CN106461247A - 风扇的控制方法 - Google Patents
风扇的控制方法 Download PDFInfo
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- CN106461247A CN106461247A CN201580029405.0A CN201580029405A CN106461247A CN 106461247 A CN106461247 A CN 106461247A CN 201580029405 A CN201580029405 A CN 201580029405A CN 106461247 A CN106461247 A CN 106461247A
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- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F11/00—Control or safety arrangements
- F24F11/70—Control systems characterised by their outputs; Constructional details thereof
- F24F11/72—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure
- F24F11/74—Control systems characterised by their outputs; Constructional details thereof for controlling the supply of treated air, e.g. its pressure for controlling air flow rate or air velocity
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Abstract
本发明涉及一种风扇(1)的控制方法,所述风扇(1)包括控制单元(2),其特征在于,所述控制方法至少包括以下步骤:在预先存储在所述控制单元(2)中的多个工作程序(22)中选择所述风扇的一个工作程序(22),并且所述工作程序(22)至少包括风扇的第一控制数据和风扇的第二控制数据;和由所述控制单元(2)发送控制信号,所述控制信号包括至少用于控制电机的所述第一控制数据,所述第一控制数据与至少用于控制所述风扇(1)的至少一个辅助装置(24)的所述第二控制数据相关联,所述辅助装置(24)选自:发光装置;气体或液体喷射装置;发声装置;视频装置。
Description
技术领域
本发明大体涉及一种通风设备,所述通风设备作用于房间中的空气。
更具体地,本发明涉及一种通风设备,所述通风设备根据预先存储的程序工作。
背景技术
在另一个领域中,还已知文献US2012033419披露的使用半导体的光照明设备,其用于产生氛围光线并且集成有通风组件。
已知配备有控制单元的通风设备,所述控制单元允许管理集成在通风设备中的通风机构。例如,所述控制单元允许使通风机构以多个工作速度工作。在另一个例子中,控制单元允许使通风机构在一个确定的旋转方向上或在另一个旋转方向上工作。某些通风设备除了包括通风机构之外还包括也可被控制单元管理的照明机构。
因此,文献US5528229描述了一种通风设备,所述通风设备适合于被固定在房间的天花板上。所述通风设备包括通风机构、照明机构和温度传感器。所述通风设备包括控制单元,所述控制单元允许管理所述组件,并且该控制单元包括一个或多个工作程序。第一工作程序允许以不同的速度或根据具体的旋转方向而驱动通风机构。此外,在该工作程序中,房间的温度由温度传感器测量,并且通风机构的速度被调整以便冷却或均匀化房间的温度。这因此允许调节房间的温度,并且该调节根据选择的工作程序以自动的方式实现,所述工作程序包括预先存储的温度定值。控制单元还包括用于照明机构的第二工作程序。该第二工作程序允许管理照明机构的开启。然而,照明操作是对于光源的基础操作,例如根据限定的计划且根据离散的强度值而照明,熄灭或调节光源的强度。在该文献中,通风机构和照明机构以独立的方式工作。
发明内容
这种通风设备的缺点之一在于,控制单元应具有至少两个不同的控制系统,以便根据选择的工作程序分别管理照明和通风。这于是对系统的成本产生影响。本发明的目的在于提供一种装置,该装置通过简化控制方案而因此更加廉价。
另一个缺点在于这种通风设备提供的功能是限于单一的通风,或者限于单一的照明。本发明的另一个目的因此在于提供一种通风设备,所述通风设备包括通风和照明结合的功能,且还有附加的功能。
另一个缺点在于,通风和照明根据独立的程序工作,这不方便这种通风设备的使用,因为这需要一边开启照明,另一边开启通风。本发明的另一个目的因此在于提供一种通风设备的使用方法,所述使用方法允许同时且以独立的方式开启通风设备的全部功能,而不增多与控制单元的相互影响。
为了达到该目标,本发明涉及一种风扇的控制方法,所述控制方法的特征为,所述控制方法至少包括以下步骤:
-在预先存储在所述控制单元中的多个工作程序中选择所述风扇的一个工作程序,并且所述工作程序至少包括风扇的第一控制数据和风扇的第二控制数据;
-和由所述控制单元发送控制信号,所述控制信号包括至少用于控制电机的所述第一控制数据,所述第一控制数据与至少用于控制所述风扇的至少一个辅助装置的所述第二控制数据相关联,所述辅助装置选自:
-发光装置;
-气体或液体喷射装置;
-发声装置;
-视频装置。
根据本发明,所述风扇的控制方法在上述的所述工作程序的选择步骤和唯一的所述控制信号的发送步骤之间还包括控制数据的获取步骤和这些控制数据的编译步骤,所述获取步骤由集成在所述控制单元中的处理器执行,所述获取步骤旨在在集成在所述控制单元中的存储器中获取所述第一控制数据和根据选择的工作程序获取至少第二控制数据,所述编译步骤旨在对这些控制数据进行逻辑运算以便使这些控制数据相关联并且将其集成在所述控制信号中。
本发明还涉及一种风扇,所述风扇实施上述的控制方法。
根据本发明,所述风扇包括:
-控制单元,所述控制单元包括预先存储在所述控制单元中的工作程序的选择界面;
-所述控制单元包括存储器,至少用于控制电机的第一控制数据和至少用于控制所述风扇的至少一个辅助装置的第二控制数据存储在所述存储器中,所述风扇的辅助装置选自:
-发光装置;
-气体或液体喷射装置;
-发声装置;
-视频装置;
-所述控制单元包括处理器,所述处理器可读取所述存储器,并且允许获取用于控制所述电机的控制数据和与被选择的程序相关的至少第二控制数据,并且允许将这些控制数据编译。
根据本发明,所述风扇的发光装置由一个或多个白色发光二极管组成,所述一个或多个白色发光二极管形成总功率介于3W和150W之间的光源。
仍然根据本发明,所述发光装置由一个或多个彩色发光二极管组成,所述一个或多个彩色发光二极管形成总功率介于3W和150W之间的光源。
根据本发明,所述风扇的电机是被称为无刷电机的不具有电刷的电机,并且所述电机集成在包括通风叶片的装置中。
根据本发明的实施变型例,所述风扇的控制单元远离于所述风扇而设置,并且包括所述控制数据的无线发送和接收装置。
根据本发明,所述风扇包括控制数据的无线发送和接收装置和用于储存这些控制数据的内部存储器。
根据本发明,所述控制单元的控制数据的无线发送和接收装置和所述风扇的控制数据的无线发送和接收装置彼此之间通过射频信号通信。
根据本发明,所述风扇可与和互联网连接的远程模块通信。
根据本发明,所述控制单元可与和互联网连接的远程模块通信。
仍然根据本发明,所述风扇的内部存储器可远距离编程。
附图说明
通过阅读下面给出的以非限定性示例方式且参照附图示出的本发明的实施方式的详细描述,将更好地了解本发明的特征和优点,在附图中:
-图1是根据本发明的风扇的剖视图;
-图1 bis是根据本发明的风扇的电子框图示意图;
-图2是根据本发明的风扇的立体图;
-图3是根据本发明的风扇的使用方法的逻辑视图。
具体实施方式
如图1或图1bis所示,根据本发明的风扇(1)配备有电机(3),并且所述电机(3)集成在包括通风叶片(5)装置(4)中。在优选的实施方式中,该电机(3)是无刷类型的不具有电刷的电机(3)。
风扇(1)还包括管理和控制电子卡(6)。该电子卡(6)与电机(3)连接并且允许至少控制电机(3)的速度和旋转。
该电机(3)的控制通过脉宽调制(7)而实现,并且在电机(3)和管理电子卡(6)之间使用H桥电子结构(8)。
风扇(1)包括在电网上的电源(9),所述电源从120Veff到230Veff工作,并且具有从50Hz到60Hz的频率。
风扇(1)还包括数据无线接收装置(10)。该装置(10)与管理电子卡(6)连接,并且可设置在管理电子卡(6)中或与管理电子卡(6)分离地设置。
数据无线接收装置(10)适合于接收射频类型的数据,并且其也可发送数据。
温度传感器(11)与管理电子卡(6)连接。
风扇(1)还包括发光装置(12)。该发光装置(12)由一个或多个白色发光二极管(13)构成,所述一个或多个白色发光二极管(13)形成总功率介于3W和150W之间的光源。该发光装置(12)可还包括一个或多个彩色发光二极管(14),所述一个或多个彩色发光二极管(14)形成总功率介于3W和150W之间的光源。这些彩色发光二极管(14)是红绿蓝(RGB)类型的发光二极管,其允许获得全部存在的颜色的光谱。
白色发光二极管(13)和彩色发光二极管(14)可设置在同一个光源上。
使用发光二极管(13,14)的优点是耗电比使用传统的灯泡更低。效率更好并且因此发热更少。
更具体地,允许向发光二极管(13,14)供电的电源是开关电源(alimentation à découpage)并且该电源由恒定电流实现。
使用25W的开关电源(15)为白色发光二极管(13)供电,使用10W的开关电源(16)为RGB类型的彩色发光二极管(14)供电。
允许控制发光二极管(13,14)的控制是绝缘恒定电流控制(17)。
开关电源(15,16)对于诸如雷电、电压骤降、干扰噪声的电网的干扰具有很好的承受能力。所述发光二极管(13,14)对这些干扰的抗扰性被提高。
白色发光二极管(13)和彩色发光二极管(14)设置在风扇(1)中、在支撑垫块(18)上。由于发光二极管(13,14)导致的温度上升,用于确保热接触的散热器(19)设置在所述支撑垫块(18)附近。该接触允许降低支撑垫块(18)的热量。
如图2所示,风扇(1)包括控制单元(2)。该控制单元(2)包括选择界面(20)。该选择界面可为电容式屏幕或触摸板。
控制单元(2)具有存储机构(21),以便能够对预先存储的工作程序(22)保持存储。这些存储机构(21)具有存储器的形式。该存储器(21)可为可编程的。
选择界面(20)允许显示这些工作程序(22)并且按压所述选择界面允许选择工作程序(22)中的一个工作程序。
工作程序(22)包括至少用于控制电机的所述第一控制数据和至少用于控制所述风扇(1)的至少一个辅助装置(24)的所述第二控制数据。
除了发光装置(12)之外,所述风扇(1)的辅助装置(24)可为气体或液体喷射装置,发声装置,或甚至视频装置。
气体喷射装置是指任何能够喷射诸如香水的气体的装置。
该气体或液体喷射装置可扩散任何类型的气味或香味,但也可蒸发诸如水的液体。
视频装置是能够通过图像或光线投射器而投射图像或视频的装置。
控制单元(2)包括处理器(23),所述处理器(23)可读取所述存储器(21)并且允许获取用于控制所述电机(3)的控制数据和至少用于所述辅助装置(24)的第二控制数据。
在所述风扇(1)的控制单元(2)远离于所述风扇(1)而设置的情况下,所述控制单元包括所述控制数据的无线传送装置(25)。
控制单元(2)和风扇(1)通过射频类型的信号通信。
仍然在所述控制单元(2)远离于所述风扇(1)而设置的情况下,风扇(1)的管理和控制电子卡(6)包括内部存储器(26),并且所述工作程序(22)可被控制单元(2)发送到风扇(1)并且储存在风扇(1)的内部存储器(26)中。
风扇(1)或所述控制单元(2)可同样与和互联网连接的远程模块(27)通信。
以这种方式,工作程序(22)可通过控制单元(2)在互联网上取得并储存在控制单元(2)的存储器(21)上或风扇的内部存储器(26)上。
控制单元(2)可为具有屏幕的遥控器、平板电脑、智能手机。控制单元(2)还可为中央计算机或电视。
如图3所示,风扇(1)按照下面的方式工作:
风扇(1)在启动步骤(100)中被通电。
在随后的步骤(101)中,控制单元(2)也被通电,并且工作程序(22)在控制单元(2)的界面(20)上显示。
在该步骤(101)中,风扇(1)与控制单元(2)通信并且配对。
在另一个工作步骤(102)中,当控制单元(2)开启时,控制单元(2)与直接与互联网连接的远程模块(27)配对。以这种方式,控制单元(2)可在互联网上获取工作程序(22)。
在随后的选择步骤(103)中,预先存储的工作程序在控制单元(2)上被选择。
在一个变型例中,可进行工作程序(22)的编程步骤(104)。因此具有个性化的工作程序(22),其中控制数据以参数的形式被手动地输入。因此,可存在以下参数,如工作持续时间、开启日期和时间、照明强度、发光装置的颜色、发光装置的光线变化、通风装置的工作速度,通风的变化、温度定值、扩散气味或气体的参数、图像投影、声音发送。
在执行了工作程序(22)的选择步骤(103)或编程步骤(104)之后,控制数据被通信或传送至风扇(1)并且在传送步骤(105)中存储在风扇(1)的内部存储器(26)中。
控制数据以控制信号的形式被传送至风扇(1),在该控制信号中,用于控制电机(3)的所述第一控制数据与用于控制所述风扇(1)的辅助装置(24)的第二控制数据相关联。
相关联的数据是指,第一控制数据不独立于第二控制数据,它们彼此相关联,也就是说,用于控制电机的第一控制数据的具体值将与用于控制风扇(1)的辅助装置(24)的第二控制数据的具体值结合。所述控制信号因此仅在一次就传送这两个相关联的信息。
在第一控制数据和第二控制数据之间的该相关联或对应直接建立在被预先选择的一个或多个工作程序的内部。在所述被预先选择的工作程序中,预先存储了计算机表格形式的或数据库形式的在控制数据之间的相关联图表。
这些操作通过集成在控制单元(2)中的处理器(23)实施,所述处理器(23)会编译这些控制数据,这在于对这些控制数据进行逻辑运算,以便获得相关联的数据,之后将其集成在唯一的控制信号中,其意义为唯一的信号允许传送全部控制数据。
作为例子,电机旋转的具体速度将与二极管的颜色结合。
这些工作程序还包括时间信息。该时间信息对应于限制持续时间的周期,在该持续时间中,包括第一和第二控制数据的控制信号被传送。
如上述的例子所示,包含在程序中的时间信息允许仅在限定的周期中具有与二极管的具体颜色相关联的具体的电机旋转速度,之后,在该周期结束时,程序停止发送控制信号,或者程序传送另一个控制信号,该另一个控制信号在另一个时间周期中具有与二极管的另一个具体颜色相关联的另一个具体的电机旋转速度,所述另一个周期可与第一个周期不同,如此继续。
该数据向风扇的传送通过射频类型的信号实现。
仍然在该传送步骤(105)中,风扇(1)可接收温度传感器(11)的信息。
在信息和控制数据全部被管理电子卡(6)接收之后,到达风扇(1)的管理步骤(106),其中该管理步骤确保根据接收到的控制数据和信息自动地管理风扇的工作。
在该管理步骤(106)中,风扇(1)还可将信息发送至控制单元(2)。
应理解地是,在不超出所附的权利要求所限定的发明范围的情况下,在本说明书中所描述的本发明的实施方式可采用多种对现有技术人员来说显著的更改和/或改进。
Claims (12)
1.一种风扇(1)的控制方法,所述风扇(1)包括控制单元(2),其特征在于,所述控制方法至少包括以下步骤:
-在预先存储在所述控制单元(2)中的多个工作程序(22)中选择所述风扇(1)的工作程序(22),并且所述工作程序(22)至少包括风扇的第一控制数据和风扇的第二控制数据,
-和由所述控制单元(2)发送控制信号,所述控制信号包括至少用于控制电机(3)的所述第一控制数据,所述第一控制数据与至少用于控制所述风扇(1)的至少一个辅助装置(24)的所述第二控制数据相关联,所述辅助装置(24)选自:
-发光装置(12);
-气体或液体喷射装置;
-发声装置;
-视频装置。
2.根据上一权利要求所述的风扇(1)的控制方法,其特征在于,所述控制方法在上述的所述工作程序(22)的选择步骤和唯一的所述控制信号的发送步骤之间还包括控制数据的获取步骤和这些控制数据的编译步骤,所述获取步骤由集成在所述控制单元(2)中的处理器(23)执行,所述获取步骤旨在从集成在所述控制单元(2)中的存储器(21)获取所述第一控制数据和根据选择的所述工作程序(22)获取至少第二控制数据,所述编译步骤旨在对这些控制数据进行逻辑运算以便使这些控制数据相关联并且将其集成在所述控制信号中。
3.一种风扇(1),所述风扇实施根据上述权利要求中任一项所述的控制方法,其特征在于,所述风扇(1)包括:
-控制单元(2),所述控制单元(2)包括预先存储在所述控制单元(2)中的工作程序(22)的选择界面(20);
-所述控制单元(2)包括存储器(21),至少用于控制电机(3)的第一控制数据和至少用于控制所述风扇(1)的至少一个辅助装置(24)的第二控制数据存储在所述存储器中,所述风扇(1)的辅助装置(24)选自:
-发光装置;
-气体或液体喷射装置;
-发声装置;
-视频装置;
-所述控制单元(2)包括处理器(23),所述处理器(23)可读取所述存储器(21),并且允许获取用于控制所述电机(3)的控制数据和与被选择的程序相关的至少第二控制数据,并且允许将这些控制数据编译以便获得控制信号,在所述控制信号中所述数据是相关联的。
4.根据上一权利要求所述的风扇(1),其特征在于,所述发光装置(12)由一个或多个白色发光二极管(13)组成,所述一个或多个白色发光二极管(13)形成总功率介于3W和150W之间的光源。
5.根据权利要求3或4所述的风扇(1),其特征在于,所述发光装置(12)由一个或多个彩色发光二极管(14)组成,所述一个或多个彩色发光二极管(14)形成总功率介于3W和150W之间的光源。
6.根据权利要求3至5中任一项所述的风扇(1),其特征在于,所述电机是被称为无刷电机的不具有电刷的电机(3),并且所述电机集成在包括通风叶片(5)的装置(4)中。
7.根据权利要求3至6中任一项所述的风扇(1),其特征在于,所述控制单元(2)远离于所述风扇(1)而设置,并且包括所述控制数据的无线发送和接收装置(25)。
8.根据上一权利要求所述的风扇(1),其特征在于,所述风扇(1)包括控制数据的无线发送和接收装置(10)和用于储存这些控制数据的内部存储器(26)。
9.根据上一权利要求所述的风扇(1),其特征在于,所述控制单元(2)的控制数据的无线发送和接收装置(25)和所述风扇(1)的控制数据的无线发送和接收装置(10)彼此之间通过射频信号通信。
10.根据权利要求3至9中任一项所述的风扇(1),其特征在于,所述风扇(1)可与和互联网连接的远程模块(27)通信。
11.根据权利要求3至10中任一项所述的风扇(1),其特征在于,所述控制单元(2)可与和互联网连接的远程模块(27)通信。
12.根据权利要求3至11中任一项所述的风扇(1),其特征在于,所述风扇(1)的内部存储器(26)可远距离编程。
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
FR1454306A FR3021100A1 (fr) | 2014-05-14 | 2014-05-14 | Procede de commande d’un ventilateur |
FR1454306 | 2014-05-14 | ||
PCT/FR2015/051243 WO2015173509A1 (fr) | 2014-05-14 | 2015-05-12 | Procede de commande d'un ventilateur |
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EP (1) | EP3143341B1 (zh) |
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CN109707660A (zh) * | 2019-03-11 | 2019-05-03 | 珠海格力电器股份有限公司 | 风扇的控制方法及装置、系统、风扇、终端 |
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US11777334B2 (en) * | 2021-11-11 | 2023-10-03 | Beta Air, Llc | System for charging multiple power sources and monitoring diode currents for faults |
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- 2015-05-12 US US15/311,059 patent/US10443881B2/en active Active
- 2015-05-12 CN CN201580029405.0A patent/CN106461247A/zh active Pending
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US10443881B2 (en) | 2019-10-15 |
BR112016026687A2 (zh) | 2017-08-15 |
EP3143341A1 (fr) | 2017-03-22 |
US20170108237A1 (en) | 2017-04-20 |
EP3143341B1 (fr) | 2020-08-19 |
BR112016026687B1 (pt) | 2022-08-09 |
WO2015173509A1 (fr) | 2015-11-19 |
FR3021100A1 (fr) | 2015-11-20 |
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