WO2021223405A1 - 一种开启空调器的配网模式的方法及控制终端 - Google Patents

一种开启空调器的配网模式的方法及控制终端 Download PDF

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Publication number
WO2021223405A1
WO2021223405A1 PCT/CN2020/130614 CN2020130614W WO2021223405A1 WO 2021223405 A1 WO2021223405 A1 WO 2021223405A1 CN 2020130614 W CN2020130614 W CN 2020130614W WO 2021223405 A1 WO2021223405 A1 WO 2021223405A1
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Prior art keywords
air conditioner
control terminal
distribution mode
nfc
network distribution
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PCT/CN2020/130614
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English (en)
French (fr)
Inventor
王博鹏
陈会敏
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青岛海尔空调器有限总公司
海尔智家股份有限公司
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Publication of WO2021223405A1 publication Critical patent/WO2021223405A1/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
    • F24F11/50Control or safety arrangements characterised by user interfaces or communication
    • F24F11/56Remote control
    • F24F11/58Remote control using Internet communication
    • 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
    • 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

Definitions

  • the present invention relates to the technical field of smart air conditioners, in particular to a method and a control terminal for turning on a network distribution mode of an air conditioner.
  • the air conditioner is used to turn on the network distribution mode by controlling a combination of multiple keys of the remote control.
  • repeatedly press a single button on the remote control to turn on the air conditioner in the network distribution mode The combined use of multiple keys and multiple consecutive presses of a single key require users to perform relatively cumbersome operations, which reduces user efficiency.
  • wrong operations are prone to occur, which reduces the user experience.
  • the present invention is proposed to provide a method and a control terminal for turning on the network distribution mode of an air conditioner that overcomes the above-mentioned problems or at least partially solves the above-mentioned problems.
  • An object of the present invention is to provide a method for turning on the air conditioner's network distribution mode that reduces user operations and error rates.
  • the present invention provides a method for turning on the network distribution mode of an air conditioner, including:
  • test results confirm that the control terminal is close to the air conditioner, and establish an NFC data connection between the control terminal and the air conditioner;
  • the preset NFC trigger signal is sent to the air conditioner, so that the air conditioner starts the network distribution mode in response to the NFC trigger signal.
  • confirming that the control terminal is close to the air conditioner according to the detection result includes:
  • the step of determining whether the device identifier belongs to the identifier of the air conditioner includes:
  • sending the preset NFC trigger signal to the air conditioner includes:
  • a preset NFC trigger signal corresponding to the device identification is sent.
  • the method further includes:
  • connection information the control terminal and the air conditioner are connected.
  • connection information includes the SSID and password of the Wi-Fi hotspot that the air conditioner is turned on in the network distribution mode;
  • Establishing a connection between the control terminal and the air conditioner according to the connection information includes: establishing a connection between the control terminal and the air conditioner according to the SSID of the Wi-Fi hotspot and its password.
  • connection information includes Bluetooth pairing information that the air conditioner is turned on in a network distribution mode
  • Establishing a connection between the control terminal and the air conditioner according to the connection information includes: establishing a connection between the control terminal and the air conditioner according to the Bluetooth pairing information.
  • the method further includes:
  • the related information of the wireless network includes the user name and password of the wireless network.
  • a control terminal including:
  • the controller includes a memory and a processor, and a control program is stored in the memory.
  • the control program is executed by the processor, it is used to implement any one of the above-mentioned methods for turning on the air conditioner's network distribution mode.
  • the NFC signal around the control terminal of the air conditioner is detected, the control terminal is confirmed to be close to the air conditioner according to the detection result, and the NFC data connection between the control terminal and the air conditioner is established, and the NFC data connection between the control terminal and the air conditioner is established.
  • the preset NFC trigger signal is sent, so that the air conditioner starts the network distribution mode in response to the NFC trigger signal.
  • This method of turning on the network distribution mode of the air conditioner reduces the user's operation process and the error rate of the operation, improves the user experience, and also makes the control process of the air conditioner more intelligent.
  • this method of turning on the air conditioner's network distribution mode reduces the number of devices bound to the air conditioner compared to the prior art method of using a remote control to turn on the air conditioner's network distribution mode.
  • the information of the air conditioner pre-stored in the APP bound to the air conditioner is accurate and reliable, and the identification stored in the APP bound to the air conditioner in the control terminal is read, It can ensure the accuracy of the read pre-stored logo.
  • connection information transmitted by the air conditioner using NFC is obtained, and the control terminal and the air conditioner are connected according to the connection information, which reduces the user's operation steps and improves the user's Use efficiency.
  • FIG. 1 is a schematic diagram of a scenario where a control terminal and an air conditioner perform NFC data communication according to an embodiment of the present invention
  • FIG. 2 is a flowchart of a method for turning on a network distribution mode of an air conditioner according to another embodiment of the present invention
  • FIG. 3 is a flowchart of a method for turning on a network distribution mode of an air conditioner according to another embodiment of the present invention.
  • FIG. 4 is a flowchart of a method for turning on a network distribution mode of an air conditioner according to another embodiment of the present invention.
  • Fig. 5 is a schematic structural diagram of a control terminal according to another embodiment of the present invention.
  • FIG. 1 is a schematic diagram of a scenario where a control terminal and an air conditioner perform NFC data communication according to an embodiment of the present invention.
  • FIG. 1 includes a control terminal 100 and an air conditioner 200 each having an NFC (Near Field Communication) chip. Both the control terminal 100 and the air conditioner 200 can generate a radio frequency field. Either one of the control terminal 100 and the air conditioner 200 can be selected as the NFC initiating device, and the other as the NFC target device. Specifically, for example, the control terminal 100 is used as the NFC initiating device, and the air conditioner 200 is used as the NFC target device.
  • the control terminal 100 may generally refer to devices such as a mobile phone, a tablet computer, and a smart bracelet.
  • the control terminal 100 detects the surrounding NFC signal, and after confirming that the surrounding NFC signal is the NFC signal corresponding to the air conditioner 200 according to the detection result, the control terminal 100 and the air conditioner 200 establish an NFC data connection.
  • the control terminal 100 may send a preset NFC trigger signal to the air conditioner 200.
  • the air conditioner 200 activates the network distribution mode in response to the NFC trigger signal.
  • the air conditioner 200 can turn on WI-FI (Wireless Fidelity, wireless local area network) hotspot or Bluetooth in the network distribution mode.
  • WI-FI Wireless Fidelity, wireless local area network
  • the air conditioner 200 can also activate other short-distance connection modes to start the network distribution mode, which is not specifically limited in the embodiment of the present invention. After the air conditioner 200 turns on the network distribution mode, it is in a standby state.
  • the air conditioner 200 may transmit the SSID (Service Set Identifier, service set identifier) and password of the WI-FI hotspot or Bluetooth pairing information to the control terminal 100 using NFC.
  • the control terminal 100 obtains the SSID and password of the WI-FI hotspot or Bluetooth pairing information, and establishes a connection with the air conditioner 200.
  • the control terminal 100 and the air conditioner 200 may use NFC for data communication.
  • the control terminal 100 may read pre-stored information about the wireless network of the environment where the air conditioner 200 is located, and send the relevant information to the air conditioner 200.
  • the wireless network related information of the environment where the air conditioner 200 is located may generally be network related information of the router of the indoor environment where the air conditioner 200 is located.
  • the air conditioner 200 connects to the wireless network according to the received information related to the wireless network.
  • NFC data communication has the following characteristics: NFC short-range wireless communication technology can simplify the process of short-range interactive authentication and identification.
  • the specific technical characteristics and parameters of NFC are as follows: NFC data is transmitted through inductive coupling, which not only has the characteristics of small transmission range, low cost, high bandwidth, and low power consumption, but also has the characteristics of two-way connection and identification.
  • Fig. 2 is a flowchart of a method for turning on a network distribution mode of an air conditioner according to an embodiment of the present invention. Referring to FIG. 2, the method may generally include the following steps S102 to S106.
  • Step S102 Detect NFC signals around the control terminal 100 of the air conditioner 200.
  • Step S104 According to the detection result, it is confirmed that the control terminal 100 is close to the air conditioner 200, and an NFC data connection between the control terminal 100 and the air conditioner 200 is established.
  • Step S106 Send a preset NFC trigger signal to the air conditioner 200, so that the air conditioner 200 starts the network distribution mode in response to the NFC trigger signal.
  • both the control terminal 100 and the air conditioner 200 include an NFC chip. Detect NFC signals around the control terminal 100 of the air conditioner 200, confirm that the control terminal 100 is close to the air conditioner 200 according to the detection result, establish an NFC data connection between the control terminal 100 and the air conditioner 200, and send a preset NFC trigger signal to the air conditioner 200 , So that the air conditioner 200 starts the network distribution mode in response to the NFC trigger signal.
  • This method of turning on the network distribution mode of the air conditioner 200 reduces the user's operation process and the error rate of the operation, improves the user experience, and also makes the control process of the air conditioner 200 more intelligent. Moreover, this method of turning on the network distribution mode of the air conditioner 200 reduces the number of devices bound to the air conditioner 200 compared to the method of using a remote control to turn on the network distribution mode of the air conditioner 200 in the prior art.
  • the process of confirming that the control terminal 100 is close to the air conditioner 200 according to the detection result in step S104 may include the following steps:
  • step S102 is continued. After confirming that the control terminal 100 is close to the air conditioner 200, an NFC data connection between the control terminal 100 and the air conditioner 200 is established, which can avoid establishing an NFC data connection with other non-air conditioner devices and ensure the accuracy of the object establishing the NFC data connection.
  • the step of determining whether the device identifier belongs to the identifier of the air conditioner 200 may include the following steps:
  • Step S202 Read the pre-stored identifier in the APP bound to the air conditioner 200 in the control terminal 100.
  • Step S203 Determine whether the device identifier is consistent with the pre-stored identifier.
  • step S204 the device identifier belongs to the air conditioner 200.
  • step S205 the device identifier does not belong to the air conditioner 200.
  • an APP (Application) bound to the air conditioner 200 is installed in the terminal device.
  • the relevant information of the air conditioner 200 is pre-stored in the APP.
  • information such as the identification and the date of manufacture of the air conditioner 200 is pre-stored in the APP.
  • the identification of the air conditioner 200 may be configured according to the model of the air conditioner 200.
  • the information of the air conditioner 200 pre-stored in the APP bound to the air conditioner 200 can be obtained by scanning the two-dimensional code of the air conditioner 200.
  • the information of the air conditioner 200 pre-stored in the APP is accurate and reliable. Reading the pre-stored identifier in the APP bound to the air conditioner 200 in the control terminal 100 can ensure the accuracy of the read pre-stored identifier.
  • sending the preset NFC trigger signal to the air conditioner 200 may specifically include sending the preset NFC trigger signal corresponding to the device identifier according to the device identifier.
  • the NFC trigger signals corresponding to different air conditioners 200 may be different. Therefore, the device identification contained in the NFC signal of different air conditioners 200 may be different. Sending the preset NFC trigger signal corresponding to the device identifier according to the device identifier can ensure that the sent NFC trigger signal corresponds to the air conditioner 200, reducing the error rate of sending the NFC trigger signal.
  • the method may further include obtaining connection information transmitted by the air conditioner 200 using NFC. Then, a connection is established between the control terminal 100 and the air conditioner 200 based on the connection information.
  • connection information transmitted by the air conditioner 200 using NFC is acquired, and the way in which the control terminal 100 and the air conditioner 200 are connected according to the connection information is compared to the way in which the user controls the terminal 100 to obtain the connection information, which reduces the user’s burden.
  • the operation improves the efficiency of establishing a connection between the control terminal 100 and the air conditioner 200 and the user's use efficiency.
  • the connection information may include the SSID and password of the Wi-Fi hotspot that the air conditioner 200 is turned on in the network distribution mode.
  • the establishment of a connection between the control terminal 100 and the air conditioner 200 according to the connection information may be the establishment of a connection between the control terminal 100 and the air conditioner 200 according to the SSID and password of the WI-FI hotspot.
  • the connection information may include Bluetooth pairing information that the air conditioner 200 is turned on in the network distribution mode.
  • the Bluetooth pairing information can be the name and password of the Bluetooth.
  • the establishment of a connection between the control terminal 100 and the air conditioner 200 according to the connection information may be the establishment of a connection between the control terminal 100 and the air conditioner 200 according to the Bluetooth pairing information.
  • the control terminal 100 after the step of establishing a connection between the control terminal 100 and the air conditioner 200 according to the connection information, it may further include reading the wireless network related information of the environment where the air conditioner 200 is pre-stored by the control terminal 100. Then, the related information is sent to the air conditioner 200 to connect the air conditioner 200 to the wireless network.
  • the related information of the wireless network may generally include the username and password of the wireless network.
  • NFC can be used to read the wireless network related information pre-stored in the APP bound to the air conditioner 200 in the control terminal 100. Reading the pre-stored wireless network related information in the APP bound to the air conditioner 200 also reduces the operation steps for the user to obtain the wireless network related information by himself, and improves the user experience.
  • the related information is sent to the air conditioner 200 so that the air conditioner 200 is connected to a wireless network, and the remote control of the air conditioner 200 can be realized.
  • Fig. 4 shows a flowchart of a method for turning on a network distribution mode of an air conditioner according to a specific embodiment of the present invention.
  • the method may include the following steps S302 to S311.
  • Step S302 Detect NFC signals around the control terminal 100 of the air conditioner 200.
  • Step S303 Extract the device identification contained in the detected NFC signal from the detected NFC signal.
  • Step S304 Read the pre-stored identifier in the APP bound to the air conditioner 200 in the control terminal 100.
  • Step S305 Determine whether the device identifier is consistent with the pre-stored identifier.
  • step S306 confirm that the control terminal 100 is close to the air conditioner 200, and establish an NFC data connection between the control terminal 100 and the air conditioner 200.
  • Step S307 Send a preset NFC trigger signal corresponding to the device identifier according to the device identifier, so that the air conditioner 200 starts the network distribution mode in response to the NFC trigger signal.
  • Step S308 Acquire the connection information transmitted by the air conditioner 200 using NFC.
  • Step S309 Make the control terminal 100 and the air conditioner 200 establish a connection according to the connection information.
  • Step S310 Read the related information of the wireless network of the environment where the air conditioner 200 is located, which is pre-stored by the control terminal 100.
  • the relevant information of the wireless network includes the user name and password of the wireless network.
  • Step S311 Send relevant information to the air conditioner 200 to connect the air conditioner 200 to the wireless network.
  • the NFC signal around the control terminal 100 of the air conditioner 200 is detected, the control terminal 100 is confirmed to be close to the air conditioner 200 according to the detection result, and the NFC data connection between the control terminal 100 and the air conditioner 200 is established, and the pre-determined signal is sent to the air conditioner 200.
  • the NFC trigger signal is set so that the air conditioner 200 starts the network distribution mode in response to the NFC trigger signal. This method of turning on the network distribution mode of the air conditioner 200 reduces the user's operation process and the error rate of the operation, improves the user experience, and also makes the control process of the air conditioner 200 more intelligent.
  • the control terminal 100 may include an NFC chip 101 and a controller 102.
  • the controller 102 may include a memory 103 and a processor 104.
  • a control program is stored in the memory 103. When the control program is executed by the processor 104, it is used to implement the method of turning on the network distribution mode of the air conditioner 200 in any of the foregoing embodiments.
  • the NFC signal around the control terminal 100 of the air conditioner 200 is detected, the control terminal 100 is confirmed to be close to the air conditioner 200 according to the detection result, and the connection between the control terminal 100 and the air conditioner 200 is established.
  • the NFC data connection sends a preset NFC trigger signal to the air conditioner 200, so that the air conditioner 200 starts the network distribution mode in response to the NFC trigger signal.
  • This method of turning on the network distribution mode of the air conditioner 200 reduces the user's operation process and the error rate of the operation, improves the user experience, and also makes the control process of the air conditioner 200 more intelligent.
  • this method of turning on the network distribution mode of the air conditioner 200 reduces the number of devices bound to the air conditioner 200 compared to the method of using a remote control to turn on the network distribution mode of the air conditioner 200 in the prior art.

Abstract

本发明提供了一种开启空调器的配网模式的方法及控制终端。该方法包括检测空调器的控制终端周围的NFC信号;根据检测结果确认控制终端接近空调器,并建立控制终端与空调器的NFC数据连接;向空调器发送预设的NFC触发信号,以使得空调器响应于NFC触发信号而启动配网模式。这种开启空调器的配网模式的方法减少了用户的操作过程以及操作的失误率,提高了用户体验,也使空调器的控制更加智能。并且,这种开启空调器的配网模式的方法相对于现有技术中采用遥控器开启空调器配网模式的方法,减少了与空调器绑定的设备的数量。

Description

一种开启空调器的配网模式的方法及控制终端
本申请基于申请号为202010724603.1、申请日为2020年07月24日的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本发明涉及智能空调技术领域,特别是涉及一种开启空调器的配网模式的方法及控制终端。
背景技术
目前,开启空调器的配网模式的方法有很多种。具体地,例如,通过控制遥控器的多个按键组合使用空调器开启配网模式。或者,对遥控器的某个单一按键进行多次连按使空调器开启配网模式。多个按键组合使用和某个单一按键进行多次连按均需要用户进行比较繁琐的操作,降低了用户的使用效率。并且,用户在进行多个按键组合使用或者某个单一按键进行多次连按的过程中,容易出现错误的操作,降低了用户的体验。
发明内容
鉴于上述问题,提出了本发明以便提供一种克服上述问题或者至少部分地解决上述问题的一种开启空调器的配网模式的方法及控制终端。
本发明的一个目的是要提供一种减少用户操作和出错率的开启空调器的配网模式的方法。
特别地,本发明提供了一种开启空调器的配网模式的方法,包括:
检测空调器的控制终端周围的NFC信号;
根据检测结果确认控制终端接近空调器,并建立控制终端与空调器的NFC数据连接;
向空调器发送预设的NFC触发信号,以使得空调器响应于NFC触发信号而启动配网模式。
可选地,根据检测结果确认控制终端接近空调器包括:
从检测到的NFC信号中提取其包含的设备标识;
判断设备标识是否属于空调器的标识,若是,确认控制终端接近空调器。
可选地,判断设备标识是否属于空调器的标识的步骤包括:
读取控制终端中与空调器绑定的APP中预存标识;
判断设备标识与预存标识是否一致。
可选地,向空调器发送预设的NFC触发信号包括:
根据设备标识发送与设备标识对应的预设的NFC触发信号。
可选地,在向空调器发送预设的NFC触发信号,以使得空调器响应于NFC触发信号而启动配网模式的步骤之后,还包括:
获取空调器利用NFC传送的连接信息;
根据连接信息使控制终端和空调器建立连接。
可选地,连接信息包括空调器在配网模式下开启的Wi-Fi热点的SSID及其密码;
根据连接信息使控制终端和空调器建立连接包括:根据Wi-Fi热点的SSID及其密码使控制终端和空调器建立连接。
可选地,连接信息包括空调器在配网模式下开启的蓝牙配对信息;
根据连接信息使控制终端和空调器建立连接包括:根据蓝牙配对信息使控制终端和空调器建立连接。
可选地,在根据连接信息使控制终端和空调器建立连接的步骤之后,还包括:
读取控制终端预存储的空调器所在环境的无线网络的相关信息;
将相关信息发送至空调器以使空调器连接无线网络。
可选地,无线网络的相关信息包括无线网络的用户名和密码。
根据本发明的另一方面,提供了一种控制终端,包括:
NFC芯片;
控制器,包括存储器和处理器,存储器内存储有控制程序,控制程序被处理器执行时用于实现上述任一项的开启空调器的配网模式的方法。
本发明的开启空调器的配网模式的方法中,检测空调器的控制终端周围的NFC信号,根据检测结果确认控制终端接近空调器,并建立控制终端与空调器的NFC数据连接,向空调器发送预设的NFC触发信号,以使得空调器响应于NFC触发信号而启动配网模式。这种开启空调器的配网模式的方法减少了用户的操作过程以及操作的失误率,提高了用户体验,也使空调器的控制过程更加智能化。并且,这种开启空调器的配网模式的方法相对于现有技术中采用遥控器开启空调器配网模式的方法,减少了与空调器绑定的设备的数量。
进一步地,本发明的开启空调器的配网模式的方法中,与空调器绑定的APP中预存的空调器的信息准确可靠,读取控制终端中与空调器绑定的APP中预存标识,可以保证读取的预存标识的准确性。
进一步地,本发明的开启空调器的配网模式的方法中,获取空调器利用NFC传送的连接信息,根据连接信息使控制终端和空调器建立连接,减少了用户的操作步骤,提高了用户的使用效率。
根据下文结合附图对本发明具体实施例的详细描述,本领域技术人员将会更加明了本发明的上述以及其他目的、优点和特征。
附图说明
后文将参照附图以示例性而非限制性的方式详细描述本发明的一些具体实施例。附图中相同的附图标记标示了相同或类似的部件或部分。本领域技术人员应该理解,这些附图未必是按比例绘制的。附图中:
图1是根据本发明一个实施的例的控制终端和空调器进行NFC数据通讯的场景示意图;
图2是根据本发明另一个实施例的开启空调器的配网模式的方法的流程图;
图3是根据本发明另一个实施例的开启空调器的配网模式的方法的流程图;
图4是根据本发明另一个实施例的开启空调器的配网模式的方法的流程图;
图5是根据本发明另一个实施例的控制终端的结构示意图。
具体实施方式
参见图1,图1是根据本发明一个实施例的控制终端和空调器进行NFC数据通讯的场景示意图。图1中包括了均具有NFC(Near Field Communication,近场通信)芯片的控制终端100和空调器200。控制终端100和空调器200均可以产生射频场。可以选择控制终端100和空调器200中的任一个作为NFC发起设备,另一个作为NFC目标设备。具体地,例如,将控制终端100作为NFC发起设备,空调器200作为NFC目标设备。控制终端100一般可以指手机、平板电脑以及智能手环等设备。
控制终端100检测到周围的NFC信号,在根据检测结果确认周围的NFC信号为空调器200对应的NFC信号后,控制终端100和空调器200建立NFC数据连接。控制终端100可以向空调器200发送预设的NFC触发信号。空调器200响应于NFC触发信号而启动配网模式。例如,空调器200可以在配网模式下开启WI-FI(Wireless Fidelity,无线局域网络)热点或蓝牙。当然,空调器200也可以开启其他的近距离连接方式以启动配网模式,本发明实施例对此不做具体地限定。空调器200开启配网模式后,处于待连接状态。空调器200可以将WI-FI热点的SSID(Service Set Identifier,服务集标识)和密码或者蓝牙配对信息利用NFC传输至控制终端100。控制终端100获取WI-FI热点的SSID和密码或者蓝牙配对信息,与空调器200建立连接。之后,控制终端100和空调器200可以利用NFC进行数据通信。例如,控制终端100可以读取预存储的空调器200所在环境的无线网络的相关信息,将相关信息发送至空调器200。空调器200所在环境的无线网络的相关信息一般可以为空调器200所在室内环境的路由器的网络相关信息。空调器200根据接收的无线网络的相关信息连接无线网络。NFC数据通信具有如下特点:NFC短距离无线通信技术能够简化短距离交互认证识别的过程。NFC的具体技术特点及参数如下:NFC数据通过电感耦合方式传递,不仅具有传输范围小、成本低、带宽高、功耗低等特点,且具有双向连接和识别的特点。
图2是根据本发明一个实施例的开启空调器的配网模式的方法的流程图。参见图2,该方法一般性地可包括以下步骤S102至步骤S106。
步骤S102:检测空调器200的控制终端100周围的NFC信号。
步骤S104:根据检测结果确认控制终端100接近空调器200,并建立控制终端100与空调器200的NFC数据连接。
步骤S106:向空调器200发送预设的NFC触发信号,以使得空调器200响应于NFC触发信号而启动配网模式。
在本实施例的开启空调器的配网模式的方法中,控制终端100和空调器200均包含了NFC芯片。检测空调器200的控制终端100周围的NFC信号,根据检测结果确认控制终端100接近空调器200,并建立控制终端100与空调器200的NFC数据连接,向空调器200发送预设的NFC触发信号,以使得空调器200响应于NFC触发信号而启动配网模式。这种开启空调器200的配网模式的方法减少了用户的操作过程以及操作的失误率,提高了用户体验,也使空调器200的控制过程更加智能化。并且,这种开启空调器200的配网模式的方法相对于现有技术中采用遥控器开启空调器200配网模式的方法,减少了与空调器200绑定的设备的数量。
在本发明一个实施例中,步骤S104中的根据检测结果确认控制终端100接近空调器200的过程可以包括以下步骤:
从检测到的NFC信号中提取其包含的设备标识。然后,判断设备标识是否属于空调器200的标识。若是,确认控制终端100接近空调器200。若否,确认控制终端100接近的为除空调器200以外的其他设备,继续执行步骤S102。在确认控制终端100接近空调器200后,建立控制终端100与空调器200的NFC数据连接,可以避免与其他非空调设备建立NFC数据连接,保证了建立NFC数据连接的对象的准确性。
参见图3,在本发明一个实施例中,判断设备标识是否属于空调器200的标识的步骤可以包括以下步骤:
步骤S202:读取控制终端100中与空调器200绑定的APP中预存标识。
步骤S203:判断设备标识与预存标识是否一致。
若一致,执行步骤S204:设备标识属于空调器200。
若不一致,执行步骤S205:设备标识不属于空调器200。
在本实施例中,终端设备中安装有与空调器200绑定的APP(Application,应用程序)。APP中预存了空调器200的相关信息。具体地,例如,APP中预存了空调器200的标识、出厂日期等信息。空调器200的标识可以根据空调器200的型号进行配置。与空调器200绑定的APP中预存的空调器200的信息可以通过扫描空调器200的二维码获取。APP中预存的空调器200的信息准确可靠,读取控制终端100中与空调器200绑定的APP中预存标识,可以保证读取的预存标识的准确性。
在本发明一个实施例中,向空调器200发送预设的NFC触发信号具体可包括根据设备标识发送与设备标识对应的预设的NFC触发信号。
在本实施例中,不同空调器200对应的NFC触发信号可能会不同。因此,不同空调 器200的NFC信号中包含的设备标识可以不同。根据设备标识发送与设备标识对应的预设的NFC触发信号可以保证发送的NFC触发信号与空调器200相对应,减少发送NFC触发信号的错误率。
在本发明一个实施例中,在步骤S106之后,还可包括获取空调器200利用NFC传送的连接信息。然后,根据连接信息使控制终端100和空调器200建立连接。
在本实施例中,获取空调器200利用NFC传送的连接信息,根据连接信息使控制终端100和空调器200建立连接的方式,相对于用户控制终端100设备获取连接信息的方式,减少了用户的操作,提高了控制终端100和空调器200建立连接的效率和用户的使用效率。
在本发明一个实施例中,连接信息可包括空调器200在配网模式下开启的WI-FI热点的SSID及其密码。根据连接信息使控制终端100和空调器200建立连接可以为根据WI-FI热点的SSID和密码使控制终端100和空调器200建立连接。
在本发明一个实施例中,连接信息可包括空调器200在配网模式下开启的蓝牙配对信息。蓝牙配对信息可以为蓝牙的名称和密码。根据连接信息使控制终端100和空调器200建立连接可以为根据蓝牙配对信息使控制终端100和空调器200建立连接。
在本发明一个实施例中,在根据连接信息使控制终端100和空调器200建立连接的步骤之后,还可包括读取控制终端100预存储的空调器200所在环境的无线网络的相关信息。然后,将相关信息发送至空调器200以使空调器200连接无线网络。无线网络的相关信息一般可包括无线网络的用户名和密码。
在本实施例中,可以利用NFC读取控制终端100中与空调器200绑定的APP中预存储的无线网络的相关信息。读取与空调器200绑定的APP中预存储的无线网络的相关信息也减少了用户自己获取无线网络相关信息的操作步骤,提高了用户体验。将相关信息发送至空调器200以使空调器200连接无线网络,可以实现对空调器200的远程控制。
参见图4,图4示出了根据本发明一具体实施例的开启空调器的配网模式的方法的流程图。参见图4,该方法可以包括以下步骤S302至步骤S311。
步骤S302:检测空调器200的控制终端100周围的NFC信号。
步骤S303:从检测到的NFC信号中提取其包含的设备标识。
步骤S304:读取控制终端100中与空调器200绑定的APP中预存标识。
步骤S305:判断设备标识与预存标识是否一致。
若否,返回步骤S302。
若是,执行步骤S306:确认控制终端100接近空调器200,并建立控制终端100与空调器200的NFC数据连接。
步骤S307:根据设备标识发送与设备标识对应的预设的NFC触发信号,以使得空调器200响应于NFC触发信号而启动配网模式。
步骤S308:获取空调器200利用NFC传送的连接信息。
步骤S309:根据连接信息使控制终端100和空调器200建立连接。
步骤S310:读取控制终端100预存储的空调器200所在环境的无线网络的相关信息。其中,无线网络的相关信息包括无线网络的用户名和密码。
步骤S311:将相关信息发送至空调器200以使空调器200连接无线网络。
本实施例中,检测空调器200的控制终端100周围的NFC信号,根据检测结果确认控制终端100接近空调器200,并建立控制终端100与空调器200的NFC数据连接,向空调器200发送预设的NFC触发信号,以使得空调器200响应于NFC触发信号而启动配网模式。这种开启空调器200的配网模式的方法减少了用户的操作过程以及操作的失误率,提高了用户体验,也使空调器200的控制过程更加智能化。
参见图5,基于同一构思,提供了一种控制终端100。控制终端100可包括NFC芯片101和控制器102。控制器102可包括存储器103和处理器104。存储器103内存储有控制程序。控制程序被处理器104执行时用于实现上述任一实施例的开启空调器200的配网模式的方法。
上述各个实施例可以任意组合,根据上述任意一个优选实施例或多个优选实施例的组合,本发明实施例能够达到如下有益效果:
本发明的开启空调器200的配网模式的方法中,检测空调器200的控制终端100周围的NFC信号,根据检测结果确认控制终端100接近空调器200,并建立控制终端100与空调器200的NFC数据连接,向空调器200发送预设的NFC触发信号,以使得空调器200响应于NFC触发信号而启动配网模式。这种开启空调器200的配网模式的方法减少了用户的操作过程以及操作的失误率,提高了用户体验,也使空调器200的控制过程更加智能化。并且,这种开启空调器200的配网模式的方法相对于现有技术中采用遥控器开启空调器200配网模式的方法,减少了与空调器200绑定的设备的数量。
至此,本领域技术人员应认识到,虽然本文已详尽示出和描述了本发明的多个示例性实施例,但是,在不脱离本发明精神和范围的情况下,仍可根据本发明公开的内容直接确定或推导出符合本发明原理的许多其他变型或修改。因此,本发明的范围应被理解和认定为覆盖了所有这些其他变型或修改。

Claims (10)

  1. 一种开启空调器的配网模式的方法,包括:
    检测所述空调器的控制终端周围的NFC信号;
    根据检测结果确认所述控制终端接近所述空调器,并建立所述控制终端与所述空调器的NFC数据连接;
    向所述空调器发送预设的NFC触发信号,以使得所述空调器响应于所述NFC触发信号而启动配网模式。
  2. 根据权利要求1所述的开启空调器的配网模式的方法,其中,所述根据检测结果确认所述控制终端接近所述空调器包括:
    从检测到的所述NFC信号中提取其包含的设备标识;
    判断所述设备标识是否属于空调器的标识,若是,确认所述控制终端接近所述空调器。
  3. 根据权利要求2所述的开启空调器的配网模式的方法,其中,所述判断所述设备标识是否属于空调器的标识的步骤包括:
    读取所述控制终端中与所述空调器绑定的APP中预存标识;
    判断所述设备标识与所述预存标识是否一致。
  4. 根据权利要求2所述的开启空调器的配网模式的方法,其中,所述向所述空调器发送预设的NFC触发信号包括:
    根据所述设备标识发送与所述设备标识对应的预设的NFC触发信号。
  5. 根据权利要求1所述的开启空调器的配网模式的方法,其中,在所述向所述空调器发送预设的NFC触发信号,以使得所述空调器响应于所述NFC触发信号而启动配网模式的步骤之后,还包括:
    获取所述空调器利用NFC传送的连接信息;
    根据所述连接信息使所述控制终端和所述空调器建立连接。
  6. 根据权利要求5所述的开启空调器的配网模式的方法,其中,所述连接信息包括所述空调器在所述配网模式下开启的Wi-Fi热点的SSID及其密码;
    所述根据所述连接信息使所述控制终端和所述空调器建立连接包括:根据所述Wi-Fi热点的SSID及其密码使所述控制终端和所述空调器建立连接。
  7. 根据权利要求5所述的开启空调器的配网模式的方法,其中,所述连接信息包括所述空调器在所述配网模式下开启的蓝牙配对信息;
    所述根据所述连接信息使所述控制终端和所述空调器建立连接包括:根据所述蓝牙配对信息使所述控制终端和所述空调器建立连接。
  8. 根据权利要求5所述的开启空调器的配网模式的方法,其中,在所述根据所述连接信息使所述控制终端和所述空调器建立连接的步骤之后,还包括:
    读取所述控制终端预存储的所述空调器所在环境的无线网络的相关信息;
    将所述相关信息发送至所述空调器以使所述空调器连接所述无线网络。
  9. 根据权利要求8所述的开启空调器的配网模式的方法,其中,所述无线网络的相关信息包括所述无线网络的用户名和密码。
  10. 一种控制终端,包括:
    NFC芯片;
    控制器,包括存储器和处理器,所述存储器内存储有控制程序,所述控制程序被所述处理器执行时用于实现根据权利要求1-9中任一项所述的开启空调器的配网模式的方法。
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