CN110944436A - Control method and system for controlling park illumination - Google Patents

Control method and system for controlling park illumination Download PDF

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Publication number
CN110944436A
CN110944436A CN201911256310.9A CN201911256310A CN110944436A CN 110944436 A CN110944436 A CN 110944436A CN 201911256310 A CN201911256310 A CN 201911256310A CN 110944436 A CN110944436 A CN 110944436A
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request
control server
client
master control
lighting
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CN201911256310.9A
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CN110944436B (en
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鲁旭
白璐
马溶潞
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Beijing Shougang Automation Information Technology Co Ltd
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Beijing Shougang Automation Information Technology Co Ltd
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Abstract

The invention discloses a control method and a system for controlling park illumination, wherein the system comprises the following steps: the system comprises a strong current controller configured in each lighting device for park lighting, a weak current controller configured in each lighting device for park lighting, a master control server and a client; the system comprises a master control server, a client side and a server, wherein the master control server is connected with a strong current controller and a weak current controller; the master control server receives a first request sent by a client, wherein the first request is used for requesting to start a strong electric controller; the master control server controls the strong electric controller to start power supply according to the first request, and returns the information of successful request to the client; the master control server receives a second request sent by the client, wherein the second request is used for requesting to start the weak current controller; and the master control server controls the weak current controller to be started according to the second request and controls the weak current controller to adjust the light brightness.

Description

Control method and system for controlling park illumination
Technical Field
The invention relates to the technical field of lighting control, in particular to a control method and a control system for controlling park lighting.
Background
Floodlighting is a lighting where an outdoor object or field is brighter than the surroundings, and the purpose of floodlighting is varied, one to keep working for safety or for night time, and the other to highlight building facilities. Floodlighting can be used in a variety of applications, such as in a garden or the like.
However, in the prior art, there are other lighting arrangements for garden lighting, such as illumination of offices, greenery, etc., in addition to flood lighting. The on and off of the lights of the garden lighting are manually operated independently, and the control mode cannot meet the allocation requirement along with the increase of the use requirement, the increase of the quantity and the like.
In the process of implementing the technical scheme in the embodiment of the invention, the inventor of the invention finds that the prior art at least has the following problems;
the illumination of the garden is controlled independently, and the uniform allocation cannot be achieved.
Disclosure of Invention
The invention provides a control method and a control system for controlling garden illumination, which aim to solve or partially solve the technical problem that garden illumination is controlled independently and cannot be uniformly allocated.
In order to solve the technical problem, the present invention provides a control system for controlling garden lighting, wherein all lighting devices in the garden lighting are divided into three areas for lighting: landscape greening lighting, road lighting and building body floodlighting, wherein each area comprises a plurality of lighting devices;
the system comprises: the system comprises a strong current controller configured in each lighting device for park lighting, a weak current controller configured in each lighting device for park lighting, a master control server and a client side; the master control server is connected with the strong current controller and the weak current controller, and the client is connected with the master control server;
the master control server receives a first request sent by the client, wherein the first request is used for requesting to start the strong electric controller;
the master control server controls the strong electric controller to start power supply according to the first request, and returns the information of successful request to the client;
the master control server receives a second request sent by the client, wherein the second request is used for requesting to start the weak current controller;
and the master control server controls the weak current controller to be started according to the second request and controls the weak current controller to adjust the light brightness.
Preferably, the master control server confirms the current starting states of all the strong current controllers according to the first request, then obtains the strong current controllers which are not started in the current control mode according to the current control mode and the current starting states of all the strong current controllers, and controls the strong current controllers which are not started in the current control mode to start power supply.
Preferably, the master control server controls the corresponding weak current controllers to adjust the light brightness according to the second request and the light scale of each weak current controller in the current control mode.
Preferably, the master control server receives a first setting request from the client, and sets the allowable starting time periods of all the strong electric controllers according to the first setting request.
Preferably, the master control server receives a second setting request from the client, and sets an opening permission area according to the second setting request and the position of each strong electric controller.
Preferably, the master control server receives parameters returned by all the strong current controllers and all the weak current controllers, and acquires corresponding fault information according to the parameters; and reminding the client according to the corresponding fault information.
Preferably, the master control server reminds the client according to the stored service life of each lighting device.
Preferably, the system further comprises: a collecting device disposed in each of the lighting devices;
and the master control server stores the acquired data transmitted by the acquisition devices.
Preferably, the general control server receives the mode switching instruction sent by the client, and performs mode switching according to the mode switching instruction.
The invention also discloses a control method for controlling the illumination of the park, which is applied to the system according to the technical scheme and comprises the following steps:
the master control server receives a first request sent by the client, wherein the first request is used for requesting to start the strong electric controller;
the master control server controls the strong electric controller to start power supply according to the first request, and returns the information of successful request to the client;
the master control server receives a second request sent by the client, wherein the second request is used for requesting to start the weak current controller;
and the master control server controls the weak current controller to be started according to the second request and controls the weak current controller to adjust the light brightness.
Through one or more technical schemes of the invention, the invention has the following beneficial effects or advantages:
the invention discloses a control method and a system for controlling garden lighting, wherein all lighting devices in the garden lighting are divided into three areas for lighting: and the landscape greening lighting, the road lighting and the building body floodlighting are controlled in a grading and grading way, and each area comprises a plurality of lighting devices. The system comprises: the system comprises a strong current controller configured in each lighting device for park lighting, a weak current controller configured in each lighting device for park lighting, a master control server and a client side; the master control server is connected with the strong current controller and the weak current controller, and the client is connected with the master control server. In a specific control principle, the master control server receives a first request sent by the client, wherein the first request is used for requesting to start the strong electric controller; the master control server controls the strong electric controller to start power supply according to the first request, and returns the information of successful request to the client; the master control server receives a second request sent by the client, wherein the second request is used for requesting to start the weak current controller; and the master control server controls the weak current controller to be started according to the second request and controls the weak current controller to adjust the light brightness. Therefore, the invention can integrate all lighting into one information system for control, and is used for uniformly allocating all lighting devices in the garden lighting. In addition, the system grades and grades the illumination in the garden according to different functions, ensures functional illumination at ordinary times, realizes a brightening effect, and can perform holiday setoff and atmosphere rendering on dates such as major holidays.
The foregoing description is only an overview of the technical solutions of the present invention, and the embodiments of the present invention are described below in order to make the technical means of the present invention more clearly understood and to make the above and other objects, features, and advantages of the present invention more clearly understandable.
Drawings
Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The drawings are only for purposes of illustrating the preferred embodiments and are not to be construed as limiting the invention. Also, like reference numerals are used to refer to like parts throughout the drawings. In the drawings:
figure 1 shows a schematic layout of a campus lighting according to an embodiment of the present invention;
figure 2 shows a schematic of a control system for controlling garden lighting according to one embodiment of the present invention;
figure 3 shows a flow chart of a control method for controlling garden lighting according to one embodiment of the present invention.
Description of reference numerals: the system comprises a strong current controller 1, a weak current controller 2, a client 3, a master control server 4 and a lighting device 5.
Detailed Description
In order to make the technical solution of the present invention more clearly understood by those skilled in the art, the technical solution of the present invention is described in detail below by way of specific embodiments with reference to the attached drawings.
In order to solve the problem that garden illumination is controlled independently and cannot be uniformly allocated, the invention discloses a control system for controlling garden illumination, which integrates all illumination into one information system for control and is used for uniformly allocating all illumination devices 5 in the garden illumination. In addition, the system grades and grades the illumination in the garden according to different functions, ensures functional illumination at ordinary times, realizes a brightening effect, and can perform holiday setoff and atmosphere rendering on dates such as major holidays. The parks of the invention include (industrial parks, software parks, etc.) office parks, construction sites, shopping malls, etc. in large areas.
The following description is made specifically.
The invention discloses a control system for controlling garden lighting, and the control system is shown in figure 1 and is a schematic diagram of area distribution in the garden lighting. All lighting devices 5 in the garden lighting are divided into three area lights: landscape greening lighting, road lighting, building flood lighting, each area comprising a plurality of lighting devices 5.
Referring to fig. 2, a control system for controlling park lighting includes: the system comprises a strong current controller 1 configured in each lighting device 5 for park lighting, a weak current controller 2 configured in each lighting device 5 for park lighting, a master control server 4 and a client 3; the master control server 4 is connected with the strong current controller 1 and the weak current controller 2, and the client 3 is connected with the master control server 4. The client 3, such as a mobile phone, a computer, a tablet and other intelligent terminals, can perform remote real-time monitoring and issue control commands.
Note that each lighting device 5 has a strong current controller 1 and a weak current controller 2. The strong current controller 1 is used for controlling the on/off of the lighting device 5, and the weak current controller is used for controlling the brightness of the light of the lighting device 5. The general control server 4 is connected with the strong current controllers 1 of all the lighting devices 5 and the weak current controllers 2 of all the lighting devices 5.
In a specific control process, the most basic control principle is as follows:
the master control server 4 receives a first request sent by the client 3, wherein the first request is used for requesting to start the strong electric controller 1. The master control server 4 controls the strong electric controller 1 to start power supply according to the first request, and returns the information of successful request to the client 3. And the master control server 4 receives a second request sent by the client 3, wherein the second request is used for requesting to start the weak current controller 2. And the master control server 4 controls the weak current controller 2 to be started according to the second request, and controls the weak current controller 2 to adjust the light brightness.
Specifically, the total control server 4 has two execution modes after receiving the first request sent by the client 3. Firstly, after receiving a first request sent by the client 3, the master control server 4 confirms the current starting states of all the strong electric controllers 1 according to the first request. And obtaining the current unopened strong current controller 1 according to the current opening states of all strong current controllers 1. Then, the information according to the current unopened strong electric controller 1 is transmitted back to the client 3, and the client 3 sends a control command to selectively open the current unopened strong electric controller 1. Such as opening all or part of the opening. Secondly, after receiving the first request sent by the client 3, the total control server 4 confirms the current starting states of all the strong electric controllers 1 according to the first request. And obtaining the current unopened strong current controller 1 according to the current opening states of all strong current controllers 1. And then selectively starting, such as starting all or part of, the strong electric controller 1 which is not started at present directly according to a starting instruction carried in the request.
In the process of weak current control, since one lighting device 5 is provided with one weak current controller 2, the light brightness of the lighting device 5 controlled by the weak current controller 2 is adjusted. If the brightness adjustment of each lighting device 5 is different, different lighting effects are exhibited as a whole. In addition, all the lighting devices 5 can comprise colored lamp devices, and the displayed light effect is better.
The above is the basic implementation principle of the control system of the present invention.
As an alternative embodiment, the general control server 4 is provided with a plurality of control modes, such as a normal mode, a holiday mode, a major holiday mode, and the like. For example, in a common mode, the lamplight of each area of the garden only needs to meet the basic illumination at ordinary times, and in a holiday mode, the festoon lamps are turned on while the basic illumination at ordinary times is met, so that the lamplight in the garden becomes bright and colorful, and a pleasant holiday atmosphere is created.
Further, the general control server 4 receives the mode switching instruction sent by the client 3, and performs mode switching according to the mode switching instruction.
As an alternative embodiment, in the case that the general control server 4 is provided with multiple control modes, the general control server 4 confirms the current on-states of all the strong electric controllers 1 according to the first request, then obtains the strong electric controllers 1 that are not on in the current control mode according to the current control mode and the current on-states of all the strong electric controllers 1, and controls the strong electric controllers 1 that are not on in the current control mode to turn on power supply.
Further, for the control process of the weak current controllers 2, the master control server 4 controls the corresponding weak current controllers 2 to adjust the light brightness according to the second request and the light scale of each weak current controller 2 in the current control mode.
As an alternative embodiment, the general control server 4 also provides scene modes such as a date and time scheme, a longitude and latitude scheme, a week time scheme and the like.
Specifically, for the scene mode of the date-time scheme, the general control server 4 receives a first setting request from the client 3, and sets the allowable starting time periods of all the strong electric controllers 1 according to the first setting request.
Specifically, for the scene mode of the longitude and latitude scheme, the general control server 4 receives a second setting request from the client 3, and sets an allowable opening area according to the second setting request and the positions of the strong electric controllers 1.
Of course, the above two schemes can be combined together, and different time schemes can be flexibly selected according to different areas.
As an alternative embodiment, the general control server 4 receives the parameters returned by all the strong current controllers 1 and all the weak current controllers 2, and obtains corresponding fault information according to the parameters. And reminding the client 3 according to the corresponding fault information. For example, when a fault occurs, the intelligent control system actively sends alarm information to a park manager, and the manager takes measures according to fault location and fault reasons.
As an alternative embodiment, the control loop of the present invention supports both digital on-light output and digital on-light input.
Output characteristics: 8-path output, one group is normally open, and the rated load is 250 VAC/10A. Local loop switching operations are supported, remote loop switching operations are supported.
Input characteristics: 8-channel input, passive dry contact and normally open.
Further, forceful electric power controller 1 has the contactor, so total accuse server 4 can carry out actuation state to the contactor and detect, and the inconsistent warning of input and output state, for example turn on the light daytime and turn off the light warning evening, input trunk node signal closure warning for play the warning effect. The alarm can replace illegal door opening alarm, electronic fence alarm and the like, and the conditions of theft and the like are prevented.
As an alternative embodiment, the general control server 4 reminds the client 3 according to the stored service life of each lighting device 5. For example, if the service life of the lighting device 5 is up, the replacement can be reminded.
As an alternative embodiment, the control system further comprises: and a pickup device disposed in each of the lighting devices 5. For example, acquisition circuits such as a voltage transformer, a current transformer and an ammeter chip can acquire three-phase voltage, six-path current and equal-power parameters.
The master control server 4 stores the collected data transmitted by each collecting device.
Based on the same inventive concept, the embodiment also discloses a control method for controlling the park lighting, and the detailed implementation process of the method is the same as the control principle of the system of one or more embodiments, so the detailed description is omitted.
Referring now to fig. 3, the method includes:
in step 31, the master control server 4 receives a first request sent by the client 3, where the first request is used to request to turn on the strong electric controller 1.
And step 32, the master control server 4 controls the strong electric controller 1 to start power supply according to the first request, and returns the information of successful request to the client 3.
And step 33, the master control server 4 receives a second request sent by the client 3, where the second request is used to request to start the weak current controller 2.
And step 34, the master control server 4 controls the light current controller 2 to be started according to the second request, and controls the light current controller 2 to adjust the light brightness.
Through one or more embodiments of the present invention, the present invention has the following advantageous effects or advantages:
the invention discloses a control method and a system for controlling garden lighting, wherein all lighting devices in the garden lighting are divided into three areas for lighting: and the landscape greening lighting, the road lighting and the building body floodlighting are controlled in a grading and grading way, and each area comprises a plurality of lighting devices. The system comprises: the system comprises a strong current controller configured in each lighting device for park lighting, a weak current controller configured in each lighting device for park lighting, a master control server and a client side; the master control server is connected with the strong current controller and the weak current controller, and the client is connected with the master control server. In a specific control principle, the master control server receives a first request sent by the client, wherein the first request is used for requesting to start the strong electric controller; the master control server controls the strong electric controller to start power supply according to the first request, and returns the information of successful request to the client; the master control server receives a second request sent by the client, wherein the second request is used for requesting to start the weak current controller; and the master control server controls the weak current controller to be started according to the second request and controls the weak current controller to adjust the light brightness. Therefore, the invention can integrate all lighting into one information system for control, and is used for uniformly allocating all lighting devices in the garden lighting. In addition, the system grades and grades the illumination in the garden according to different functions, ensures functional illumination at ordinary times, realizes a brightening effect, and can perform holiday setoff and atmosphere rendering on dates such as major holidays.
While preferred embodiments of the present invention have been described, additional variations and modifications in those embodiments may occur to those skilled in the art once they learn of the basic inventive concepts. Therefore, it is intended that the appended claims be interpreted as including preferred embodiments and all such alterations and modifications as fall within the scope of the invention.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present invention without departing from the spirit and scope of the invention. Thus, if such modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include such modifications and variations.

Claims (10)

1. A control system for controlling park lighting, wherein all lighting fixtures in the park lighting are divided into three area lights: landscape greening lighting, road lighting and building body floodlighting, wherein each area comprises a plurality of lighting devices;
the system comprises: the system comprises a strong current controller configured in each lighting device for park lighting, a weak current controller configured in each lighting device for park lighting, a master control server and a client side; the master control server is connected with the strong current controller and the weak current controller, and the client is connected with the master control server;
the master control server receives a first request sent by the client, wherein the first request is used for requesting to start the strong electric controller;
the master control server controls the strong electric controller to start power supply according to the first request, and returns the information of successful request to the client;
the master control server receives a second request sent by the client, wherein the second request is used for requesting to start the weak current controller;
and the master control server controls the weak current controller to be started according to the second request and controls the weak current controller to adjust the light brightness.
2. The system of claim 1, wherein the general control server confirms the current on-state of all the strong electric controllers according to the first request, then obtains the strong electric controllers which are not on under the current control mode according to the current control mode and the current on-state of all the strong electric controllers, and controls the strong electric controllers which are not on under the current control mode to be on for power supply.
3. The system as claimed in claim 2, wherein the master control server controls the corresponding weak current controller to adjust the light brightness according to the second request and the light scale of each weak current controller in the current control mode.
4. The system of claim 1, wherein the general control server receives a first setting request from the client, and sets the allowed turn-on time periods of all the strong electric controllers according to the first setting request.
5. The system of claim 1, wherein the general control server receives a second setting request from the client, and sets the start-permitting area according to the second setting request and the position of each strong electric controller.
6. The system according to claim 1, wherein the master control server receives parameters returned by all strong current controllers and all weak current controllers, and obtains corresponding fault information according to the parameters; and reminding the client according to the corresponding fault information.
7. The system of claim 1, wherein the turnkey server alerts the client according to the stored lifetime of each lighting fixture.
8. The system of claim 1, wherein the system further comprises: a collecting device disposed in each of the lighting devices;
and the master control server stores the acquired data transmitted by the acquisition devices.
9. The system of claim 1, wherein the general control server receives a mode switching instruction sent by the client, and performs mode switching according to the mode switching instruction.
10. A control method for controlling lighting of a park, the method being applied to a system according to any one of the preceding claims 1-9, the method comprising:
the master control server receives a first request sent by the client, wherein the first request is used for requesting to start the strong electric controller;
the master control server controls the strong electric controller to start power supply according to the first request, and returns the information of successful request to the client;
the master control server receives a second request sent by the client, wherein the second request is used for requesting to start the weak current controller;
and the master control server controls the weak current controller to be started according to the second request and controls the weak current controller to adjust the light brightness.
CN201911256310.9A 2019-12-10 2019-12-10 Control method and system for controlling park illumination Active CN110944436B (en)

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