CN101541115A - System and method for constructing solid lighting network by utilizing electric power system - Google Patents
System and method for constructing solid lighting network by utilizing electric power system Download PDFInfo
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- CN101541115A CN101541115A CN200810084783A CN200810084783A CN101541115A CN 101541115 A CN101541115 A CN 101541115A CN 200810084783 A CN200810084783 A CN 200810084783A CN 200810084783 A CN200810084783 A CN 200810084783A CN 101541115 A CN101541115 A CN 101541115A
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Abstract
The invention relates to a system and a method for constructing a solid lighting network by utilizing an electric power system. The system and the method are applied to a specific region so as to meet the requirement of energy-saving control and intelligent management; in the system, mainly, a set of system which can carry out single or integrated control on each LED luminous device constructed in the region through a control device is constructed in the region; the integrated system is constructed in the prior alternating current power line; and the controlling method utilizes the prior power line as a channel for carrying an electronic signal, carries out the exchange of a control signal, utilizes an alternating current carrier wave to complete the transmission of the electronic signal and achieves the effective control of each LED luminous device in the region.
Description
Technical field
What the present invention relates to is a kind of System and method for that utilizes electric power system to make up solid lighting network, it is by a control device, control group structure each LED light-emitting device in a specific region, what be particularly related to is a kind of electric power supply system that utilizes existing alternating current, as the channel that carries electronic signal, and the exchange of carrying out control signal, to reach the System and method for of each LED light-emitting device of control.
Background technology
Light-emitting diode (Light Emitting Diode, LED) light-emitting device of type present life suitable with the application in the operating environment extensively, majority is intended for illumination and uses, and along with the progress and development in epoch, luminous device is is then researched and developed and is used towards the direction of more diversification, for example existing at present partly LED light-emitting device, gradually by traditional bulb-type, lamp tube type, transformation is replaced by high-power light-emitting diode (LED), it is energy-conservation that main cause is that LED has, volume is little, characteristics such as long service life, so, after physical commodityization, now existing multiplely be applied on the market as the LED light-emitting device of light source with LED, especially being the new building of main design concept with the environmental protection demand, mainly promptly is to use the light-emitting device of LED formula as main light source, ambilight and atmosphere light source etc., for example, the ambilight of building public space, or the atmosphere light source of the interior particular space of building etc.; See also Fig. 1, it shown in the figure laying schematic diagram of existing LED light-emitting device, as shown in FIG., a plurality of LED light-emitting devices 11 are to be connected electrically in an electric power supply system 12, in the application of entity, promptly as the ambilight of public domain, building, several LED light-emitting devices 11 are to lay respectively in position, and be electrically connected to a central controlled position (being generally control centre) by power line, the action of being undertaken each LED light-emitting device 11 by the central control unit 10 in the control centre again, see also shown in the figure again, can effectively control each LED light-emitting device 11 for making central control unit 10, it need utilize another network equipment 13 (for example domain type network layout), be connected to each LED light-emitting device 11 via a sharing apparatus 14, also promptly, power, and control each LED light-emitting device by network equipment 13 by central control unit 10 by electric power supply system 12; As above, when implementing circuit and lay with 11 installings of LED light-emitting device, the laying that the workmen of hydroelectric project finishes electric power except need be connected, the laying and the setting of still needing and finishing grid line, only, with regard to the situation of existing practice, general hydroelectric project personnel are to finish network laying and setting partly, therefore another group of still needing is responsible for the workmen that network is laid, whole setting up be can finish, thus, construction and the cost of laying promptly significantly increased; Moreover if the zonal laying of this kind will be implemented in general domestic. applications, then its difficulty is higher, because the process of its construction obviously needs two stages to finish, when also promptly installing, need the workmen of specialty to reach, thus, the application of universalness, then more difficult.
Summary of the invention
Because above-mentioned problem, make the application that is subjected to universalness that energy-conservation LED light-emitting device can be a large amount of for reaching, the distribution method that The present invention be directed to existing regional LED light-emitting device is analyzed, phase can be developed more easy system and control method thereof, main purpose of the present invention is to provide a kind of making to be laid in zonal LED light-emitting device and to be easy to assembling and to be provided with, and be subjected to the effectively method and system of control, so that meet the application that the LED light-emitting device of energy-conservation requirement can be popularized.
In order to achieve the above object, the present invention utilizes a control device to finish with existing alternating current electric power system to be electrically connected, this control device can be after operation, export a function control signal, and by having power line now as the channel that carries signal, transfer to each LED light-emitting device, produce corresponding action to trigger each LED light-emitting device, it mainly is to utilize between control device and LED light-emitting device, transformat with identical Data Transport Protocol, or utilize as power line communication technology (Power Line Communication, PLC) transmission means, utilize the alternating current power line, reach the transmission and the exchange of signal, and in the control system that effectively is applied in the LED light-emitting device of inciting somebody to action, thus, need not to lay separately again the network equipment, can reach the function of controlling each LED light-emitting device by central authorities, therefore no matter be the laying of large-scale regional LED light-emitting device, or the laying of the middle-size and small-size regional LED light-emitting device of family, all can finish by the most easy assembling set-up mode, effectively promote the ideal of energy-conservation type LED light-emitting device universalness.
Description of drawings
Fig. 1 is the laying schematic diagram of existing LED light-emitting device;
Fig. 2 is the system schematic among the present invention;
Fig. 3 is a method schematic diagram of the invention process;
Fig. 4 is another kind of preferred embodiment of the present invention ();
Fig. 5 is another kind of preferred embodiment of the present invention (two).
Description of reference numerals: 11-LED light-emitting device; The 12-electric power supply apparatus; The 13-network equipment; The 14-sharing apparatus; 20-alternating current electric power supply system; The 21-control device; 211-alternating current line of force transport module; 212-coding and decoding module; 213-control unit and man-machine interface; The 22-LED light-emitting device; 221-alternating current line of force transport module; The 222-decoding module; 223-light-emitting diode control module; The 224-light-emitting diode; 225-coding and coding module; The 23-power line; The 24-induction installation; The 25-LED light-emitting device; The 30-communication control unit; The 31-first step; 32-second step; The 33-third step; 34-the 4th step; 35-the 5th step; 36-the 6th step.
Embodiment
Below in conjunction with accompanying drawing, be described in more detail with other technical characterictic and advantage the present invention is above-mentioned.
See also Fig. 2, be the system schematic among the present invention shown in the figure, as shown in FIG., during the invention process, mainly be by the main source of an existing alternating current electric power supply system 20 as supply electric power, again, utilize the power line 23 of existing alternating current, as being electrically connected in each electronic installation and the member, and carry channel by the electronic signal of the function control of a control device 21 outputs, moreover, each LED light-emitting device 22 is connected electrically on the power line 23, also promptly, except that carrying as electric power, LED light-emitting device 22 also can receive the electronic signal that is carried by power line 23; Please consult shown in the figure again, control device 21 mainly is by an alternating current line of force transport module 211, one coding and decoding module 212, and one control unit and man-machine interface 213 structure of organizing form, wherein, function control device 21 is to utilize the alternating current line of force 211, finish with alternating current electric power supply system 20 and to be electrically connected, the operator then can utilize control unit and man-machine interface 213, the feature operation of being correlated with, when the operator passes through operation, and by after control unit and man-machine interface 213 outputs one function signal, this function command is encoded encodes with decoding module 212, signal behind the coding that forms after encoded, then can be via alternating current line of force transport module 211 output, and with power line 23 as the channel that carries signal, transfer to each LED light-emitting device 22; As shown in FIG., LED light-emitting device 22 mainly is by an alternating current line of force transport module 221, one decoding module 222, one light-emitting diode control module 223 and at least one light-emitting diode 224 structure of organizing form, wherein, LED light-emitting device 22 is by alternating current line of force transport module 221, finish with alternating current electric power supply system 20 and to be electrically connected, signal after the alternating current line of force transport module 221 of LED light-emitting device 22 receives the coding of being exported by control device 21, then can decipher via decoding module 222, to produce decoding back signal, transfer to light-emitting diode control module 223 again, and, for example light or close by the corresponding action of function command triggering light-emitting diode 224 generations of light-emitting diode control module 223 according to decoding back signal; See also again shown in the figure, during the invention process, can one group of control device 21, control one or more groups LED light-emitting device 22 simultaneously.
See also Fig. 3, shown in the figure, be control method schematic diagram of the invention process, its method following (please arrange in pairs or groups) with reference to Fig. 2:
First step (31): control device 21 is operated according to the operator, by control unit and man-machine interface 213 outputs one function signal, for example, function signal is bright lamp, the method for its output function signal can be for example for a kind of simple type resistance modulating signal or be a hunting of frequency modulating signal or be a voltage AM signal or be the aspect etc. of a wireless remote control frequency transmission;
Second step (32):, function signal is converted to signal behind the coding that can carry by power line 23 by coding and decoding module 212;
Third step (33): coding back signal carries by power line 23 through 211 outputs of alternating current power line transmission module again;
The 4th step (34): LED light-emitting device 22 is by signal behind its alternating current line of force transport module 221 received codes;
The 5th step (35): after decoding module 22 is deciphered, produce decoding back signal, and transfer to light-emitting diode control module 223;
The 6th step (36): light-emitting diode control module 223 produces corresponding action according to decoding back signal triggering light-emitting diode 224.
See also Fig. 4, it shown in the figure another preferred embodiment of the present invention (), as shown in FIG., the present invention also can be after installing an induction installation 24 additional, become one and have interactive system, as shown in FIG., be can make each LED light-emitting device 22 in addition respectively assembling be provided with an induction installation 24 (or directly with circuit design be installed in the LED light-emitting device also can), again, further the decoding module 222 of decoding function will only be arranged originally again, be replaced as a coding and the decoding module 225 with encoding function, and induction installation 24 is finished with decoding module 225 with coding be electrically connected, so, when induction installation 24 is sensed on-the-spot environmental change, but feedback one signal is given coding and decoding module 225, behind its coding, to produce a coding back signal, output via alternating current line of force transport module 221, and the carrying of power line, transmission (signal feedback) is to control device 21, after its coding and decoding module 212 decodings, the back signal be will decipher and control unit and man-machine interface 213 transferred to, by control unit and man-machine interface 213, export a function signal of moving relatively automatically again, its follow-up method of operating is each step as Fig. 3; So, whole system can be set at complete manual operation, automatic operation or semi-automatic operation according to demand, can significantly extend the applicability of whole system; See also shown in the figure again, when it is implemented, also can be in the suitable application region in the power line 23 framework scopes, assembling is provided with other LED light-emitting device separately, the for example setting of single lamp, for example, be arranged on the induction installation 24 of high floor when assembling, when the ambient brightness that senses the open air hangs down in set point, be that feedback one signal is to coding and decoding module 225, encoded back output one coding back signal transfers to another LED light-emitting device 25 that an assembling is arranged on low floor or insufficient light place again, it is triggered and lights; As above, the present invention is when implementing, and situation is carried out the assembling setting of LED light-emitting device in different positions according to the actual requirements, and the collocation assembling by relevant apparatus such as control device, inductors is provided with again, can its practicality of more efficient extension.
See also Fig. 5, it shown in the figure another preferred embodiment of the present invention (two), as shown in FIG., the present invention is when implementing, also can pass through another communication control unit 30, carry out operation to total system, for example utilize phone, mobile phone, computer or mobile computer etc., also be, alleged control device 21 can further be provided with the interface of a plurality of message transmission among the present invention, to extend the demand of its operation, as figure, communication control unit 30 mainly is can utilize different communication interfaces to finish information with control device 21 to be connected, Ethernet (Ethernet) for example, universal serial bus (Universal Serial Bus, USB), wireless transmission (Wireless), infrared transmission (Infrared), Internet transmission (Internet) etc., when being in system, the operator position builds in the environment of putting beyond the ground, also can utilize communication control unit 30, by above-mentioned interface, finishing information with control device 21 is connected, carry out whole system is operated, illustrate, native system if application zonule property is in the family built is put, even then the house owner is not in doors, also can pass through as mobile phone, computers etc. are by Internet within doors control device 21 in long-range connection, before entering, promptly, light is within doors opened by the mode of Long-distance Control.
As above, the present invention is the power line 23 that utilizes in the existing electric device, as the channel that carries signal, so, can save setting up of network system, comparatively speaking, during the group structure, general workmen can finish, and uses even be applied in general family, finishes installation after general personnel also can purchase voluntarily, significantly reduce the threshold of using, so, the implementation for the energy-saving LED light-emitting device of relevant LED class has the effect of actual promotion universalness.
Again, the applied control method of the present invention, it is the channel that utilizes present power line to transmit as signal, circulation via alternating current, LED light-emitting device 22 can directly receive signals such as the frequency exported by control device 21 or voltage, and then produce corresponding action, need not for another example with the existing laying mode that needs other line to connect, help the convenience of constructing when putting building, moreover system has multiple coffret, by the connection of information, operating position is unrestricted, also can significantly promote its application.
In sum, the present invention mainly is the framework that utilizes present electric power system, method with the alternating current power line carrier, electronic signal can directly be transmitted via power line, so, can not need to assemble separately again one group of circuit is set, can reach several LED light-emitting devices of effective control, after it is implemented according to this, really can reach provides a kind of and makes regional LED light-emitting device be easy to assembling to be provided with, and be subjected to the effectively method and system of control, so that meet the application that the LED light-emitting device of energy-conservation requirement can be popularized, utilize existing power to lay framework, can finish the installation LED source fast, and after installing, the operator can effectively regulate and control LED source.
In sum, the present invention is the application important document that meets patent of invention, and the applicant mentions application for a patent for invention according to the regulation of Patent Law.
The above only is preferred embodiment of the present invention, only is illustrative for the purpose of the present invention, and nonrestrictive.Those skilled in the art is understood, and can carry out many changes to it in the spirit and scope that claim of the present invention limited, revise, even equivalence, but all will fall within the scope of protection of the present invention.
Claims (9)
1, a kind of system that utilizes electric power system to make up solid lighting network, it is characterized in that: it comprises:
One alternating current electric power supply system provides alternating current electric power power;
A plurality of LED light-emitting devices are connected electrically in described alternating current electric power supply system by a power line; And
One control device is connected electrically in described alternating current electric power supply system by another power line, and described control device is exported a function signal, is carried to described LED light-emitting device by described power line, and triggers described LED light-emitting device generation action.
2, the system that utilizes electric power system to make up solid lighting network according to claim 1 is characterized in that: described control device is made of an alternating current line of force transport module, a coding and decoding module and a control unit and man-machine interface.
3, the system that utilizes electric power system to make up solid lighting network according to claim 1, it is characterized in that: described LED light-emitting device is made of an alternating current line of force transport module, a decoding module, a luminous polar body control module and at least one light-emitting diode.
4, the system that utilizes electric power system to make up solid lighting network according to claim 3 is characterized in that: described decoding module is replaced as a coding and a decoding module.
5, the system that utilizes electric power system to make up solid lighting network according to claim 4, it is characterized in that: described coding and decoding module are electrically connected with an induction installation.
6, the system that utilizes electric power system to make up solid lighting network according to claim 1, it is characterized in that: described control device is assembled any that is provided with an Ethernet or a universal serial bus or a wireless transmission or an infrared transmission or an Internet transmission at least.
7, the system that utilizes electric power system to make up solid lighting network according to claim 1, it is characterized in that: described coffret information is connected to a communication control unit.
8, a kind of method of utilizing electric power system to make up solid lighting network, it is characterized in that: it step that comprises is:
First step: a control device is operated according to the operator, exports a function signal by a control unit and man-machine interface;
Second step:, described function signal is converted to a coding back signal that carries by a power line by a coding and a decoding module;
Third step: signal is exported through an alternating current power line transmission module behind the described coding, carries by described power line again;
The 4th step: a LED light-emitting device receives described coding back signal by another alternating current line of force transport module;
The 5th step: after a decoding module is deciphered, produce a decoding back signal, and transfer to a light-emitting diode control module;
The 6th step: described light-emitting diode control module triggers a light-emitting diode and produces corresponding action according to decoding back signal.
9, the method for utilizing electric power system to make up solid lighting network according to claim 8, it is characterized in that: before described first step produces, one induction installation is after induction one site environment changes, feedback one signal is to a coding and a decoding module, after encoded, output one coding back signal, export described control unit and man-machine interface in the described first step to, automatically after exporting a function signal by described control unit and man-machine interface again, finish described second step to described the 6th step.
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CN200810084783A CN101541115A (en) | 2008-03-21 | 2008-03-21 | System and method for constructing solid lighting network by utilizing electric power system |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101868101A (en) * | 2010-07-07 | 2010-10-20 | 四川电力试验研究院 | Power line carrier wave illuminating energy-saving management system |
CN102573169A (en) * | 2010-12-28 | 2012-07-11 | 阿特斯(中国)投资有限公司 | Floor tile lamp system |
CN111865619A (en) * | 2020-07-06 | 2020-10-30 | 唐山昌宏科技有限公司 | Communication device and mine field communication system |
-
2008
- 2008-03-21 CN CN200810084783A patent/CN101541115A/en active Pending
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN101868101A (en) * | 2010-07-07 | 2010-10-20 | 四川电力试验研究院 | Power line carrier wave illuminating energy-saving management system |
CN102573169A (en) * | 2010-12-28 | 2012-07-11 | 阿特斯(中国)投资有限公司 | Floor tile lamp system |
CN111865619A (en) * | 2020-07-06 | 2020-10-30 | 唐山昌宏科技有限公司 | Communication device and mine field communication system |
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Application publication date: 20090923 |