WO2019056296A1 - 一种环境调节方法、系统及终端设备 - Google Patents

一种环境调节方法、系统及终端设备 Download PDF

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Publication number
WO2019056296A1
WO2019056296A1 PCT/CN2017/102919 CN2017102919W WO2019056296A1 WO 2019056296 A1 WO2019056296 A1 WO 2019056296A1 CN 2017102919 W CN2017102919 W CN 2017102919W WO 2019056296 A1 WO2019056296 A1 WO 2019056296A1
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Prior art keywords
preset
environmental parameter
location
user
adjustment coefficient
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PCT/CN2017/102919
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English (en)
French (fr)
Inventor
吴志勇
Original Assignee
深圳市奥星澳科技有限公司
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.)
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Application filed by 深圳市奥星澳科技有限公司 filed Critical 深圳市奥星澳科技有限公司
Priority to CN201780001102.7A priority Critical patent/CN110325797A/zh
Priority to PCT/CN2017/102919 priority patent/WO2019056296A1/zh
Publication of WO2019056296A1 publication Critical patent/WO2019056296A1/zh

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Classifications

    • 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

  • This embodiment belongs to the field of intelligent control technologies, and in particular, to an environment adjustment method, system, and terminal device.
  • intelligent control devices such as smart home appliances
  • people can adjust indoor environments (such as indoor temperature, indoor air various indicators, etc.) to themselves before entering the room.
  • the desired state without having to wait for it to enter the room before making adjustments.
  • the intelligent control device after receiving the adjustment instruction of the user, the intelligent control device directly adjusts the indoor environment to the corresponding state, but after being adjusted by the intelligent control device, the difference between the indoor environment and the outdoor environment or the user's own state may be different. Too big to have a bad impact on users.
  • the present embodiment provides an environment adjustment method, system, and terminal device, which are intended to solve the problem that the existing indoor environment adjustment method cannot perform indoor environment adjustment according to the user's condition. .
  • a first aspect of the embodiments of the present application provides an environment adjustment method, where the environment adjustment method includes: [0006] acquiring a current position of a user to determine a positional relationship between the current location and a preset location;
  • the second aspect of the embodiment of the present application provides an environment adjustment system, where the environment adjustment system includes: [0010] a location relationship determining unit, configured to acquire a current location of the user, determine the current location and a preset location. Positional relationship
  • an adjustment coefficient determining unit configured to acquire an environmental parameter of the preset position, and determine an adjustment coefficient according to the environmental parameter and the positional relationship;
  • an adjusting unit configured to control, according to the adjustment coefficient, the intelligent control device to adjust an environmental parameter of the preset position to a preset target.
  • a third aspect of the embodiments of the present application provides a terminal device, including a memory, a processor, and a computer program stored in the memory and operable on the processor, the processor executing the The computer program implements the steps of the method of any of the environmental conditioning methods described.
  • a fourth aspect of the embodiments of the present application provides a computer readable storage medium, where the computer readable storage medium stores a computer program, and when the computer program is executed by a processor, implements an environment adjustment method as described in the foregoing The steps of any of the methods described.
  • the cloud determines a positional relationship between the current location and the preset location according to the obtained current location of the user, and then acquires an environmental parameter of the preset location, according to the environmental parameter.
  • the positional relationship determines an adjustment coefficient; and the intelligent control device is controlled to adjust an environmental parameter of the preset position to a preset target according to the adjustment coefficient.
  • the cloud calculates the adjustment coefficient according to the current position of the user acquired from the intelligent terminal and the environmental parameter of the preset position, and then the intelligent control device sequentially adjusts the environmental parameters of the preset position according to the adjustment coefficient, so that the user is better.
  • the environmental parameters adapted to the preset position are up; the environmental parameters of the preset position are adjusted successively, thereby avoiding the situation that the environment state difference between the user before and after entering the preset position is too large, and adversely affecting the user.
  • FIG. 1 is a flowchart of an implementation of an environment adjustment method according to a first embodiment of the present application
  • FIG. 2 is a schematic structural diagram of an environment adjustment system according to a second embodiment of the present application
  • 3 is a schematic diagram of a terminal device according to a third embodiment of the present application.
  • FIG. 1 is a flow chart showing an implementation of an environment adjustment method provided by the present application, which is described in detail as follows:
  • Step S1 obtaining a positional relationship between the current location and the preset location by the user's current location
  • the user may be acquired by using a positioning system set in the user's smart terminal.
  • the current location of the smart terminal uploads the current location of the user to the cloud, and the cloud calculates the location relationship between the two according to the current location and the preset preset location.
  • the smart terminal includes: a smart phone, a smart wearable device (such as a smart watch, a smart bracelet, etc.).
  • the preset location is a location that the user is about to go to, such as a user's home, an office, a car, or another workplace; the smart terminal may obtain related information of the preset location (eg, a specific location) Address, etc.) and send it to the cloud.
  • related information of the preset location eg, a specific location
  • Address etc.
  • the user may set different preset positions according to requirements, and set different operations of the smart terminal to correspond to different preset positions.
  • the preset location set by the user includes the home, the office, and the number of times the user clicks on the smart phone corresponds to a different preset position---click once to indicate that the user is going to return home, Click twice to represent the user who is going to the office.
  • a corresponding identifier may be set for each preset location, and the memory space occupied by the identifier corresponding to the preset location is smaller than the memory space occupied by the name or address of the preset location.
  • the smart terminal After determining the current location of the user by using the positioning system, the smart terminal acquires the preset location that the user is going to, continuously monitors the change of the current location, and continuously sends the monitored information to the cloud, so that the cloud determines the user.
  • the relationship between the current location and the preset location, the relationship between the current location of the user and the preset location includes: the user gradually approaches the preset location or the user keeps away from the location Preset position. Further, the user gradually approaching the preset position may be further subdivided into a user approaching the preset position at a constant speed, accelerating proximity to the preset position, and the like. In order to set different adjustment factors according to the speed at which the user reaches the preset position.
  • the obtaining a current position of the user determines a positional relationship between the current location and the preset location, including:
  • the smart terminal monitors a change of the distance between the current location and the preset location selected by the user according to the preset location selected by the user, and the change
  • the situation includes: the distance between the current position and the preset position is decreasing, or the distance between the current position and the preset position is continuously increasing or between the current position and the preset position The distance remains the same.
  • the distance between the current location of the user and the preset location when the distance between the current location of the user and the preset location is decreasing, determining a relationship between a distance between the current location and the preset location and a preset distance threshold; The distance between the two is greater than the preset distance threshold, and the speed at which the user approaches the preset position is obtained, and the length of time required for the distance between the two is less than the preset distance threshold is calculated, and the duration is Then, the relationship between the current location of the user and the preset location is continuously monitored to avoid resource consumption caused by constantly detecting the current location.
  • the intelligent control device includes a smart home appliance and all terminal devices that can implement an intelligent control function.
  • Step S12 Obtain an environmental parameter of the preset location, and determine an adjustment coefficient according to the environmental parameter and the location relationship;
  • the cloud after determining the current location of the user and the preset location, the cloud sends an environmental parameter acquisition instruction to the intelligent control of the preset location to pass the intelligent control device of the preset location, such as An intelligent control device, etc.) acquires an environmental parameter of the preset location.
  • the environmental parameters include: The temperature, humidity, air quality and other information of the preset position may be expressed by the content of PM2.5 in the air, and may be represented by other parameters according to the function of the intelligent control device.
  • the smart terminal acquires multiple environmental parameters (eg, temperature, humidity, and air quality of the preset location, etc.)
  • different parameter acquisition commands may be generated according to different parameters to be acquired, and different
  • the parameter acquisition instruction is sent to the corresponding intelligent control device one by one, for example, a temperature acquisition instruction, a humidity acquisition instruction, and an air quality acquisition instruction are generated, and the above instructions are respectively sent to the air conditioner, the humidity meter, and the air quality monitor to different intelligences.
  • the control device obtains different environmental parameters.
  • the cloud determines an adjustment coefficient according to the acquired environmental parameter of the preset location and a positional relationship between the current location of the user and the preset location, where the adjustment coefficient is used to determine the intelligent control device.
  • the degree of adjustment of the environmental parameters of the preset position within the preset time For example, when the environmental parameter includes the temperature of the preset position, the adjustment coefficient is set to 1/10 (° C/min), and similarly, when the environmental parameter includes the humidity or air quality of the preset position, The adjustment coefficient corresponding to the preset position is determined according to the humidity and the air quality.
  • the obtaining the environmental parameter of the preset location, determining the adjustment coefficient according to the environmental parameter and the location relationship includes:
  • the cloud when determining the adjustment coefficient, the cloud first determines whether the positional relationship between the current position of the user and the preset position satisfies a preset condition, for example, determining whether the distance between the two is decreasing, if When the preset condition is met, the environmental parameter at the current position of the user is obtained, according to the difference between the environmental parameter at the current position and the environmental parameter at the preset position, and the distance between the preset position and the current position.
  • the preset rule calculates the adjustment factor.
  • the preset rule can be set by the user, which is not limited herein.
  • the adjustment factor resulting from changes in the current location and environmental parameters at the current location is also constantly changing.
  • the determining the adjustment coefficient according to the environmental parameter of the preset position comprises: [0041] obtaining an environmental parameter of a current location of the user;
  • the adjustment coefficient may also be calculated in combination with the environmental parameter of the current position of the user. Obtaining an environmental parameter of the current location, and determining a distance between the current location and a preset location, and if the environmental parameter of the current location is in a stable state, determining an adjustment coefficient of the preset location according to the environmental parameter in a stable state . For example, when the user drives to the preset position, the temperature of the user's interior does not change much, and the temperature of the current position of the user is considered to be stable, according to the temperature of the user's interior and the temperature of the preset position or/and the user.
  • the current distance from the preset position is calculated according to a preset rule; wherein the preset rule may be a frequency at which the intelligent control device adjusts the environmental coefficient, and the amplitude of each adjustment to the environmental parameter, etc., of course, may be advanced by the user. Make settings, not limited here.
  • the method includes:
  • the cloud first determines the environmental parameters to determine whether adjustment of the environmental parameters is required. For example, when the obtained environmental parameter is the temperature of the preset position, it is determined whether the temperature of the preset position is within the first temperature interval, and the first temperature interval is a temperature suitable for the human body, such as 25° C.-32° C.
  • the first temperature interval may be set by the user as needed, and is not limited herein.
  • the adjustment coefficient is directly determined according to the environmental parameter and the positional relationship.
  • Step S13 controlling the intelligent control device to adjust the environmental parameter of the preset position to the preset target according to the adjustment coefficient.
  • the intelligent control device sends the adjustment coefficient to the preset position, and the intelligent control device adjusts the corresponding environmental parameter according to the corresponding adjustment coefficient to the preset Set goals.
  • the intelligent control device adjusts the environmental parameters of the preset position according to the newly received adjustment coefficient after receiving different adjustment coefficients.
  • the controlling the intelligent control device to adjust the environmental parameter of the preset position to the preset target according to the adjustment coefficient comprises:
  • the number of times that the intelligent control device needs to be adjusted may also be calculated according to the conversion relationship between the distance between the preset position and the current position of the user and the adjustment coefficient, and then The environmental parameters of the preset position are adjusted successively to finally reach the preset target. Changing the environmental parameters of the preset position one by one at a certain frequency avoids the situation that the environment state before and after the user enters the preset position is excessively large, which adversely affects the user.
  • the intelligent control device has adjusted the environmental parameters before the user reaches the preset position, after the user reaches the preset position, the adjusted environmental parameters may be dissatisfied.
  • the adjusted environment parameters are more in line with the user requirements, and after step S13, include:
  • the detecting device in the smart terminal acquires the environment parameter corresponding to the time point ⁇ of the user reaching the preset location, and is referred to as a second environment parameter;
  • the intelligent control device is controlled to adjust the environmental parameters in the preset range to the preset target according to the adjustment coefficient.
  • the cloud determines the current location and the pre-determination according to the obtained current location of the user. Setting a positional relationship between the positions, and then acquiring an environmental parameter of the preset position, determining an adjustment coefficient according to the environmental parameter and the positional relationship; and controlling an environment in which the intelligent control device adjusts the preset position according to the adjustment coefficient Parameters to the preset target.
  • the cloud calculates the adjustment coefficient according to the current position of the user acquired from the intelligent terminal and the environmental parameter of the preset position, and then the intelligent control device sequentially adjusts the environmental parameters of the preset position according to the adjustment coefficient, so that the user is better.
  • the environmental parameters adapted to the preset position are up; the environmental parameters of the preset position are adjusted successively, thereby avoiding the situation that the environment state difference between the user before and after entering the preset position is too large, and adversely affecting the user.
  • FIG. 2 is a structural block diagram of an environment adjustment system according to an embodiment of the present invention. For the convenience of description, only the embodiment of the present invention is shown. part.
  • the environment adjustment system includes: a position relationship determining unit 21, an adjustment coefficient determining unit 22, and an adjusting unit 23, wherein:
  • a position relationship determining unit 21 configured to acquire a positional relationship between the current position and the preset position by the current position of the user
  • the current location of the user may be obtained by using a positioning system set in the smart terminal of the user, and the smart terminal uploads the current location of the user to the cloud, and the cloud presets according to the current location and the preset Let position calculate the positional relationship between the two.
  • the smart terminal includes: a smart phone, a smart wearable device (such as a smart watch, a smart bracelet, etc.).
  • the preset location is a location that the user is about to go to, such as a user's home, an office, a car, or another workplace; the smart terminal may obtain related information of the preset location (eg, a specific location) Address, etc.) and send it to the cloud.
  • the user may set different preset positions according to requirements, and set different operations of the smart terminal to correspond to different preset positions.
  • the preset location set by the user includes the home, the office, and the number of times the user clicks on the smart phone corresponds to a different preset position---click once to indicate that the user is going to return home, Click twice to represent the user who is going to the office.
  • a corresponding identifier may be set for each preset location, and the memory space occupied by the identifier corresponding to the preset location is smaller than the name or address occupied by the preset location. Save space.
  • the smart terminal After determining the current location of the user by using the positioning system, the smart terminal acquires the preset location that the user is going to, continuously monitors the change of the current location, and continuously sends the monitored information to the cloud, so that the cloud determines the user.
  • the relationship between the current location and the preset location, the relationship between the current location of the user and the preset location includes: the user gradually approaches the preset location or the user continuously moves away from the preset location. Further, the user gradually approaching the preset position may be further subdivided into a user approaching the preset position at a constant speed, accelerating proximity to the preset position, and the like. In order to set different adjustment factors according to the speed at which the user reaches the preset position.
  • the location relationship determining unit 21 includes:
  • a change state detecting module configured to detect a change state of a current location of the user
  • a first calculating module configured to calculate a position change relationship between the current location of the user and the preset location according to the changed state.
  • the smart terminal monitors a change of the distance between the current location and the preset location selected by the user according to the preset location selected by the user, and the change
  • the situation includes: the distance between the current position and the preset position is decreasing, or the distance between the current position and the preset position is continuously increasing or between the current position and the preset position The distance remains the same.
  • the distance between the current position of the user and the preset position is continuously decreased, and determining a relationship between a distance between the current position and the preset position and a preset distance threshold; If the distance between the two is greater than the preset distance threshold, obtain a speed at which the user approaches the preset position, and calculate a length of time required for the distance between the two to be less than the preset distance threshold, and After the duration, the relationship between the current location of the user and the preset location is continuously monitored to avoid resource consumption caused by constantly detecting the current location.
  • the environment parameter obtaining instruction is sent to the intelligent control device of the preset position, and after receiving the instruction, the intelligent control device acquires the corresponding environment parameter, and sends the Go back to the smart terminal.
  • the adjustment coefficient determining unit 22 is configured to acquire an environmental parameter of the preset position, and determine an adjustment coefficient according to the environmental parameter and the positional relationship; [0072] after determining the current location of the user and the preset location, the cloud sends an environmental parameter acquisition instruction to the intelligent control of the preset location to pass the intelligent control device of the preset location, such as An intelligent control device, etc.) acquires an environmental parameter of the preset location.
  • the environmental parameter includes: temperature, humidity, air quality and the like of the preset position, and the air quality may be expressed by the content of PM2.5 in the air, and may be represented by other parameters according to different functions of the intelligent control device.
  • a plurality of environmental parameters (eg, temperature, humidity, and air quality of the preset position, etc.) are acquired, and different parameter acquisition instructions may be generated according to different parameters to be acquired, and different
  • the parameter acquisition instruction is sent to the corresponding intelligent control device one by one, for example, a temperature acquisition instruction, a humidity acquisition instruction, and an air quality acquisition instruction are generated, and the above instructions are respectively sent to the air conditioner, the humidity meter, and the air quality monitor to different intelligences.
  • the control device obtains different environmental parameters.
  • the cloud determines an adjustment coefficient according to the acquired environmental parameter of the preset location and a positional relationship between the current location of the user and the preset location, where the adjustment coefficient is used to determine the intelligent control device. Adjusting the degree of environmental parameters of the preset position within a preset time. For example, when the environmental parameter includes the temperature of the preset position, the adjustment coefficient is set to 1/10 (° C/min), and similarly, when the environmental parameter includes the humidity or air quality of the preset position, The adjustment coefficient corresponding to the preset position is determined according to the humidity and the air quality.
  • the adjustment coefficient determining unit 22 includes:
  • a determining module configured to determine whether the location relationship meets a preset condition
  • an obtaining module configured to acquire an environment parameter of the preset location and an environmental parameter of the current location after the location relationship meets a preset condition
  • a second calculating module configured to calculate the adjustment coefficient according to a preset rule according to the environmental parameter of the preset location, the environmental parameter of the current location, and the location relationship.
  • the cloud first determines whether the positional relationship between the current location of the user and the preset location meets a preset condition, for example, determining whether the distance between the two is decreasing, if When the preset condition is met, the environmental parameter at the current position of the user is obtained, according to the difference between the environmental parameter at the current position and the environmental parameter at the preset position, and the distance between the preset position and the current position.
  • the preset rule calculates the adjustment factor.
  • the preset rule can be set by the user, which is not limited herein.
  • the adjustment coefficient obtained by the current position and the change of the environmental parameter at the current position It is also changing.
  • the determining the adjustment coefficient according to the environmental parameter of the preset position comprises:
  • the adjustment coefficient may also be calculated in combination with the environmental parameter of the current position of the user. Obtaining an environmental parameter of the current location, and determining a distance between the current location and a preset location, and if the environmental parameter of the current location is in a stable state, determining an adjustment coefficient of the preset location according to the environmental parameter in a stable state . For example, when the user drives to the preset position, the temperature of the user's interior does not change much, and the temperature of the current position of the user is considered to be stable, according to the temperature of the user's interior and the temperature of the preset position or/and the user.
  • the current distance from the preset position is calculated according to a preset rule; wherein the preset rule may be a frequency at which the intelligent control device adjusts the environmental coefficient, and the amplitude of each adjustment to the environmental parameter, etc., of course, may be advanced by the user. Make settings, not limited here.
  • the environment adjustment system further includes:
  • the determining unit is configured to determine whether the environmental parameter of the preset location is within a preset range.
  • the cloud first determines the environmental parameters to determine whether adjustment of the environmental parameters is required.
  • the obtained environmental parameter is the temperature ⁇ of the preset position, and it is determined whether the temperature of the preset position is within the first temperature interval, and the first temperature interval is a temperature suitable for the human body, such as 25° C.-32° C.
  • the first temperature interval may be set by the user as needed, and is not limited herein.
  • the adjustment coefficient is directly determined according to the environmental parameter and the positional relationship.
  • the adjusting unit 23 is configured to control, according to the adjustment coefficient, the intelligent control device to adjust an environmental parameter of the preset position to a preset target.
  • the adjustment coefficient is sent to the The intelligent control device of the preset position
  • the intelligent control device adjusts the corresponding environmental parameter to the preset target according to the corresponding adjustment coefficient.
  • the intelligent control device adjusts the preset position according to the latest received adjustment coefficient after receiving different adjustment coefficients.
  • the adjusting unit 23 includes:
  • an adjustment number calculation module configured to calculate a number of adjustments according to the adjustment coefficient and an environmental parameter of the preset position
  • a control module configured to control, according to the number of adjustments, the intelligent control device to sequentially adjust an environmental parameter of the preset position to a preset target.
  • the number of times that the intelligent control device needs to be adjusted may be calculated according to the conversion relationship between the distance between the preset position and the current position of the user and the adjustment coefficient, and then The environmental parameters of the preset position are adjusted successively to finally reach the preset target. Changing the environmental parameters of the preset position one by one at a certain frequency avoids the situation that the environment state before and after the user enters the preset position is excessively large, which adversely affects the user.
  • the intelligent control device has adjusted the environmental parameters before the user reaches the preset position, after the user reaches the preset position, the adjusted environmental parameters may be unsatisfactory.
  • the adjusted environment parameters are more in line with the user requirements, and after step S13, include:
  • the detecting device in the smart terminal acquires the corresponding environmental parameter when the user arrives at the preset position, and is referred to as a second environmental parameter;
  • the internal environmental parameters are adjusted to the new preset target.
  • the air conditioner is controlled to change the frequency of 1 °C every 10 minutes, and the temperature of the preset position is adjusted to finally reach the target temperature set by the user.
  • the intelligent control device is controlled to adjust the environmental parameters in the preset range according to the adjustment coefficient. To the default target.
  • the cloud determines a positional relationship between the current location and the preset location according to the obtained current location of the user, and then acquires an environmental parameter of the preset location, according to the environmental parameter.
  • the positional relationship determines an adjustment coefficient; and the intelligent control device is controlled to adjust an environmental parameter of the preset position to a preset target according to the adjustment coefficient.
  • the cloud calculates the adjustment coefficient according to the current position of the user acquired from the intelligent terminal and the environmental parameter of the preset position, and then the intelligent control device sequentially adjusts the environmental parameters of the preset position according to the adjustment coefficient, so that the user is better.
  • the environmental parameters adapted to the preset position are up; the environmental parameters of the preset position are adjusted successively, thereby avoiding the situation that the environment state difference between the user before and after entering the preset position is too large, and adversely affecting the user.
  • the terminal device 3 of this embodiment includes: a processor 30, a memory 31, and a computer program 32 stored in the memory 31 and operable on the processor 30.
  • the processor 30 executes the computer program 32, the steps in the embodiments of the above various environment adjustment methods are implemented, such as steps S11 to S13 shown in FIG.
  • the processor 30 executes the computer program 32, the functions of the modules/units in the above-described respective device embodiments, such as the functions of the units 21 to 23 shown in Fig. 2, are implemented.
  • the computer program 32 may be divided into one or more modules/units, which are stored in the memory 31 and executed by the processor 30.
  • the one or more modules/units may be a series of computer program instruction segments capable of performing a particular function, the instruction segments being used to describe the execution of the computer program 32 in the terminal device 3.
  • the computer program 32 can be divided into a position relationship determining unit, an adjustment coefficient determining unit, and an adjusting unit, and the specific functions of each unit are as follows:
  • the location relationship determining unit includes:
  • a change state detecting module configured to detect a change state of a current location of the user
  • the first calculating module is configured to calculate a position change relationship between the current location of the user and the preset location according to the changed state.
  • an adjustment coefficient determining unit configured to acquire an environmental parameter of the preset position, and determine an adjustment coefficient according to the environmental parameter and the positional relationship
  • the adjustment coefficient determining unit includes:
  • a determining module configured to determine whether the location relationship meets a preset condition
  • an obtaining module configured to acquire an environment parameter of the preset location and an environmental parameter of the current location, after the location relationship meets a preset condition
  • the second calculating module is configured to calculate the adjustment coefficient according to a preset rule according to the environmental parameter of the preset position, the environmental parameter of the current location, and the positional relationship.
  • an adjusting unit configured to control, according to the adjustment coefficient, the intelligent control device to adjust an environmental parameter of the preset position to a preset target.
  • the adjusting unit includes:
  • an adjustment number calculation module configured to calculate a number of adjustments according to the adjustment coefficient and an environmental parameter of the preset position
  • the control module is configured to control, according to the number of adjustments, the intelligent control device to sequentially adjust the environmental parameter of the preset position to a preset target.
  • the environment adjustment system further includes:
  • the determining unit is configured to determine whether the environmental parameter of the preset location is within a preset range.
  • the terminal device 3 may be a computing device such as a desktop computer, a notebook, a palmtop computer, and a cloud server.
  • the terminal device may include, but is not limited to, a processor 30, a memory 31. It will be understood by those skilled in the art that FIG. 3 is only an example of the terminal device 3, and does not constitute a limitation of the terminal device 3. It may include more or less components than those illustrated, or may combine certain components, or different components.
  • the terminal device may further include an input/output device, a network access device, a bus, and the like.
  • the processor 30 may be a central processing unit (CPU), and may be other general-purpose processors, digital signal processors (DSPs), and application specific integrated circuits. (Application Specific Integrated Circuit, ASIC), ready-to-use programmable gate array
  • the general purpose processor may be a microprocessor or the processor or any conventional processor or the like.
  • the memory 31 may be an internal storage unit of the terminal device 3, such as a hard disk or a memory of the terminal device 3.
  • the memory 31 may also be an external storage device of the terminal device 3, for example, a plug-in hard disk provided on the terminal device 3, and a smart memory card (Smart Media Card,
  • the memory 31 may also include both an internal storage unit of the terminal device 3 and an external storage device.
  • the memory 31 is used to store the computer program and other programs and data required by the terminal device.
  • the memory 31 can also be used to temporarily store data that has been output or is about to be output.
  • each functional unit and module described above is exemplified. In practical applications, the above functions may be assigned differently according to needs.
  • the functional unit and the module are completed, that is, the internal structure of the device is divided into different functional units or modules to complete all or part of the functions described above.
  • Each functional unit and module in the embodiment may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit, and the integrated unit may use hardware.
  • the form is implemented in the form of a software functional unit.
  • the disclosed device/terminal device and method may be implemented in other manners.
  • the device/terminal device embodiment described above is merely illustrative.
  • the division of the module or unit is only a logical function division, and the actual implementation may have another division manner, for example, multiple units.
  • components may be combined or integrated into another system, or some features may be omitted or not implemented.
  • the coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as the unit may or may not be physical units, that is, may be located in one place, or may be distributed to multiple networks. On the unit. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • the integrated module/unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium. Based on such understanding, the present invention implements all or part of the processes in the foregoing embodiments, and may also be completed by a computer program to instruct related hardware.
  • the computer program may be stored in a computer readable storage medium. The steps of the various method embodiments described above may be implemented when the program is executed by the processor.
  • the computer program includes computer program code, and the computer program code may be in a source code form, an object code form, an executable file, or some intermediate form.
  • the computer readable medium may include: any entity or device capable of carrying the computer program code, a recording medium, a USB flash drive, a removable hard disk, a magnetic disk, an optical disk, a computer memory, a Read-Only Memory (ROM). , random access memory (RAM, Random Access Memory), electrical carrier signals, telecommunications signals, and software distribution media. It should be noted that the content contained in the computer readable medium may be appropriately increased or decreased according to the requirements of legislation and patent practice in a jurisdiction, for example, in some jurisdictions, According to legislative and patent practice, computer readable media does not include electrical carrier signals and telecommunication signals.

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Abstract

一种环境调节方法,包括:获取用户当前位置确定当前位置与预设位置之间的位置关系;获取预设位置的环境参数,根据环境参数与位置关系确定调节系数;根据调节系数控制智能控制设备调节预设位置的环境参数至预设目标。还公开了一种环境调节系统及终端设备(3)。

Description

发明名称:一种环境调节方法、 系统及终端设备
技术领域
[0001] 本实施例属于智能控制技术领域, 尤其涉及一种环境调节方法、 系统及终端设 备。
背景技术
[0002] 随着人们生活水平的不断提高, 人们对于生活质量的要求也在不断提高。 有研 究称人的一生中很大一部分时间是在室内度过的, 室内环境状态的好坏对人们 的身心健康、 工作效率等有着直接的影响。 因此, 创造一个舒适、 安静、 清洁 的室内环境是非常必要的。
[0003] 近年来, 智能控制设备, 如智能家电不断走进人们的生活, 人们通过控制智能 控制设备可以在进入室内之前提前将室内环境 (如室内温度、 室内空气各种指 标等) 调节到自己想要的状态, 而不必等进入室内以后再进行调节。 现有的调 节方法中, 智能控制设备接收到用户的调节指令后, 直接调节室内环境到相应 的状态, 但经智能控制设备调节后可能会由于室内环境与室外环境或用户自身 所处的状态差别过大而给用户带来不好的影响。
技术问题
[0004] 鉴于现有技术中存在的不足, 本实施例提供了一种环境调节方法、 系统及终端 设备, 旨在解决现有的室内环境的调节方法不能根据用户的状况进行室内环境 调节的问题。
问题的解决方案
技术解决方案
[0005] 本申请实施例的第一方面提供了一种环境调节方法, 所述环境调节方法包括: [0006] 获取用户当前位置确定所述当前位置与预设位置之间的位置关系;
[0007] 获取所述预设位置的环境参数, 根据所述环境参数与所述位置关系确定调节系 数;
[0008] 根据所述调节系数控制智能控制设备调节所述预设位置的环境参数至预设目标 [0009] 本申请实施例的第二方面提供了一种环境调节系统, 所述环境调节系统包括: [0010] 位置关系确定单元, 用于获取用户当前位置确定所述当前位置与预设位置之间 的位置关系;
[0011] 调节系数确定单元, 用于获取所述预设位置的环境参数, 根据所述环境参数与 所述位置关系确定调节系数;
[0012] 调节单元, 用于根据所述调节系数控制智能控制设备调节所述预设位置的环境 参数至预设目标。
[0013] 本申请实施例的第三方面提供了一种终端设备, 包括存储器、 处理器以及存储 在所述存储器中并可在所述处理器上运行的计算机程序, 所述处理器执行所述 计算机程序时实现如所述环境调节方法中任一项所述方法的步骤。
[0014] 本申请实施例的第四方面提供了一种计算机可读存储介质, 所述计算机可读存 储介质存储有计算机程序, 所述计算机程序被处理器执行时实现如如所述环境 调节方法中任一项所述方法的步骤。
发明的有益效果
有益效果
[0015] 本申请提供的实施例中云端根据获取到的用户当前位置确定所述当前位置与预 设位置之间的位置关系, 然后获取所述预设位置的环境参数, 根据所述环境参 数与所述位置关系确定调节系数; 根据所述调节系数控制智能控制设备调节所 述预设位置的环境参数至预设目标。 这一过程中云端根据从智能终端获取到的 用户的当前位置以及预设位置的环境参数计算调节系数, 然后由智能控制设备 根据调节系数逐次调节预设位置的环境参数, 以使用户更好的适应预设位置的 环境参数达; 对预设位置的环境参数进行逐次调节, 避免了用户进入预设位置 前后所处的环境状态差别过大, 给用户带来不良影响的情况。
对附图的简要说明
附图说明
[0016] 图 1是本申请第一实施例提供的一种环境调节方法的实现流程图;
[0017] 图 2是本申请第二实施例提供的一种环境调节系统的结构示意图; [0018] 图 3是本申请第三实施例提供的一种终端设备的示意图。
发明实施例
本发明的实施方式
[0019] 为了使本申请的目的、 技术方案及优点更加清楚明白, 以下结合附图及实施例 , 对本申请进行进一步详细说明。 应当理解, 此处所描述的具体实施例仅仅用 以解释本发明, 并不用于限定本申请。
[0020] 为了说明本申请所述的技术方案, 下面通过具体实施例来进行说明。
[0021] 实施例 1
[0022] 图 1示出了本申请提供的一种环境调节方法的实现流程图, 详述如下:
[0023] 步骤 Sl l, 获取用户当前位置确定所述当前位置与预设位置之间的位置关系; [0024] 本申请提供的实施例中, 通过用户的智能终端中设置的定位系统可获取用户的 当前位置, 智能终端将用户的当前位置上传至云端, 由云端根据所述当前位置 和预设预设位置计算二者之间的位置关系。 其中, 所述智能终端包括: 智能手 机, 智能穿戴设备 (如智能手表、 智能手环等) 。 所述预设位置为用户即将前 往的位置, 如用户的家中、 办公室、 车中以及其他工作场所等地点; 可由所述 智能终端获取所述预设位置的相关信息 (如, 预设位置的具体地址等) , 并将 其发送至云端。
[0025] 可选地, 用户可以根据需要设置不同的预设位置, 并设置用户对智能终端的不 同操作对应不同的预设位置。 例如, 当所述智能终端为智能手机时, 用户设置 的预设位置包括自己家、 办公室, 将用户点击智能手机的次数与不同的预设位 置对应-- -点击一次表示用户将要回到家中, 点击两次代表用户将要去办公室。 当然, 为了进一步节省内存空间, 可为每个预设位置设置对应的标识, 该预设 位置对应的标识占用的内存空间小于所述预设位置的名称或地址等所占用的内 存空间。
[0026] 智能终端通过定位系统确定用户的当前位置之后, 获取用户将要前往的预设位 置, 持续监测所述当前位置的变化情况, 并将监测到的信息不断发送到云端, 以使云端确定用户的当前位置与所述预设位置之间的关系, 所述用户的当前位 置与预设位置之间的关系包括: 用户逐渐接近所述预设位置或用户不断远离所 述预设位置。 更进一步地, 所述用户逐渐接近所述预设位置还可细分为用户匀 速接近所述预设位置、 加速接近所述预设位置等。 以便根据用户到达所述预设 位置的快慢设置不同的调节系数。
[0027] 优选地, 所述获取用户当前位置确定所述当前位置与预设位置之间的位置关系 , 包括:
[0028] 检测所述用户的当前位置的变化状态;
[0029] 根据所述变化状态计算所述用户的当前位置与所述预设位置之间的位置变化关 系。
[0030] 具体地, 智能终端根据自身定位系统确定用户的当前位置后, 根据用户所选择 的预设位置监控所述当前位置与用户所选择的预设位置之间距离的变化情况, 所述变化情况包括: 所述当前位置与所述预设位置之间的距离不断减小, 或所 述当前位置与所述预设位置之间的距离不断增大或当前位置与所述预设位置之 间的距离保持不变。 可选地, 在用户的当前位置与所述预设位置之间的距离不 断减小时, 判断所述当前位置与所述预设位置之间的距离大小与预设距离阈值 之间的关系; 若二者之间的距离大于所述预设距离阈值, 获取所述用户接近所 述预设位置的速度, 计算二者之间距离小于所述预设距离阈值所需的时长, 并 在所述时长后继续监测用户的当前位置与所述预设位置之间的关系, 以避免由 于不停检测当前位置所带来的资源耗费。 此吋, 若二者之间的关系满足预设条 件 (如, 预设条件为所述当前位置与所述预设位置之间的距离不断减小, 或, 预设条件为所述当前位置与所述预设位置之间的距离小于预设距离阈值时) , 则向所述预设位置的智能控制设备发送环境参数获取指令, 智能控制设备接收 到指令后, 获取对应的环境参数, 并发送回智能终端, 所述智能控制设备包括 智能家电以及所有可实现智能控制功能的终端设备等。
[0031] 步骤 S12, 获取所述预设位置的环境参数, 根据所述环境参数与所述位置关系 确定调节系数;
[0032] 在确定用户的当前位置与所述预设位置之间之后, 云端发送环境参数获取指令 到所述预设位置的智能控制审, 以通过所述预设位置的智能控制设备, (如智 能控制设备等) 获取所述预设位置的环境参数。 其中, 所述环境参数包括: 所 述预设位置的温度、 湿度、 空气质量等信息, 所述空气质量可以空气中 PM2.5的 含量表示, 根据智能控制设备功能的不同也可以其他参数表示。
[0033] 可选地, 在智能终端要获取多项环境参数时 (如, 预设位置的温度、 湿度及空 气质量等) , 可根据要获取的不同参数生成不同的参数获取指令, 并将不同的 参数获取指令逐次发送到对应的智能控制设备, 如, 生成温度获取指令、 湿度 获取指令及空气质量获取指令, 并分别将上述指令发送给空调、 湿度仪及空气 质量监测仪, 以从不同智能控制设备获取到不同的环境参数。
[0034] 本申请提供的实施例中, 云端根据获取到的预设位置的环境参数以及用户的当 前位置与预设位置之间的位置关系确定调节系数, 所述调节系数用于确定智能 控制设备预设吋间内调节所述预设位置的环境参数的程度。 例如, 在所述环境 参数包括预设位置的温度时, 设置所述调节系数为 l/10(°C/min), 同理, 当所述 环境参数包括预设位置的湿度或空气质量时, 根据获取到的预设位置的湿度和 空气质量确定与之对应的调节系数。
[0035] 优选地, 所述获取所述预设位置的环境参数, 根据所述环境参数与所述位置关 系确定调节系数, 包括:
[0036] 判断所述位置关系是否符合预设条件;
[0037] 在所述位置关系符合预设条件时, 获取所述预设位置的环境参数及所述当前位 置的环境参数;
[0038] 根据所述预设位置的环境参数、 所述当前位置的环境参数以及所述位置关系, 按照预设规则计算所述调节系数。
[0039] 具体地, 云端在确定调节系数时, 首先判断用户当前位置与所述预设位置之间 的位置关系是否满足预设条件, 如, 判断二者之间的距离是否在减小, 若满足 预设条件, 则获取用户的当前位置处的环境参数, 根据所述当前位置处的环境 参数与预设位置处的环境参数的差异度和所述预设位置与当前位置之间的距离 根据预设规则计算调节系数。 所述预设规则可由用户进行设定, 在此不做限定 。 可选地, 随着所述当前位置以及当前位置处环境参数的变化所得的调节系数 也在不断变化。
[0040] 优选地, 所述根据所述预设位置的环境参数确定调节系数, 包括: [0041] 获取用户的当前位置的环境参数;
[0042] 根据所述预设位置的环境参数和所述当前位置的环境参数, 按照预设规则计算 调节系数。
[0043] 具体地, 在确定预设位置的环境参数调节系数吋, 也可结合用户的当前位置的 环境参数计算调节系数。 获取所述当前位置的环境参数, 同时确定所述当前位 置与预设位置的距离, 若所述当前位置的环境参数处于稳定状态, 则可根据处 于稳定状态的环境参数确定预设位置的调节系数。 如, 用户驾车前往所述预设 位置时, 用户的车内温度变化不大, 认为用户所处的当前位置的温度处于稳定 状态, 则根据用户车内温度以及预设位置的温度或 /和用户当前距离预设位置的 距离, 按照预设规则计算调节系数; 其中, 所述预设规则可以为智能控制设备 调节环境系数的频率, 以及每次对环境参数调节的幅度等, 当然也可由用户预 先进行设置, 在此不做限定。
[0044] 可选地, 在所述获取所述预设位置的环境参数之后, 包括:
[0045] 判断所述预设位置的环境参数是否在预设范围内。
[0046] 具体地, 云端在获取到预设位置的环境参数之后, 对所述环境参数首先进行判 断, 以确定是否需要进行环境参数的调节。 如: 所获取的环境参数为预设位置 的温度时, 判断预设位置的温度是否在第一温度区间内, 所述第一温度区间为 适宜人体的温度, 如 25°C-32°C, 可选地, 所述第一温度区间可由用户根据需要 进行设定, 在此不做限定。
[0047] 可选地, 若预设位置的温度在所述第一温度区间内, 则向用户发出询问信息, 询问用户是否继续调节所述预设位置的温度, 并根据用户的反馈进行后续程序 。 若预设位置的温度不在所述第一温度区间内, 则直接根据所述环境参数与所 述位置关系确定调节系数。
[0048] 步骤 S13, 根据所述调节系数控制智能控制设备调节所述预设位置的环境参数 至预设目标。
[0049] 本申请提供的实施例中, 在云端计算出调节系数之后, 发送所述调节系数到所 述预设位置的智能控制设备, 智能控制设备根据相应的调节系数调节对应的环 境参数到预设目标。 优选地, 由于存在用户的当前位置的环境参数的变化引起 所述调节系数变换的情况, 因此, 所述智能控制设备在接收到不同的调节系数 吋, 按照最新接收到的调节系数调节预设位置的环境参数。
[0050] 优选地, 所述根据所述调节系数控制智能控制设备调节所述预设位置的环境参 数至预设目标, 包括:
[0051] 根据所述调节系数和所述预设位置的环境参数计算调节次数;
[0052] 根据所述调节次数 , 控制所述智能控制设备逐次调节所述预设位置的环境参数 至预设目标。
[0053] 具体地, 在所述调节系数处于稳定状态时, 也可根据预设位置与用户的当前位 置之间的距离的变换关系以及所述调节系数计算出需要智能控制设备调节的次 数, 然后逐次调节预设位置的环境参数以最终达到预设目标。 以一定频率逐次 改变预设位置的环境参数避免了用户进入预设位置前后所处的环境状态差别过 大, 给用户带来不良影响的情况。
[0054] 可选地, 虽然在用户到达预设位置之前, 智能控制设备已对环境参数进行了调 整, 但用户到达预设位置后, 可能对调整后的环境参数不满意, 此吋, 为了保 证调整后的环境参数更符合用户需求, 则在步骤 S13之后, 包括:
[0055] 判断用户是否已到达预设位置;
[0056] 在用户已到达预设位置时, 智能终端中的检测设备获取所述用户到达所述预设 位置的吋间点吋对应的环境参数, 称之为第二环境参数;
[0057] 判断所述第二环境参数是否落在预设范围内, 若所述第二环境参数未落在预设 范围内, 则根据计算得到的调节次数, 控制智能控制设备将其预设范围内的环 境参数调节至新的预设目标。 ¾ , 控制空调以每 10分钟改变 C的频率, 调节预 设位置的温度, 以最终达到用户新设置的目标温度。
[0058] 可选地, 若所述第二环境参数与智能控制设备初始吋获取到的预设位置的环境 参数不同, 且所述第二环境参数落在所述预设范围内, 则再次向用户发出是否 继续调节预设范围的环境参数的信息, 若根据用户反馈, 需要接续调节所述环 境参数, 则按照所述调节系数, 控制智能控制设备调节预设范围内的环境参数 至预设目标。
[0059] 本申请提供的实施例中云端根据获取到的用户当前位置确定所述当前位置与预 设位置之间的位置关系, 然后获取所述预设位置的环境参数, 根据所述环境参 数与所述位置关系确定调节系数; 根据所述调节系数控制智能控制设备调节所 述预设位置的环境参数至预设目标。 这一过程中云端根据从智能终端获取到的 用户的当前位置以及预设位置的环境参数计算调节系数, 然后由智能控制设备 根据调节系数逐次调节预设位置的环境参数, 以使用户更好的适应预设位置的 环境参数达; 对预设位置的环境参数进行逐次调节, 避免了用户进入预设位置 前后所处的环境状态差别过大, 给用户带来不良影响的情况。
[0060] 实施例 2
[0061] 对应于上文实施例所述的环境调节方法, 图 2示出了本发明实施例提供的一种 环境调节系统的结构框图, 为了便于说明, 仅示出了与本发明实施例相关的部 分。
[0062] 参照图 2, 该环境调节系统包括: 位置关系确定单元 21、 调节系数确定单元 22 、 调节单元 23, 其中:
[0063] 位置关系确定单元 21, 用于获取用户当前位置确定所述当前位置与预设位置之 间的位置关系;
[0064] 本申请提供的实施例中, 通过用户的智能终端中设置的定位系统可获取用户的 当前位置, 智能终端将用户的当前位置上传至云端, 由云端根据所述当前位置 和预设预设位置计算二者之间的位置关系。 其中, 所述智能终端包括: 智能手 机, 智能穿戴设备 (如智能手表、 智能手环等) 。 所述预设位置为用户即将前 往的位置, 如用户的家中、 办公室、 车中以及其他工作场所等地点; 可由所述 智能终端获取所述预设位置的相关信息 (如, 预设位置的具体地址等) , 并将 其发送至云端。
[0065] 可选地, 用户可以根据需要设置不同的预设位置, 并设置用户对智能终端的不 同操作对应不同的预设位置。 例如, 当所述智能终端为智能手机时, 用户设置 的预设位置包括自己家、 办公室, 将用户点击智能手机的次数与不同的预设位 置对应-- -点击一次表示用户将要回到家中, 点击两次代表用户将要去办公室。 当然, 为了进一步节省内存空间, 可为每个预设位置设置对应的标识, 该预设 位置对应的标识占用的内存空间小于所述预设位置的名称或地址等所占用的内 存空间。
[0066] 智能终端通过定位系统确定用户的当前位置之后, 获取用户将要前往的预设位 置, 持续监测所述当前位置的变化情况, 并将监测到的信息不断发送到云端, 以使云端确定用户的当前位置与所述预设位置之间的关系, 所述用户的当前位 置与预设位置之间的关系包括: 用户逐渐接近所述预设位置或用户不断远离所 述预设位置。 更进一步地, 所述用户逐渐接近所述预设位置还可细分为用户匀 速接近所述预设位置、 加速接近所述预设位置等。 以便根据用户到达所述预设 位置的快慢设置不同的调节系数。
[0067] 优选地, 所述位置关系确定单元 21, 包括:
[0068] 变化状态检测模块, 用于检测所述用户的当前位置的变化状态;
[0069] 第一计算模块 , 用于根据所述变化状态计算所述用户的当前位置与所述预设位 置之间的位置变化关系。
[0070] 具体地, 智能终端根据自身定位系统确定用户的当前位置后, 根据用户所选择 的预设位置监控所述当前位置与用户所选择的预设位置之间距离的变化情况, 所述变化情况包括: 所述当前位置与所述预设位置之间的距离不断减小, 或所 述当前位置与所述预设位置之间的距离不断增大或当前位置与所述预设位置之 间的距离保持不变。 可选地, 在用户的当前位置与所述预设位置之间的距离不 断减小吋, 判断所述当前位置与所述预设位置之间的距离大小与预设距离阈值 之间的关系; 若二者之间的距离大于所述预设距离阈值, 获取所述用户接近所 述预设位置的速度, 计算二者之间距离小于所述预设距离阈值所需的时长, 并 在所述时长后继续监测用户的当前位置与所述预设位置之间的关系, 以避免由 于不停检测当前位置所带来的资源耗费。 此吋, 若二者之间的关系满足预设条 件 (如, 预设条件为所述当前位置与所述预设位置之间的距离不断减小, 或, 预设条件为所述当前位置与所述预设位置之间的距离小于预设距离阈值时) , 则向所述预设位置的智能控制设备发送环境参数获取指令, 智能控制设备接收 到指令后, 获取对应的环境参数, 并发送回智能终端。
[0071] 调节系数确定单元 22, 用于获取所述预设位置的环境参数, 根据所述环境参数 与所述位置关系确定调节系数; [0072] 在确定用户的当前位置与所述预设位置之间之后, 云端发送环境参数获取指令 到所述预设位置的智能控制审, 以通过所述预设位置的智能控制设备, (如智 能控制设备等) 获取所述预设位置的环境参数。 其中, 所述环境参数包括: 所 述预设位置的温度、 湿度、 空气质量等信息, 所述空气质量可以空气中 PM2.5的 含量表示, 根据智能控制设备功能的不同也可以其他参数表示。
[0073] 可选地, 在智能终端要获取多项环境参数吋 (如, 预设位置的温度、 湿度及空 气质量等) , 可根据要获取的不同参数生成不同的参数获取指令, 并将不同的 参数获取指令逐次发送到对应的智能控制设备, 如, 生成温度获取指令、 湿度 获取指令及空气质量获取指令, 并分别将上述指令发送给空调、 湿度仪及空气 质量监测仪, 以从不同智能控制设备获取到不同的环境参数。
[0074] 本申请提供的实施例中 , 云端根据获取到的预设位置的环境参数以及用户的当 前位置与预设位置之间的位置关系确定调节系数, 所述调节系数用于确定智能 控制设备预设时间内调节所述预设位置的环境参数的程度。 例如, 在所述环境 参数包括预设位置的温度时, 设置所述调节系数为 l/10(°C/min), 同理, 当所述 环境参数包括预设位置的湿度或空气质量时, 根据获取到的预设位置的湿度和 空气质量确定与之对应的调节系数。
[0075] 优选地, 所述调节系数确定单元 22, 包括:
[0076] 判断模块, 用于判断所述位置关系是否符合预设条件;
[0077] 获取模块, 用于在所述位置关系符合预设条件吋, 获取所述预设位置的环境参 数及所述当前位置的环境参数;
[0078] 第二计算模块, 用于根据所述预设位置的环境参数、 所述当前位置的环境参数 以及所述位置关系, 按照预设规则计算所述调节系数。
[0079] 具体地, 云端在确定调节系数吋, 首先判断用户当前位置与所述预设位置之间 的位置关系是否满足预设条件, 如, 判断二者之间的距离是否在减小, 若满足 预设条件, 则获取用户的当前位置处的环境参数, 根据所述当前位置处的环境 参数与预设位置处的环境参数的差异度和所述预设位置与当前位置之间的距离 根据预设规则计算调节系数。 所述预设规则可由用户进行设定, 在此不做限定 。 可选地, 随着所述当前位置以及当前位置处环境参数的变化所得的调节系数 也在不断变化。
[0080] 优选地, 所述根据所述预设位置的环境参数确定调节系数, 包括:
[0081] 获取用户的当前位置的环境参数;
[0082] 根据所述预设位置的环境参数和所述当前位置的环境参数, 按照预设规则计算 调节系数。
[0083] 具体地, 在确定预设位置的环境参数调节系数吋, 也可结合用户的当前位置的 环境参数计算调节系数。 获取所述当前位置的环境参数, 同时确定所述当前位 置与预设位置的距离, 若所述当前位置的环境参数处于稳定状态, 则可根据处 于稳定状态的环境参数确定预设位置的调节系数。 如, 用户驾车前往所述预设 位置时, 用户的车内温度变化不大, 认为用户所处的当前位置的温度处于稳定 状态, 则根据用户车内温度以及预设位置的温度或 /和用户当前距离预设位置的 距离, 按照预设规则计算调节系数; 其中, 所述预设规则可以为智能控制设备 调节环境系数的频率, 以及每次对环境参数调节的幅度等, 当然也可由用户预 先进行设置, 在此不做限定。
[0084] 可选地, 所述环境调节系统还包括:
[0085] 判断单元, 用于判断所述预设位置的环境参数是否在预设范围内。
[0086] 具体地, 云端在获取到预设位置的环境参数之后, 对所述环境参数首先进行判 断, 以确定是否需要进行环境参数的调节。 如: 所获取的环境参数为预设位置 的温度吋, 判断预设位置的温度是否在第一温度区间内, 所述第一温度区间为 适宜人体的温度, 如 25°C-32°C, 可选地, 所述第一温度区间可由用户根据需要 进行设定, 在此不做限定。
[0087] 可选地, 若预设位置的温度在所述第一温度区间内, 则向用户发出询问信息, 询问用户是否继续调节所述预设位置的温度, 并根据用户的反馈进行后续程序 。 若预设位置的温度不在所述第一温度区间内, 则直接根据所述环境参数与所 述位置关系确定调节系数。
[0088] 调节单元 23, 用于根据所述调节系数控制智能控制设备调节所述预设位置的环 境参数至预设目标。
[0089] 本申请提供的实施例中, 在云端计算出调节系数之后, 发送所述调节系数到所 述预设位置的智能控制设备, 智能控制设备根据相应的调节系数调节对应的环 境参数到预设目标。 优选地, 由于存在用户的当前位置的环境参数的变化引起 所述调节系数变换的情况, 因此, 所述智能控制设备在接收到不同的调节系数 吋, 按照最新接收到的调节系数调节预设位置的环境参数。
[0090] 优选地, 所述调节单元 23, 包括:
[0091] 调节次数计算模块, 用于根据所述调节系数和所述预设位置的环境参数计算调 节次数;
[0092] 控制模块, 用于根据所述调节次数, 控制所述智能控制设备逐次调节所述预设 位置的环境参数至预设目标。
[0093] 具体地, 在所述调节系数处于稳定状态吋, 也可根据预设位置与用户的当前位 置之间的距离的变换关系以及所述调节系数计算出需要智能控制设备调节的次 数, 然后逐次调节预设位置的环境参数以最终达到预设目标。 以一定频率逐次 改变预设位置的环境参数避免了用户进入预设位置前后所处的环境状态差别过 大, 给用户带来不良影响的情况。
[0094] 可选地, 虽然在用户到达预设位置之前, 智能控制设备已对环境参数进行了调 整, 但用户到达预设位置后, 可能对调整后的环境参数不满意, 此时, 为了保 证调整后的环境参数更符合用户需求, 则在步骤 S13之后, 包括:
[0095] 判断用户是否已到达预设位置;
[0096] 在用户已到达预设位置吋, 智能终端中的检测设备获取所述用户到达所述预设 位置的时间点时对应的环境参数, 称之为第二环境参数;
[0097] 判断所述第二环境参数是否落在预设范围内, 若所述第二环境参数未落在预设 范围内, 则根据计算得到的调节次数, 控制智能控制设备将其预设范围内的环 境参数调节至新的预设目标。 如, 控制空调以每 10分钟改变 1°C的频率, 调节预 设位置的温度, 以最终达到用户新设置的目标温度。
[0098] 可选地, 若所述第二环境参数与智能控制设备初始吋获取到的预设位置的环境 参数不同, 且所述第二环境参数落在所述预设范围内, 则再次向用户发出是否 继续调节预设范围的环境参数的信息, 若根据用户反馈, 需要接续调节所述环 境参数, 则按照所述调节系数, 控制智能控制设备调节预设范围内的环境参数 至预设目标。
[0099] 本申请提供的实施例中云端根据获取到的用户当前位置确定所述当前位置与预 设位置之间的位置关系, 然后获取所述预设位置的环境参数, 根据所述环境参 数与所述位置关系确定调节系数; 根据所述调节系数控制智能控制设备调节所 述预设位置的环境参数至预设目标。 这一过程中云端根据从智能终端获取到的 用户的当前位置以及预设位置的环境参数计算调节系数, 然后由智能控制设备 根据调节系数逐次调节预设位置的环境参数, 以使用户更好的适应预设位置的 环境参数达; 对预设位置的环境参数进行逐次调节, 避免了用户进入预设位置 前后所处的环境状态差别过大, 给用户带来不良影响的情况。
[0100] 以上所述, 仅为本发明的具体实施方式, 但本发明的保护范围并不局限于此, 任何熟悉本技术领域的技术人员在本发明揭露的技术范围内, 可轻易想到变化 或替换, 都应涵盖在本发明的保护范围之内。 因此, 本发明的保护范围应所述 以权利要求的保护范围。
[0101] 实施例 3
[0102] 图 3是本发明一实施例提供的一种终端设备的示意图。 如图 3所示, 该实施例的 终端设备 3包括: 处理器 30、 存储器 31以及存储在所述存储器 31中并可在所述处 理器 30上运行的计算机程序 32。 所述处理器 30执行所述计算机程序 32时实现上 述各个环境调节方法实施例中的步骤, 例如图 1所示的步骤 S11至 S 13。 或者, 所 述处理器 30执行所述计算机程序 32时实现上述各装置实施例中各模块 /单元的功 會 , 例如图 2所示单元 21至 23的功能。
[0103] 示例性的, 所述计算机程序 32可以被分割成一个或多个模块 /单元, 所述一个 或者多个模块 /单元被存储在所述存储器 31中, 并由所述处理器 30执行, 以完成 本发明。 所述一个或多个模块 /单元可以是能够完成特定功能的一系列计算机程 序指令段, 该指令段用于描述所述计算机程序 32在所述终端设备 3中的执行过程 。 例如, 所述计算机程序 32可以被分割成位置关系确定单元、 调节系数确定单 元、 调节单元, 各单元具体功能如下:
[0104] 位置关系确定单元, 用于获取用户当前位置确定所述当前位置与预设位置之间 的位置关系; [0105] 优选地, 所述位置关系确定单元, 包括:
[0106] 变化状态检测模块, 用于检测所述用户的当前位置的变化状态;
[0107] 第一计算模块 , 用于根据所述变化状态计算所述用户的当前位置与所述预设位 置之间的位置变化关系。
[0108] 调节系数确定单元, 用于获取所述预设位置的环境参数, 根据所述环境参数与 所述位置关系确定调节系数;
[0109] 优选地, 所述调节系数确定单元, 包括:
[0110] 判断模块, 用于判断所述位置关系是否符合预设条件;
[0111] 获取模块, 用于在所述位置关系符合预设条件吋, 获取所述预设位置的环境参 数及所述当前位置的环境参数;
[0112] 第二计算模块, 用于根据所述预设位置的环境参数、 所述当前位置的环境参数 以及所述位置关系, 按照预设规则计算所述调节系数。
[0113] 调节单元, 用于根据所述调节系数控制智能控制设备调节所述预设位置的环境 参数至预设目标。
[0114] 优选地, 所述调节单元, 包括:
[0115] 调节次数计算模块, 用于根据所述调节系数和所述预设位置的环境参数计算调 节次数;
[0116] 控制模块, 用于根据所述调节次数, 控制所述智能控制设备逐次调节所述预设 位置的环境参数至预设目标。
[0117] 可选地, 所述环境调节系统, 还包括:
[0118] 判断单元, 用于判断所述预设位置的环境参数是否在预设范围内。
[0119] 所述终端设备 3可以是桌上型计算机、 笔记本、 掌上电脑及云端服务器等计算 设备。 所述终端设备可包括, 但不仅限于, 处理器 30、 存储器 31。 本领域技术 人员可以理解, 图 3仅仅是终端设备 3的示例, 并不构成对终端设备 3的限定, 可 以包括比图示更多或更少的部件, 或者组合某些部件, 或者不同的部件, 例如 所述终端设备还可以包括输入输出设备、 网络接入设备、 总线等。
[0120] 所称处理器 30可以是中央处理单元 (Central Processing Unit, CPU) , 还可以是其 他通用处理器、 数字信号处理器(Digital Signal Processor, DSP)、 专用集成电路 (Application Specific Integrated Circuit , ASIC)、 现成可编程门阵列
(Field-Programmable Gate Array , FPGA)或者其他可编程逻辑器件、 分立门或者 晶体管逻辑器件、 分立硬件组件等。 通用处理器可以是微处理器或者该处理器 也可以是任何常规的处理器等。
[0121] 所述存储器 31可以是所述终端设备 3的内部存储单元, 例如终端设备 3的硬盘或 内存。 所述存储器 31也可以是所述终端设备 3的外部存储设备, 例如所述终端设 备 3上配备的插接式硬盘, 智能存储卡 (Smart Media Card,
SMC) , 安全数字 (Secure Digital, SD) 卡, 闪存卡 (Flash Card) 等。 进一步 地, 所述存储器 31还可以既包括所述终端设备 3的内部存储单元也包括外部存储 设备。 所述存储器 31用于存储所述计算机程序以及所述终端设备所需的其他程 序和数据。 所述存储器 31还可以用于暂时地存储已经输出或者将要输出的数据
[0122] 所属领域的技术人员可以清楚地了解到, 为了描述的方便和简洁, 仅以上述各 功能单元、 模块的划分进行举例说明, 实际应用中, 可以根据需要而将上述功 能分配由不同的功能单元、 模块完成, 即将所述装置的内部结构划分成不同的 功能单元或模块, 以完成以上描述的全部或者部分功能。 实施例中的各功能单 元、 模块可以集成在一个处理单元中, 也可以是各个单元单独物理存在, 也可 以两个或两个以上单元集成在一个单元中, 上述集成的单元既可以釆用硬件的 形式实现, 也可以采用软件功能单元的形式实现。 另外, 各功能单元、 模块的 具体名称也只是为了便于相互区分, 并不用于限制本申请的保护范围。 上述系 统中单元、 模块的具体工作过程, 可以参考前述方法实施例中的对应过程, 在 此不再赘述。
[0123] 在上述实施例中, 对各个实施例的描述都各有侧重, 某个实施例中没有详述或 记载的部分, 可以参见其它实施例的相关描述。
[0124] 本领域普通技术人员可以意识到, 结合本文中所公幵的实施例描述的各示例的 单元及算法步骤, 能够以电子硬件、 或者计算机软件和电子硬件的结合来实现 。 这些功能究竟以硬件还是软件方式来执行, 取决于技术方案的特定应用和设 计约束条件。 专业技术人员可以对每个特定的应用来使用不同方法来实现所描 述的功能, 但是这种实现不应认为超出本发明的范围。
[0125] 在本发明所提供的实施例中, 应该理解到, 所揭露的装置 /终端设备和方法, 可以通过其它的方式实现。 例如, 以上所描述的装置 /终端设备实施例仅仅是示 意性的, 例如, 所述模块或单元的划分, 仅仅为一种逻辑功能划分, 实际实现 吋可以有另外的划分方式, 例如多个单元或组件可以结合或者可以集成到另一 个系统, 或一些特征可以忽略, 或不执行。 另一点, 所显示或讨论的相互之间 的耦合或直接耦合或通讯连接可以是通过一些接口, 装置或单元的间接耦合或 通讯连接, 可以是电性, 机械或其它的形式。
[0126] 所述作为分离部件说明的单元可以是或者也可以不是物理上分开的, 作为单元 显示的部件可以是或者也可以不是物理单元, 即可以位于一个地方, 或者也可 以分布到多个网络单元上。 可以根据实际的需要选择其中的部分或者全部单元 来实现本实施例方案的目的。
[0127] 另外, 在本发明各个实施例中的各功能单元可以集成在一个处理单元中, 也可 以是各个单元单独物理存在, 也可以两个或两个以上单元集成在一个单元中。 上述集成的单元既可以采用硬件的形式实现, 也可以釆用软件功能单元的形式 实现。
[0128] 所述集成的模块 /单元如果以软件功能单元的形式实现并作为独立的产品销售 或使用吋, 可以存储在一个计算机可读取存储介质中。 基于这样的理解, 本发 明实现上述实施例方法中的全部或部分流程, 也可以通过计算机程序来指令相 关的硬件来完成, 所述的计算机程序可存储于一计算机可读存储介质中, 该计 算机程序在被处理器执行时, 可实现上述各个方法实施例的步骤。 其中, 所述 计算机程序包括计算机程序代码, 所述计算机程序代码可以为源代码形式、 对 象代码形式、 可执行文件或某些中间形式等。 所述计算机可读介质可以包括: 能够携带所述计算机程序代码的任何实体或装置、 记录介质、 U盘、 移动硬盘、 磁碟、 光盘、 计算机存储器、 只读存储器 (ROM, Read-Only Memory) 、 随机 存取存储器 (RAM , Random Access Memory) 、 电载波信号、 电信信号以及软 件分发介质等。 需要说明的是, 所述计算机可读介质包含的内容可以根据司法 管辖区内立法和专利实践的要求进行适当的增减, 例如在某些司法管辖区, 根 据立法和专利实践, 计算机可读介质不包括是电载波信号和电信信号。
以上所述实施例仅用以说明本发明的技术方案, 而非对其限制; 尽管参照前述 实施例对本发明进行了详细的说明, 本领域的普通技术人员应当理解: 其依然 可以对前述各实施例所记载的技术方案进行修改, 或者对其中部分技术特征进 行等同替换; 而这些修改或者替换, 并不使相应技术方案的本质脱离本发明各 实施例技术方案的精神和范围, 均应包含在本发明的保护范围之内。

Claims

一种环境调节方法, 其特征在于, 所述环境调节方法包括: 获取用户当前位置确定所述当前位置与预设位置之间的位置关系; 获取所述预设位置的环境参数, 根据所述环境参数与所述位置关系确 定调节系数;
根据所述调节系数控制智能控制设备调节所述预设位置的环境参数至 预设目标。
根据权利要求 1所述的环境调节方法, 其特征在于, 所述获取用户当 前位置确定所述当前位置与预设位置之间的位置关系, 包括: 检测所述用户的当前位置的变化状态;
根据所述变化状态计算所述用户的当前位置与所述预设位置之间的位 置变化关系。
根据权利要求 1所述的环境调节方法, 其特征在于, 所述获取所述预 设位置的环境参数, 根据所述环境参数与所述位置关系确定调节系数 , 包括:
判断所述位置关系是否符合预设条件;
在所述位置关系符合预设条件时, 获取所述预设位置的环境参数及所 述当前位置的环境参数;
根据所述预设位置的环境参数、 所述当前位置的环境参数以及所述位 置关系, 按照预设规则计算所述调节系数。
根据权利要求 1所述的环境调节方法, 其特征在于, 所述根据所述调 节系数控制智能控制设备调节所述预设位置的环境参数至预设目标, 包括:
根据所述调节系数和所述预设位置的环境参数计算调节次数; 根据所述调节次数, 控制所述智能控制设备逐次调节所述预设位置的 环境参数至预设目标。
根据权利要求 1所述的环境调节方法, 其特征在于, 在所述获取所述 预设位置的环境参数之后, 包括: 判断所述预设位置的环境参数是否在预设范围内。
一种环境调节系统, 其特征在于, 所述环境调节系统包括: 位置关系确定单元, 用于获取用户当前位置确定所述当前位置与预设 位置之间的位置关系;
调节系数确定单元, 用于获取所述预设位置的环境参数, 根据所述环 境参数与所述位置关系确定调节系数;
调节单元, 用于根据所述调节系数控制智能控制设备调节所述预设位 置的环境参数至预设目标。
根据权利要求 6所述的环境调节系统, 其特征在于, 所述位置关系确 定单元, 包括:
变化状态检测模块, 用于检测所述用户的当前位置的变化状态; 第一计算模块, 用于根据所述变化状态计算所述用户的当前位置与所 述预设位置之间的位置变化关系。
根据权利要求 6所述的环境调节系统, 其特征在于, 所述调节系数确 定单元, 包括:
判断模块, 用于判断所述位置关系是否符合预设条件;
获取模块, 用于在所述位置关系符合预设条件时, 获取所述预设位置 的环境参数及所述当前位置的环境参数;
第二计算模块, 用于根据所述预设位置的环境参数、 所述当前位置的 环境参数以及所述位置关系, 按照预设规则计算所述调节系数。 一种终端设备, 包括存储器、 处理器以及存储在所述存储器中并可在 所述处理器上运行的计算机程序, 其特征在于, 所述处理器执行所述 计算机程序吋实现如权利要求 1至 5任一项所述方法的步骤。
一种计算机可读存储介质, 所述计算机可读存储介质存储有计算机程 序, 其特征在于, 所述计算机程序被处理器执行时实现如权利要求 1 至 5任一项所述方法的步骤。
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