 2020-03-11
    • MITSUBISHI ELECTRIC CORP
    • KUDO ENAMURAMATSU HIDETOSHI
    • F24F11/54F24F11/56F24F11/64F24F11/67F24F110/10F24F120/10
    • In the present invention, an air-conditioning system (1) has a plurality of air conditioners (2a, 2b, 2c, 2d) installed on a wall or on a ceiling, and an air-conditioning assistance device (4) installed at a position set away by an identical distance from each of the plurality of air conditioners (2a, 2b, 2c, 2d) on the wall or the ceiling. The air-conditioning assistance device (4) has: a thermal image sensor (41); an assistance-side communication unit (42) for receiving information relating to the operation state of some or all of the plurality of air conditioners (2a, 2b, 2c, 2d) from some or all of the plurality of air conditioners (2a, 2b, 2c, 2d), and transmitting a command for performing air-conditioning to some or all of the plurality of air conditioners (2a, 2b, 2c, 2d); a storage unit (43) for storing information obtained by the thermal image sensor (41) and information received by the assistance-side communication unit (42); and a processing unit (44) for analyzing the information obtained by the thermal image sensor (41) and the information received by the assistance-side communication unit (42) and generating a command.
    • 7. 发明专利
    • Acondicionador de aire
    • ES2744075T3
    • 2020-02-21
    • ES16851469
    • 2016-09-26
    • DAIKIN IND LTD
    • SHIONO YUUSUKEYONEDA JUNYA
    • F24F11/79F24F1/00F24F11/65F24F11/67F24F11/80
    • Una unidad interior de acondicionamiento de aire (10) montada en la pared que se instala en una pared lateral de un espacio objetivo del acondicionamiento de aire y tiene la función de cambiar la dirección de aire del aire saliente expulsado desde una salida de aire (15), comprendiendo la unidad interior de acondicionamiento de aire: un medio de conmutación de la dirección del aire (30, 40) que cambia la dirección de aire del aire saliente; y un componente de control (50) que ejecuta, a través del medio de conmutación de la dirección del aire (30, 40), una pluralidad de modos de flujo de aire que cambian el aire saliente a flujos de aire correspondientes a una pluralidad de direcciones de aire configuradas de antemano, en donde la pluralidad de modos de flujo de aire incluye un modo de flujo de aire de pared que cambia el aire saliente a un flujo de aire que fluye a lo largo de la pared lateral y un suelo del espacio objetivo del acondicionamiento de aire en el momento de una operación de calentamiento, caracterizada por que el componente de control (50) realiza un control de supresión de la temperatura del aire saliente que disminuye la temperatura del aire saliente en el momento de la ejecución del modo de flujo de aire de pared por debajo de lo que está en el momento de la ejecución de los otros modos de flujo de aire en la operación de calentamiento.
    • 8. 发明专利
    • CONTROL DEVICE FOR HVAC FAN COIL UNITS
    • CA3039300A1
    • 2019-10-06
    • CA3039300
    • 2019-04-05
    • ECOBEE INC
    • BEAUREGARD GRAHAM
    • F24F11/67F24F11/80G01K3/14G01K17/08
    • A control device for an HVAC fan control unit includes at least one sensor to provide a signal to the control device to determine the temperature of the working fluid supplied to a coil in the fan control unit. In a first configuration, the sensor determines if the working fluid is above or below a preselected temperature and the control device employs the signal from the sensor to determine if the fan control unit is in a heating or cooling mode. In a second configuration, the sensor measures the temperature of the working fluid and the control device employs the signal from the sensor to determine the heating, or cooling, ability of the fan control unit when utilizing the supplied working fluid. With two-pipe fan control units, a single sensor is employed on the working fluid supply pipe and a single signal representing the working fluid temperature is supplied to the control device. With four-pipe fan control units, a sensor is respectively employed on each of the heating fluid supply pipe and the cooling fluid supply pipe and two signals, each representing the temperature of a respective one of the cooling working fluid and heating working fluid, is supplied to the control device.