WO2018176331A1 - 移动空调控制方法和装置 - Google Patents

移动空调控制方法和装置 Download PDF

Info

Publication number
WO2018176331A1
WO2018176331A1 PCT/CN2017/078822 CN2017078822W WO2018176331A1 WO 2018176331 A1 WO2018176331 A1 WO 2018176331A1 CN 2017078822 W CN2017078822 W CN 2017078822W WO 2018176331 A1 WO2018176331 A1 WO 2018176331A1
Authority
WO
WIPO (PCT)
Prior art keywords
current
air conditioner
mobile air
preset
heat exchange
Prior art date
Application number
PCT/CN2017/078822
Other languages
English (en)
French (fr)
Inventor
王智超
Original Assignee
广东美的制冷设备有限公司
美的集团股份有限公司
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 广东美的制冷设备有限公司, 美的集团股份有限公司 filed Critical 广东美的制冷设备有限公司
Priority to PCT/CN2017/078822 priority Critical patent/WO2018176331A1/zh
Publication of WO2018176331A1 publication Critical patent/WO2018176331A1/zh

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F11/00Control or safety arrangements

Definitions

  • the present invention relates to the field of mobile air conditioner technology, and in particular, to a mobile air conditioner control method and apparatus.
  • the performance of the compressor is required to be high.
  • the environment in which the mobile air conditioner is located has a great influence on the operating state of the compressor. When the environment is bad, the compressor may quickly reach the state of shutdown protection, so that the compressor starts and stops frequently.
  • the invention provides a mobile air conditioner control method and device, the main purpose of which is to solve the technical problem that the compressor starts and stops frequently in a harsh environment.
  • the present invention provides a mobile air conditioner control method, and the mobile air conditioner control method includes the steps of:
  • the current of the mobile air conditioner is detected in real time or periodically;
  • the operating parameters of the outdoor heat exchange acceleration device include an outdoor motor speed, a water motor speed, and/or a water pump flow rate.
  • the step of adjusting operating parameters of the outdoor heat exchange acceleration device includes:
  • the operating parameters of the outdoor heat exchange acceleration device are restored to the initial operating parameters or the operating parameters are kept unchanged.
  • the operating parameters of the outdoor heat exchange acceleration device are sequentially adjusted in descending order of the gear positions of the operating parameters, each time After adjusting the operating parameter, running the first preset duration according to the running parameter of the current gear position;
  • the whole machine current of the mobile air conditioner is greater than the third preset current, continue to adjust the operating parameters of the outdoor heat exchange acceleration device according to the operating parameter corresponding to the next gear position until the adjustment to the highest gear position, and adjust to At the highest gear position, the operating parameters of the next outdoor heat exchange acceleration device are continuously adjusted in a preset order until the operating parameters of all the outdoor heat exchange acceleration devices are adjusted;
  • the operating parameters of the outdoor heat exchange acceleration device are switched to the initial operating parameters or the operating parameters are kept unchanged.
  • the outdoor heat exchange acceleration device includes an outdoor motor, a water pump, and a water pump, and the step of sequentially adjusting operating parameters of each of the outdoor heat exchange acceleration devices according to a preset sequence includes:
  • the rotational speed of the outdoor motor, the rotational speed of the water pump, and the flow rate of the water pump are sequentially adjusted.
  • the step of adjusting an operating parameter of the outdoor heat exchange acceleration device includes:
  • the first preset duration is run according to the running parameter of the current gear position
  • the operating parameters of the outdoor heat exchange acceleration device are continuously adjusted according to the operating parameters corresponding to the next gear position until the highest gear is adjusted;
  • the operating parameters of the outdoor heat exchange acceleration device are switched to the initial operating parameters or the operating parameters are kept unchanged.
  • the mobile air conditioning control method further includes the steps of:
  • the preset duration is run according to the adjusted operating parameter, it is determined whether the whole current of the mobile air conditioner is greater than a fourth preset current, wherein the fourth preset current is less than or equal to the first preset current;
  • the mobile air conditioning control method further includes:
  • the step of reducing the rotational speed of the indoor motor includes:
  • the first preset duration is operated according to the speed of the current gear position
  • the speed of the indoor motor is continuously adjusted according to the wind speed corresponding to the next gear position until the lowest gear position is adjusted;
  • the speed of the indoor motor is switched to the initial speed or the speed is kept unchanged.
  • the mobile air conditioning control method includes:
  • the present invention further provides a mobile air conditioning control device, where the mobile air conditioning control device includes:
  • the detecting module is configured to detect the current of the mobile air conditioner in real time or timing when the mobile air conditioner is in the cooling mode;
  • the adjusting module is configured to adjust an operating parameter of the outdoor heat exchange acceleration device when the current of the whole machine is greater than the first preset current value, so as to improve heat exchange efficiency of the outdoor heat exchanger;
  • the operating parameters of the outdoor heat exchange acceleration device include an outdoor motor speed, a water motor speed, and/or a water pump flow rate.
  • the adjusting module includes:
  • a first adjusting unit configured to sequentially adjust operating parameters of each of the outdoor heat exchange acceleration devices in a preset order
  • a first determining unit configured to determine whether the current of the mobile air conditioner is greater than the second after adjusting the operating parameters of each of the outdoor heat exchange acceleration devices and operating the preset operating time according to the adjusted operating parameters a preset current, wherein the second preset current is less than or equal to the first preset current;
  • the first adjusting unit is further configured to continue to adjust operating parameters of the next outdoor heat exchange acceleration device according to a preset sequence when the whole current of the mobile air conditioner is greater than the second preset current, until all the adjustments are completed.
  • the operating parameters of the outdoor heat exchange acceleration device are further configured to continue to adjust operating parameters of the next outdoor heat exchange acceleration device according to a preset sequence when the whole current of the mobile air conditioner is greater than the second preset current, until all the adjustments are completed.
  • the first recovery unit is configured to restore the operating parameter of the outdoor heat exchange acceleration device to the initial operating parameter or keep the operating parameter unchanged when the whole current of the mobile air conditioner is less than or equal to the second preset current.
  • the first adjusting unit is further configured to: when adjusting an operating parameter of each outdoor heat exchange acceleration device, sequentially adjust the outdoor heat transfer acceleration according to a sequence of the operating parameters from low to high.
  • the operating parameter of the device is operated according to the running parameter of the current gear position after each adjustment of the operating parameter;
  • the first determining unit is further configured to: after the first preset duration, determine whether the whole current of the mobile air conditioner is greater than a third preset current, where the third preset current is less than or equal to Describe the first preset current;
  • the first adjusting unit is further configured to: when the whole current of the mobile air conditioner is greater than the third preset current, continue to adjust the operating parameters of the outdoor heat exchange acceleration device according to the operating parameter corresponding to the next gear position, until Adjust to the highest gear position, and when adjusting to the highest gear position, continue to adjust the operating parameters of the next outdoor heat exchange acceleration device in a preset order until all operating parameters of the outdoor heat exchange acceleration device are adjusted;
  • the first recovery unit is further configured to switch an operation parameter of the outdoor heat exchange acceleration device to an initial operation parameter or maintain an operation parameter when a whole machine current of the mobile air conditioner is less than or equal to a third preset current change.
  • the outdoor heat exchange acceleration device includes an outdoor motor, a water pump, and a water pump
  • the first adjusting unit is further configured to sequentially adjust a rotation speed of the outdoor motor, a rotation speed of the water pump, and a flow rate of the water pump.
  • the adjusting module includes:
  • a second adjusting unit configured to sequentially adjust operating parameters of the outdoor heat exchange acceleration device in descending order of each gear position of the operating parameter
  • a running unit configured to run the first preset duration according to the running parameter of the current gear position after each adjusting the operating parameter
  • a second determining unit configured to determine, after the first preset duration, whether the whole current of the mobile air conditioner is greater than a third preset current, wherein the third preset current is less than or equal to the first Preset current;
  • the second adjusting unit is further configured to: when the whole current of the mobile air conditioner is greater than the third preset current, continue to adjust the operating parameters of the outdoor heat exchange acceleration device according to the operating parameter corresponding to the next gear position, until Adjust to the highest position;
  • a second recovery unit configured to switch an operation parameter of the outdoor heat exchange acceleration device to an initial operation parameter when a whole machine current of the mobile air conditioner is less than or equal to a third preset current.
  • the mobile air conditioning control device further includes:
  • a judging module configured to determine whether the whole current of the mobile air conditioner is greater than a fourth preset current after running the preset duration according to the adjusted operating parameter, wherein the fourth preset current is less than or equal to the first a preset current;
  • the adjustment module is further configured to reduce the rotation speed of the indoor motor when the whole current of the mobile air conditioner is greater than the fourth preset current.
  • the determining module is further configured to: after the indoor motor runs the preset time length according to the reduced speed, determine whether the whole current of the mobile air conditioner is greater than a fifth preset current, wherein the fifth preset current Less than or equal to the first preset current;
  • the mobile air conditioner control device further includes:
  • control module configured to control a compressor of the mobile air conditioner to stop running when a whole machine current of the mobile air conditioner is greater than a fifth preset current
  • a recovery module configured to restore the rotation speed of the indoor motor to an initial rotation speed or maintain the rotation speed when the whole current of the mobile air conditioner is less than or equal to a fifth preset current.
  • the adjusting module includes:
  • a third adjusting unit configured to sequentially reduce the rotation speed of the indoor motor in descending order of each gear position of the indoor motor
  • the operating unit is configured to run the first preset duration according to the speed of the current gear position after each decreasing the speed of the indoor motor;
  • a third determining unit configured to determine, after the first preset duration, whether the whole current of the mobile air conditioner is greater than a sixth preset current, wherein the sixth preset current is less than or equal to the first Preset current;
  • the third adjusting unit is further configured to: when the whole current of the mobile air conditioner is greater than the sixth preset current, continue to adjust the rotational speed of the indoor motor according to the wind speed corresponding to the next gear position until the lowest gear position is adjusted;
  • the third recovery unit is configured to switch the rotation speed of the indoor motor to the initial rotation speed or keep the rotation speed unchanged when the whole machine current of the mobile air conditioner is less than or equal to the third preset current.
  • the determining module is further configured to: after the indoor motor runs the preset time length according to the reduced speed, determine whether the whole current of the mobile air conditioner is greater than a fifth preset current, wherein the fifth preset current Less than or equal to the first preset current;
  • the mobile air conditioner control device further includes:
  • control module configured to control a compressor of the mobile air conditioner to stop running when a whole machine current of the mobile air conditioner is greater than a fifth preset current
  • a recovery module configured to restore the rotation speed of the indoor motor to an initial rotation speed or maintain the rotation speed when the whole current of the mobile air conditioner is less than or equal to a fifth preset current.
  • the mobile air conditioner control method and device provided by the invention can detect the whole machine current of the mobile air conditioner in real time or timing when the mobile air conditioner is in the cooling mode, and adjust the outdoor heat exchange acceleration when the whole machine current is greater than the first preset current value.
  • the operating parameters of the device to improve the heat exchange efficiency of the outdoor heat exchanger wherein the operating parameters of the outdoor heat exchange acceleration device include the rotational speed of the outdoor motor, the rotational speed of the water pump, and/or the flow rate of the water pump, by adjusting the rotational speed of the outdoor motor
  • the water motor speed and/or the water pump flow rate make the heat exchange efficiency of the outdoor heat exchanger higher, avoiding the indoor heat exchanger quickly reaching the high temperature protection temperature and reducing the number of starts and stops of the compressor.
  • FIG. 1 is a schematic flow chart of a first embodiment of a mobile air conditioner control method according to the present invention
  • FIG. 2 is a partial structural schematic view of a mobile air conditioner outdoor unit in a mobile air conditioner control device according to the present invention
  • FIG. 3 is a schematic diagram of functional modules of a first embodiment of a mobile air conditioner control device according to the present invention.
  • FIG. 4 is a schematic diagram of a refinement function module of an adjustment module in a second embodiment of a mobile air conditioner control device according to the present invention.
  • FIG. 5 is a schematic diagram of a refinement function module of an adjustment module in a third embodiment of the mobile air conditioner control device of the present invention.
  • FIG. 6 is a schematic diagram of functional modules of a fourth embodiment of a mobile air conditioner control device according to the present invention.
  • FIG. 7 is a schematic diagram of functional modules of a fifth embodiment of a mobile air conditioner control apparatus according to the present invention.
  • the invention provides a mobile air conditioning control method.
  • FIG. 1 is a schematic flow chart of a first embodiment of a mobile air conditioner control method according to the present invention.
  • the embodiment provides a mobile air conditioner control method, and the mobile air conditioner control method includes:
  • Step S10 detecting the current of the mobile air conditioner in real time or timing when the mobile air conditioner is in the cooling mode
  • the detection of the mobile air conditioner current can be realized by setting a current detecting device at the power line of the mobile air conditioner, and the period of the timing detection can be set by the developer according to requirements.
  • Step S20 adjusting the operating parameters of the outdoor heat exchange acceleration device when the current of the whole machine is greater than the first preset current value, so as to improve the heat exchange efficiency of the outdoor heat exchanger;
  • the operating parameters of the outdoor heat exchange acceleration device include an outdoor motor speed, a water motor speed, and/or a water pump flow rate.
  • the outdoor unit is provided with a compressor 1, an outdoor fan (not shown), and an outdoor motor (not shown) connected to an outdoor fan (not shown) through the outdoor motor. (not shown) can drive the outdoor fan (not shown) to rotate, the outdoor fan (not shown) can be a fan, and the outdoor fan (not shown) has a higher rotational speed. The rotational speed of the outdoor unit is also increased.
  • the outdoor unit is also provided with a water pump 2 for improving outdoor heat exchange and a water wheel 3 connected to the water pump 2, and the water motor 2 and the water wheel 3 are installed.
  • the water pump 2 drives the water wheel 3 to rotate to cause atomization of the condensed water to be sprayed onto the outdoor heat exchanger (not shown) for auxiliary heat exchange; meanwhile, the mobile air conditioner There is further provided a water pump 5 and a water pipe (not shown) connected to the water pump 5, and an outlet of the water pipe (not shown) is located near the water wheel 3, and the water pump 5 pumps the water to spray the condensed water through the water pipe. Dripping onto the water wheel 3, and then rotating the water wheel 3 to atomize the condensed water to spray Sprinkle on the outdoor heat exchanger for auxiliary heat transfer.
  • the heat exchange efficiency of the outdoor heat exchanger is further improved, and the indoor heat exchange is improved on the basis of the improvement of the efficiency of the outdoor heat exchanger.
  • the heat exchange efficiency of the device further avoids the situation where the compressor is restarted.
  • the operating parameters of the outdoor heat exchange acceleration device include the rotational speed of the outdoor motor, the rotational speed of the water pump, and/or the flow rate of the water pump.
  • the operating parameters of the outdoor heat exchange acceleration device include multiple, the plurality of operating parameters can be adjusted at the same time.
  • the operating parameters for example, when the outdoor heat exchange acceleration device includes the rotational speed of the outdoor motor and the rotational speed of the water motor, the rotational speed of the outdoor motor and the rotational speed of the water motor can be directly adjusted simultaneously when the current of the whole machine is greater than the first preset current value.
  • the speed of the outdoor motor can also be adjusted first.
  • the speed of the water pump is adjusted; or, the speed of the water motor is adjusted first, at a preset time. After the positive current is still greater than the first preset current, the rotational speed of the outdoor motor is adjusted.
  • the mobile air conditioner control method proposed by the invention detects the whole machine current of the mobile air conditioner in real time or timing when the mobile air conditioner is in the cooling mode, and adjusts the outdoor heat exchange acceleration device when the whole machine current is greater than the first preset current value
  • Operating parameters to improve the heat exchange efficiency of the outdoor heat exchanger include the rotational speed of the outdoor motor, the speed of the water motor, and/or the flow rate of the water pump, by adjusting the rotational speed of the outdoor motor,
  • the water motor speed and/or the water pump flow rate make the heat exchange efficiency of the outdoor heat exchanger higher, avoiding the indoor heat exchanger quickly reaching the high temperature protection temperature and reducing the number of start and stop of the compressor.
  • a second embodiment of the mobile air conditioner control method of the present invention is proposed based on the first embodiment.
  • the outdoor heat exchange acceleration device when the outdoor heat exchange acceleration device is plural, the operating parameters of the outdoor heat exchange acceleration device are adjusted.
  • the steps include:
  • the operating parameters of the outdoor heat exchange acceleration device are restored to the initial operating parameters or the operating parameters are kept unchanged.
  • the second preset current may be equal to the first preset current, or may be smaller than the first preset current.
  • the second preset current may be smaller than the first preset due to a decrease in the overall current after adjusting the operating parameters.
  • the preset duration may be equal to the period duration of the timing current acquisition, or may be unequal. The order of adjustment of the operating parameters of each outdoor heat exchange acceleration device can be reset by the developer according to requirements.
  • the operating parameters of the plurality of outdoor heat exchange acceleration devices can be simultaneously adjusted to improve the heat exchange efficiency of the outdoor heat exchanger.
  • the operating parameters of each of the outdoor heat exchange acceleration devices are sequentially adjusted in a preset order, and the operating parameters adjusted each time may be multiple or single.
  • the step of sequentially adjusting the operating parameters of each of the outdoor heat exchange acceleration devices according to a preset sequence includes: sequentially adjusting the rotation speed of the outdoor motor, and playing The speed of the water motor and the flow rate of the pump. It can be understood that the sequence can also be reset as needed, for example, the rotational speed of the water-sending motor, the rotational speed of the outdoor motor, and the flow rate of the water pump are sequentially adjusted.
  • the technical solution disclosed in this embodiment adjusts the operating parameters of each outdoor heat exchange acceleration device in turn, and detects the current of the whole machine after each adjustment. If the current of the whole machine decreases, the operating parameters of the outdoor heat exchange acceleration device are no longer adjusted. In the case of energy saving, reduce the number of restarts of the compressor.
  • the step of adjusting the operating parameters of the outdoor heat exchange acceleration device includes:
  • the first preset duration is run according to the running parameter of the current gear position
  • the operating parameters of the outdoor heat exchange acceleration device are continuously adjusted according to the operating parameters corresponding to the next gear position until the highest gear is adjusted;
  • the operating parameters of the outdoor heat exchange acceleration device are switched to the initial operating parameters or the operating parameters are kept unchanged.
  • the third preset current may be equal to the second preset current or may not be equal to the second preset current.
  • the outdoor fan speed includes three gear positions a, b, and c.
  • the current of the whole machine is greater than the first preset current value, and the current speed of the outdoor fan is a, Increase the speed of the outdoor fan from the a-speed to the b-speed, and then control the outdoor fan to run in the b-speed for a preset period of time, and check whether the current of the whole machine is less than or equal to the third preset current.
  • the current in the whole machine is less than or equal to the preset third.
  • the speed of the outdoor fan can be changed from the b-speed to the a-speed or the outdoor fan can be kept at the same speed. It can be understood that, when the current of the whole machine is greater than the first preset current value, the speed of the outdoor fan may have been adjusted once in other programs, and the speed of the outdoor fan may not be the lowest or the b. Or c file and other gears.
  • the current operation parameters may be determined to be the lowest gear position before the operation parameters of the outdoor heat exchange acceleration device are switched to the initial operation parameters.
  • the running parameter is kept unchanged; when the current running parameter is not the lowest gear position, the operating parameter of the outdoor heat exchange acceleration device is switched to the initial operating parameter.
  • the operating parameters are divided into a plurality of gear positions for adjustment, and the accuracy of the operating parameter adjustment is improved on the basis of energy saving.
  • the fourth embodiment of the mobile air conditioner control method of the present invention is proposed based on any of the above embodiments.
  • the step S20 includes the following steps:
  • the preset duration is run according to the adjusted operating parameter, it is determined whether the whole current of the mobile air conditioner is greater than a fourth preset current, wherein the fourth preset current is less than or equal to the first preset current;
  • the current operating parameter When the whole current of the mobile air conditioner is less than or equal to the fourth preset current, the current operating parameter may be maintained or the operating parameter may be restored to the initial operating parameter.
  • the fourth preset current may be equal to the second and third preset currents, or may be unequal.
  • the indoor heat exchange can be further reduced by reducing the rotational speed of the indoor motor, the positive load of the mobile air conditioner is reduced, and the number of restarts of the compressor is reduced.
  • the indoor motor can also set multiple gear positions, and adjust the rotation speed of the indoor motor according to multiple gear positions, that is, reduce the rotation speed of the indoor motor, including: according to the speed of the indoor motor, the gear positions are in descending order. Reducing the rotation speed of the indoor motor; after each decreasing the rotation speed of the indoor motor, running the first preset time length according to the current gear speed; after the first preset time length, determining the whole of the mobile air conditioner Whether the current is greater than a sixth preset current, wherein the sixth preset current is less than or equal to the first preset current; and when the whole current of the mobile air conditioner is greater than the sixth preset current, continue to follow Adjusting the rotation speed of the indoor motor to the lowest gear position according to the wind speed corresponding to the gear position; and switching the rotation speed of the indoor motor to the initial state when the whole machine current of the mobile air conditioner is less than or equal to the third preset current The speed or the speed of rotation is unchanged. It can be understood that the lowest gear can be zero.
  • the mobile air conditioner control method of the present invention is proposed based on the fourth embodiment.
  • the mobile air conditioner control method after the step of reducing the rotational speed of the indoor motor, the mobile air conditioner control method further includes:
  • the fifth preset current may be equal to the second to fourth preset currents, or may not be equal.
  • the indoor motor in order to save energy, can be turned off while controlling the compressor to stop running.
  • a prompt message can be output after the compressor is turned off to prompt the user.
  • the other parts of the mobile air conditioner can be turned off at the same time after the compressor is turned off.
  • the invention further provides a mobile air conditioning control device.
  • FIG. 3 is a schematic diagram of functional modules of a first embodiment of a mobile air conditioner control device according to the present invention.
  • the functional block diagram shown in FIG. 3 is merely an exemplary embodiment of a preferred embodiment, and those skilled in the art will surround the functional modules of the mobile air conditioner control device shown in FIG.
  • the new function modules can be easily supplemented; the names of the function modules are custom names, which are only used to assist the various program function blocks of the mobile air conditioner control device, and are not used to limit the technical solution of the present invention, and the core of the technical solution of the present invention is , the function to be achieved by the function module of each name.
  • the embodiment provides a mobile air conditioner control device, and the mobile air conditioner control device includes:
  • the detecting module 10 is configured to detect the current of the mobile air conditioner in real time or timing when the mobile air conditioner is in the cooling mode;
  • the detection of the mobile air conditioner current can be realized by setting a current detecting device at the power line of the mobile air conditioner, and the period of the timing detection can be set by the developer according to requirements.
  • the adjusting module 20 is configured to adjust an operating parameter of the outdoor heat exchange acceleration device when the current of the whole machine is greater than a first preset current value, so as to improve heat exchange efficiency of the outdoor heat exchanger;
  • the operating parameters of the outdoor heat exchange acceleration device include an outdoor motor speed, a water motor speed, and/or a water pump flow rate.
  • the outdoor unit is provided with an outdoor fan and an outdoor motor connected to the outdoor fan.
  • the outdoor motor can drive the outdoor fan to rotate, and the outdoor fan can be a fan.
  • the greater the rotational speed of the outdoor motor the greater the rotational speed of the outdoor fan.
  • the outdoor unit is also provided with a water pump for improving outdoor heat exchange and a water wheel connected to the water pump.
  • the water pump and the water wheel are installed in the water tray, and the water motor drives the water wheel to rotate.
  • the condensed water is atomized to be sprayed onto the outdoor heat exchanger for auxiliary heat exchange.
  • the mobile air conditioner is further provided with a water pump and a water pipe connected with the water pump.
  • the outlet of the water pipe is located near the water pump, and the water pump will pump water.
  • the water sprays the condensed water onto the water wheel through the water pipe, and then rotates the water to make the condensed water atomize, and sprays it onto the outdoor heat exchanger for auxiliary heat exchange.
  • the heat exchange efficiency of the outdoor heat exchanger is further improved, and the indoor heat exchange is improved on the basis of the improvement of the efficiency of the outdoor heat exchanger.
  • the heat exchange efficiency of the device further avoids the situation where the compressor is restarted.
  • the operating parameters of the outdoor heat exchange acceleration device include the rotational speed of the outdoor motor, the rotational speed of the water pump, and/or the flow rate of the water pump.
  • the operating parameters of the outdoor heat exchange acceleration device include multiple, the plurality of operating parameters can be adjusted at the same time.
  • the operating parameters for example, when the outdoor heat exchange acceleration device includes the rotational speed of the outdoor motor and the rotational speed of the water motor, the rotational speed of the outdoor motor and the rotational speed of the water motor can be directly adjusted simultaneously when the current of the whole machine is greater than the first preset current value.
  • the speed of the outdoor motor can also be adjusted first.
  • the speed of the water pump is adjusted; or, the speed of the water motor is adjusted first, at a preset time. After the positive current is still greater than the first preset current, the rotational speed of the outdoor motor is adjusted.
  • the mobile air conditioner control device proposed by the invention detects the whole machine current of the mobile air conditioner in real time or timing when the mobile air conditioner is in the cooling mode, and adjusts the outdoor heat exchange acceleration device when the whole machine current is greater than the first preset current value.
  • Operating parameters to improve the heat exchange efficiency of the outdoor heat exchanger wherein the operating parameters of the outdoor heat exchange acceleration device include the rotational speed of the outdoor motor, the speed of the water motor, and/or the flow rate of the water pump, by adjusting the rotational speed of the outdoor motor, The water motor speed and/or the water pump flow rate make the heat exchange efficiency of the outdoor heat exchanger higher, avoiding the indoor heat exchanger quickly reaching the high temperature protection temperature and reducing the number of start and stop of the compressor.
  • the adjustment module 20 includes:
  • the first adjusting unit 21 is configured to sequentially adjust operating parameters of each of the outdoor heat exchange acceleration devices in a preset order
  • the first determining unit 22 is configured to determine whether the current of the mobile air conditioner is greater than the first time after adjusting the operating parameters of each of the outdoor heat exchange acceleration devices and operating the preset operating time according to the adjusted operating parameters Two preset currents, wherein the second preset current is less than or equal to the first preset current;
  • the first adjusting unit 21 is further configured to continue to adjust operating parameters of the next outdoor heat exchange acceleration device according to a preset sequence when the whole current of the mobile air conditioner is greater than the second preset current, until all the adjustment parameters are adjusted.
  • the first recovery unit 23 is configured to restore the operating parameters of the outdoor heat exchange acceleration device to the initial operating parameters or keep the operating parameters unchanged when the overall current of the mobile air conditioner is less than or equal to the second preset current.
  • the second preset current may be equal to the first preset current, or may be smaller than the first preset current.
  • the second preset current may be smaller than the first preset due to a decrease in the overall current after adjusting the operating parameters.
  • the preset duration may be equal to the period duration of the timing current acquisition, or may be unequal. The order of adjustment of the operating parameters of each outdoor heat exchange acceleration device can be reset by the developer according to requirements.
  • the operating parameters of the plurality of outdoor heat exchange acceleration devices can be simultaneously adjusted to improve the heat exchange efficiency of the outdoor heat exchanger.
  • the operating parameters of each of the outdoor heat exchange acceleration devices are sequentially adjusted in a preset order, and the operating parameters adjusted each time may be multiple or single. It can be understood that, when there are a plurality of outdoor heat exchange acceleration devices, it may be necessary to sequentially adjust the operation parameters corresponding to the respective outdoor heat exchange acceleration devices, and the first adjustment unit 21 is further configured to adjust each outdoor heat transfer acceleration.
  • the first determining unit 22 is further configured to: after the first preset duration, determine whether the whole current of the mobile air conditioner is greater than a third preset current, wherein the third preset The current is less than or equal to the first preset current; the first adjusting unit 21 is further configured to continue to adjust the operating parameter corresponding to the next gear when the whole current of the mobile air conditioner is greater than the third preset current.
  • the operating parameters of the outdoor heat exchange acceleration device are adjusted until the highest gear position, and when adjusted to the highest gear position, the operation of the next outdoor heat exchange acceleration device is continuously adjusted in a preset order.
  • the first recovery unit 23 is further configured to change the outdoor environment when the whole current of the mobile air conditioner is less than or equal to a third preset current.
  • the operating parameters of the thermal acceleration device are switched to the initial operating parameters or the operating parameters are kept unchanged.
  • the outdoor heat exchange acceleration device includes an outdoor motor, a water pump, and a water pump
  • the outdoor heat exchange acceleration device includes an outdoor motor, a water pump, and a water pump
  • the first adjusting unit 21 is further configured to sequentially adjust the outdoor The speed of the motor, the speed of the water motor, and the flow rate of the pump. It can be understood that the sequence can also be reset as needed, for example, the rotational speed of the water-sending motor, the rotational speed of the outdoor motor, and the flow rate of the water pump are sequentially adjusted.
  • the technical solution disclosed in this embodiment adjusts the operating parameters of each outdoor heat exchange acceleration device in turn, and detects the current of the whole machine after each adjustment. If the current of the whole machine decreases, the operating parameters of the outdoor heat exchange acceleration device are no longer adjusted. In the case of energy saving, reduce the number of restarts of the compressor.
  • the adjustment module 20 further includes:
  • the second adjusting unit 24 is configured to sequentially adjust the operating parameters of the outdoor heat exchange acceleration device in descending order of the gear positions of the operating parameter;
  • the operating unit 25 is configured to run the first preset duration according to the running parameter of the current gear position after adjusting the operating parameter each time;
  • the second determining unit 26 is configured to determine, after the first preset duration, whether the whole current of the mobile air conditioner is greater than a third preset current, wherein the third preset current is less than or equal to the first a preset current;
  • the second adjusting unit 24 is further configured to: when the whole current of the mobile air conditioner is greater than the third preset current, continue to adjust the operating parameter of the outdoor heat exchange acceleration device according to the operating parameter corresponding to the next gear position, Until adjusted to the highest position;
  • the second recovery unit 27 is configured to switch the operating parameter of the outdoor heat exchange acceleration device to an initial operating parameter when the overall current of the mobile air conditioner is less than or equal to a third preset current.
  • the third preset current may be equal to the second preset current or may not be equal to the second preset current.
  • the outdoor fan speed includes three gear positions a, b, and c.
  • the current of the whole machine is greater than the first preset current value, and the current speed of the outdoor fan is a, Increase the speed of the outdoor fan from the a-speed to the b-speed, and then control the outdoor fan to run in the b-speed for a preset period of time, and check whether the current of the whole machine is less than or equal to the third preset current.
  • the current in the whole machine is less than or equal to the preset third.
  • the speed of the outdoor fan can be changed from the b-speed to the a-speed or the outdoor fan can be kept at the same speed. It can be understood that, when the current of the whole machine is greater than the first preset current value, the speed of the outdoor fan may have been adjusted once in other programs, and the speed of the outdoor fan may not be the lowest or the b. Or c file and other gears.
  • the second determining unit 26 It can be determined whether the current operating parameter is the lowest gear position, the current operating parameter is the lowest gear position, the second recovery unit 27 keeps the operating parameter unchanged; when the current operating parameter is not the lowest gear position, the second restoring unit 27 will The operating parameters of the outdoor heat exchange acceleration device are switched to the initial operating parameters.
  • the operating parameters are divided into a plurality of gear positions for adjustment, and the accuracy of the operating parameter adjustment is improved on the basis of energy saving.
  • the fourth embodiment of the mobile air conditioner control apparatus of the present invention is proposed based on any of the above embodiments.
  • the mobile air conditioner control apparatus further includes:
  • the determining module 30 is configured to determine whether the whole current of the mobile air conditioner is greater than a fourth preset current after running the preset duration according to the adjusted operating parameter, wherein the fourth preset current is less than or equal to the First preset current;
  • the adjustment module 20 is further configured to reduce the rotation speed of the indoor motor when the whole current of the mobile air conditioner is greater than the fourth preset current.
  • the current operating parameter When the whole current of the mobile air conditioner is less than or equal to the fourth preset current, the current operating parameter may be maintained or the operating parameter may be restored to the initial operating parameter.
  • the fourth preset current may be equal to the second and third preset currents, or may be unequal.
  • the indoor heat exchange can be further reduced by reducing the rotational speed of the indoor motor, the positive load of the mobile air conditioner is reduced, and the number of restarts of the compressor is reduced.
  • the indoor motor can also set a plurality of gear positions, and adjust the rotation speed of the indoor motor according to the plurality of gear positions, that is, the adjustment module 20 includes: a third adjustment unit, which is used for each gear position according to the rotation speed of the indoor motor.
  • the operating unit is configured to operate the first preset duration according to the speed of the current gear position each time the speed of the indoor motor is lowered;
  • the third determining unit is configured to: After the first preset duration, determining whether the whole current of the mobile air conditioner is greater than a sixth preset current, wherein the sixth preset current is less than or equal to the first preset current; and the third adjustment The unit is further configured to: when the whole machine current of the mobile air conditioner is greater than the sixth preset current, continue to adjust the rotation speed of the indoor motor according to the wind speed corresponding to the next gear position until the lowest gear position is adjusted; the third recovery unit And when the whole machine current of the mobile air conditioner is less than or equal to the third preset current, the speed of the indoor motor is switched to the initial speed or the rotation speed is kept unchanged. It can be understood that the lowest gear can be zero.
  • the determining module determines whether the whole current of the mobile air conditioner is greater than a sixth preset current, and when the whole current of the mobile air conditioner is greater than the sixth preset current, The adjustment module 20 turns off the indoor motor.
  • FIG. 7 a fifth embodiment of the mobile air conditioner control apparatus of the present invention is proposed based on the fourth embodiment.
  • this embodiment
  • the determining module 30 is further configured to: after the indoor motor runs the preset time length according to the reduced speed, determine whether the whole current of the mobile air conditioner is greater than a fifth preset current, wherein the fifth preset The current is less than or equal to the first preset current;
  • the mobile air conditioner control device further includes:
  • the control module 40 is configured to control the compressor of the mobile air conditioner to stop running when the whole current of the mobile air conditioner is greater than a fifth preset current;
  • the recovery module 50 is configured to restore the rotation speed of the indoor motor to the initial rotation speed or keep the rotation speed unchanged when the overall current of the mobile air conditioner is less than or equal to the fifth preset current.
  • the fifth preset current may be equal to the second to fourth preset currents, or may not be equal.
  • the indoor motor in order to save energy, can be turned off while controlling the compressor to stop running.
  • a prompt message can be output after the compressor is turned off to prompt the user.
  • the other parts of the mobile air conditioner can be turned off at the same time after the compressor is turned off.
  • the foregoing embodiment method can be implemented by means of software plus a necessary general hardware platform, and of course, can also be through hardware, but in many cases, the former is better.
  • Implementation Based on such understanding, the technical solution of the present invention, which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM, disk,
  • the optical disc includes a number of instructions for causing a terminal device (which may be a mobile phone, a computer, a cloud server, an air conditioner, or a network device, etc.) to perform the methods of various embodiments of the present invention.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Air Conditioning Control Device (AREA)

Abstract

一种移动空调控制方法和装置,该方法包括:在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流;在整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率;其中,室外换热加速装置的运行参数包括室外电机的转速、打水电机(2)转速及/或水泵(5)流量。通过调整室外电机的转速、打水电机(2)转速及/或水泵(5)流量使得室外换热器的换热效率更高,避免室内换热器快速达到高温保护温度,减少压缩机的启停次数。

Description

移动空调控制方法和装置
技术领域
本发明涉及移动空调技术领域,尤其涉及一种移动空调控制方法和装置。
背景技术
移动空调器由于室内机以及室外机一体化,要求空调器的体积较小,则对压缩机的性能要求很高。移动空调所在的环境对压缩机的运行状态的影响很大,在环境恶劣时,可能会导致压缩机快速达到停机保护的状态,使得压缩机频繁启停。
发明内容
本发明提供一种移动空调控制方法和装置,其主要目的在于解决恶劣环境下压缩机频繁启停的技术问题。
为实现上述目的,本发明提供一种移动空调控制方法,所述移动空调控制方法包括步骤:
在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流;
在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率;
其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量。
可选地,在所述室外换热加速装置为多个时,所述调整室外换热加速装置的运行参数的步骤包括:
按照预设的顺序依次调整各个所述室外换热加速装置的运行参数;
在调整完每个所述室外换热加速装置的运行参数后,且按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第二预设电流,其中,所述第二预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第二预设电流时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
在所述移动空调的整机电流小于或等于第二预设电流时,将所述室外换热加速装置的运行参数恢复至初始运行参数或保持运行参数不变。
可选地,在调整每个所述室外换热加速装置的运行参数时,按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数,在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;
在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位,并在调整至最高档位时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
可选地,所述室外换热加速装置包括室外电机、打水电机以及水泵,所述按照预设的顺序依次调整各个所述室外换热加速装置的运行参数的步骤包括:
依次调整所述室外电机的转速、打水电机的转速以及水泵的流量。
可选地,所述调整室外换热加速装置的运行参数的步骤包括:
按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数;
在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;
在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位;
在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
可选地,所述调整室外换热加速装置的运行参数,以提高室外换热器的换热效率的步骤之后,所述移动空调控制方法还包括步骤:
在按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第四预设电流,其中,所述第四预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第四预设电流时,降低室内电机的转速。
可选地,所述降低室内电机的转速的步骤之后,所述移动空调控制方法还包括:
在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速。
可选地,所述降低室内电机的转速的步骤包括:
按照室内电机的转速各个档位由高到低的顺序依次降低所述室内电机的转速;
在每次降低所述室内电机的转速后,按照当前档位的转速运行第一预设时长;
在所述第一预设时长后,判断所述移动空调的整机电流是否大于第六预设电流,其中,所述第六预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第六预设电流时,继续按照下一档位对应的风速调整所述室内电机的转速,直至调整至最低档位;
在所述移动空调的整机电流小于或等于第三预设电流时,将所述室内电机的转速切换至初始转速或保持转速不变。
可选地,所述降低室内电机的转速的步骤之后,移动空调控制方法包括:
在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速。
此外,为实现上述目的,本发明还提出一种移动空调控制装置,所述移动空调控制装置包括:
检测模块,用于在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流;
调整模块,用于在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率;
其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量。
可选地,所述调整模块包括:
第一调整单元,用于按照预设的顺序依次调整各个所述室外换热加速装置的运行参数;
第一判断单元,用于在调整完每个所述室外换热加速装置的运行参数后,且按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第二预设电流,其中,所述第二预设电流小于或等于所述第一预设电流;
所述第一调整单元,还用于在所述移动空调的整机电流大于第二预设电流时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
第一恢复单元,用于在所述移动空调的整机电流小于或等于第二预设电流时,将所述室外换热加速装置的运行参数恢复至初始运行参数或保持运行参数不变。
可选地,所述第一调整单元,还用于在调整每个室外换热加速装置的运行参数时,按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数,在每次调整所述运行参数后按照当前档位的运行参数运行第一预设时长;
所述第一判断单元,还用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
所述第一调整单元,还用于在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位,并在调整至最高档位时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
所述第一恢复单元,还用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
可选地,所述室外换热加速装置包括室外电机、打水电机以及水泵,所述第一调整单元,还用于依次调整所述室外电机的转速、打水电机的转速以及水泵的流量。
可选地,所述调整模块包括:
第二调整单元,用于按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数;
运行单元,用于在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;
第二判断单元,用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
所述第二调整单元,还用于在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位;
第二恢复单元,用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数。
可选地,所述移动空调控制装置还包括:
判断模块,用于在按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第四预设电流,其中,所述第四预设电流小于或等于所述第一预设电流;
所述调整模块,还用于在所述移动空调的整机电流大于第四预设电流时,降低室内电机的转速。
可选地,
所述判断模块,还用于在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
所述移动空调控制装置还包括:
控制模块,用于在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
恢复模块,用于在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速或者保持转速不变。
可选地,所述调整模块包括:
第三调整单元,用于按照室内电机的转速各个档位由高到低的顺序依次降低所述室内电机的转速;
运行单元,用于在每次降低所述室内电机的转速后,按照当前档位的转速运行第一预设时长;
第三判断单元,用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第六预设电流,其中,所述第六预设电流小于或等于所述第一预设电流;
第三调整单元,还用于在所述移动空调的整机电流大于第六预设电流时,继续按照下一档位对应的风速调整所述室内电机的转速,直至调整至最低档位;
第三恢复单元,用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室内电机的转速切换至初始转速或保持转速不变。
可选地,其特征在于,
所述判断模块,还用于在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
所述移动空调控制装置还包括:
控制模块,用于在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
恢复模块,用于在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速或者保持转速不变。
本发明提出的移动空调控制方法和装置,在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流,在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率,其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量,通过调整室外电机的转速、打水电机转速及/或水泵流量使得室外换热器的换热效率更高,避免室内换热器快速达到高温保护温度,减少压缩机的启停次数。
附图说明
图1为本发明移动空调控制方法第一实施例的流程示意图;
图2为本发明移动空调控制装置中移动空调室外机的部分结构示意图;
图3为本发明移动空调控制装置第一实施例的功能模块示意图;
图4为本发明移动空调控制装置第二实施例中调整模块的细化功能模块示意图;
图5为本发明移动空调控制装置第三实施例中调整模块的细化功能模块示意图;
图6为本发明移动空调控制装置第四实施例的功能模块示意图;
图7为本发明移动空调控制装置第五实施例的功能模块示意图。
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。
本发明提供一种移动空调控制方法。
参照图1,图1为本发明移动空调控制方法第一实施例的流程示意图。
本实施例提出一种移动空调控制方法,该移动空调控制方法包括:
步骤S10,在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流;
移动空调整机电流的检测可通过在移动空调的电源线处设置电流检测装置检测实现,该定时检测的周期可由开发人员根据需求进行设定。
步骤S20,在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率;
其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量。
如图2所示,室外机中设置有压缩机1、室外风机(图中未示出)以及与室外风机(图中未示出)连接的室外电机(图中未示出),通过室外电机(图中未示出)可带动室外风机(图中未示出)转动,室外风机(图中未示出)可为风扇,室外电机(图中未示出)的转速越大则室外风机(图中未示出)的转速越大;该室外机还设置有用于提高室外换热的打水电机2以及与打水电机2连接的打水轮3,打水电机2和打水轮3安装在接水盘4中,打水电机2驱动打水轮3转动使得冷凝水产生雾化,以喷洒到室外换热器(图中未示出)上进行辅助换热;同时,该移动空调上还设置有水泵5以及与水泵5连接的水管(图中未示出),水管(图中未示出)的出口位于打水轮3附近,水泵5泵水后将水通过水管将冷凝水喷淋到打水轮3上,再通过打水轮3转动使得冷凝水产生雾化,以喷洒到室外换热器上进行辅助换热。
通过上述结构描述可知,通过调整室外电机的转速、打水电机转速及/或水泵流量,使得室外换热器的换热效率进一步提高,在室外换热器效率提高的基础上,提高室内换热器的换热效率,进一步避免了压缩机重启的情况出现。
室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量,在室外换热加速装置的运行参数包括多个时,可同时调整多个运行参数也可依次调整各个运行参数,例如室外换热加速装置包括室外电机的转速和打水电机转速时,可在所述整机电流大于第一预设电流值时,可直接同时调整室外电机的转速和打水电机转速,也可先调整室外电机的转速,在预设时长后若正极电流还是大于第一预设电流,则在调整打水电机的转速;或者,在先调整打水电机的转速,在预设时长后若正极电流还是大于第一预设电流,则调整室外电机的转速。
本发明提出的移动空调控制方法,在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流,在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率,其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量,通过调整室外电机的转速、打水电机转速及/或水泵流量使得室外换热器的换热效率更高,避免室内换热器快速达到高温保护温度,减少压缩机的启停次数。
进一步地,基于第一实施例提出本发明移动空调控制方法第二实施例,在本实施例中,在所述室外换热加速装置为多个时,所述调整室外换热加速装置的运行参数的步骤包括:
按照预设的顺序依次调整各个所述室外换热加速装置的运行参数;
在调整完每个所述室外换热加速装置的运行参数后,且按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第二预设电流,其中,所述第二预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第二预设电流时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
在所述移动空调的整机电流小于或等于第二预设电流时,将所述室外换热加速装置的运行参数恢复至初始运行参数或保持运行参数不变。
该第二预设电流可等于第一预设电流,也可小于第一预设电流,由于在调整运行参数后整机电流会出现降低的情况,则第二预设电流可小于第一预设电流。该预设时长可等于定时获取电流的周期时长,也可不等。各个室外换热加速装置的运行参数的调整顺序可由开发人员根据需求重新设定。
可以理解的是,在所述室外换热加速装置为多个时,可同时调整多个室外换热加速装置的运行参数,以提高室外换热器的换热效率。或者,按照预设的顺序依次调整各个所述室外换热加速装置的运行参数,每次调整的运行参数可为多个或单个。由于在室外换热加速装置为多个时,可能需要依次调整各个室外换热加速装置对应的运行参数,则在调整每个室外换热加速装置的运行参数时,按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数,在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位,并在调整至最高档位时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
在室外换热加速装置包括室外电机、打水电机以及水泵时所述按照预设的顺序依次调整各个所述室外换热加速装置的运行参数的步骤包括:依次调整所述室外电机的转速、打水电机的转速以及水泵的流量。可以理解的是,该顺序也可根据需要重新设置,例如依次调整所述打水电机的转速、所述室外电机的转速以及水泵的流量。
本实施例公开的技术方案,通过依次调整各个室外换热加速装置的运行参数,每次调整完之后检测整机电流,若整机电流减小,则不再调整室外换热加速装置的运行参数,在节能的情况下,减少压缩机的重启次数。
进一步地,基于第一或第二实施例,提出本发明移动空调控制方法第三实施例,在本实施例中,所述调整室外换热加速装置的运行参数的步骤包括:
按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数;
在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;
在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位;
在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
该第三预设电流可等于第二预设电流,也可不等于第二预设电流。例如,在运行参数为室外风机转速时,室外风机转速包括a、b以及c三个档位,在在所述整机电流大于第一预设电流值时,且室外风机当前转速为a当时,将室外风机转速由a档升为b档,然后控制室外风机以b档运行预设时长后,检测整机电流是否小于或等于第三预设电流,在整机电流小于或等于预设第三预设电流时,可将室外风机的转速由b档将为a档,或者保持室外风机的转速不变。可以理解的是,在在所述整机电流大于第一预设电流值时,室外风机的转速可能在其它程序中已经调整过一次了,则室外风机的转速可能不是最低档也可能为b档或者c档等档位。
由于有的室外换热加速装置在之前可能未开启例如水泵以及打水电机,则在将所述室外换热加速装置的运行参数切换至初始运行参数之前可判断当前运参数是否为最低档位,在当前运行参数为最低档位至,保持运行参数不变;在当前运行参数不是最低档位时,将所述室外换热加速装置的运行参数切换至初始运行参数。
本实施例公开的技术方案中,将运行参数分为多个档位进行调整,在节能的基础上,提高运行参数调整的准确性。
进一步地,为进一步降低压缩机重启的次数,基于上述任一实施例提出本发明移动空调控制方法第四实施例,在本实施例中步骤S20之后包括步骤:
在按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第四预设电流,其中,所述第四预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第四预设电流时,降低室内电机的转速。
在所述移动空调的整机电流小于或等于第四预设电流时,可保持当前的运行参数不变或者恢复运行参数至初始运行参数。第四预设电流可等于第二和第三预设电流,也可不等。
本实施例公开的技术方案中,通过降低室内电机的转速可进一步降低室内换热,降低移动空调正极负载,减少压缩机重启次数。
可以理解的是,室内电机也可设置多个档位,并按照多个档位调节室内电机的转速,即降低室内电机的转速包括:按照室内电机的转速各个档位由高到低的顺序依次降低所述室内电机的转速;在每次降低所述室内电机的转速后,按照当前档位的转速运行第一预设时长;在所述第一预设时长后,判断所述移动空调的整机电流是否大于第六预设电流,其中,所述第六预设电流小于或等于所述第一预设电流;在所述移动空调的整机电流大于第六预设电流时,继续按照下一档位对应的风速调整所述室内电机的转速,直至调整至最低档位;在所述移动空调的整机电流小于或等于第三预设电流时,将所述室内电机的转速切换至初始转速或保持转速不变。可以理解的是,最低档位可为0。
或者,降低室内电机的转速第一预设时长后,判断所述移动空调的整机电流是否大于第六预设电流,在所述移动空调的整机电流大于第六预设电流时,关闭室内电机。
进一步地,基于第四实施例提出本发明移动空调控制方法第五实施例,在本实施例中,降低室内电机转速的步骤之后,所述移动空调控制方法还包括:
在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速。
第五预设电流可等于第二至第四预设电流,也可不相等。在本实施例中为节省能耗可在控制压缩机停止运行的同时关闭室内电机。在关闭压缩机之后可输出提示信息,以提示用户。压缩机关闭后可同时关闭移动空调器的其它部件。
本实施例公开的方案中,在通过其它手段均降低移动空调的正极负荷时,通过关闭压缩机来降低移动空调的整机负荷,避免压缩机频繁重启。
本发明进一步提供一种移动空调控制装置。
参照图3,图3为本发明移动空调控制装置第一实施例的功能模块示意图。
需要强调的是,对本领域的技术人员来说,图3所示功能模块图仅仅是一个较佳实施例的示例图,本领域的技术人员围绕图3所示的移动空调控制装置的功能模块,可轻易进行新的功能模块的补充;各功能模块的名称是自定义名称,仅用于辅助移动空调控制装置的各个程序功能块,不用于限定本发明的技术方案,本发明技术方案的核心是,各自定义名称的功能模块所要达成的功能。
本实施例提出一种移动空调控制装置,该移动空调控制装置包括:
检测模块10,用于在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流;
移动空调整机电流的检测可通过在移动空调的电源线处设置电流检测装置检测实现,该定时检测的周期可由开发人员根据需求进行设定。
调整模块20,用于在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率;
其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量。
如图2所示,室外机中设置有室外风机以及与室外风机连接的室外电机,通过室外电机可带动室外风机转动,室外风机可为风扇,室外电机的转速越大则室外风机的转速越大;该室外机还设置有用于提高室外换热的打水电机以及与打水电机连接的打水轮,打水电机和打水轮安装在接水盘中,打水电机驱动打水轮转动使得冷凝水产生雾化,以喷洒到室外换热器上进行辅助换热;同时,该移动空调上还设置有水泵以及与水泵连接的水管,水管的出口位于打水轮附近,水泵泵水后将水通过水管将冷凝水喷淋到打水轮上,再通过打水轮转动使得冷凝水产生雾化,以喷洒到室外换热器上进行辅助换热。
通过上述结构描述可知,通过调整室外电机的转速、打水电机转速及/或水泵流量,使得室外换热器的换热效率进一步提高,在室外换热器效率提高的基础上,提高室内换热器的换热效率,进一步避免了压缩机重启的情况出现。
室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量,在室外换热加速装置的运行参数包括多个时,可同时调整多个运行参数也可依次调整各个运行参数,例如室外换热加速装置包括室外电机的转速和打水电机转速时,可在所述整机电流大于第一预设电流值时,可直接同时调整室外电机的转速和打水电机转速,也可先调整室外电机的转速,在预设时长后若正极电流还是大于第一预设电流,则在调整打水电机的转速;或者,在先调整打水电机的转速,在预设时长后若正极电流还是大于第一预设电流,则调整室外电机的转速。
本发明提出的移动空调控制装置,在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流,在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率,其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量,通过调整室外电机的转速、打水电机转速及/或水泵流量使得室外换热器的换热效率更高,避免室内换热器快速达到高温保护温度,减少压缩机的启停次数。
进一步地,参照图4,基于第一实施例提出本发明移动空调控制装置第二实施例,在本实施例中,在所述室外换热加速装置为多个时,所述调整模块20包括:
第一调整单元21,用于按照预设的顺序依次调整各个所述室外换热加速装置的运行参数;
第一判断单元22,用于在调整完每个所述室外换热加速装置的运行参数后,且按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第二预设电流,其中,所述第二预设电流小于或等于所述第一预设电流;
所述第一调整单元21,还用于在所述移动空调的整机电流大于第二预设电流时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
第一恢复单元23,用于在所述移动空调的整机电流小于或等于第二预设电流时,将所述室外换热加速装置的运行参数恢复至初始运行参数或保持运行参数不变。
该第二预设电流可等于第一预设电流,也可小于第一预设电流,由于在调整运行参数后整机电流会出现降低的情况,则第二预设电流可小于第一预设电流。该预设时长可等于定时获取电流的周期时长,也可不等。各个室外换热加速装置的运行参数的调整顺序可由开发人员根据需求重新设定。
可以理解的是,在所述室外换热加速装置为多个时,可同时调整多个室外换热加速装置的运行参数,以提高室外换热器的换热效率。或者,按照预设的顺序依次调整各个所述室外换热加速装置的运行参数,每次调整的运行参数可为多个或单个。可以理解的是,由于在室外换热加速装置为多个时,可能需要依次调整各个室外换热加速装置对应的运行参数,则第一调整单元21,还用于在调整每个室外换热加速装置的运行参数时,按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数,在每次调整所述运行参数后按照当前档位的运行参数运行第一预设时长;第一判断单元22,还用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;第一调整单元21,还用于在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位,并在调整至最高档位时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;第一恢复单元23,还用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
在室外换热加速装置包括室外电机、打水电机以及水泵时,所述室外换热加速装置包括室外电机、打水电机以及水泵,所述第一调整单元21,还用于依次调整所述室外电机的转速、打水电机的转速以及水泵的流量。可以理解的是,该顺序也可根据需要重新设置,例如依次调整所述打水电机的转速、所述室外电机的转速以及水泵的流量。
本实施例公开的技术方案,通过依次调整各个室外换热加速装置的运行参数,每次调整完之后检测整机电流,若整机电流减小,则不再调整室外换热加速装置的运行参数,在节能的情况下,减少压缩机的重启次数。
进一步地,参照图5,基于第一或第二实施例,提出本发明移动空调控制装置第三实施例,在本实施例中,所述调整模块20还包括:
第二调整单元24,用于按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数;
运行单元25,用于在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;
第二判断单元26,用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
所述第二调整单元24,还用于在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位;
第二恢复单元27,用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数。
该第三预设电流可等于第二预设电流,也可不等于第二预设电流。例如,在运行参数为室外风机转速时,室外风机转速包括a、b以及c三个档位,在在所述整机电流大于第一预设电流值时,且室外风机当前转速为a当时,将室外风机转速由a档升为b档,然后控制室外风机以b档运行预设时长后,检测整机电流是否小于或等于第三预设电流,在整机电流小于或等于预设第三预设电流时,可将室外风机的转速由b档将为a档,或者保持室外风机的转速不变。可以理解的是,在在所述整机电流大于第一预设电流值时,室外风机的转速可能在其它程序中已经调整过一次了,则室外风机的转速可能不是最低档也可能为b档或者c档等档位。
由于有的室外换热加速装置在之前可能未开启例如水泵以及打水电机,则在第二恢复单元27将所述室外换热加速装置的运行参数切换至初始运行参数之前,第二判断单元26可判断当前运参数是否为最低档位,在当前运行参数为最低档位至,第二恢复单元27保持运行参数不变;在当前运行参数不是最低档位时,第二恢复单元27将所述室外换热加速装置的运行参数切换至初始运行参数。
本实施例公开的技术方案中,将运行参数分为多个档位进行调整,在节能的基础上,提高运行参数调整的准确性。
进一步地,参照图6,为进一步降低压缩机重启的次数,基于上述任一实施例提出本发明移动空调控制装置第四实施例,在本实施例中所述移动空调控制装置还包括:
判断模块30,用于在按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第四预设电流,其中,所述第四预设电流小于或等于所述第一预设电流;
所述调整模块20,还用于在所述移动空调的整机电流大于第四预设电流时,降低室内电机的转速。
在所述移动空调的整机电流小于或等于第四预设电流时,可保持当前的运行参数不变或者恢复运行参数至初始运行参数。第四预设电流可等于第二和第三预设电流,也可不等。
本实施例公开的技术方案中,通过降低室内电机的转速可进一步降低室内换热,降低移动空调正极负载,减少压缩机重启次数。
可以理解的是,室内电机也可设置多个档位,并按照多个档位调节室内电机的转速,即调整模块20包括:第三调整单元,用于按照室内电机的转速各个档位由高到低的顺序依次降低所述室内电机的转速;运行单元,用于在每次降低所述室内电机的转速后,按照当前档位的转速运行第一预设时长;第三判断单元,用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第六预设电流,其中,所述第六预设电流小于或等于所述第一预设电流;第三调整单元,还用于在所述移动空调的整机电流大于第六预设电流时,继续按照下一档位对应的风速调整所述室内电机的转速,直至调整至最低档位;第三恢复单元,用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室内电机的转速切换至初始转速或保持转速不变。可以理解的是,最低档位可为0。
或者,降低室内电机的转速第一预设时长后,判断模块判断所述移动空调的整机电流是否大于第六预设电流,在所述移动空调的整机电流大于第六预设电流时,调整模块20关闭室内电机。
进一步地,参照图7,基于第四实施例提出本发明移动空调控制装置第五实施例,在本实施例中,
所述判断模块30,还用于在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
所述移动空调控制装置还包括:
控制模块40,用于在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
恢复模块50,用于在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速或者保持转速不变。
第五预设电流可等于第二至第四预设电流,也可不相等。在本实施例中为节省能耗可在控制压缩机停止运行的同时关闭室内电机。在关闭压缩机之后可输出提示信息,以提示用户。压缩机关闭后可同时关闭移动空调器的其它部件。
本实施例公开的方案中,在通过其它手段均降低移动空调的正极负荷时,通过关闭压缩机来降低移动空调的整机负荷,避免压缩机频繁重启。
需要说明的是,在本文中,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
上述本发明实施例序号仅仅为了描述,不代表实施例的优劣。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到上述实施例方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机,云端服务器,空调器,或者网络设备等)执行本发明各个实施例的方法。
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 (18)

  1. 一种移动空调控制方法,其特征在于,所述移动空调控制方法包括步骤:
    在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流;
    在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率;
    其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量。
  2. 如权利要求1所述的移动空调控制方法,其特征在于,在所述室外换热加速装置为多个时,所述调整室外换热加速装置的运行参数的步骤包括:
    按照预设的顺序依次调整各个所述室外换热加速装置的运行参数;
    在调整完每个所述室外换热加速装置的运行参数后,且按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第二预设电流,其中,所述第二预设电流小于或等于所述第一预设电流;
    在所述移动空调的整机电流大于第二预设电流时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
    在所述移动空调的整机电流小于或等于第二预设电流时,将所述室外换热加速装置的运行参数恢复至初始运行参数或保持运行参数不变。
  3. 如权利要求2所述的移动空调控制方法,其特征在于,
    在调整每个所述室外换热加速装置的运行参数时,按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数,在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;
    在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
    在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位,并在调整至最高档位时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
    在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
  4. 如权利要求2所述的移动空调控制方法,其特征在于,所述室外换热加速装置包括室外电机、打水电机以及水泵,所述按照预设的顺序依次调整各个所述室外换热加速装置的运行参数的步骤包括:
    依次调整所述室外电机的转速、打水电机的转速以及水泵的流量。
  5. 如权利要求1所述的移动空调控制方法,其特征在于,所述调整室外换热加速装置的行参数的步骤包括:
    按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数;
    在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;
    在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
    在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位;
    在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
  6. 如权利要求1所述的移动空调控制方法,其特征在于,所述调整室外换热加速装置的运行参数,以提高室外换热器的换热效率的步骤之后,所述移动空调控制方法还包括步骤:
    在按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第四预设电流,其中,所述第四预设电流小于或等于所述第一预设电流;
    在所述移动空调的整机电流大于第四预设电流时,降低室内电机的转速。
  7. 如权利要求6所述的移动空调控制方法,其特征在于,所述降低室内电机的转速的步骤之后,所述移动空调控制方法还包括:
    在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
    在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
    在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速。
  8. 如权利要求6所述的移动空调控制方法,其特征在于,所述降低室内电机的转速的步骤包括:
    按照室内电机的转速各个档位由高到低的顺序依次降低所述室内电机的转速;
    在每次降低所述室内电机的转速后,按照当前档位的转速运行第一预设时长;
    在所述第一预设时长后,判断所述移动空调的整机电流是否大于第六预设电流,其中,所述第六预设电流小于或等于所述第一预设电流;
    在所述移动空调的整机电流大于第六预设电流时,继续按照下一档位对应的风速调整所述室内电机的转速,直至调整至最低档位;
    在所述移动空调的整机电流小于或等于第三预设电流时,将所述室内电机的转速切换至初始转速或保持转速不变。
  9. 如权利要求8所述的移动空调控制方法,其特征在于,所述降低室内电机的转速的步骤之后,移动空调控制方法包括:
    在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
    在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
    在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速。
  10. 一种移动空调控制装置,其特征在于,所述移动空调控制装置包括:
    检测模块,用于在移动空调处于制冷模式时,实时或定时检测移动空调的整机电流;
    调整模块,用于在所述整机电流大于第一预设电流值时,调整室外换热加速装置的运行参数,以提高室外换热器的换热效率;
    其中,所述室外换热加速装置的运行参数包括室外电机的转速、打水电机转速及/或水泵流量。
  11. 如权利要求10所述的移动空调控制装置,其特征在于,所述调整模块包括:
    第一调整单元,用于按照预设的顺序依次调整各个所述室外换热加速装置的运行参数;
    第一判断单元,用于在调整完每个所述室外换热加速装置的运行参数后,且按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第二预设电流,其中,所述第二预设电流小于或等于所述第一预设电流;
    所述第一调整单元,还用于在所述移动空调的整机电流大于第二预设电流时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
    第一恢复单元,用于在所述移动空调的整机电流小于或等于第二预设电流时,将所述室外换热加速装置的运行参数恢复至初始运行参数或保持运行参数不变。
  12. 如权利要求11所述的移动空调控制装置,其特征在于,
    所述第一调整单元,还用于在调整每个室外换热加速装置的运行参数时,按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数,在每次调整所述运行参数后按照当前档位的运行参数运行第一预设时长;
    所述第一判断单元,还用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
    所述第一调整单元,还用于在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位,并在调整至最高档位时,按照预设的顺序继续调整下一室外换热加速装置的运行参数,直至调整完所有所述室外换热加速装置的运行参数;
    所述第一恢复单元,还用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数或保持运行参数不变。
  13. 如权利要求12所述的移动空调控制装置,其特征在于,所述室外换热加速装置包括室外电机、打水电机以及水泵,所述第一调整单元,还用于依次调整所述室外电机的转速、打水电机的转速以及水泵的流量。
  14. 如权利要求10所述的移动空调控制装置,其特征在于,所述调整模块包括:
    第二调整单元,用于按照所述运行参数各个档位由低到高的顺序依次调整所述室外换热加速装置的运行参数;
    运行单元,用于在每次调整所述运行参数后,按照当前档位的运行参数运行第一预设时长;
    第二判断单元,用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第三预设电流,其中,所述第三预设电流小于或等于所述第一预设电流;
    所述第二调整单元,还用于在所述移动空调的整机电流大于第三预设电流时,继续按照下一档位对应的运行参数调整所述室外换热加速装置的运行参数,直至调整至最高档位;
    第二恢复单元,用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室外换热加速装置的运行参数切换至初始运行参数。
  15. 如权利要求10所述的移动空调控制装置,其特征在于,所述移动空调控制装置还包括:
    判断模块,用于在按照调整后的运行参数运行预设时长后,判断所述移动空调的整机电流是否大于第四预设电流,其中,所述第四预设电流小于或等于所述第一预设电流;
    所述调整模块,还用于在所述移动空调的整机电流大于第四预设电流时,降低室内电机的转速。
  16. 如权利要求15所述的移动空调控制装置,其特征在于,
    所述判断模块,还用于在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
    所述移动空调控制装置还包括:
    控制模块,用于在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
    恢复模块,用于在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速或者保持转速不变。
  17. 如权利要求15所述的移动空调控制装置,其特征在于,所述调整模块包括:
    第三调整单元,用于按照室内电机的转速各个档位由高到低的顺序依次降低所述室内电机的转速;
    运行单元,用于在每次降低所述室内电机的转速后,按照当前档位的转速运行第一预设时长;
    第三判断单元,用于在所述第一预设时长后,判断所述移动空调的整机电流是否大于第六预设电流,其中,所述第六预设电流小于或等于所述第一预设电流;
    第三调整单元,还用于在所述移动空调的整机电流大于第六预设电流时,继续按照下一档位对应的风速调整所述室内电机的转速,直至调整至最低档位;
    第三恢复单元,用于在所述移动空调的整机电流小于或等于第三预设电流时,将所述室内电机的转速切换至初始转速或保持转速不变。
  18. 如权利要求17所述的移动空调控制装置,其特征在于,
    所述判断模块,还用于在所述室内电机按照降低后的转速运行预设时长后,判断所述移动空调的整机电流是否大于第五预设电流,其中,所述第五预设电流小于或等于所述第一预设电流;
    所述移动空调控制装置还包括:
    控制模块,用于在所述移动空调的整机电流大于第五预设电流时,控制所述移动空调的压缩机停止运行;
    恢复模块,用于在所述移动空调的整机电流小于或等于第五预设电流时,将所述室内电机的转速恢复至初始转速或者保持转速不变。
PCT/CN2017/078822 2017-03-30 2017-03-30 移动空调控制方法和装置 WO2018176331A1 (zh)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/CN2017/078822 WO2018176331A1 (zh) 2017-03-30 2017-03-30 移动空调控制方法和装置

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2017/078822 WO2018176331A1 (zh) 2017-03-30 2017-03-30 移动空调控制方法和装置

Publications (1)

Publication Number Publication Date
WO2018176331A1 true WO2018176331A1 (zh) 2018-10-04

Family

ID=63673973

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/078822 WO2018176331A1 (zh) 2017-03-30 2017-03-30 移动空调控制方法和装置

Country Status (1)

Country Link
WO (1) WO2018176331A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112032963A (zh) * 2020-08-14 2020-12-04 海信(山东)空调有限公司 移动空调控制方法和具有其的移动空调

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61211657A (ja) * 1985-03-15 1986-09-19 Sharp Corp 空気調和機用の電流制御装置
JPH10281530A (ja) * 1997-03-31 1998-10-23 Fujitsu General Ltd 空気調和機の制御方法
CN104566666A (zh) * 2014-12-22 2015-04-29 广东美的制冷设备有限公司 窗式空调的供水装置、窗式空调及供水装置的控制方法
CN105091185A (zh) * 2014-04-22 2015-11-25 海信(山东)空调有限公司 一种控制空调器的方法、装置和空调器
CN106196494A (zh) * 2016-08-01 2016-12-07 珠海格力电器股份有限公司 一种整机过负荷控制方法及装置
CN106247483A (zh) * 2016-08-12 2016-12-21 青岛海尔空调器有限总公司 电抗器温度的控制方法及装置
CN107023942A (zh) * 2017-03-30 2017-08-08 广东美的制冷设备有限公司 移动空调控制方法和装置

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61211657A (ja) * 1985-03-15 1986-09-19 Sharp Corp 空気調和機用の電流制御装置
JPH10281530A (ja) * 1997-03-31 1998-10-23 Fujitsu General Ltd 空気調和機の制御方法
CN105091185A (zh) * 2014-04-22 2015-11-25 海信(山东)空调有限公司 一种控制空调器的方法、装置和空调器
CN104566666A (zh) * 2014-12-22 2015-04-29 广东美的制冷设备有限公司 窗式空调的供水装置、窗式空调及供水装置的控制方法
CN106196494A (zh) * 2016-08-01 2016-12-07 珠海格力电器股份有限公司 一种整机过负荷控制方法及装置
CN106247483A (zh) * 2016-08-12 2016-12-21 青岛海尔空调器有限总公司 电抗器温度的控制方法及装置
CN107023942A (zh) * 2017-03-30 2017-08-08 广东美的制冷设备有限公司 移动空调控制方法和装置

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112032963A (zh) * 2020-08-14 2020-12-04 海信(山东)空调有限公司 移动空调控制方法和具有其的移动空调

Similar Documents

Publication Publication Date Title
WO2020011019A1 (zh) 电子膨胀阀的控制方法、空调器及计算机可读存储介质
WO2020042689A1 (zh) 空调器的控制方法、空调器及计算机可读存储介质
WO2020073450A1 (zh) 一拖多空调器及其控制方法、装置和计算机可读存储介质
WO2019114553A1 (zh) 空气调节器及其控制方法、装置以及存储介质
WO2020077753A1 (zh) 控制终端、一拖多空调器的控制方法及装置和存储介质
WO2018018808A1 (zh) 空调器及其温湿度控制方法
WO2016186343A1 (ko) 온수 공급 방법, 온수 공급 장치 및 이를 이용한 정수기
WO2020124847A1 (zh) 空调器的控制方法、空调器及存储介质
WO2015161623A1 (zh) 太阳能空调及其控制方法和控制装置
WO2016065619A1 (zh) 一种数据流量管理方法及装置
WO2020093707A1 (zh) 空调器控制方法、空调器及计算机可读存储介质
WO2011147076A1 (zh) 一种双电源平稳切换装置及方法
WO2020062616A1 (zh) 显示面板的伽马值调节方法、装置及显示设备
WO2017008521A1 (zh) 一种基于移动终端的智能家电控制方法及移动终端、附件
WO2020019735A1 (zh) 家电设备及其联网控制方法、装置、移动终端
WO2012173408A2 (ko) 파워 릴레이 어셈블리 구동 장치 및 그 구동 방법
WO2020124848A1 (zh) 空调器的控制方法、空调器及存储介质
WO2018151511A1 (ko) 배관내부 주행로봇
WO2020155359A1 (zh) 家电设备的控制方法、服务器、家电设备及存储介质
WO2020077749A1 (zh) 一拖多空调器及其控制方法、装置和计算机可读存储介质
WO2017000216A1 (zh) 充电控制电路、充电装置、充电系统及充电控制方法
WO2019114559A1 (zh) 空气调节器的控制方法、装置及计算机可读存储介质
WO2020220656A1 (zh) 空调器的控制方法、空调器及计算机可读存储介质
WO2021012481A1 (zh) 系统性能监控方法、装置、设备及存储介质
WO2019114552A1 (zh) 空气调节装置及控制方法、终端和存储介质

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17903841

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17903841

Country of ref document: EP

Kind code of ref document: A1