CN107087325B - Intelligent method for controlling street lamps - Google Patents

Intelligent method for controlling street lamps Download PDF

Info

Publication number
CN107087325B
CN107087325B CN201710373103.6A CN201710373103A CN107087325B CN 107087325 B CN107087325 B CN 107087325B CN 201710373103 A CN201710373103 A CN 201710373103A CN 107087325 B CN107087325 B CN 107087325B
Authority
CN
China
Prior art keywords
intensity
data
light intensity
illumination
light
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201710373103.6A
Other languages
Chinese (zh)
Other versions
CN107087325A (en
Inventor
詹文贤
缪捷
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kunshan Hi Tech Intelligent Technology Co Ltd
Original Assignee
Kunshan Hi Tech Intelligent Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Kunshan Hi Tech Intelligent Technology Co Ltd filed Critical Kunshan Hi Tech Intelligent Technology Co Ltd
Priority to CN201710373103.6A priority Critical patent/CN107087325B/en
Publication of CN107087325A publication Critical patent/CN107087325A/en
Application granted granted Critical
Publication of CN107087325B publication Critical patent/CN107087325B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B45/00Circuit arrangements for operating light-emitting diodes [LED]
    • H05B45/10Controlling the intensity of the light

Landscapes

  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

A kind of intelligent method for controlling street lamps passes through the intelligent light-controlled device that is mounted on street lamp, the field condition of street lamp where acquisition, related data is uploaded to server, carry out processing analysis statistics, to the road surface of different operating conditions, targetedly road lamp management strategy is carried out, while carrying out data storage statistics, effective data foundation is provided for the switch lamp and road lamp management strategy in later period, realizes the purpose of intelligent control street lighting and learning-oriented management street lamp.

Description

Intelligent method for controlling street lamps
Technical field
The present invention relates to a kind of night-light, especially a kind of intelligent method for controlling street lamps.
Background technique
Street lamp control system currently on the market, by intelligent light-controlled device as control node, by wired or wireless communication, It is connected with gateway, is then connected to server to software platform.Control mode is generally passive type and receives Host Computer Software Platform Instruction carries out relevant operation, and uploads the working condition of the street lamp where intelligent light-controlled device, such as voltage, electric current, the information such as power To software platform, counted.But it is a lack of the understanding for lamp work on the spot situation of satisfying the need, belongs to passive type control system.Such as nothing Method knows the light situation at scene, can not know the heavy traffic situation at scene, and in artificial subjective state of a control, it can not do To really illumination on demand, thus not from truly realizing intelligent lighting.
Summary of the invention
In order to overcome drawbacks described above, the present invention provides a kind of intelligent method for controlling street lamps, passes through the intelligent street lamp control Method processed not only has the function of passive modulation photosystem above-mentioned, but also the working condition with active upload street lamp, road surface Light situation, the traffic conditions on road surface, active automatic running, staged light modulation etc. functions.
The present invention is to solve technical solution used by its technical problem: a kind of intelligent method for controlling street lamps, It is characterized in: includes the following steps:
A. system starts;
B. the data for reading timing routine module, divide and work by day period and the two different periods of night operation period Carry out corresponding logical process;
If c. working by day the period, then enter abnormality processing subroutine module;
If the d. night operation period, then enters and work normally subroutine module;
If not e. being, program module data always are read again;
F. the road lamp management strategy of the primary system period before running;
G. the light-controller of each node collects intensity signal, temporal information, road surface operating condition, the information such as street lamp running parameter;
H. it is supplied to main control module, carries out processing analysis;
I. gateway is sent to by communication module, is uploaded to server;
J. server analysis illumination data, road surface floor data, temporal information call the data of database file, carry out Date comprision step, and make corresponding road lamp management strategy;
K. this data and road lamp management strategy are stored simultaneously, updates database file, terminated.
As a further improvement of the present invention, the rate-determining steps of abnormality processing subroutine module are as follows in the step c:
If C1. working by day the period, then enter exception handler module, as solar eclipse, overcast and rainy or system overhaul journey Sequence module;Multiple repairing weld light intensity data in setting time at this time, is averaged;If light intensity data > the first light intensity setting value, sentences It is set to system overhaul, then light-controller receives the instruction of server, carries out relevant operation, after operation, detect the electricity of lamps and lanterns Pressure, electric current, power factor lamp data are uploaded to server, while uploading current clock data, and return to initial clock judgement Program module;
It is overcast and rainy if C2. light intensity data < first light intensity setting value, is determined as anomalous weather, such as solar eclipse;So beat at this time LED street lamp is opened, while receiving the instruction that server issues, and the instruction of execute server, after operation, detects the electricity of lamps and lanterns Pressure, electric current, power factor lamp data are uploaded to server, while uploading current clock data, and return to initial clock interpretation Program module.
As a further improvement of the present invention, the rate-determining steps that subroutine module is worked normally in the step d are as follows:
If the D1. night operation period, then enters and work normally subroutine module;
D2. the first time segmentation in the night operation period, reads intensity of illumination data, if intensity of illumination is greater than first Light intensity setting value, then do not turn on light, 0% light modulation output;If intensity of illumination is less than the first light intensity setting value and is greater than the second light intensity Setting value, then to be greater than 0% and the first setting power light modulation output less than 100%;If intensity of illumination is less than the second light intensity Setting value, then to be greater than the first setting power and the second setting power light modulation output less than 100%;
D3. the second time slice after being segmented at the first time reads intensity of illumination data, if intensity of illumination is greater than first Light intensity setting value, then do not turn on light, 0% light modulation output;If intensity of illumination is less than the first light intensity setting value and is greater than the second light intensity Setting value, then with the second setting power light modulation output;If intensity of illumination, less than the second light intensity setting value, 100% light modulation is defeated Out;
D4. the third time slice after the second time slice reads intensity of illumination data, if intensity of illumination is greater than first Light intensity setting value, then with the first setting power light modulation output;If illuminance is less than the first light intensity setting value, with the second setting Power light modulation output;
D5. the 4th time slice after third time slice reads intensity of illumination data, if intensity of illumination is less than first Light intensity setting value, then with the second setting power light modulation output;If intensity of illumination is greater than the first light intensity setting value and is less than third Light intensity setting value, then with the first setting power light modulation output;If intensity of illumination is greater than third light intensity setting value, 0% light modulation Output.
As a further improvement of the present invention, the period that works by day is 8:00-16:00, and the night operation period is 16:00-8:00, segmentation is 16:00-17:00 at the first time, and the second time slice is 17:00-next day 2:00, third time Segmentation is next day 2:00-next day 4:00, and the 4th time slice is next day 4:00-next day 8:00.
As a further improvement of the present invention, the value range of the first light intensity setting value is 16lux-30lux, second The value range of light intensity setting value is 5lux-15lux, and the value range of third light intensity setting value is 55lux-75lux.
As a further improvement of the present invention, the value range of the first setting power is 35%-69%, the second setting The value range of power is 70%-95%.
As a further improvement of the present invention, the value range of the setting time is -6 seconds 1 second, the multiple value Range is 3 times -10 times.
The beneficial effects of the present invention are: the present invention acquires place street lamp by the intelligent light-controlled device being mounted on street lamp Field condition uploads related data to server, carries out processing analysis statistics and carry out targetedly to the road surface of different operating conditions Road lamp management strategy, while data storage statistics is carried out, effective data are provided for the switch lamp and road lamp management strategy in later period Foundation realizes the purpose of intelligent control street lighting and learning-oriented management street lamp.
Detailed description of the invention
Fig. 1 is the schematic diagram of the intelligent method for controlling street lamps of the present invention.
Fig. 2 is the control principle drawing of abnormality processing subroutine module in the intelligent method for controlling street lamps of the present invention.
Fig. 3-Fig. 6 is the control principle drawing of normal processing subroutine module in the intelligent method for controlling street lamps of the present invention.
Specific embodiment
A kind of intelligent method for controlling street lamps, includes the following steps:
A. system starts;
B. the data for reading timing routine module, divide and work by day period and the two different periods of night operation period Carry out corresponding logical process;
If c. working by day the period, then enter abnormality processing subroutine module;
If the d. night operation period, then enters and work normally subroutine module;
If not e. being, program module data always are read again;
F. the road lamp management strategy of the primary system period before running;
G. the light-controller of each node collects intensity signal, temporal information, road surface operating condition, the information such as street lamp running parameter;
H. it is supplied to main control module, carries out processing analysis;
I. gateway is sent to by communication module, is uploaded to server;
J. server analysis illumination data, road surface floor data, temporal information call the data of database file, carry out Date comprision step, and make corresponding road lamp management strategy;
K. this data and road lamp management strategy are stored simultaneously, updates database file, terminated.
Wherein, the rate-determining steps of abnormality processing subroutine module are as follows in the step c:
If C1. working by day the period, then enter exception handler module, as solar eclipse, overcast and rainy or system overhaul journey Sequence module;Multiple repairing weld light intensity data in setting time at this time, is averaged;If light intensity data > the first light intensity setting value, sentences It is set to system overhaul, then light-controller receives the instruction of server, carries out relevant operation, after operation, detect the electricity of lamps and lanterns Pressure, electric current, power factor lamp data are uploaded to server, while uploading current clock data, and return to initial clock judgement Program module;
It is overcast and rainy if C2. light intensity data < first light intensity setting value, is determined as anomalous weather, such as solar eclipse;So beat at this time LED street lamp is opened, while receiving the instruction that server issues, and the instruction of execute server, after operation, detects the electricity of lamps and lanterns Pressure, electric current, power factor lamp data are uploaded to server, while uploading current clock data, and return to initial clock interpretation Program module.
Wherein, the rate-determining steps that subroutine module is worked normally in the step d are as follows:
If the D1. night operation period, then enters and work normally subroutine module;
D2. the first time segmentation in the night operation period, reads intensity of illumination data, if intensity of illumination is greater than first Light intensity setting value, then do not turn on light, 0% light modulation output;If intensity of illumination is less than the first light intensity setting value and is greater than the second light intensity Setting value, then to be greater than 0% and the first setting power light modulation output less than 100%;If intensity of illumination is less than the second light intensity Setting value, then to be greater than the first setting power and the second setting power light modulation output less than 100%;
D3. the second time slice after being segmented at the first time reads intensity of illumination data, if intensity of illumination is greater than first Light intensity setting value, then do not turn on light, 0% light modulation output;If intensity of illumination is less than the first light intensity setting value and is greater than the second light intensity Setting value, then with the second setting power light modulation output;If intensity of illumination, less than the second light intensity setting value, 100% light modulation is defeated Out;
D4. the third time slice after the second time slice reads intensity of illumination data, if intensity of illumination is greater than first Light intensity setting value, then with the first setting power light modulation output;If illuminance is less than the first light intensity setting value, with the second setting Power light modulation output;
D5. the 4th time slice after third time slice reads intensity of illumination data, if intensity of illumination is less than first Light intensity setting value, then with the second setting power light modulation output;If intensity of illumination is greater than the first light intensity setting value and is less than third Light intensity setting value, then with the first setting power light modulation output;If intensity of illumination is greater than third light intensity setting value, 0% light modulation Output.
It should be strongly noted that " 0% light modulation output " and " 100% light modulation exports " is no due to resistance loss It is 0% and 100% light modulation output in absolute sense.
In preferred embodiment, the period that works by day is 8:00-16:00, and the night operation period is 16:00-8: 00, segmentation is 16:00-17:00 (that is, The night screen has hung down, the sunset moment) at the first time, and the second time slice is 17:00-next day 2:00 (that is, coming off duty to the nocturnalism peak period moment), third time slice are next day 2:00-next day 4:00 (that is, morning is extremely Early morning), the 4th time slice is next day 4:00-next day 8:00 (that is, sunrise moment, morning exercises and working moment).
In preferred embodiment, the value range of the first light intensity setting value is 16lux-30lux, the setting of the second light intensity The value range of value is 5lux-15lux, and the value range of third light intensity setting value is 55lux-75lux.
In preferred embodiment, the value range of the first setting power is 35%-69%, and the second setting power takes Value range is 70%-95%.
In preferred embodiment, the value range of the setting time is -6 seconds 1 second, and the multiple value range is 3 Secondary -10 times.
The present invention acquires the field condition of place street lamp by the intelligent light-controlled device being mounted on street lamp, uploads dependency number According to server is given, processing analysis statistics is carried out, to the road surface of different operating conditions, carries out targetedly road lamp management strategy, while into Row data storage statistics, provides effective data foundation for the switch lamp and road lamp management strategy in later period, realizes intelligent control The purpose of street lighting and learning-oriented management street lamp.

Claims (6)

1. a kind of intelligent method for controlling street lamps, includes the following steps:
A. system starts;
B. the data for reading timing routine module divide work by day period and the two the different periods progress of night operation period Corresponding logical process;
If c. working by day the period, then enter abnormality processing subroutine module;
If the d. night operation period, then enters and work normally subroutine module;
If not e. being, timing routine module data is read again;
F. the road lamp management strategy of the primary system period before running;
G. the light-controller of each node collects intensity signal, temporal information, road surface operating condition, street lamp operating parameter information;
H. it is supplied to main control module, carries out processing analysis;
I. gateway is sent to by communication module, is uploaded to server;
J. server analysis illumination data, road surface floor data, temporal information call the data of database file, carry out data Comparative analysis step, and make corresponding road lamp management strategy;
K. this data and road lamp management strategy are stored simultaneously, updates database file, terminated;
It is characterized in that: the rate-determining steps of abnormality processing subroutine module are as follows in the step c:
If C1. working by day the period, then enter exception handler module, as solar eclipse, overcast and rainy or system overhaul program mould Block;Multiple repairing weld light intensity data in setting time at this time, is averaged;If light intensity data > the first light intensity setting value, is determined as System overhaul carries out relevant operation, after operation, detects the voltage of lamps and lanterns then light-controller receives the instruction of server, electricity Stream, power factor lamp data are uploaded to server, while uploading current clock data, and return to initial clock decision procedure Module;
It is overcast and rainy if C2. light intensity data < first light intensity setting value, is determined as anomalous weather, such as solar eclipse;LED is so opened at this time Street lamp, while receiving the instruction that server issues, and the instruction of execute server, after operation, the voltage of lamps and lanterns is detected, electricity Stream, power factor lamp data are uploaded to server, while uploading current clock data, and return to initial clock interpretation program Module.
2. intelligent method for controlling street lamps according to claim 1, it is characterized in that: working normally sub- journey in the step d The rate-determining steps of sequence module are as follows:
If the D1. night operation period, then enters and work normally subroutine module;
D2. the first time segmentation in the night operation period, reads intensity of illumination data, if intensity of illumination is greater than the first light intensity Setting value is not turned on light then, 0% light modulation output;If intensity of illumination is less than the first light intensity setting value and is greater than the setting of the second light intensity Value, then to be greater than 0% and the first setting power light modulation output less than 100%;If intensity of illumination is set less than the second light intensity Value, then to be greater than the first setting power and the second setting power light modulation output less than 100%;
D3. the second time slice after being segmented at the first time reads intensity of illumination data, if intensity of illumination is greater than the first light intensity Setting value is not turned on light then, 0% light modulation output;If intensity of illumination is less than the first light intensity setting value and is greater than the setting of the second light intensity Value, then with the second setting power light modulation output;If intensity of illumination is less than the second light intensity setting value, 100% light modulation output;
D4. the third time slice after the second time slice reads intensity of illumination data, if intensity of illumination is greater than the first light intensity Setting value, then with the first setting power light modulation output;If illuminance is less than the first light intensity setting value, with the second setting power Light modulation output;
D5. the 4th time slice after third time slice reads intensity of illumination data, if intensity of illumination is less than the first light intensity Setting value, then with the second setting power light modulation output;If intensity of illumination is greater than the first light intensity setting value and is less than third light intensity Setting value, then with the first setting power light modulation output;If intensity of illumination is greater than third light intensity setting value, 0% light modulation output.
3. intelligent method for controlling street lamps according to claim 2, it is characterized in that: the period that works by day is 8:00- 16:00, night operation period are 16:00-8:00, and segmentation is 16:00-17:00 at the first time, and the second time slice is 17: 00-next day 2:00, third time slice are next day 2:00-next day 4:00, and the 4th time slice is next day 4:00-next day 8: 00。
4. intelligent method for controlling street lamps according to claim 2, it is characterized in that: the value of the first light intensity setting value Range is 16lux-30lux, and the value range of the second light intensity setting value is 5lux-15lux, the value model of third light intensity setting value Enclosing is 55lux-75lux.
5. intelligent method for controlling street lamps according to claim 2, it is characterized in that: the value model of the first setting power Enclosing is 35%-69%, and the value range of the second setting power is 70%-95%.
6. intelligent method for controlling street lamps according to claim 1, it is characterized in that: the value range of the setting time is - 6 seconds 1 second, the multiple value range was 3 times -10 times.
CN201710373103.6A 2017-05-24 2017-05-24 Intelligent method for controlling street lamps Active CN107087325B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710373103.6A CN107087325B (en) 2017-05-24 2017-05-24 Intelligent method for controlling street lamps

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710373103.6A CN107087325B (en) 2017-05-24 2017-05-24 Intelligent method for controlling street lamps

Publications (2)

Publication Number Publication Date
CN107087325A CN107087325A (en) 2017-08-22
CN107087325B true CN107087325B (en) 2018-12-25

Family

ID=59607554

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201710373103.6A Active CN107087325B (en) 2017-05-24 2017-05-24 Intelligent method for controlling street lamps

Country Status (1)

Country Link
CN (1) CN107087325B (en)

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109951930A (en) * 2017-12-20 2019-06-28 中移物联网有限公司 A kind of method, equipment and the device of lamp terminal control
CN108684100B (en) * 2018-04-02 2021-03-26 佛山市易恒照明光电有限公司 Mirror lamp with memory function
CN109067831A (en) * 2018-06-26 2018-12-21 广州辰创科技发展有限公司 A kind of monitoring method for road lamps, device, server, system and storage medium
CN109041380A (en) * 2018-08-15 2018-12-18 中国船舶工业集团公司第七0八研究所 A kind of ship intelligent lighting system and its control method

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101228433B1 (en) * 2012-06-25 2013-01-31 (주)오로라이앤아이 Led light module capable of remote management
CN103281827B (en) * 2013-05-23 2015-06-17 中国科学院自动化研究所 LED (Light-Emitting Diode) street lamp intelligent control system and method for dynamically feeding back load balance
CN103391674B (en) * 2013-08-20 2015-04-15 广州中国科学院软件应用技术研究所 Street lamp control method and device

Also Published As

Publication number Publication date
CN107087325A (en) 2017-08-22

Similar Documents

Publication Publication Date Title
CN107087325B (en) Intelligent method for controlling street lamps
CN208638766U (en) Street Lamp Monitor System based on lora technology
CN106879135A (en) A kind of LoRa wireless intelligence street lamps Lighting Control Assembly
CN114928924B (en) Intelligent street lamp control system based on urban road management
CN105376904B (en) The computational methods of fractional energy savings in a kind of intelligent lighting
CN104853469A (en) Street lamp illumination control system
CN110167232A (en) A kind of lighting control system and method
CN106941754A (en) A kind of eMTC intelligent wireless Lighting Control Assembly
CN103249232A (en) Intelligent streetlamp illumination control system
CN202210891U (en) Intelligent stepless dimming LED (Light-Emitting Diode) street lamp
CN111654961A (en) Street lamp brightness monitoring method for street lamp system
CN203352881U (en) LED street lamp illumination control system based on wireless technologies
CN105101520A (en) Lamp control method and device and control system
CN105554945A (en) Solar street lamp-based control system, single-lamp controllers and centralized controller
CN105263241B (en) The computational methods of street lamp bright light rate in a kind of street lighting
Soh et al. Intelligent street lighting for smart cities
CN2872789Y (en) Ventilation illuminating controller of tunnel
CN2922367Y (en) Outdoor headlamp intelligent light time controller
CN101252799A (en) Energy-saving road lamp intelligent control method
CN204259222U (en) A kind of Intelligent street lamp control system
CN207135323U (en) A kind of LED street lamp wisdom illumination control apparatus
CN108419342B (en) Linkage control system and control method of wireless intelligent street lamp
CN104185349A (en) Advertising lamp with real-time lighting effect control function
CN215898052U (en) Intelligent dimming light controller and system
Sowa Lighting control systems using daylight to optimise energy efficiency of the building

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant