WO2017015829A1 - 一种室内空调调温系统及调温方法 - Google Patents

一种室内空调调温系统及调温方法 Download PDF

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WO2017015829A1
WO2017015829A1 PCT/CN2015/085193 CN2015085193W WO2017015829A1 WO 2017015829 A1 WO2017015829 A1 WO 2017015829A1 CN 2015085193 W CN2015085193 W CN 2015085193W WO 2017015829 A1 WO2017015829 A1 WO 2017015829A1
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temperature
air conditioner
control terminal
data
outdoor
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PCT/CN2015/085193
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English (en)
French (fr)
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吴鹏
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吴鹏
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Priority to PCT/CN2015/085193 priority Critical patent/WO2017015829A1/zh
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    • 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
    • F24F11/89Arrangement or mounting of control or safety devices

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  • the present invention belongs to the field of air conditioning equipment, and more particularly to an intelligent automatic adjustment system and method.
  • Air conditioners have become a must-have electrical equipment in summer. From the current situation of air conditioner usage, home air conditioners are usually started at night, work overnight, the temperature is generally customized or fixed, and there are two problems. First, the user has fallen asleep during the use of the air conditioner. The air conditioner always works according to its preset temperature value, causing a certain amount of power wasted. Second, the temperature required by the human body is often lower before going to bed. In the middle of the night, the indoor temperature requirement will increase, otherwise the body will feel extremely cold and cold, and it is easy to catch cold.
  • an air conditioner of an air conditioner whether it is a frequency conversion or an ordinary working mode, can only set a constant temperature operation for the air conditioner, and cannot be intelligently adjusted as the temperature of the human body changes after entering the sleep, and therefore, it is urgently required. Solve the above problems.
  • the present invention provides an indoor air conditioning temperature control system and a temperature adjustment method, which aim to solve the problem that the air conditioner in the prior art cannot be intelligently operated.
  • the present invention provides an indoor air conditioning temperature control system, including an air conditioner and a control terminal, the air conditioner is connected to a control terminal, and the control terminal is connected to a cloud server through an Internet, and the air conditioner is disposed on
  • the outdoor unit is provided with an outdoor temperature sensor, and the outdoor temperature sensor is connected to the control terminal, and the cloud server has real temperature data that can be downloaded by the control terminal.
  • the control terminal includes a central processing unit, a data storage unit, a network connection port, and a manipulation panel, and the network connection port transmits data acquired from the cloud server to the storage unit,
  • a storage unit is coupled to the central processing unit and provides data support thereto, the manipulation panel setting the central processing unit and storing preset parameters to the data storage unit.
  • the present invention further provides an indoor air conditioning temperature adjustment method, which adopts the above temperature adjustment system, and the specific temperature adjustment method steps are as follows.
  • the indoor required air temperature parameter Y is preset to the control terminal through the control panel;
  • control terminal is connected to the cloud server through the Internet, and obtains real temperature data W;
  • the control terminal acquires outdoor temperature data S through the outdoor temperature sensor
  • the temperature data S and the temperature data W are corrected, if the deviation is less than 3 degrees, the intermediate value is compared with the temperature parameter Y to determine the working length and strength of the air conditioner, if greater than 3
  • the temperature data S is selected as the comparison data with the temperature parameter Y.
  • the control terminal adjusts the air conditioner at intervals, and when the outdoor temperature is gradually increased, gradually reducing the preset temperature of the air conditioner and increasing the cooling intensity thereof, and the outdoor temperature is gradually decreased. In case, gradually increasing the preset temperature of the air conditioner and reducing its cooling intensity;
  • the temperature parameter W has a sleep mode, and a mode of increasing the temperature by 0.5-2 degrees is adopted in the sleep zone at night.
  • the temperature regulation system and the temperature adjustment method provided by the present invention intelligently improve the working mode of the air conditioner, and the weather temperature data obtained by the cloud server and The temperature data obtained by the outdoor temperature sensor is used to correct the working target temperature of the air conditioner, effectively preventing the outdoor air temperature from being low, the indoor air conditioner is still trying to consume power, and the sleep mode is set.
  • the air conditioner operating temperature curve in the night time zone is increased, so that the sleepy person in the room does not catch cold and does not appear to have a fixed temperature, and the temperature rises after the shutdown, resulting in a decline in sleep quality.
  • FIG. 1 is a schematic diagram of a system module connection provided by the present invention.
  • an embodiment of the present invention provides an indoor air conditioning temperature adjustment system, including an air conditioner 10 and a control terminal 20, the air conditioner 10 is connected to a control terminal 20, and the control terminal 20 is connected to the cloud through the Internet.
  • the server 30 is provided with an outdoor temperature sensor 11 provided in the outdoor unit of the air conditioner 10, the outdoor temperature sensor 11 is connected to the control terminal 20, and the cloud server 30 has the control terminal 20 available. Download actual solid temperature data.
  • the control terminal 20 includes a central processing unit 21, a data storage unit 22, a network connection port 23, and a manipulation panel 24, and the network connection port 23 transmits data acquired from the cloud server 30 to the storage unit 22,
  • the storage unit 22 is connected to the central processing unit 21 and provides data support thereto, and the manipulation panel 24 sets the central processing unit 21 and stores preset parameters to the data storage unit 22.
  • the central processing unit 21 controls the air conditioner 10 as a total control center, and determines that the outdoor temperature does not match the temperature detected by the air conditioner 10, determines the start and stop of the air conditioner 10, and effectively improves the air conditioner.
  • the intelligent work, the peer can also make temperature adjustments that are more conducive to the human body sense and temperature adjustment that is more conducive to energy saving according to the indoor and outdoor temperature environment.
  • the present invention further provides an indoor air conditioning temperature adjustment method, which adopts the above temperature adjustment system, and the specific temperature adjustment method steps are as follows.
  • the indoor required air temperature parameter Y is preset to the control terminal through the control panel;
  • control terminal is connected to the cloud server through the Internet, and obtains real temperature data W;
  • the control terminal acquires outdoor temperature data S through the outdoor temperature sensor
  • the temperature data S and the temperature data W are corrected, if the deviation is less than 3 degrees, the intermediate value is compared with the temperature parameter Y to determine the working length and strength of the air conditioner, if greater than 3
  • the temperature data S is selected as the comparison data with the temperature parameter Y.
  • the control terminal adjusts the air conditioner at intervals, and when the outdoor temperature is gradually increased, gradually reducing the cooling preset temperature of the air conditioner and increasing the cooling intensity thereof, and the outdoor temperature gradually decreases.
  • gradually increasing the preset temperature of the air conditioner and reducing its cooling intensity
  • the temperature parameter W has a sleep mode, and a mode of increasing the temperature by 0.5-2 degrees is adopted in the nighttime sleep zone.
  • the temperature regulation system and the temperature adjustment method provided by the embodiment intelligently improve the working mode of the air conditioner, the weather temperature data obtained by the cloud server, and the temperature acquired by the outdoor temperature sensor.
  • the data is used to correct the working target temperature of the air conditioner, effectively preventing the outdoor air temperature from being low, the indoor air conditioner is still trying to work hard, and the air conditioner working at night is working through the setting of the sleep mode.
  • the temperature curve is improved, so that the sleepy person in the room does not catch cold and does not appear to be fixed. The temperature rises after the shutdown and the sleep quality is degraded.

Abstract

一种室内空调调温系统,包括空调器(10)和控制终端(20),空调器(10)连接控制终端(20),控制终端(20)通过互联网连接云端服务器(30),空调器(10)设置于室外的外机设有室外温感器(11),室外温感器(11)与控制终端(20)连接,云端服务器(30)具有可供控制终端(20)下载的实时实地温度数据。通过将空调器(10)的工作模式进行智能化改进,通过云端服务器(30)所获得的天气气温数据以及室外温感器(11)所获取的温度数据来修正空调器(10)的工作目标温度,有效防止了室外温度已经很低的情况下,室内空调器(10)还在努力耗电工作的情况,以及通过睡眠模式的设定,将夜晚时区的空调器(10)工作温度曲线形提高,使室内睡眠人员不会感冒受凉,也不会出现定时关机后温度上升导致睡眠质量下降。

Description

说明书 发明名称:一种室内空调调温系统及调温方法 技术领域
[0001] 本发明属于空气调节设备领域, 尤其涉及智能化自动调节系统和方法。
背景技术
[0002] 空调已经成为夏日必备电气设备, 从目前空调的使用情况来看, 家用空调通常 是在晚上启动, 工作一夜, 温度一般是自定义或者定吋进行关闭, 这里就存在 两个问题, 第一, 空调使用过程中使用者已经入睡, 空调始终按照其预先设定 的温度值进行工作, 造成一定的电力浪费, 第二, 人体所需要的温度往往是在 睡前较低, 在后半夜吋对室内温度要求则会升高, 否则身体会感觉极度寒凉, 容易感冒受寒。
[0003] 目前的空调不论是变频还是普通工作模式的空调机只能对空调进行设置一个恒 定的温度工作, 而不能智能化的随着人体进入睡眠后所需要温度的变化而调整 , 故此, 亟待对上述问题进行解决。
技术问题
[0004] 本发明提供一种室内空调调温系统及调温方法, 旨在解决现有技术中空调器无 法智能化工作的问题。
问题的解决方案
技术解决方案
[0005] 为了解决上述问题, 本发明提供一种室内空调调温系统, 包括空调器和控制终 端, 所述空调器连接控制终端, 所述控制终端通过互联网连接云端服务器, 所 述空调器设于室外的外机设有室外温感器, 所述室外温感器与所述控制终端连 接, 所述云端服务器具有可供所述控制终端下载的实吋实地温度数据。
[0006] 优选地, 所述控制终端包括中央处理单元, 数据存储单元, 网络连接端口, 以 及操控面板, 所述网络连接端口将从云端服务器上所获取的数据传输到所述存 储单元, 所述存储单元与所述中央处理单元连接并向其提供数据支持, 所述操 控面板对所述中央处理单元进行设置以及向所述数据存储单元存储预设参数。 [0007] 本发明另外还提供了一种室内空调调温方法, 采用上述的调温系统, 具体调温 方法步骤如下,
[0008] S01, 通过所述操控面板向所述控制终端预先设置室内所需空气温度参数 Y;
[0009] S02, 所述控制终端通过互联网与所述云端服务器连接, 并获取实吋实地气温 数据 W;
[0010] S03 , 所述控制终端通过所述室外温感器获取室外温度数据 S;
[0011] S04, 将所述温度数据 S与所述气温数据 W进行校正, 如果偏差小于 3度则取中 间值与所述温度参数 Y进行比对决定空调器工作吋长和强度, 如果大于 3度, 则 选择所述温度数据 S作为与所述温度参数 Y的比对数据。
[0012] S05 , 所述控制终端间隔吋间对所述空调器进行调整, 室外温度逐渐升高的情 况下, 逐步降低所述空调器制冷预设温度并增加其制冷强度, 室外温度逐渐下 降的情况下, 逐步提高所述空调器制冷预设温度并减小其制冷强度;
[0013] 优选地, 所述温度参数 W具有睡眠模式, 在夜晚睡眠吋区采用增加温度 0.5-2度 的模式。
发明的有益效果
有益效果
[0014] 有益效果, 依借上述技术方案, 本发明所提供的调温系统和调温方法, 将所述 空调器的工作模式进行了智能化的改进, 通过云端服务器所获得的天气气温数 据以及室外温感器所获取的温度数据来修正空调器的工作目标温度, 有效防止 了室外温度已经很低的情况下, 室内空调器还在努力耗电工作的情况, 以及通 过睡眠模式的设定, 将夜晚吋区的空调器工作温度曲线形提高, 使室内睡眠人 员不会感冒受凉也不会出现定吋关机后温度上升导致睡眠质量下降。
对附图的简要说明
附图说明
[0015] 图 1是本发明提供的系统模块连接示意图。
实施该发明的最佳实施例
本发明的最佳实施方式 [0016] 为了使本发明的目的、 技术方案及优点更加清楚明白, 以下结合附图及实施例 , 对本发明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, 并不用于限定本发明。
[0017] 参照图 1所示, 本发明实施例提供一种室内空调调温系统, 包括空调器 10和控 制终端 20, 所述空调器 10连接控制终端 20, 所述控制终端 20通过互联网连接云 端服务器 30, 所述空调器 10设于室外的外机设有室外温感器 11, 所述室外温感 器 11与所述控制终端 20连接, 所述云端服务器 30具有可供所述控制终端 20下载 的实吋实地温度数据。 所述控制终端 20包括中央处理单元 21, 数据存储单元 22 , 网络连接端口 23, 以及操控面板 24, 所述网络连接端口 23将从云端服务器 30 上所获取的数据传输到所述存储单元 22, 所述存储单元 22与所述中央处理单元 2 1连接并向其提供数据支持, 所述操控面板 24对所述中央处理单元 21进行设置以 及向所述数据存储单元 22存储预设参数。 具体地, 中央处理单元 21作为总控制 中心, 对所述空调器 10进行控制, 当获知室外温度与所述空调器 10探知的温度 不匹配吋决定空调器 10的启动和关闭, 有效提高空调器的智能化工作, 同吋也 能根据室内外温度环境做出更有利于人体体感的温度调节以及更有利于节能的 温度调节。
[0018] 本发明另外还提供了一种室内空调调温方法, 采用上述的调温系统, 具体调温 方法步骤如下,
[0019] S01, 通过所述操控面板向所述控制终端预先设置室内所需空气温度参数 Y;
[0020] S02, 所述控制终端通过互联网与所述云端服务器连接, 并获取实吋实地气温 数据 W;
[0021] S03 , 所述控制终端通过所述室外温感器获取室外温度数据 S;
[0022] S04, 将所述温度数据 S与所述气温数据 W进行校正, 如果偏差小于 3度则取中 间值与所述温度参数 Y进行比对决定空调器工作吋长和强度, 如果大于 3度, 则 选择所述温度数据 S作为与所述温度参数 Y的比对数据。
[0023] S05 , 所述控制终端间隔吋间对所述空调器进行调整, 室外温度逐渐升高的情 况下, 逐步降低所述空调器制冷预设温度并增加其制冷强度, 室外温度逐渐下 降的情况下, 逐步提高所述空调器制冷预设温度并减小其制冷强度; [0024] 优选地, 所述温度参数 W具有睡眠模式, 在夜晚睡眠吋区采用增加温度 0.5-2度 的模式。
[0025] 本实施例所提供的调温系统和调温方法, 将所述空调器的工作模式进行了智能 化的改进, 通过云端服务器所获得的天气气温数据以及室外温感器所获取的温 度数据来修正空调器的工作目标温度, 有效防止了室外温度已经很低的情况下 , 室内空调器还在努力耗电工作的情况, 以及通过睡眠模式的设定, 将夜晚吋 区的空调器工作温度曲线形提高, 使室内睡眠人员不会感冒受凉也不会出现定 吋关机后温度上升导致睡眠质量下降。
[0026] 以上所述仅为本发明的较佳实施例而已, 并不用以限制本发明, 凡在本发明的 精神和原则之内所作的任何修改、 等同替换和改进等, 均应包含在本发明的保 护范围之内。

Claims

权利要求书
[权利要求 1] 一种室内空调调温系统, 其特征在于, 包括空调器和控制终端, 所述 空调器连接控制终端, 所述控制终端通过互联网连接云端服务器, 所 述空调器设于室外的外机设有室外温感器, 所述室外温感器与所述控 制终端连接, 所述云端服务器具有可供所述控制终端下载的实吋实地 温度数据。
[权利要求 2] 如权利要求 1所述的调温系统, 其特征在于, 所述控制终端包括中央 处理单元, 数据存储单元, 网络连接端口, 以及操控面板, 所述网络 连接端口将从云端服务器上所获取的数据传输到所述存储单元, 所述 存储单元与所述中央处理单元连接并向其提供数据支持, 所述操控面 板对所述中央处理单元进行设置以及向所述数据存储单元存储预设参 数。
[权利要求 3] —种室内空调调温方法, 采用上述权利要求所述的调温系统, 其特征 在于, 具体调温方法步骤如下,
S01, 通过所述操控面板向所述控制终端预先设置室内所需空气温度 参数 Y;
S02, 所述控制终端通过互联网与所述云端服务器连接, 并获取实吋 实地气温数据 W;
S03, 所述控制终端通过所述室外温感器获取室外温度数据 S;
504, 将所述温度数据 S与所述气温数据 W进行校正, 如果偏差小于 3 度则取中间值与所述温度参数 Y进行比对决定空调器工作吋长和强度 , 如果大于 3度, 则选择所述温度数据 S作为与所述温度参数 Y的比对 数据。
505 , 所述控制终端间隔吋间对所述空调器进行调整, 室外温度逐渐 升高的情况下, 逐步降低所述空调器制冷预设温度并增加其制冷强度
, 室外温度逐渐下降的情况下, 逐步提高所述空调器制冷预设温度并 减小其制冷强度;
[权利要求 4] 如权利要求 3所述的调温方法, 其特征在于, 所述温度参数 W具有睡 眠模式, 在夜晚睡眠吋区采用增加温度 0.5-2度的模式。
PCT/CN2015/085193 2015-07-27 2015-07-27 一种室内空调调温系统及调温方法 WO2017015829A1 (zh)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022213724A1 (zh) * 2021-04-07 2022-10-13 广东美的暖通设备有限公司 一种空调的室外机控制方法及装置、空调

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020033252A1 (en) * 2000-09-18 2002-03-21 Keiji Sasao Air-conditioning controlling system
DE102005032621A1 (de) * 2004-07-19 2006-02-09 Vaillant Gmbh Verfahren zur Regelung eines Heiz-, Kühl- und/oder Klimatisierungsgerätes
FR2969742A1 (fr) * 2010-12-28 2012-06-29 Oze En Controle et gestion optimises du chauffage de la production d'eau chaude sanitaire et du renouvellement d'air d'un batiment
CN202350263U (zh) * 2011-12-12 2012-07-25 海信(山东)空调有限公司 一种具有天气预报功能的空调器
US20140222219A1 (en) * 2013-02-07 2014-08-07 General Electric Company Method for opearting an hvac system
CN105066336A (zh) * 2015-07-27 2015-11-18 吴鹏 一种室内空调调温系统及调温方法

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020033252A1 (en) * 2000-09-18 2002-03-21 Keiji Sasao Air-conditioning controlling system
DE102005032621A1 (de) * 2004-07-19 2006-02-09 Vaillant Gmbh Verfahren zur Regelung eines Heiz-, Kühl- und/oder Klimatisierungsgerätes
FR2969742A1 (fr) * 2010-12-28 2012-06-29 Oze En Controle et gestion optimises du chauffage de la production d'eau chaude sanitaire et du renouvellement d'air d'un batiment
CN202350263U (zh) * 2011-12-12 2012-07-25 海信(山东)空调有限公司 一种具有天气预报功能的空调器
US20140222219A1 (en) * 2013-02-07 2014-08-07 General Electric Company Method for opearting an hvac system
CN105066336A (zh) * 2015-07-27 2015-11-18 吴鹏 一种室内空调调温系统及调温方法

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2022213724A1 (zh) * 2021-04-07 2022-10-13 广东美的暖通设备有限公司 一种空调的室外机控制方法及装置、空调

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