Intelligent installation method of indoor lighting system
10292247 ยท 2019-05-14
Assignee
Inventors
Cpc classification
F21S10/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S10/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02B20/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
G06F9/448
PHYSICS
F21S8/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to an intelligent installation method of indoor lighting system, characterized in that the method comprises the following steps: firstly design lighting system design diagrams on a computer according to indoor spatial dimensions, including installation lines, installation lighting devices and control scenes that make up the lighting system; and then above-mentioned designed lighting system is automatically implemented installation and debugging using intelligent methods indoors. The method for intelligent installation of indoor lighting system involved in the present invention can be automatically implemented installation and debugging using intelligent methods indoors, so that when the simulation scene of the lighting system is successfully designed, automatic installation and debugging can be performed indoors, which saves a lot of installation human costs.
Claims
1. An intelligent installation method of indoor lighting system, characterized in that the method comprises following steps: 1) Design lighting system design diagram on a computer according to indoor spatial dimensions, including installation lines, installation lighting devices and control scenes that make up the lighting system; the design diagram includes electronic drawings including a CAD drawing, a specific internal design diagram, or a perspective view of a perspective software design; wherein step 1) further comprises following steps: select a solution in the electronic drawing, the solution refers to a solution at a moment, render the result; lamps constituting the scene correspond to their respective illumination intensity of illuminating, both are recorded and stored, and the illumination intensity is a proportional relationship with respect to their maximum values, and the maximum value refers to a rated energy level, for example 20 watts; drive level values are recorded and matched to the illumination intensity of illuminating of each lamp, which is generated as a lamp illumination command, such as a) Lamp 147% b) Lamp 258% c) And so on; 2) Above-mentioned design lighting system is automatically implemented installation and debugging using intelligent methods indoors; the intelligent methods comprise designing and rendering design diagrams of the design lighting system, including 3D design and 3D rendering, or, 2D pattern and chart description, and then any of installation lines and devices, and then through DALI digital addressing control lighting devices, to achieve switches of the lighting devices and intelligent dimming and toning thereof, to achieve 3D rendering.
2. The intelligent installation method of indoor lighting system according to claim 1, wherein the installation lines and devices are lines and lighting devices with assignable IP addresses, and the design diagram designs scenes of combined lines and lighting devices with different IP addresses, the intelligent method includes assigning corresponding IP addresses for lines and lighting devices according to the design diagram after uniformly installing the lines and the lighting devices, and then automatically adjusting through the DALI to the designing and rendering scenes of the design diagram.
3. The intelligent installation method of indoor lighting system according to claim 1, characterized in that before the step 1), the method further comprises a step of providing an indoor building structure diagram, the building structure diagram comprises a perspective view.
4. The intelligent installation method of indoor lighting system according to claim 1, wherein a driving signal is required to be automatically input the lighting system, and the lighting system can use a lighting control system of DELIGHT series; the scene is named, the named scene includes a scene number and a user-readable name, and the scene is input into the lighting system.
5. The intelligent installation method of indoor lighting system according to claim 4, wherein each additional scene is repeated according to above method, when all scenes are input, render the result is a series of scenes, including: A) Each scene is provided in the software; B) All scenes have their names and have their serial numbers in the actual determined control system.
6. The intelligent installation method of indoor lighting system according to claim 5, wherein the lamp is installed according to above design.
7. The intelligent installation method of indoor lighting system according to claim 6, wherein a new scene after installation can be added.
Description
DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(4)
(5) 1) Design lighting system design diagrams on a computer according to indoor spatial dimensions, including installation lines, installation lighting devices and control scenes that make up the lighting system;
(6) 2) Above-mentioned design lighting system is automatically implemented installation and debugging using intelligent methods indoors, for example, the installation and debugging of actual lighting scenes can be automated using such intelligent light control devices.
(7)
(8) 1) Design lighting system design diagrams on a computer according to indoor spatial dimensions, including installation lines, installation lighting devices and control scenes that make up the lighting system;
(9) 2) Designing and rendering design diagrams of the design lighting system, 3D design and 3D rendering, or, 2D pattern and chart description can be used according to the actual design applications;
(10) 3) Install any of installation lines and lighting devices indoors, such as on the ceiling;
(11) 4) Digital addressing and control of lighting devices via DALI (Digital Addressable Lighting Interface) enables switching of the lighting devices and intelligent dimming and toning thereof to achieve 3D rendering effects; of course, other addressing controlling mode that realizes switching of the lighting devices and intelligent dimming and toning thereof to achieve 3D rendering of the actual lighting scene can also be used.
(12)
(13) 1) Design lighting system design diagrams on a computer according to indoor spatial dimensions, including installation lines, installation lighting devices and control scenes that make up the lighting system; the installation lines and devices are lines and lighting devices with assignable IP addresses, and the design diagram designs scenes of combined lines and lighting devices with different IP addresses;
(14) 2) Install evenly the lines and lighting devices indoors, such as on the ceiling;
(15) 3) Assigning the corresponding IP addresses for lines and lighting devices according to the design diagram;
(16) 4) Automatically adjusting through the DALI to the designing and rendering scenes of the design diagram; of course, other addressing controlling mode that realizes switching of the lighting devices and intelligent dimming and toning thereof to achieve 3D rendering of the actual lighting scene can also be used.
(17) The embodiment 4:
(18) 1) Provide an indoor building structure diagram, and the building structure diagram comprises a perspective view.
(19) Design lighting system design diagrams on a computer according to indoor spatial dimensions, including installation lines, installation lighting devices and control scenes that make up the lighting system; the installation lines and devices are lines and lighting devices with assignable IP addresses, and the design diagram designs scenes of combined lines and lighting devices with different IP addresses;
(20) The design diagram includes electronic drawings including a CAD drawing, a specific internal design diagram, or a perspective view of a perspective software design.
(21) Select a solution in the electronic drawing, the solution refers to an solution at a moment, render the result; the lamps constituting the scene correspond to their respective illumination intensity of illuminating, both are recorded and stored, and the illumination intensity is a proportional relationship with respect to their maximum values, and the maximum value refers to a rated energy level, for example 20 watts; drive level values (size of the drive) are recorded and matched to the illumination intensity of illuminating of each lamp, which is generated as a lamp illumination command, such as
(22) a) Lamp 147%
(23) b) Lamp 258%
(24) c) And so on.
(25) A driving signal is required to be automatically input the lighting system, and the lighting system can use a lighting control system of DELIGHT series.
(26) The scene is named, the named scene includes a scene number, a user-readable name, and the like, and the scene is input into the lighting system.
(27) Each additional scene is repeated according to above method.
(28) When all scenes are input, render the result is a series of scenes, including:
(29) a) Each scene is provided in the software;
(30) b) All scenes have their names and have their serial numbers in the actual determined control system.
(31) 2) Install evenly the lines and lighting devices indoors, such as on the ceiling, including lamps, since above installation is evenly installed, it can be completely completed by machine without the need for personnel to go to the site; and for those that have been evenly installed, next step is carried out directly:
(32) 3) Assigning the corresponding IP addresses for lines and lighting devices according to the design diagram;
(33) 4) Automatically adjusting through the DALI to the designing and rendering scenes of the design diagram; the lamp is installed or distributed according to above design. New scenes after installation can be added without going to the real scene.
(34) The above design lighting effect is very close to the original design, so that the design effect is achieved even if no one goes to the real scene (but just creates the scene elsewhere) (in other words, the person concerned only needs to create a scene in his/her convenient place without going to the real scene).
(35) It should be noted that the specific embodiments described above may enable those skilled in the art to more fully understand the invention, but not in any way limit the invention. Accordingly, although the present specification has been described in detail with reference to the accompanying drawings and examples, it will be understood by those skilled in the art that modifications may be made to the present invention or equivalents may be substituted for the purposes of the present invention. In summary, all technical solutions and modifications that do not depart from the spirit and scope of the present invention are intended to be encompassed by the scope of the invention as claimed.