CN109184801A - Tunnel electromechanical tube control system and method - Google Patents
Tunnel electromechanical tube control system and method Download PDFInfo
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- CN109184801A CN109184801A CN201811292061.4A CN201811292061A CN109184801A CN 109184801 A CN109184801 A CN 109184801A CN 201811292061 A CN201811292061 A CN 201811292061A CN 109184801 A CN109184801 A CN 109184801A
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- 238000000034 method Methods 0.000 title claims abstract description 24
- 238000004891 communication Methods 0.000 claims abstract description 30
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 claims description 16
- UGFAIRIUMAVXCW-UHFFFAOYSA-N Carbon monoxide Chemical compound [O+]#[C-] UGFAIRIUMAVXCW-UHFFFAOYSA-N 0.000 claims description 13
- 229910002091 carbon monoxide Inorganic materials 0.000 claims description 13
- 238000005286 illumination Methods 0.000 claims description 5
- 239000013307 optical fiber Substances 0.000 claims description 4
- 238000012423 maintenance Methods 0.000 abstract description 6
- 230000005662 electromechanics Effects 0.000 abstract description 4
- 238000012544 monitoring process Methods 0.000 description 7
- 238000007689 inspection Methods 0.000 description 6
- 230000009286 beneficial effect Effects 0.000 description 4
- 238000010276 construction Methods 0.000 description 4
- 238000010586 diagram Methods 0.000 description 4
- 230000005540 biological transmission Effects 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 230000008859 change Effects 0.000 description 1
- 238000013480 data collection Methods 0.000 description 1
- 230000007812 deficiency Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 230000006855 networking Effects 0.000 description 1
- 230000003287 optical effect Effects 0.000 description 1
- 238000012545 processing Methods 0.000 description 1
- 238000011084 recovery Methods 0.000 description 1
- 230000008439 repair process Effects 0.000 description 1
- 238000004088 simulation Methods 0.000 description 1
Classifications
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- E—FIXED CONSTRUCTIONS
- E21—EARTH OR ROCK DRILLING; MINING
- E21F—SAFETY DEVICES, TRANSPORT, FILLING-UP, RESCUE, VENTILATION, OR DRAINING IN OR OF MINES OR TUNNELS
- E21F17/00—Methods or devices for use in mines or tunnels, not covered elsewhere
- E21F17/18—Special adaptations of signalling or alarm devices
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Abstract
The application provides a kind of tunnel electromechanical tube control system and method, is related to vcehicular tunnel electromechanics control field, which includes: electromechanical equipment, acquisition controller and top level control system;Electromechanical equipment is set in tunnel, and acquisition controller is arranged in a one-to-one correspondence with electromechanical equipment, and acquisition controller is connect with top level control system communication;Acquisition controller is used to obtain the tunnel information in corresponding electromechanical equipment preset range, and tunnel information is reported to top level control system;Top level control system issues operational order to acquisition controller according to tunnel information for receiving tunnel information;Acquisition controller is connected with corresponding electromechanical equipment, the operational order for being issued according to top level control system, is controlled corresponding electromechanical equipment and is executed corresponding operation.Using the tunnel electromechanical tube control system and method, the reliability that electromechanical equipment works in tunnel can be effectively improved, reduces the lookup maintenance difficulties during operation.
Description
Technical field
This application involves vcehicular tunnel electromechanics to manage field, in particular to a kind of tunnel electromechanical tube control system and side
Method.
Background technique
Highway is that people's trip brings great convenience, but the tunnel of highway is the ring of relative closure
Border is unfavorable for timely discovery processing once emergency case occurs.Therefore, equipped with perfect monitoring system in freeway tunnel
System, convenient for scenting a hidden danger in time.
Monitoring system in freeway tunnel includes a variety of electromechanical equipments, so also needing to the electromechanical equipment in tunnel
Carry out data collection and control, to guarantee the normal operation of electromechanical equipment in tunnel.In the prior art, generally by tunnel
In be spaced in intervals setting programmable logic controller (PLC) (Programmable Logic Controller, PLC), will be certain
Electromechanical equipment concentration in range is connected on nearest programmable logic controller (PLC), to realize the acquisition and control to electromechanical equipment
System.
But above-mentioned electromechanical equipment acquisition and control mode will affect when not only making programmable controller equipment fault
It can not work normally to multiple electromechanical equipments, and carry out searching maintenance also extremely inconvenience during operation.
Summary of the invention
The purpose of the application is, in view of the deficiency of the prior art, provide a kind of tunnel electromechanical tube control system and
Method can effectively improve the reliability of electromechanical equipment work, reduce the lookup maintenance difficulties during operation.
To achieve the above object, technical solution used by the embodiment of the present application is as follows:
In a first aspect, the embodiment of the present application provides a kind of tunnel electromechanical tube control system, comprising: electromechanical equipment, acquisition control
Device and top level control system;Electromechanical equipment is set in tunnel, and acquisition controller is arranged in a one-to-one correspondence with electromechanical equipment, acquisition control
Device processed is connect with top level control system communication;
The acquisition controller is used to obtain the tunnel information of tunnel information acquisition device acquisition, and by the tunnel information
It is reported to the top level control system;
Top level control system issues operational order to acquisition controller according to tunnel information for receiving tunnel information;
Acquisition controller is connected with corresponding electromechanical equipment, the operational order for being issued according to top level control system, control
It makes corresponding electromechanical equipment and executes corresponding operation.
Optionally, tunnel information include: tunnel illuminance, tunnel wind speed and direction, carbon monoxide visibility in tunnel, with
And fire-fighting water in tunnel is pressed and water level.
Optionally, electromechanical equipment includes: lane indicator, traffic lights, air blower control cabinet, Lighting control cabinet and water pump
Control cabinet.
As described above, acquisition controller is for controlling correspondence when acquisition controller and top level control system communication are interrupted
Electromechanical equipment by predetermined period operate or keep preset state.
As described above, being equipped with tunnel information acquisition device corresponding with electromechanical equipment in electromechanical equipment preset range;Tunnel
Information collecting device is connected with corresponding acquisition controller, for acquiring the tunnel information in electromechanical equipment preset range, and will
Tunnel information is sent to corresponding acquisition controller.
Optionally, tunnel information acquisition device includes: that light intensity detector, wind speed and direction detector, carbon monoxide can be shown in
Spend detector, hydraulic pressure detector and level switch.
Optionally, acquisition controller passes through Ethernet, optical fiber and RS (Recommended Standard, proposed standard)
Any one of 485 buses are connect with top level control system communication.
Optionally, acquisition controller using wall hanging mode be set in tunnel or electromechanical equipment control cabinet in.
Second aspect, the embodiment of the present application also provide a kind of tunnel electromechanical tube prosecutor method, and the method is applied to such as first
Electromechanical tube control system in tunnel described in aspect, which comprises
Obtain the tunnel information in corresponding electromechanical equipment preset range;
Operational order is issued according to tunnel information;
Corresponding electromechanical equipment, which is controlled, according to operational order executes corresponding operation.
As described above, when tunnel electromechanical tube control system communication is interrupted, the method also includes:
It controls corresponding electromechanical equipment and is operated or kept preset state by predetermined period.
The beneficial effect of the application is:
In a first aspect, acquisition controller gets tunnel letter in electromechanical tube control system in tunnel provided by the embodiments of the present application
After breath, tunnel information is reported to the top level control system of communication connection, top level control system is controlled according to tunnel information to acquisition
Device processed issues operational order.Acquisition controller executes corresponding behaviour according to the electromechanical equipment of the operational order control connection received
Make.Wherein, acquisition controller is arranged in a one-to-one correspondence with electromechanical equipment, so that realizing one between acquisition controller and electromechanical equipment
To a control nearby, the problem of can be avoided due to acquisition controller failure and multiple electromechanical equipments caused to be unable to run, thus
The reliability of electromechanical equipment work is effectively increased, while reducing the lookup maintenance difficulties during operation.In addition, above-mentioned adopt
Collect the one-to-one mode controlled nearby between controller and electromechanical equipment, additionally it is possible to reduce deployment difficulty, save construction cost.
Second aspect, electromechanical tube prosecutor method in tunnel provided by the embodiments of the present application are applied to tunnel as described in relation to the first aspect
Electromechanical managing and control system, therefore have whole beneficial effect brought by above-mentioned first aspect, details are not described herein.
Detailed description of the invention
Technical solution in ord to more clearly illustrate embodiments of the present application, below will be to needed in the embodiment attached
Figure is briefly described, it should be understood that the following drawings illustrates only some embodiments of the application, therefore is not construed as pair
The restriction of range for those of ordinary skill in the art without creative efforts, can also be according to this
A little attached drawings obtain other relevant attached drawings.
Fig. 1 is the tunnel electromechanical tube control system structure diagram that the application first embodiment provides;
Fig. 2 is the tunnel electromechanical tube control system structure diagram that the application second embodiment provides;
Fig. 3 is the tunnel electromechanical tube prosecutor method flow diagram that the application fourth embodiment provides;
Fig. 4 is the tunnel electromechanical tube prosecutor method flow diagram that the 5th embodiment of the application provides.
Specific embodiment
To keep the purposes, technical schemes and advantages of the embodiment of the present application clearer, below in conjunction with the embodiment of the present application
In attached drawing, the technical scheme in the embodiment of the application is clearly and completely described, it is clear that described embodiment is
Some embodiments of the present application, instead of all the embodiments.The application being usually described and illustrated herein in the accompanying drawings is implemented
The component of example can be arranged and be designed with a variety of different configurations.
Therefore, the detailed description of the embodiments herein provided in the accompanying drawings is not intended to limit below claimed
Scope of the present application, but be merely representative of the selected embodiment of the application.Based on the embodiment in the application, this field is common
Technical staff's every other embodiment obtained without creative efforts belongs to the model of the application protection
It encloses.
It should also be noted that similar label and letter indicate similar terms in following attached drawing, therefore, once a certain Xiang Yi
It is defined in a attached drawing, does not then need that it is further defined and explained in subsequent attached drawing.
In the description of the present application, it should be noted that term " center ", "upper", "lower", "left", "right", "vertical",
The orientation or positional relationship of the instructions such as "horizontal", "inner", "outside" is to be based on the orientation or positional relationship shown in the drawings, or be somebody's turn to do
Application product using when the orientation or positional relationship usually put, be merely for convenience of description the application and simplify description, without
It is that the device of indication or suggestion meaning or element must have a particular orientation, be constructed and operated in a specific orientation, therefore not
It can be interpreted as the limitation to the application.In addition, term " first ", " second ", " third " etc. are only used for distinguishing description, and cannot manage
Solution is indication or suggestion relative importance.
In addition, the terms such as term "horizontal", "vertical" are not offered as requiring component abswolute level or pendency, but can be slightly
Low dip.It is not to indicate that the structure has been had to if "horizontal" only refers to that its direction is more horizontal with respect to for "vertical"
It is complete horizontal, but can be slightly tilted.
In the description of the present application, it is also necessary to which explanation is unless specifically defined or limited otherwise, term " setting ",
" installation ", " connected ", " connection " shall be understood in a broad sense, for example, it may be fixedly connected, may be a detachable connection or one
Connect to body;It can be mechanical connection, be also possible to be electrically connected;It can be directly connected, it can also be indirect by intermediary
It is connected, can be the connection inside two elements.For the ordinary skill in the art, on being understood with concrete condition
State the concrete meaning of term in this application.
First embodiment:
As shown in Figure 1, the present embodiment provides a kind of tunnel electromechanical tube control systems, comprising: electromechanical equipment 110, acquisition control
Device 120 and top level control system 130;Electromechanical equipment 110 is set in tunnel, and acquisition controller 120 and electromechanical equipment 110 are one by one
It is correspondingly arranged, acquisition controller 120 and top level control system 130 communicate to connect;Acquisition controller 120 is for obtaining tunnel information
The tunnel information of acquisition device acquisition, and tunnel information is reported to top level control system 130;Top level control system 130 is used for
Tunnel information is received, operational order is issued to acquisition controller 120 according to tunnel information;Acquisition controller 120 and corresponding machine
Electric equipment 110 connects, the operational order for being issued according to top level control system 130, controls corresponding electromechanical equipment 110 and executes
Corresponding operation.
Specifically, tunnel information acquisition device can be light intensity detector, wind speed and direction detector, carbon monoxide and can see
Spend detector, hydraulic pressure detector and level switch etc., tunnel information acquisition device is set to the pre- of electromechanical equipment 110 in tunnel
If being connect with acquisition controller 120, in range (such as 20 meters or 50 meters of preset ranges) so that acquisition controller 120 can
Get the tunnel information in 110 preset range of electromechanical equipment.Optionally, tunnel information acquisition device and acquisition controller 120
Between can be wirelessly connected by modes such as Wi-Fi or bluetooths, can also be realized by way of wired connection data transmit, this Shen
Please it is not limited here.
Optionally, in the embodiment of the present application, tunnel information includes: tunnel illuminance, tunnel wind speed and direction, in tunnel
Carbon monoxide visibility and tunnel fire-fighting water pressure and water level.Electromechanical equipment 110 includes: lane indicator, traffic signals
Lamp, air blower control cabinet, Lighting control cabinet and water pump control cabinet.
After acquisition controller 120 gets tunnel information, tunnel information is reported to the top level control system of communication connection
System 130, top level control system 130 issues operational order to acquisition controller 120 according to tunnel information.Acquisition controller 120
Corresponding operation is executed according to the electromechanical equipment 110 of the operational order control connection received, for example, acquisition controller 120 can root
According to operational order control air blower control cabinet, realize tunnel inner blower rotating forward, anyway with stop etc., or control Lighting control cabinet from
And realize the switch etc. of tunnel intraoral illumination system.
From the above mentioned, in the embodiment of the present application, acquisition controller 120 is arranged in a one-to-one correspondence with electromechanical equipment 110, acquisition
Controller 120 gets tunnel information, and tunnel information is sent to top level control system 130,130 basis of top level control system
Tunnel information issues operational order to acquisition controller 120, and further, acquisition controller 120 controls electromechanical according to operational order
Equipment 110 executes corresponding operation, to realize the one-to-one nearest control between acquisition controller 120 and electromechanical equipment 110
System, the problem of can be avoided due to 120 failure of acquisition controller and multiple electromechanical equipments 110 is caused to be unable to run, thus effectively
The reliability of the work of electromechanical equipment 110 is improved, while reducing the lookup maintenance difficulties during operation.
In addition, due in the prior art by being spaced in intervals setting programmable logic controller (PLC) in tunnel
A certain range of electromechanical equipment 110 concentration is connected to nearest by (Programmable Logic Controller, PLC)
On programmable logic controller (PLC), to realize acquisition and control to electromechanical equipment 110, therefore often led because cable is too long
It causes cable cost excessively high, and leads to problems such as cost excessively high because the big accessory of programmable logic controller (PLC) equipment volume more.
And in technical solution provided by the embodiments of the present application, it is arranged a pair of between acquisition controller 120 and electromechanical equipment 110
One mode controlled nearby is not necessarily to too long cable, and acquisition controller 120 is small in size, accessory is few, and deployment is easy, so as to
Construction cost is enough effectively reduced.Optionally, in the embodiment of the present application, acquisition controller 120 can also get corresponding machine
The operation information of electric equipment 110, and operation information is sent to top level control system 130 in real time, so that being located at top level control system
The monitoring personnel at 130 ends can in real time inspection tunnel electromechanical equipment 110 operation information.
In the embodiment of the present application, settable processor and multiple interfaces on acquisition controller 120, such as power interface lead to
Believe interface, analog input interface, switch value input interface and output switch parameter interface, external power supply and the acquisition controller
120 power interface connection, powers for acquisition controller 120.Top level control system 130 can pass through communication interface and acquisition control
Communication connection is established between device 120, realizes data transmission.Tunnel information acquisition device in tunnel can be with acquisition controller 120
Analog input interface connection, collected tunnel information analog signal is sent to analog input interface, and pass through mould
Analog quantity input interface is converted into tunnel information digital signal and is sent to processor.Processor can be by the tunnel information received number
Signal is sent to the top level control system 130 communicated to connect between acquisition controller 120, is used for top level control system 130
Operational order is issued to acquisition controller 120 according to tunnel information digital signal.
In addition, the electromechanical equipment 110 in tunnel can pass through switch value input interface and output switch parameter interface and adopt respectively
Collect controller 120 to connect, so that processor can receive the operation information of electromechanical equipment 110, processor will be received
The operation information of electromechanical equipment 110 can be sent to top level control system 130 in real time, in order to which monitoring personnel being capable of real time inspection
The operating status of electromechanical equipment 110 in tunnel.
Further, processor is also used to receive the operation that top level control system 130 is issued according to tunnel information digital signal
Instruction.After processor receives the operational order that top level control system 130 issues, electromechanical equipment is controlled according to operational order
110 execute corresponding operation.To keep the technical solution of the embodiment of the present application clearer, the application is electromechanical to above-mentioned tunnel at this
Managing and control system is illustrated by following application example:
Application example one:
In ventilating system in tunnel, electromechanical equipment 110 is air blower control cabinet, and the analog quantity of acquisition controller 120 is defeated
Incoming interface is connect with tunnel informations acquisition devices such as wind speed and direction detector, carbon monoxide visibility detectors, wind speed and direction inspection
Survey device, carbon monoxide visibility detector collects tunnel wind speed and direction respectively, the tunnels such as carbon monoxide visibility in tunnel
Information simulation signal, and convert tunnel information digital signal for tunnel information analog signal and be sent to processor;Acquisition control
The switch value input interface and output switch parameter interface of device 120 are connect with air blower control cabinet, enable a processor to get
The operation information of air blower control cabinet;Acquisition controller 120 passes through to be communicated to connect between communication interface and top level control system 130,
The operation information of the tunnel information digital signal and air blower control cabinet that receive can be sent in real time top level control by processor
System 130.Monitoring personnel can by the operating status of 130 real time inspection tunnel inner blower control cabinet of top level control system, with
And top level control system 130 can send operational order to processor according to tunnel information digital signal, processor can be according to behaviour
Make instruction control air blower control cabinet, further controls rotating forward, reversion and the stopping etc. of tunnel inner blower.
Application example two:
In the lighting system in tunnel, electromechanical equipment 110 is Lighting control cabinet, the analog input of acquisition controller 120
Interface is connect with light intensity detector, and light intensity detector collects the tunnel informations mould such as tunnel illuminance or tunnel visibility energy
Quasi- signal, and convert tunnel information digital signal for tunnel information analog signal and be sent to processor;Acquisition controller 120
Switch value input interface and output switch parameter interface are connect with Lighting control cabinet, enable a processor to get Lighting control
The operation information of cabinet;Acquisition controller 120 between communication interface and top level control system 130 by communicating to connect, processor energy
The operation information of enough tunnel information digital signals and Lighting control cabinet that will be received, is sent to top level control system 130 in real time.
Monitoring personnel can be controlled by the operating status of 130 real time inspection tunnel intraoral illumination control cabinet of top level control system and upper layer
System 130 processed can send operational order to processor according to tunnel information digital signal, and processor can be according to operational order control
Lighting control cabinet processed further controls the brightness of light installations and switch etc. in tunnel intraoral illumination system.
Application example three:
In the fire-fighting system in tunnel, electromechanical equipment 110 is water pump control cabinet, the analog input of acquisition controller 120
Interface is connect with hydraulic pressure detector and level switch, and hydraulic pressure detector and level switch are set to the fire-fighting pond in tunnel
It is interior, the tunnel informations analog signals such as water level information and the hydraulic pressure information in fire-fighting pond are collected respectively, and tunnel information is simulated
Signal is converted into tunnel information digital signal and is sent to processor;The switch value input interface and switching value of acquisition controller 120
Output interface is connect with water pump control cabinet, enables a processor to the operation information for getting water pump control cabinet;Acquisition control
Device 120 between communication interface and top level control system 130 by communicating to connect, the tunnel information number that processor can will receive
The operation information of word signal and water pump control cabinet is sent to top level control system 130 in real time.Monitoring personnel can be controlled by upper layer
The operating status and top level control system 130 of water pump control cabinet can be believed according to tunnel in 130 real time inspection tunnel of system processed
It ceases digital signal and sends operational order to processor, processor can control water pump control cabinet according to operational order, further control
In tunnel in fire-fighting system fire pump switch.
It should be noted that being provided in the embodiment of the present application, in tunnel including above-mentioned a variety of or multiple electromechanical equipments
110, should mutually there are multiple acquisition controllers 120 to be arranged in a one-to-one correspondence with multiple electromechanical equipments 110, therefore acquisition controller 120 can
Be configured or select according to specific corresponding electromechanical equipment 110 so that acquisition controller 120 can control it is corresponding
Electromechanical equipment 110 executes corresponding operation.
Second embodiment:
As shown in Fig. 2, the present embodiment provides a kind of tunnel electromechanical tube control systems, on the basis of above-mentioned first embodiment,
In 110 preset range of electromechanical equipment, it is equipped with tunnel information acquisition device 140 corresponding with electromechanical equipment 110;Tunnel information acquisition
Device 140 is connected with corresponding acquisition controller 120, for acquiring the tunnel information in 110 preset range of electromechanical equipment, and will
Tunnel information is sent to corresponding acquisition controller 120.
Specifically, tunnel information acquisition device 140 may is that light intensity detector, wind speed and direction detector, carbon monoxide
Visibility detector, hydraulic pressure detector and level switch etc..Tunnel information acquisition device 140 is arranged in electromechanical equipment 110
(such as away from the range in 50 meters at electromechanical equipment 110) in preset range, tunnel information acquisition device 140 can be made to collect
Tunnel information be more nearly ambient enviroment locating for electromechanical equipment 110 so that top level control system 130 can be according to tunnel
Road information issues more accurate operational order to acquisition controller 120, so that acquisition controller 120 controls electromechanical equipment 110
It is more preferable to execute the effect reached after corresponding operation.
3rd embodiment:
The present embodiment provides a kind of tunnel electromechanical tube control systems to work as acquisition control based on any of the above embodiments
When device 120 and 130 communication disruption of top level control system, acquisition controller 120 is for controlling corresponding electromechanical equipment 110 by default
Period run keeps preset state.
Specifically, whether just acquisition controller 120 can also identify its communication connection between top level control system 130
Often.When recognizing acquisition controller 120 and 130 communication disruption of top level control system, acquisition controller 120 controls corresponding machine
Electric equipment 110 is operated or is kept preset state by predetermined period.
For example, settable predetermined period is 3 hours in ventilating system in tunnel, when acquisition controller 120 with it is upper
When layer 130 communication disruption of control system, acquisition controller 120 can starting and stopping every 3 hours carry out blowers, ensure tunnel
Air quality reaches requirement in road.
In lighting system in tunnel, settable predetermined period is 12 hours, or the duration according to daytime and night
Predetermined period is set, when acquisition controller 120 and 130 communication disruption of top level control system, since vehicle on daytime is more, acquisition
Controller 120 can control Lighting control cabinet and open whole light on daytime, and since vehicle at night is less, acquisition controller
120, which can control Lighting control cabinet, only retains necessary illumination at night, saves the energy.
In addition, for the electromechanical equipment 110 of other no setting is required predetermined periods, for example, lane indicator or traffic signals
Lamp etc., when acquisition controller 120 and 130 communication disruption of top level control system, acquisition controller 120 can control the vehicle in tunnel
Track pointer or traffic lights keep current state or preset state (such as: opening or closing) constant, until acquisition control
Device 120 and 130 communication recovery of top level control system.
Optionally, in the embodiment of the present application, acquisition controller 120 passes through Ethernet, optical fiber and RS
Any one of (Recommended Standard, proposed standard) 485 buses are connect with top level control system communication.
Specifically, acquisition controller 120 is equipped with Ethernet interface, standard SFP optical interface and RS485 interface, acquisition control
Device 120 processed can use any one of Ethernet, optical fiber and RS485 bus to realize data between top level control system 130
Transmission, so that 120 networking mode of acquisition controller is flexible, not only further reduced difficulty of construction and cost, but also improve
The reliability of tunnel electromechanical tube control system.
Optionally, in the embodiment of the present application, acquisition controller 120 is set in tunnel using wall hanging mode or electromechanics is set
In standby 110 control cabinets.
Specifically, since in the embodiment of the present application, acquisition controller 120 is arranged in a one-to-one correspondence with electromechanical equipment 110, therefore
The small volume needed, accessory is less, so that acquisition controller 120 can be set in tunnel in the form of wall hanging or machine
In the control cabinet of electric equipment 110, without excavating cavern, deployment is easier flexibly, further simplifies construction and maintenance
Difficulty effectively reduces the overall cost of tunnel electromechanical tube control system.
Fourth embodiment:
The present embodiment provides a kind of tunnel electromechanical tube prosecutor method, the method is applied to above-mentioned first or second embodiments institute
The tunnel electromechanical tube control system stated.
As shown in figure 3, described method includes following steps:
Tunnel information in S101, the corresponding electromechanical equipment preset range of acquisition.
Specifically, in tunnel, electromechanical tube control system includes: acquisition controller, electromechanical equipment and top level control system, electromechanics
Tunnel information acquisition device is equipped in equipment preset range, the setting of preset range referring to described in above-mentioned first embodiment,
In, acquisition controller can (such as: light intensity detector, wind speed and direction detector, carbon monoxide can be shown in tunnel information acquisition device
Spend detector, hydraulic pressure detector and level switch etc.) connection, to get the tunnel letter in electromechanical equipment preset range
Breath, and the tunnel information that will acquire is sent to top level control system.
S102, operational order is issued according to tunnel information.
Specifically, top level control system is after receiving tunnel information, can be according to tunnel information under acquisition controller
Send out operational order.For example, tunnel information is tunnel carbon monoxide visibility, corresponding electromechanical equipment is air blower control cabinet, when upper
Layer control system analysis be when obtaining carbon monoxide visibility exception in tunnel, the behaviour that top level control system is issued to acquisition controller
It instructs are as follows: starting tunnel inner blower, control blower are forward or reverse etc..
S103, corresponding electromechanical equipment execution corresponding operation is controlled according to operational order.
Specifically, after acquisition controller receives the operational order that top level control system issues, can be referred to according to operation
It enables and controls corresponding electromechanical equipment execution corresponding operation.For example, when the operational order that acquisition controller receives is aforementioned step
Starting tunnel inner blower described in rapid S102, control blower rotate forward or anyway etc. whens, acquisition controller can control air-blower control
Cabinet and then the starting of tunnel inner blower is controlled, control blower is forward or reverse etc..
The tunnel electromechanical tube prosecutor method as provided by the present embodiment, is provided applied to aforementioned first or second embodiments
Tunnel electromechanical tube control system, therefore brought beneficial effect is identical as described in aforementioned first or second embodiments, herein
It repeats no more.
5th embodiment:
The present embodiment provides a kind of tunnel electromechanical tube prosecutor methods, applied to tunnel electromechanical tube described in above-mentioned 3rd embodiment
Control system.
As shown in figure 4, described method includes following steps:
S100, judge whether electromechanical tube control system communication connection in tunnel is interrupted.
Specifically, in tunnel electromechanical tube control system, acquisition controller is able to detect it between top level control system
Whether communication connection is interrupted, when acquisition controller detects the broken communication connection between top level control system namely tunnel
When road broken communication connection, following step S201 is executed:
S201, the corresponding electromechanical equipment of control are operated or are kept preset state by predetermined period.
Specifically, when tunnel communication disconnecting, it can not establish and communicate between acquisition controller and top level control system
Connection causes acquisition controller that can not control corresponding electromechanical equipment according to the operational order of top level control system, therefore acquires
Controller can take presupposed solution: it controls corresponding electromechanical equipment and is operated by predetermined period or keep preset state constant, for
The specific explanations of predetermined period or preset state can refer to described in above-mentioned 3rd embodiment.
When acquisition controller detects the communication connection between top level control system normal (not interrupting), successively hold
Row following step S101, S102 and S103:
Tunnel information in S101, the corresponding electromechanical equipment preset range of acquisition.
S102, operational order is issued according to tunnel information.
S103, corresponding electromechanical equipment execution corresponding operation is controlled according to operational order.
Specifically, it to the description of step S101, S102 and S103 in this present embodiment, can refer in above-mentioned fourth embodiment
Described, details are not described herein by the application.
In addition, the tunnel electromechanical tube prosecutor method as provided by the present embodiment, is provided applied to aforementioned third embodiment
Tunnel electromechanical tube control system, therefore brought beneficial effect is identical as described in aforementioned third embodiment, no longer superfluous herein
It states.
The foregoing is merely preferred embodiment of the present application, are not intended to limit this application, for the skill of this field
For art personnel, various changes and changes are possible in this application.Within the spirit and principles of this application, made any to repair
Change, equivalent replacement, improvement etc., should be included within the scope of protection of this application.
Claims (10)
1. a kind of tunnel electromechanical tube control system characterized by comprising electromechanical equipment, acquisition controller and top level control system;
The electromechanical equipment is set in tunnel, and the acquisition controller is arranged in a one-to-one correspondence with the electromechanical equipment, the acquisition control
Device processed is connect with the top level control system communication;
The acquisition controller is used to obtain the tunnel information of tunnel information acquisition device acquisition, and the tunnel information is reported
To the top level control system;
The top level control system is issued according to the tunnel information to the acquisition controller for receiving the tunnel information
Operational order;
The acquisition controller is connected with the corresponding electromechanical equipment, the operation for being issued according to the top level control system
Instruction controls the corresponding electromechanical equipment and executes corresponding operation.
2. electromechanical tube control system in tunnel according to claim 1, which is characterized in that the tunnel information includes: tunnel light
Illumination, tunnel wind speed and direction, carbon monoxide visibility and tunnel fire-fighting water pressure and water level in tunnel.
3. electromechanical tube control system in tunnel according to claim 1, which is characterized in that the electromechanical equipment includes: that lane refers to
Show device, traffic lights, air blower control cabinet, Lighting control cabinet and water pump control cabinet.
4. electromechanical tube control system in tunnel according to claim 1, which is characterized in that when the acquisition controller and it is described on
Layer control system communication disruption when, the acquisition controller for control the corresponding electromechanical equipment by predetermined period operating or
Keep preset state.
5. electromechanical tube control system in tunnel according to claim 1, which is characterized in that in the electromechanical equipment preset range,
Equipped with tunnel information acquisition device corresponding with the electromechanical equipment;The tunnel information acquisition device and the corresponding acquisition
Controller connection is sent to pair for acquiring the tunnel information in the electromechanical equipment preset range, and by the tunnel information
The acquisition controller answered.
6. electromechanical tube control system in tunnel according to claim 5, which is characterized in that the tunnel information acquisition device packet
It includes: light intensity detector, wind speed and direction detector, carbon monoxide visibility detector, hydraulic pressure detector and level switch.
7. electromechanical tube control system in tunnel according to claim 1, which is characterized in that the acquisition controller passes through Ethernet
Any one of network, optical fiber and RS485 bus are connect with the top level control system communication.
8. electromechanical tube control system in tunnel according to claim 1, which is characterized in that the acquisition controller uses wall hanging side
Formula be set in tunnel or the electromechanical equipment control cabinet in.
9. a kind of tunnel electromechanical tube prosecutor method, which is characterized in that the method is applied to as claim 1-8 is described in any item
Tunnel electromechanical tube control system, which comprises
Obtain the tunnel information in corresponding electromechanical equipment preset range;
Operational order is issued according to the tunnel information;
Corresponding electromechanical equipment, which is controlled, according to the operational order executes corresponding operation.
10. electromechanical tube prosecutor method in tunnel according to claim 9, which is characterized in that when the tunnel electromechanical tube control system
When communication disruption, the method also includes:
It controls corresponding electromechanical equipment and is operated or kept preset state by predetermined period.
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CN110430538A (en) * | 2019-07-31 | 2019-11-08 | 中铁四局集团第五工程有限公司 | tunnel production command cockpit |
CN111273603A (en) * | 2020-02-20 | 2020-06-12 | 河北上元智能科技股份有限公司 | Monitoring system and method for road tunnel electromechanical equipment |
CN111720168A (en) * | 2020-06-15 | 2020-09-29 | 河南隧安智能科技有限公司 | Regional control center for highway tunnel electromechanical facility comprehensive management and control system |
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