CN205051941U - Illumination control system - Google Patents
Illumination control system Download PDFInfo
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- CN205051941U CN205051941U CN201520828551.7U CN201520828551U CN205051941U CN 205051941 U CN205051941 U CN 205051941U CN 201520828551 U CN201520828551 U CN 201520828551U CN 205051941 U CN205051941 U CN 205051941U
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- lighting source
- lighting
- illumination
- light intensity
- control assembly
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Abstract
The utility model provides an illumination control system can practice thrift the electric energy. The system includes: source of illumination, light intensity sensor, controller, steering wheel and with the potentiometre that source of illumination establishes ties, the light intensity sensor for detection source of illumination's current illumination intensity value, and the current illumination intensity value that will detect transmission is given the controller, the controller for according to the difference between current illumination intensity value of received and the predetermined illumination intensity value, output PWM ripples, the steering wheel is used for the basis controller output's PWM ripples rotates to according to the resistance value of turned angle control potentiometre, with the illumination intensity who adjusts source of illumination. The utility model is suitable for the technical field of lighting.
Description
Technical field
The utility model relates to lighting technical field, refers to a kind of Lighting Control Assembly especially.
Background technology
In recent years, along with the development of society, energy-conserving and environment-protective become the most popular, to one of the most useful life style of society.But in daily life, the phenomenon wasted energy is still very general, such as, the lighting source that the places such as the office in the teaching building in colleges and universities, room for individual study and office building use.Because, in one day, the intensity of illumination of Different periods sunlight is different, make same indoor illumination intensity skewness, generally speaking, the intensity of illumination of position near the window can be stronger than the intensity of illumination of position not near the window, makes indoor zones of different different to the demand of lighting source intensity of illumination, do not need each lighting source quota to export.
In prior art, the lighting source overwhelming majority of indoor location is invariable power work, and intensity of illumination only has a constant intensity; For school, the lighting source of classroom, office can not adjust intensity of illumination, as long as and as long as user thinks that light secretly will drive fluorescent lamp, cause some region to be thrown and shone unnecessary illumination fluorescent lamp light, thus cause the waste of electric energy.
Utility model content
The technical problems to be solved in the utility model is to provide a kind of Lighting Control Assembly, the problem of the waste of energy produced with the illumination solved existing for prior art.
For solving the problems of the technologies described above, the utility model embodiment provides a kind of Lighting Control Assembly, it is characterized in that, comprising: lighting source, light intensity sensor, controller, steering wheel and the potentiometer of connecting with described lighting source;
Described light intensity sensor, for detecting the current light intensity level of lighting source, and is transferred to described controller by the current light intensity level detected;
Described controller, for according to the difference between the current light intensity level received and default illumination intensity value, exports PWM ripple;
Described steering wheel, rotates for the PWM ripple exported according to described controller, and according to the resistance value of rotational angle controlling potential device, to regulate the intensity of illumination of lighting source.
Further, described system also comprises: human body infrared inductor;
Described human body infrared inductor, for whether there being human body to exist within the scope of testing, and is sent to described controller by the human body information detected.
Further, described controller, also for when described human body infrared inductor detects human body information, controls lighting source and opens;
When described human body infrared inductor does not detect human body information, control lighting source and close.
Further, described system also comprises: acoustic sensor and acoustic control module;
Described acoustic sensor, for gathering the phonetic order of user;
Described acoustic control module, for identifying the phonetic order collecting user, and is sent to described controller by the phonetic order recognized.
Further, described controller, also for when described phonetic order for a change illumination intensity value time, then according to described phonetic order and the difference of current light intensity level received, export PWM ripple;
Described controller, also for when described phonetic order is for opening lighting source instruction, opens lighting source; When described phonetic order is for closing lighting source instruction, close lighting source.
Further, described system also comprises: bluetooth module and mobile terminal;
Described mobile terminal, for carrying out information interaction by described bluetooth module and described controller, and arranges the open and close of illumination intensity value, display current light intensity and control lighting source.
Further, described system also comprises: physical switch;
Described physical switch, for opening lighting source and Lighting Control Assembly, or closes lighting source and Lighting Control Assembly.
The beneficial effect of technique scheme of the present utility model is as follows:
In such scheme, the current light intensity level of lighting source is detected by light intensity sensor, and the difference between the current light intensity level detected according to light intensity sensor by controller and default illumination intensity value, export the rotational angle that PWM ripple controls steering wheel, and pass through the resistance value of servos control potentiometer, and then the dividing potential drop on controlling potential device and lighting source, thus regulate the intensity of illumination of lighting source.Like this, by the current light intensity level of zones of different in light intensity sensor sensing chamber, and according to the illumination intensity value preset, utilize incremental timestamp principle, in automatic accurately control room, the intensity of illumination of each lighting source of zones of different, makes being uniformly distributed of indoor zones of different intensity of illumination, while meeting lighting demand, reduce the power consumption of lighting source, avoid the waste of electric energy, thus achieve energy-saving effect.
Accompanying drawing explanation
The structural representation of the Lighting Control Assembly that Fig. 1 provides for the utility model embodiment;
The room floor map that Fig. 2 provides for the utility model embodiment;
The principle schematic of the Lighting Control Assembly that Fig. 3 provides for the utility model embodiment;
The schematic flow sheet of the Lighting Control Assembly that Fig. 4 provides for the utility model embodiment.
Embodiment
For making the technical problems to be solved in the utility model, technical scheme and advantage clearly, be described in detail below in conjunction with the accompanying drawings and the specific embodiments.
The problem of the waste of energy that the utility model produces for existing illumination, provides a kind of Lighting Control Assembly.
Be illustrated in figure 1 a kind of Lighting Control Assembly that the utility model embodiment provides, comprise: lighting source, light intensity sensor, controller, steering wheel and the potentiometer of connecting with described lighting source;
Described light intensity sensor, for detecting the current light intensity level of lighting source, and is transferred to described controller by the current light intensity level detected;
Described controller, for according to the difference between the current light intensity level received and default illumination intensity value, exports PWM ripple;
Described steering wheel, rotates for the PWM ripple exported according to described controller, and according to the resistance value of rotational angle controlling potential device, to regulate the intensity of illumination of lighting source.
Lighting Control Assembly described in the utility model embodiment, the current light intensity level of lighting source is detected by light intensity sensor, and the difference between the current light intensity level detected according to light intensity sensor by controller and default illumination intensity value, export the rotational angle that PWM ripple controls steering wheel, and pass through the resistance value of servos control potentiometer, and then the dividing potential drop on controlling potential device and lighting source, thus regulate the intensity of illumination of lighting source.Like this, by the current light intensity level of zones of different in light intensity sensor sensing chamber, and according to the illumination intensity value preset, utilize incremental timestamp principle, in automatic accurately control room, the intensity of illumination of each lighting source of zones of different, makes being uniformly distributed of indoor zones of different intensity of illumination, while meeting lighting demand, reduce the power consumption of lighting source, avoid the waste of electric energy, thus achieve energy-saving effect.
In the utility model embodiment, described lighting source is adjustable with intensity of illumination, the fluorescent lamp of brightness stepping is example, room as shown in Figure 2, house interior is provided with 9 fluorescent lamps, light intensity sensor installed by the ceiling of each fluorescent lamp correspondence position, be equivalent to room is divided into 9 regions, there are a fluorescent lamp and a light intensity sensor in each region, concrete, for the light intensity sensor 1 of fluorescent lamp 1 with its correspondence, current light intensity level in fluorescent lamp 1 field of illumination detected is transferred to controller by light intensity sensor 1, and (described controller can be arranged in control box, described controller can be single-chip microcomputer, processor etc.), the current light intensity level of the fluorescent lamp 1 received and the illumination intensity value preset compare by controller, and according to the difference between the current light intensity level of fluorescent lamp 1 and default illumination intensity value, export the rotational angle that PWM ripple controls steering wheel, and the resistance value of rotational angle controlling potential device according to steering wheel, and then the dividing potential drop on controlling potential device and lighting source, the current light intensity level of fluorescent lamp 1 is made to reach default illumination intensity value.The utility model embodiment not only achieves in existing product, as: the function of the light modulation in the comparatively complete complete intelligent illuminating system of a set of Smart Home product comprising intelligent lighting that Yueqing City Bang Qi Electric Applicance Co., Ltd releases and the release of Ya Run intelligent control device Co., Ltd of Huizhou City, the core concept of intensity of illumination " distribution according to need " can also be met, more humane, and cost is lower, generalization strong, be especially applicable to teaching building instantly and the utilization of normal office building
In the embodiment of aforementioned Lighting Control Assembly, further, described system also comprises: human body infrared inductor;
Described human body infrared inductor, for whether there being human body to exist within the scope of testing, and is sent to described controller by the human body information detected.
In the embodiment of aforementioned Lighting Control Assembly, further, described controller, also for when described human body infrared inductor detects human body information, controls lighting source and opens;
When described human body infrared inductor does not detect human body information, control lighting source and close.
In the utility model embodiment, in order to further saves energy, prevent indoor unmanned but still brilliantly illuminated phenomenon, as shown in Figure 2, can 1.5 meters of each installations in human body infrared inductor detect far from ground four corners in room, make the investigative range of human body infrared inductor cover whole room, thus whether accurate detection in room has human body to exist, if detect unmanned, then close lighting source by controller, thus reduce the waste of electric energy.
In the embodiment of aforementioned Lighting Control Assembly, further, described system also comprises: acoustic sensor and acoustic control module;
Described acoustic sensor, for gathering the phonetic order of user;
Described acoustic control module, for identifying the phonetic order collecting user, and is sent to described controller by the phonetic order recognized.
In the embodiment of aforementioned Lighting Control Assembly, further, described controller, also for when described phonetic order for a change illumination intensity value time, then according to described phonetic order and the difference of current light intensity level received, export PWM ripple;
Described controller, also for when described phonetic order is for opening lighting source instruction, opens lighting source; When described phonetic order is for closing lighting source instruction, close lighting source.
In the utility model embodiment, existing fluorescent lamp is button by-pass cock mostly, impersonality.In order to improve Consumer's Experience, as shown in Figure 3 and Figure 4, utilize acoustic sensor and acoustic control module to increase voice control function, as shown in Figure 2, described acoustic control module can be arranged in control box.On the one hand, user can regulate the intensity of illumination of fluorescent lamp by voice, the brightness in control room; On the other hand, user is also by the switch of Voice command fluorescent lamp.Concrete, if the phonetic order of the user that acoustic control Module recognition collects to acoustic sensor for a change illumination intensity value time, then according to the difference of described phonetic order with the current light intensity level received, export PWM ripple, the intensity of illumination of fluorescent lamp is regulated according to described PWM ripple, convenient and swift, for some specific user groups, the functions such as colour temperature adjustment can also be increased.
In the embodiment of aforementioned Lighting Control Assembly, further, described system also comprises: bluetooth module and mobile terminal;
Described mobile terminal, for carrying out information interaction by described bluetooth module and described controller, and arranges the open and close of illumination intensity value, display current light intensity and control lighting source.
In the utility model embodiment, described system also comprises: bluetooth module and mobile terminal, and as shown in Figure 2, described bluetooth module can be arranged in control box.Described mobile terminal can be set illumination intensity value by mobile terminal, can also monitor indoor current light intensity by mobile terminal after being connected with described controller by described bluetooth module, opens and closes lighting source.
In the embodiment of aforementioned Lighting Control Assembly, further, described system also comprises: physical switch;
Described physical switch, for opening lighting source and Lighting Control Assembly, or closes lighting source and Lighting Control Assembly.
In the utility model embodiment, in order to improve Consumer's Experience, in indoor gateway, place has settled physical switch, and user controls the light on and off of fluorescent lamp by described physical switch.This physical switch also can be the switch of control system, and switch closes, and fluorescent lamp is bright, and now brightness is default value, and control system enters operating state,
In sum, the design of the utility model embodiment hommization more presses close to daily life, meets the daily demand of user, has the meaning promoted on a large scale, have certain market prospects.
The above is preferred implementation of the present utility model; should be understood that; for those skilled in the art; under the prerequisite not departing from principle described in the utility model; can also make some improvements and modifications, these improvements and modifications also should be considered as protection range of the present utility model.
Claims (7)
1. a Lighting Control Assembly, is characterized in that, comprising: lighting source, light intensity sensor, controller, steering wheel and the potentiometer of connecting with described lighting source;
Described light intensity sensor, for detecting the current light intensity level of lighting source, and is transferred to described controller by the current light intensity level detected;
Described controller, for according to the difference between the current light intensity level received and default illumination intensity value, exports PWM ripple;
Described steering wheel, rotates for the PWM ripple exported according to described controller, and according to the resistance value of rotational angle controlling potential device, to regulate the intensity of illumination of lighting source.
2. Lighting Control Assembly according to claim 1, is characterized in that, also comprises: human body infrared inductor;
Described human body infrared inductor, for whether there being human body to exist within the scope of testing, and is sent to described controller by the human body information detected.
3. Lighting Control Assembly according to claim 2, is characterized in that, described controller, also for when described human body infrared inductor detects human body information, controls lighting source and opens;
When described human body infrared inductor does not detect human body information, control lighting source and close.
4. Lighting Control Assembly according to claim 1 and 2, is characterized in that, also comprises: acoustic sensor and acoustic control module;
Described acoustic sensor, for gathering the phonetic order of user;
Described acoustic control module, for identifying the phonetic order collecting user, and is sent to described controller by the phonetic order recognized.
5. Lighting Control Assembly according to claim 4, is characterized in that, described controller, also for when described phonetic order for a change illumination intensity value time, then according to described phonetic order and the difference of current light intensity level received, export PWM ripple;
Described controller, also for when described phonetic order is for opening lighting source instruction, opens lighting source; When described phonetic order is for closing lighting source instruction, close lighting source.
6. Lighting Control Assembly according to claim 1, is characterized in that, also comprises: bluetooth module and mobile terminal;
Described mobile terminal, for carrying out information interaction by described bluetooth module and described controller, and arranges the open and close of illumination intensity value, display current light intensity and control lighting source.
7. Lighting Control Assembly according to claim 1, is characterized in that, also comprises: physical switch;
Described physical switch, for opening lighting source and Lighting Control Assembly, or closes lighting source and Lighting Control Assembly.
Priority Applications (1)
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CN201520828551.7U CN205051941U (en) | 2015-10-23 | 2015-10-23 | Illumination control system |
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CN201520828551.7U CN205051941U (en) | 2015-10-23 | 2015-10-23 | Illumination control system |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107682979A (en) * | 2016-08-01 | 2018-02-09 | 上海市格致中学 | Intelligent indoor lighting system |
CN108200694A (en) * | 2018-02-05 | 2018-06-22 | 苏州木山云智能科技有限公司 | A kind of control method of intelligent illuminating system |
CN108307560A (en) * | 2018-02-05 | 2018-07-20 | 苏州木山云智能科技有限公司 | A kind of lighting system of automatic adjustment |
-
2015
- 2015-10-23 CN CN201520828551.7U patent/CN205051941U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107682979A (en) * | 2016-08-01 | 2018-02-09 | 上海市格致中学 | Intelligent indoor lighting system |
CN108200694A (en) * | 2018-02-05 | 2018-06-22 | 苏州木山云智能科技有限公司 | A kind of control method of intelligent illuminating system |
CN108307560A (en) * | 2018-02-05 | 2018-07-20 | 苏州木山云智能科技有限公司 | A kind of lighting system of automatic adjustment |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160224 Termination date: 20161023 |