WO2018035920A1 - 一种智能灯的控制方法 - Google Patents

一种智能灯的控制方法 Download PDF

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Publication number
WO2018035920A1
WO2018035920A1 PCT/CN2016/100049 CN2016100049W WO2018035920A1 WO 2018035920 A1 WO2018035920 A1 WO 2018035920A1 CN 2016100049 W CN2016100049 W CN 2016100049W WO 2018035920 A1 WO2018035920 A1 WO 2018035920A1
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group
icon
light
button
type
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PCT/CN2016/100049
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English (en)
French (fr)
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王静茜
苏耀东
蔡增杰
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深圳市鼎芯无限科技有限公司
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Priority to US15/297,134 priority Critical patent/US9839089B1/en
Publication of WO2018035920A1 publication Critical patent/WO2018035920A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • H04M1/72409User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories
    • H04M1/72415User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality by interfacing with external accessories for remote control of appliances
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0481Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance
    • G06F3/04817Interaction techniques based on graphical user interfaces [GUI] based on specific properties of the displayed interaction object or a metaphor-based environment, e.g. interaction with desktop elements like windows or icons, or assisted by a cursor's changing behaviour or appearance using icons
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • G06F3/04883Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures for inputting data by handwriting, e.g. gesture or text
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B47/00Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
    • H05B47/10Controlling the light source
    • H05B47/155Coordinated control of two or more light sources
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F2203/00Indexing scheme relating to G06F3/00 - G06F3/048
    • G06F2203/048Indexing scheme relating to G06F3/048
    • G06F2203/04808Several contacts: gestures triggering a specific function, e.g. scrolling, zooming, right-click, when the user establishes several contacts with the surface simultaneously; e.g. using several fingers or a combination of fingers and pen

Definitions

  • the present invention relates to the field of smart home technology, and in particular to a method for controlling a smart light.
  • the existing smart light technology can only be one-to-one, or connect up to 10 lamps at the same time, that is, one mobile phone can only control one light or a limited number of lights. To control other lights, the current connection must be disconnected. The light, exit the current APP interface, and then connect to the light you want to control, the operation is troublesome.
  • the current Bluetooth technology solution on the market cannot implement group control. It is not possible to control multiple lights at the same time. If you want to control multiple lights, you can only connect one control at a time or connect time-sharing control at the same time. At the same time, the connection time-sharing control will cause control. The delay on the. At the same time, if you want to switch between different lamps, you can only disconnect the current lamp and reconnect with the target control lamp to control.
  • the current Bluetooth technology solution does not take this into consideration, and the data synchronization of the luminaire grouping on different mobile phones cannot be realized. Data out of sync will cause a certain mobile phone to be grouped, other mobile phones can not be correct, and the lighting is effectively controlled.
  • a method for controlling a smart light according to the present invention includes:
  • the main interface displays control information of the currently connected smart light with a first type of icon and/or a second type of icon, the first type of icon corresponding to a single light, and the second type of icon corresponding to at least 2 single light members Grouping
  • the control interface includes a dimming tab;
  • the dimming tab includes a parameter adjustment bar, a switch button, and an effect simulation diagram;
  • the parameter configuration information is sent to the corresponding single lamp or group according to the detected position of the slider moving in the parameter adjustment column, and
  • the effect simulation diagram is displayed according to the parameter configuration information and the switch light configuration information.
  • control interface further includes a scene tab;
  • scene tab includes at least one scene icon, and each of the scene icons corresponds to a set of preset scene parameters;
  • the single light or group is detected according to the detected and identified scene icon Sending the preset scene parameter to implement one-key setting of the single light or group.
  • the preset scenario parameter when the control interface corresponding to the packet is displayed, the preset scenario parameter includes parameter configuration information and switch light configuration information of all single-light members included in the packet.
  • the parameter configuration information includes brightness configuration information and/or color temperature configuration information.
  • the scene tab further includes an add button; detecting and recognizing that when the add button is pressed, displaying a scene new page;
  • the scene creation page includes a single-light or group parameter preset option corresponding to the control interface, and generates a new set according to the input of the single-light or grouping parameter preset option in the scene creation new page.
  • the scene parameter is preset, and a new scene icon is added to the scene tab, and the new scene icon corresponds to the new preset scene parameter.
  • the control interface further includes a setting tab; the setting tab includes an alarm setting item and a single light name setting bar;
  • the information input in the single lamp name setting bar is displayed as the name of a single lamp or a single lamp member.
  • the shortcut control interface is displayed when the gesture is detected and recognized as a preset gesture; the reduced first type icon and/or the second type icon corresponding to the connected single light and/or Grouping, and displaying the single light members included in the group with the first type of icons when the grouping is provided;
  • the control interface is switched to the single lamp or the group.
  • the preset gesture operation is to detect the preset number of touch points while moving the identification information exceeding the preset distance in the preset direction.
  • the two single light combinations corresponding to each other are determined as a group;
  • the second type of icon corresponds to a new grouping, and the new grouping includes the two single lights.
  • the group editing page when the long press is detected in the second type of icon position, it is determined that the group member deletion selection and the group name editing are performed, and the group editing page is displayed, and the group editing page includes a group name editing column and a single-light member displayed by the first type of icon, and a delete icon is displayed in the upper right corner of the first-type icon corresponding to each single-light member; when the delete icon is clicked, the corresponding single-light member is deleted from the group;
  • the information in the group name edit column is the name of the group.
  • the main interface further includes a sharing button; when the main interface detects and determines that the sharing button is pressed, the sharing page is displayed, where the sharing page includes a sharing light button and a get light button;
  • the sharing page After the sharing page detects and determines that the sharing light button is pressed, the control information of all or selected partial smart lights is uploaded to the server in real time;
  • the sharing page After the sharing page detects and determines that the obtaining light button is pressed, the shared network name information is obtained, and the control information of the shared smart light is synchronously acquired from the server according to the network name information.
  • a floating button is preset; if a click operation is detected on the floating button, the switch light configuration information of the full open or the full switch is sent to all the single lights and the group; if the floating button detects the double click Operation, the shortcut control interface is displayed; if a long press operation is detected on the hover button, the position of the hover button is locked or unlocked; if the position of the hover button is locked, if the hover button detects the edge
  • the first preset direction sliding operation adjusts the color temperature of the connected single lamp or group correspondingly. If the floating button detects the sliding operation in the second preset direction, the brightness of the connected single lamp or group is adjusted correspondingly. In a state where the position of the floating button is unlocked, if a slide operation is detected at the hover button, the hover button changes the display position following the displacement of the slide.
  • the present invention has the following beneficial effects:
  • the existing scene setting can only set the currently connected fixtures. It is not possible to customize the settings of multiple fixtures in response to the scene. At the same time, these lights cannot have different configurations.
  • the invention can customize the combination scene of a single lamp or a plurality of lamps, and can realize differential parameter setting for different lamps.
  • the existing grouping function needs to be selected in multiple interfaces to add.
  • the invention can perform the operations of newly grouping all the connected lights and deleting the single lights in the group on one main interface, and can realize unified control of multiple single lights or one of the plurality of lamps by constructing one group by multiple single lamps. Key settings.
  • the invention realizes the control information sharing of the smart light and the information synchronization of the plurality of terminals by sharing the page, and the terminal that shares the control information of the smart light can obtain the operation status of the shared smart light in real time through the network.
  • the invention realizes fast switching control through the quick control interface, and can select and control the light in the quick control interface through gestures no matter in any interface.
  • FIG. 1 is an optional main interface display embodiment
  • 3 is an alternate embodiment of a display of a scene tab
  • 4 is an optional display embodiment after clicking a share button
  • Figure 5 is an alternative embodiment of a floating button display
  • FIG. 6 is a schematic diagram of an optional group editing operation flow
  • FIG. 7 is a schematic flow chart of an optional scene setting operation
  • FIG. 9 is a schematic diagram of an optional operation flow of a light sharing authority management.
  • the main interface displays control information of the currently connected smart light with a first type of icon and/or a second type of icon, the first type of icon corresponding to a single light, and the second type of icon corresponding to at least 2 single light members Grouping
  • the control interface includes a dimming tab;
  • the dimming tab includes a parameter adjustment bar, a switch button, and an effect simulation diagram;
  • the parameter configuration information is sent to the corresponding single lamp or group according to the detected position of the slider moving in the parameter adjustment column, and
  • the effect simulation diagram is displayed according to the parameter configuration information and the switch light configuration information.
  • FIG. 6 is a schematic diagram of a group editing operation flow, in which the grouping and single lamps can be edited by operating the icons on the main interface.
  • the first type icon or the second type of icon position detection and recognition as the selected operation may be a click detection or a double click or other preset action is detected, and the present invention is not limited thereto.
  • the unified parameter configuration of the single-lamp members of the group is implemented, and the unified configuration of the multiple lamps is quickly realized, thereby avoiding the problem of time-consuming when controlling multiple lamps in the conventional control.
  • the switch button in the dimming tab is set on the light icon of the effect simulation diagram.
  • the light switch can be switched by clicking the light icon, or the slider on the parameter adjustment bar can be adjusted to adjust the brightness or color temperature of the light, and the intensity of the light on the effect simulation diagram is The color temperature will be reflected by the corresponding color change.
  • control interface further includes a scene tab; the scene tab includes at least one scene icon, and each of the scene icons corresponds to a set of preset scene parameters;
  • FIG. 7 is a schematic diagram of a scenario setting operation flow.
  • the preset scenario parameter when the control interface corresponding to the packet is displayed, the preset scenario parameter includes parameter configuration information and switch light configuration information of all single-light members included in the packet.
  • the parameter configuration information includes brightness configuration information and/or color temperature configuration information.
  • the scene tab further includes an add button; detecting and recognizing that when the add button is pressed, displaying a scene new page;
  • the scene creation page includes a single-light or group parameter preset option corresponding to the control interface, and generates a new set according to the input of the single-light or grouping parameter preset option in the scene creation new page.
  • the scene parameter is preset, and a new scene icon is added to the scene tab, and the new scene icon corresponds to the new preset scene parameter.
  • control interface further includes a setting tab;
  • setting tab includes an alarm setting item and a single light name setting bar;
  • the information input in the single lamp name setting bar is displayed as the name of a single lamp or a single lamp member.
  • the alarm setting item Through the setting of the alarm setting item, you can set a specific single lamp or group to light up at a specific time and turn off at a specific time, for example, control the bedside lamp to light up at six, to wake up sleep, control the living room lamp and The room light is turned off at 10 o'clock in the evening, and the night light is turned on to remind the sleep.
  • the setting of the alarm clock has already played an important role in modern home life.
  • the present embodiment is provided with five default scene modes: daylight, cool white, mild, sunset, and dinner.
  • the user can adjust the brightness of the corresponding mode by clicking the corresponding icon to adjust the light or grouping of the button. Color temperature.
  • the user can add a custom scene mode by clicking the Add button of the "+" symbol, and there is no limit to the number of custom scene modes.
  • the scene name and the scene icon can be set.
  • different brightness and color temperature can be set for multiple single-light members at the same time, thereby realizing the function of setting a combined scene with one key.
  • the shortcut control interface is displayed when the preset gesture operation is detected and recognized; and the connected first light is displayed corresponding to the reduced first type icon and/or the second type icon on the shortcut control interface. And/or grouping, and displaying the single-light member included in the group with the first type of icon when the grouping is provided;
  • the control interface is switched to the single lamp or the group.
  • the smart light quick control interface can be displayed by sliding sideways.
  • the shortcut control interface displays the existing group and the lights under the group, and also displays the lights scanned nearby. If the scanned lights are not in the group, they continue to be displayed below the list.
  • the lights in the group display different colors depending on whether they have been included by other groups, two or more groups contain display green, only one group contains display white, and lights that have not been grouped display yellow.
  • the user can directly switch the group or the light by clicking the group or single light on the interface without having to exit the dimming tab to re-scan the connection, which is convenient and quick.
  • the preset gesture operation is to detect the preset number of touch points while moving the identification information exceeding the preset distance in the preset direction.
  • the two single light combinations are determined to be a group.
  • a new type of second icon corresponds to a new group, and the new group includes the two single lights.
  • the main interface when detecting a long press and dragging to a second type of icon position in a first type of icon position, the main interface is determined to join the single light corresponding to the first type icon.
  • the second type of icon corresponds to the group.
  • the group editing page when the long press is detected in the second type of icon position, it is determined that the group member deletion selection and the group name editing are performed, and the group editing page is displayed, and the group editing page includes the group name editing.
  • a column and a single-light member displayed by the first type of icon, and a delete icon is displayed in an upper right corner of the first-type icon corresponding to each single-light member; detecting that the corresponding single-light member is deleted from the group when the delete icon is clicked ; Save the information in the group name edit column as the name of the group.
  • the smart light device is displayed on the interface by means of an icon, and the user can form a new group by long pressing the first type icon and dragging it to another first type icon. Drag other lights onto the Bluetooth light group to continue adding them to the group. Long press on the second type of icon to display all the single light members contained in the group, and you can name the group or delete a single light member in the group. This mode of operation makes the grouping action simpler, direct, convenient, and closer to the user's operating habits.
  • the main interface further includes a sharing button; when the main interface detects and determines that the sharing button is pressed, the sharing page is displayed, where the sharing page includes a sharing light button and a get light button;
  • the sharing page After the sharing page detects and determines that the sharing light button is pressed, all or selected part of the smart light control information is Uploaded to the server in real time; after sharing the network name information, all the light operation related information will be available in the server corresponding to the network name.
  • FIG. 9 is a schematic diagram of an operation flow of a lamp sharing authority management.
  • the user can share the grouping to other mobile phones by scanning the two-dimensional code.
  • the user's operation on the light group will be uploaded to the server.
  • the mobile phone scanning the QR code will read the network name information in the QR code and obtain the information from the server.
  • Single lamp and/or grouping control information is synchronized at the first time to keep the control information of the lights between different mobile phones of the user synchronized.
  • the user share can select “Share Full Light”, “Share Light Group” or “Share Light” after clicking “Share My Light” in FIG. 4 .
  • the sharing light group may be selected by the user to select a group and generate a corresponding two-dimensional code; the sharing light may be selected by the user in all the searched lights, and a corresponding two-dimensional code is generated.
  • Sharing the light group can enable the shared mobile phone to obtain the shared light or group control information, that is, the remote control can be remotely informed of the switch of the home light, but not Add new lights and edit the information of the modified group; the sharing light can make the shared mobile phone, and can not add new lights and edit the information of the modified single light.
  • a pause button is also preset; if the click button is detected by the hover button, the switch light configuration information of the full open or the full switch is sent to all the single lights and the group; if the double click operation is detected by the hover button, the a shortcut control interface; if a long press operation is detected on the hover button, the position of the hover button is locked or unlocked; if the position of the hover button is locked, if the hover button detects sliding in the first preset direction Operation, correspondingly adjusting the color temperature of the connected single lamp or group, if the floating button detects the sliding operation in the second preset direction, correspondingly adjusting the brightness of the connected single lamp or group; in the floating button In the unlocked state, if the slide button detects a slide operation, the hover button changes the display position following the displacement of the slide.
  • the luminaire grouping operation can be quickly performed without excessive interface selection.
  • the user can customize the scene mode and set the brightness and color temperature of each single lamp or group of single light members respectively. Combine the scene.
  • the control information of the single lamp and the grouping can be synchronized among the plurality of mobile phones.
  • the lamp can be conveniently controlled, and the lamp can be directly controlled without entering the APP, which is simple and convenient.

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Abstract

一种智能灯的控制方法,包括:主界面以第一类图标和/或第二类图标显示当前已连接的智能灯的控制信息,第一类图标对应单灯,第二类图标对应包括至少2个单灯成员的分组;在第一类图标或第二类图标位置检测并识别为选中操作时,显示单灯或分组对应的控制界面;控制界面包括调光选项卡;调光选项卡内包括参数调节栏、开关按钮以及效果仿真示意图;在调光选项卡为活动页面时,根据检测到的参数调节栏中滑条移动的位置向对应的单灯或分组发送参数配置信息,和根据检测到的开关按钮的状态变化向对应的单灯或分组发送开关灯配置信息,和根据参数配置信息和开关灯配置信息显示效果仿真示意图。

Description

一种智能灯的控制方法 技术领域
本发明涉及智能家居技术领域,具体地,涉及一种智能灯的控制方法。
背景技术
现有的智能灯技术只能是一对一,或同时连接10个以内的灯具,即一台手机只能控制一个灯或有限的多个灯,要想控制其他灯,则必须断开当前连接的灯,退出当前APP界面,再去连接想控制的灯,操作麻烦。
另外目前市面上的蓝牙技术方案不能实现群组控制,不能同时控制多个灯,想要控制多个的灯,只能一个一个连接控制或者同时连接分时控制,同时连接分时控制会造成控制上的延时。同时如果要切换不同的灯具,只能断开当前灯,重新与目标控制灯具进行连接才可以控制。
而在群组功能实现后,将面临灯具分组信息共享的问题,目前的蓝牙技术方案并没有考虑到这一点,不能实现灯具分组在不同手机上的数据同步。数据不同步将使得某个手机分组后,其它手机不能正确,有效的控制灯具。
发明内容
针对现有技术中的缺陷,本发明的目的是提供一种智能灯的控制方法。
根据本发明提供的一种智能灯的控制方法,包括:
主界面以第一类图标和/或第二类图标显示当前已连接的智能灯的控制信息,所述第一类图标对应单灯,所述第二类图标对应包括至少2个单灯成员的分组;
在所述第一类图标或第二类图标位置检测并识别为选中操作时,显示所述单灯或分组对应的控制界面;
所述控制界面包括调光选项卡;所述调光选项卡内包括参数调节栏、开关按钮以及效果仿真示意图;
在所述调光选项卡为活动页面时,根据检测到的所述参数调节栏中滑条移动的位置向对应的单灯或分组发送参数配置信息,和
根据检测到的所述开关按钮的状态变化向对应的单灯或分组发送开关灯配置信息,和
根据所述参数配置信息和开关灯配置信息显示所述效果仿真示意图。
作为一种优化方案,所述控制界面还包括场景选项卡;所述场景选项卡内包括至少一场景图标,每个所述场景图标对应一组预设场景参数;
在所述场景选项卡为活动页面时,根据检测并识别为选中的场景图标向所述单灯或分组 发送所述预设场景参数,实现对所述单灯或分组的一键设置。
作为一种优化方案,在显示的是所述分组对应的控制界面时,所述预设场景参数包括所述分组所包含的所有单灯成员的参数配置信息和开关灯配置信息。
作为一种优化方案,所述参数配置信息包括亮度配置信息和/或色温配置信息。
作为一种优化方案,所述场景选项卡内还包括添加按钮;检测并识别到所述添加按钮被按下时,显示一场景新建页面;
所述场景新建页面包括所述控制界面对应的单灯或分组的参数预设选项,根据在所述场景新建页面中对所述单灯或分组的参数预设选项的输入保存生成一组新的预设场景参数,并在所述场景选项卡内增加一新的场景图标,该新的场景图标对应所述新的预设场景参数。
作为一种优化方案,
所述控制界面还包括设置选项卡;所述括设置选项卡内包括闹钟设置项和单灯名称设置条;
根据所述闹钟设置项中输入的时间和闹钟属性控制所述单灯或分组定时开/关灯;
将所述单灯名称设置条内输入的信息显示为单灯或单灯成员的名称。
作为一种优化方案,检测并识别为预设手势操作时显示快捷控制界面;所述快捷控制界面上以缩小的第一类图标和/或第二类图标对应显示已连接的单灯和/或分组,并在设有分组时以所述第一类图标显示所述分组包含的单灯成员;
在快捷控制界的第一类图标或第二类图标位置检测并识别为选中时,切换至所述单灯或分组对应的控制界面。
作为一种优化方案,所述预设手势操作为检测到预设数量的触控点同时向预设方向移动超过预设距离的识别信息。
作为一种优化方案,所述主界面上,在一第一类图标位置检测到长按并拖动至另一第一类图标位置时判断为对应的两个单灯组合为一分组;新建一第二类图标对应一新的分组,该新的分组中包含所述两个单灯。
作为一种优化方案,所述主界面上,在一第一类图标位置检测到长按并拖动到一第二类图标位置时判断为将该第一类图标对应的单灯加入该第二类图标对应的分组中。
作为一种优化方案,所述主界面上,在第二类图标位置检测到长按时判断为分组成员删除选择和分组名称编辑,显示分组编辑页面,所述分组编辑页面包括分组名称编辑栏和以第一类图标显示的单灯成员,每个单灯成员对应的第一类图标的右上角显示删除图标;检测到单击所述删除图标时将对应的单灯成员从该分组删除;保存所述分组名称编辑栏中信息为该分组的名称。
作为一种优化方案,所述主界面还包括分享按钮;在主界面检测并判断所述分享按钮按下时显示分享页面,所述分享页面包括分享灯按钮和获取灯按钮;
在分享页面检测并判断所述分享灯按钮按下后,将全部或选定的部分智能灯的控制信息实时上传至服务器;
在分享页面检测并判断所述获取灯按钮按下后,获取分享的网络名信息,并根据所述网络名信息从服务器上同步获取分享的智能灯的控制信息。
作为一种优化方案,还预设有一悬浮按钮;若在悬浮按钮检测到单击操作,则向所有单灯和分组发送全开或全关的开关灯配置信息;若在悬浮按钮检测到双击操作,则显示所述快捷控制界面;若在悬浮按钮检测到长按操作,则锁定或解锁所述悬浮按钮的位置;在所述悬浮按钮的位置锁定的状态下,若在悬浮按钮检测到沿第一预设方向滑动操作,则对应地调节已连接的单灯或分组的色温,若在悬浮按钮检测到沿第二预设方向滑动操作,则对应地调节已连接的单灯或分组的亮度;在所述悬浮按钮的位置解锁的状态下,若在悬浮按钮检测到滑动操作,则所述悬浮按钮跟随滑动的位移改变显示位置。
与现有技术相比,本发明具有如下有益效果:
1、现有场景设置只能对当前连接的灯具进行设置,不能自定义多个灯具响应场景设置,同时这些灯不能有不同的配置。而本发明能够对单一灯或多个灯的组合场景进行自定义设置,对于不同灯能够实现差异性参数设置。
2、现有分组功能需要在多个界面进行灯具选择才能添加。本发明在一个主界面上就能对连接的所有灯进行新建分组、分组内删除单灯的操作,通过多个单灯组建一个分组能够实现对多个单灯的统一控制或多个灯的一键设置。
3、解决现有技术灯具分组信息在不同手机上不能同步。本发明通过分享页面实现智能灯的控制信息分享和多个终端的信息同步,而只要分享获得了智能灯的控制信息的终端就能通过网络实时获得被分享的智能灯的操作情况。
4、现有技术在切换灯具控制时,需要重新连接,不能进行快速切换控制。本发明通过快捷控制界面实现了快速切换控制,无论在什么界面中,都能通过手势快速进入快捷控制界面中进行灯的选择控制。
5、解决现有技术同时连接多个灯具控制时的延时。本发明通过分组的统一参数配置和场景设置实现多个灯的快速控制。
附图说明
为了更清楚地说明本发明实施例的技术方案,下面将对实施例描述中所需要使用的附图作简单的介绍,显而易见,下面描述中的附图仅仅是本发明的一些实施例,对于本 领域技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。附图中:
图1是可选的一种主界面显示实施例;
图2是可选的一种智能灯的快捷控制界面;
图3是可选的一种场景选项卡的显示实施例;
图4是可选的一种点击分享按钮后的显示实施例;
图5是可选的一种悬浮按钮显示实施例;
图6是可选的一种分组编辑操作流程示意图;
图7是可选的一种场景设置操作流程示意图;
图8是可选的一种侧滑操作流程示意图;
图9是可选的一种灯分享权限管理操作流程示意图。
具体实施方式
下文结合附图以具体实施例的方式对本发明进行详细说明。以下实施例将有助于本领域的技术人员进一步理解本发明,但不以任何形式限制本发明。应当指出的是,还可以使用其他的实施例,或者对本文列举的实施例进行结构和功能上的修改,而不会脱离本发明的范围和实质。
在本发明提供的一种智能灯的控制方法的实施例中,包括
主界面以第一类图标和/或第二类图标显示当前已连接的智能灯的控制信息,所述第一类图标对应单灯,所述第二类图标对应包括至少2个单灯成员的分组;
在所述第一类图标或第二类图标位置检测并识别为选中操作时,显示所述单灯或分组对应的控制界面;
所述控制界面包括调光选项卡;所述调光选项卡内包括参数调节栏、开关按钮以及效果仿真示意图;
在所述调光选项卡为活动页面时,根据检测到的所述参数调节栏中滑条移动的位置向对应的单灯或分组发送参数配置信息,和
根据检测到的所述开关按钮的状态变化向对应的单灯或分组发送开关灯配置信息,和
根据所述参数配置信息和开关灯配置信息显示所述效果仿真示意图。
图6一种分组编辑操作流程示意图,在主界面上可以通过对图标的操作而对分组和单灯进行编辑。
所述第一类图标或第二类图标位置检测并识别为选中操作可以是检测到单击也可是检测到双击或其他预设的动作,本发明不限于此。
本实施例通过对分组的单灯成员进行统一的参数配置,快速地实现多个灯的统一配置,避免了传统控制时对多个灯控制时的费时问题。
调光选项卡中开关按钮设置在效果仿真示意图的灯图标上,可通过点击灯图标进行灯具开关,或者滑动参数调节栏上的滑条调节灯具亮度或色温,同时效果仿真示意图上的灯光强度和色温将会通过相应的颜色变化来体现。
作为一种可选的实施例,所述控制界面还包括场景选项卡;所述场景选项卡内包括至少一场景图标,每个所述场景图标对应一组预设场景参数;
在所述场景选项卡为活动页面时,根据检测并识别为选中的场景图标向所述单灯或分组发送所述预设场景参数,实现对所述单灯或分组的一键设置。图7是一种场景设置操作流程示意图。
作为一种可选的实施例,在显示的是所述分组对应的控制界面时,所述预设场景参数包括所述分组所包含的所有单灯成员的参数配置信息和开关灯配置信息。
作为一种可选的实施例,所述参数配置信息包括亮度配置信息和/或色温配置信息。
作为一种可选的实施例,所述场景选项卡内还包括添加按钮;检测并识别到所述添加按钮被按下时,显示一场景新建页面;
所述场景新建页面包括所述控制界面对应的单灯或分组的参数预设选项,根据在所述场景新建页面中对所述单灯或分组的参数预设选项的输入保存生成一组新的预设场景参数,并在所述场景选项卡内增加一新的场景图标,该新的场景图标对应所述新的预设场景参数。
作为一种可选的实施例,所述控制界面还包括设置选项卡;所述括设置选项卡内包括闹钟设置项和单灯名称设置条;
根据所述闹钟设置项中输入的时间和闹钟属性控制所述单灯或分组定时开/关灯;
将所述单灯名称设置条内输入的信息显示为单灯或单灯成员的名称。
通过闹钟设置项的设置,可以设置特定的单灯或分组在特定的时间亮起,在特定的时间关闭,例如控制床头灯在六点亮起,起到唤醒睡眠的作用,控制客厅灯和房间灯在晚上10点关闭,同时开启小夜灯,起到提醒睡眠的作用。闹钟的设置早已在现代家居生活中起到重要作用。
如图3,本实施例设置有5种默认的场景模式:白天、冷白、温和、夕阳、晚餐,用户可通过点击相应图标将所控制的灯或分组一键调节到相应模式下的亮度及色温。同时用户可通过点击“+”符号的添加按钮添加自定义场景模式,自定义场景模式无数量限制。在自定义场景模式中,可设置场景名称、场景图标,对于分组,同时可对多个单灯成员分别设置不同的亮度及色温,从而实现一键设置组合场景的功能。
作为一种可选的实施例,检测并识别为预设手势操作时显示快捷控制界面;所述快捷控制界面上以缩小的第一类图标和/或第二类图标对应显示已连接的单灯和/或分组,并在设有分组时以所述第一类图标显示所述分组包含的单灯成员;
在快捷控制界的第一类图标或第二类图标位置检测并识别为选中时,切换至所述单灯或分组对应的控制界面。
如图2和图8所示,通过侧滑可显示智能灯快捷控制界面。该快捷控制界面中显示已有的分组及该分组下的灯,同时也会显示附近扫描到的灯,若扫描到的灯未在分组中则继续显示在列表下面。分组中的灯根据是否已被其他分组包含而显示不同的颜色,被两个或两个以上分组包含显示绿色,仅被一个分组包含显示白色,未被分过组的灯则显示黄色。用户在该界面可通过点击分组或者单灯,直接切换控制该分组或灯而不必退出调光选项卡重新扫描连接,方便快捷。
作为一种可选的实施例,所述预设手势操作为检测到预设数量的触控点同时向预设方向移动超过预设距离的识别信息。
作为一种可选的实施例,所述主界面上,在一第一类图标位置检测到长按并拖动至另一第一类图标位置时判断为对应的两个单灯组合为一分组;新建一第二类图标对应一新的分组,该新的分组中包含所述两个单灯。
作为一种可选的实施例,所述主界面上,在一第一类图标位置检测到长按并拖动到一第二类图标位置时判断为将该第一类图标对应的单灯加入该第二类图标对应的分组中。
作为一种可选的实施例,所述主界面上,在第二类图标位置检测到长按时判断为分组成员删除选择和分组名称编辑,显示分组编辑页面,所述分组编辑页面包括分组名称编辑栏和以第一类图标显示的单灯成员,每个单灯成员对应的第一类图标的右上角显示删除图标;检测到单击所述删除图标时将对应的单灯成员从该分组删除;保存所述分组名称编辑栏中信息为该分组的名称。
如图1,本实施例中,智能灯设备通过图标的方式显示于界面上,用户可通过长按第一类图标并将其拖动到另一第一类图标上形成一个新的分组。将其他灯继续拖动到该蓝牙灯分组上即可将其继续添加进该分组。长按第二类图标可显示分组内包含的所有单灯成员,并可对分组进行命名或删除分组中的某个单灯成员。这种操作方式使得分组动作更简单,直接,方便,更接近于用户的操作习惯。
作为一种可选的实施例,所述主界面还包括分享按钮;在主界面检测并判断所述分享按钮按下时显示分享页面,所述分享页面包括分享灯按钮和获取灯按钮;
在分享页面检测并判断所述分享灯按钮按下后,将全部或选定的部分智能灯的控制信息 实时上传至服务器;分享网络名信息之后,所有的灯操作相关信息都会在网络名对应的服务器中可获取。
在分享页面检测并判断所述获取灯按钮按下后,获取分享的网络名信息,并根据所述网络名信息从服务器上同步获取分享的智能灯的控制信息。图9是一种灯分享权限管理操作流程示意图。
如图4,用户可以通过扫描二维码的方式,分享分组到其它的手机上。用户对灯组的操作会上传到服务器上,当用户以该方案的方式分享单灯和/或分组时,扫描二维码的手机会读取二维码中的网络名信息,并从服务器获取单灯和/或分组的控制信息。并会在以后每次开启app的主界面时,第一时间同步信息,保持用户不同手机之间的灯的控制信息同步。
如图4,用户分享可以在图4中点击“分享我的灯”后选择“完全分享”、“分享灯组”或“分享灯”。通过分享的权限控制,用户可以更灵活地限制不同手机控制灯组的权限范围,适应更多场合的应用。其中,分享灯组可以由用户勾选需要选择的分组,并生成对应的二维码;分享灯可以由用户在所有搜索到的灯中勾选,并生成对应的二维码。完全分享会使获取分享的手机完全同步分享的手机的分组信息;分享灯组可以使获取分享的手机获得被分享的单灯或分组的控制信息,即可以远程获知家中灯的开关情况,但不能添加新灯和编辑修改分组的信息;分享灯可以使获取分享的手机,也不能添加新灯和编辑修改单灯的信息。
作为一种可选的实施例,
还预设有一悬浮按钮;若在悬浮按钮检测到单击操作,则向所有单灯和分组发送全开或全关的开关灯配置信息;若在悬浮按钮检测到双击操作,则显示所述快捷控制界面;若在悬浮按钮检测到长按操作,则锁定或解锁所述悬浮按钮的位置;在所述悬浮按钮的位置锁定的状态下,若在悬浮按钮检测到沿第一预设方向滑动操作,则对应地调节已连接的单灯或分组的色温,若在悬浮按钮检测到沿第二预设方向滑动操作,则对应地调节已连接的单灯或分组的亮度;在所述悬浮按钮的位置解锁的状态下,若在悬浮按钮检测到滑动操作,则所述悬浮按钮跟随滑动的位移改变显示位置。
如图5所示,可以通过桌面的悬浮按钮控件来控制灯,双击图5悬浮按钮后,会进入灯控制界面。当单击激活的悬浮按钮时,可以控制同一网络内的所有已连接的智能灯全开全关等功能。
上述实施例的改进点主要体现在下面几个方面:
1)通过拖动单灯的方式可快捷进行灯具分组建立操作,不需要过多的界面选择。
2)通过侧滑切换,可快捷切换所控制的单灯或分组而无需重新连接智能灯。
3)用户可自定义场景模式,分别设置各个单灯或分组中单灯成员的亮度及色温,可实现 组合场景。
4)通过扫描二维码的方式分享灯的单灯和分组信息,可以在多个手机中,同步单灯和分组的控制信息。
5)通过分享的权限控制,用户可以更灵活地限制不同手机控制灯组的权限范围,适应更多场合的应用。
6)通过悬浮按钮,可以方便地控制灯,不用进入APP直接对灯进行控制,这样既简单又方便。
以上所述仅为本发明的较佳实施例,本领域技术人员知悉,在不脱离本发明的精神和范围的情况下,可以对这些特征和实施例进行各种改变或等同替换。另外,在本发明的教导下,可以对这些特征和实施例进行修改以适应具体的情况及材料而不会脱离本发明的精神和范围。因此,本发明不受此处所公开的具体实施例的限制,所有落入本申请的权利要求范围内的实施例都属于本发明的保护范围。

Claims (13)

  1. 一种智能灯的控制方法,其特征在于,包括:
    主界面以第一类图标和/或第二类图标显示当前已连接的智能灯的控制信息,所述第一类图标对应单灯,所述第二类图标对应包括至少2个单灯成员的分组;
    在所述第一类图标或第二类图标位置检测并识别为选中操作时,显示所述单灯或分组对应的控制界面;
    所述控制界面包括调光选项卡;所述调光选项卡内包括参数调节栏、开关按钮以及效果仿真示意图;
    在所述调光选项卡为活动页面时,根据检测到的所述参数调节栏中滑条移动的位置向对应的单灯或分组发送参数配置信息,和
    根据检测到的所述开关按钮的状态变化向对应的单灯或分组发送开关灯配置信息,和
    根据所述参数配置信息和开关灯配置信息显示所述效果仿真示意图。
  2. 根据权利要求1所述的一种智能灯的控制方法,其特征在于,所述控制界面还包括场景选项卡;所述场景选项卡内包括至少一场景图标,每个所述场景图标对应一组预设场景参数;
    在所述场景选项卡为活动页面时,根据检测并识别为选中的场景图标向所述单灯或分组发送所述预设场景参数,实现对所述单灯或分组的一键设置。
  3. 根据权利要求2所述的一种智能灯的控制方法,其特征在于,在显示的是所述分组对应的控制界面时,所述预设场景参数包括所述分组所包含的所有单灯成员的参数配置信息和开关灯配置信息。
  4. 根据权利要求1或3所述的一种智能灯的控制方法,其特征在于,所述参数配置信息包括亮度配置信息和/或色温配置信息。
  5. 根据权利要求2所述的一种智能灯的控制方法,其特征在于,所述场景选项卡内还包括添加按钮;检测并识别到所述添加按钮被按下时,显示一场景新建页面;
    所述场景新建页面包括所述控制界面对应的单灯或分组的参数预设选项,根据在所述场景新建页面中对所述单灯或分组的参数预设选项的输入保存生成一组新的预设场景参数,并在所述场景选项卡内增加一新的场景图标,该新的场景图标对应所述新的预设场景参数。
  6. 根据权利要求1所述的一种智能灯的控制方法,其特征在于,所述控制界面还包括设置选项卡;所述括设置选项卡内包括闹钟设置项和单灯名称设置条;
    根据所述闹钟设置项中输入的时间和闹钟属性控制所述单灯或分组定时开/关灯;
    将所述单灯名称设置条内输入的信息显示为单灯或单灯成员的名称。
  7. 根据权利要求1所述的一种智能灯的控制方法,其特征在于,检测并识别为预设手 势操作时显示快捷控制界面;所述快捷控制界面上以缩小的第一类图标和/或第二类图标对应显示已连接的单灯和/或分组,并在设有分组时以所述第一类图标显示所述分组包含的单灯成员;
    在快捷控制界面的第一类图标或第二类图标位置检测并识别为选中时,切换至所述单灯或分组对应的控制界面。
  8. 根据权利要求7所述的一种智能灯的控制方法,其特征在于,所述预设手势操作为检测到预设数量的触控点同时向预设方向移动超过预设距离的识别信息。
  9. 根据权利要求1所述的一种智能灯的控制方法,其特征在于,所述主界面上,在一第一类图标位置检测到长按并拖动至另一第一类图标位置时判断为对应的两个单灯组合为一分组;新建一第二类图标对应一新的分组,该新的分组中包含所述两个单灯。
  10. 根据权利要求1所述的一种智能灯的控制方法,其特征在于,所述主界面上,在一第一类图标位置检测到长按并拖动到一第二类图标位置时判断为将该第一类图标对应的单灯加入该第二类图标对应的分组中。
  11. 根据权利要求1所述的一种智能灯的控制方法,其特征在于,所述主界面上,在第二类图标位置检测到长按时判断为分组成员删除选择和分组名称编辑,显示分组编辑页面,所述分组编辑页面包括分组名称编辑栏和以第一类图标显示的单灯成员,每个单灯成员对应的第一类图标的右上角显示删除图标;检测到单击所述删除图标时将对应的单灯成员从该分组删除;保存所述分组名称编辑栏中信息为该分组的名称。
  12. 根据权利要求1所述的一种智能灯的控制方法,其特征在于,所述主界面还包括分享按钮;在主界面检测并判断所述分享按钮按下时显示分享页面,所述分享页面包括分享灯按钮和获取灯按钮;
    在分享页面检测并判断所述分享灯按钮按下后,将全部或选定的部分智能灯的控制信息实时上传至服务器;
    在分享页面检测并判断所述获取灯按钮按下后,获取分享的网络名信息,并根据所述网络名信息从服务器上同步获取分享的智能灯的控制信息。
  13. 根据权利要求7所述的一种智能灯的控制方法,其特征在于,还预设有一悬浮按钮;
    若在悬浮按钮检测到单击操作,则向所有单灯和分组发送全开或全关的开关灯配置信息;
    若在悬浮按钮检测到双击操作,则显示所述快捷控制界面;
    若在悬浮按钮检测到长按操作,则锁定或解锁所述悬浮按钮的位置;
    在所述悬浮按钮的位置锁定的状态下,若在悬浮按钮检测到沿第一预设方向滑动操作,则对应地调节已连接的单灯或分组的色温,若在悬浮按钮检测到沿第二预设方向滑动操作,则对 应地调节已连接的单灯或分组的亮度;
    在所述悬浮按钮的位置解锁的状态下,若在悬浮按钮检测到滑动操作,则所述悬浮按钮跟随滑动的位移改变显示位置。
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