CN221485825U - Programmable logic controller redundancy system - Google Patents
Programmable logic controller redundancy system Download PDFInfo
- Publication number
- CN221485825U CN221485825U CN202323040836.8U CN202323040836U CN221485825U CN 221485825 U CN221485825 U CN 221485825U CN 202323040836 U CN202323040836 U CN 202323040836U CN 221485825 U CN221485825 U CN 221485825U
- Authority
- CN
- China
- Prior art keywords
- controller
- module
- signal output
- main controller
- relay
- 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
Links
- 230000007274 generation of a signal involved in cell-cell signaling Effects 0.000 claims abstract description 32
- 238000010586 diagram Methods 0.000 description 6
- 230000007246 mechanism Effects 0.000 description 5
- 238000000034 method Methods 0.000 description 2
- 230000002159 abnormal effect Effects 0.000 description 1
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
- 238000002474 experimental method Methods 0.000 description 1
- 238000009776 industrial production Methods 0.000 description 1
- 238000002955 isolation Methods 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000008054 signal transmission Effects 0.000 description 1
Classifications
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P90/00—Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
- Y02P90/02—Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]
Landscapes
- Safety Devices In Control Systems (AREA)
Abstract
The invention relates to a programmable logic controller redundancy system which comprises a main controller, a secondary controller, a digital signal input module, a digital signal output module, an analog signal input module, an analog signal output module and a fault signal generation module, wherein the main controller and the secondary controller are connected with the digital signal input module, the digital signal output module, the analog signal input module and the analog signal output module, the main controller is connected with the fault signal generation module, and the fault signal generation module is connected with the digital signal output module and the analog signal output module. Compared with the prior art, the invention can construct a redundant system through the main controller and the auxiliary controller with different models, and has the advantages of wide applicability, lower cost and the like.
Description
Technical Field
The invention relates to the field of circuit control, in particular to a programmable logic controller redundancy system.
Background
In industries where the reliability of the system is high, such as power, petrochemical, etc., it is necessary to ensure that the industrial production system is operated continuously for a certain period of time. If the control system fails, a significant loss is incurred. In this case, therefore, redundant systems are created.
In the existing Programmable Logic Controller (PLC) product, only one controller module can have control right to the output module of the whole control system when the system works normally, the controller is called a main controller, and other control modules can uniformly receive the data of the input module, so that the redundant main work is a backup controller, the working state of the main controller is monitored in real time, and if the main controller enters an abnormal working state, the backup controller receives the control right. And meanwhile, the control right of the main controller to the system is canceled. Thus, the system can be ensured to work with the normal controller all the time. However, such redundancy systems require that the primary controller and the backup controller have the same firmware version type, and when the two types are different, the existing redundancy system cannot function properly.
Therefore, it is necessary to design a programmable logic controller redundancy system and control method that can support different types of devices as redundancy modules.
Disclosure of Invention
The invention aims to overcome the prior art and provide a programmable logic controller redundancy system which supports the construction of redundancy systems by using controllers of different models.
The aim of the invention can be achieved by the following technical scheme:
The system comprises a main controller, a secondary controller, a digital signal input module, a digital signal output module, an analog signal input module, an analog signal output module and a fault signal generation module, wherein the main controller and the secondary controller are connected with the digital signal input module, the digital signal output module, the analog signal input module and the analog signal output module, the main controller is connected with the fault signal generation module, and the fault signal generation module is connected with the digital signal output module and the analog signal output module.
Further, the digital signal input module comprises a main controller digital signal input clamping piece, a secondary controller digital signal input clamping piece, a first relay, a power supply and a pressure switch, wherein the main controller digital signal input clamping piece and the secondary controller digital signal input clamping piece are respectively connected with the first relay, and the first relay, the power supply and the pressure switch are connected in series to form a loop.
Further, the digital signal output module comprises a main controller digital signal output clamping piece, a secondary controller digital signal output clamping piece, a second relay, a third relay, an electromagnetic valve and a fault signal generation module output end, wherein the main controller digital signal output clamping piece and the secondary controller digital signal output clamping piece are respectively connected with the second relay, the second relay is respectively connected with the third relay and the fault signal generation module output end, and the third relay is respectively connected with the electromagnetic valve and the fault signal generation module output end.
Further, the analog signal input module comprises a main controller analog signal input clamping piece, a sub-controller analog signal input clamping piece, a distributor and a transmitter, wherein the main controller analog signal input clamping piece and the sub-controller analog signal input clamping piece are respectively connected with the distributor, and the distributor is connected with the transmitter.
Further, the analog signal output module comprises a main controller analog signal output port, a secondary controller analog signal output port, a fourth relay, an actuating mechanism and a fault signal generation module output end, wherein the main controller analog signal output port and the secondary controller analog signal output port are respectively connected with the fourth relay, and the fourth relay is respectively connected with the actuating mechanism and the fault signal generation module output end.
Further, the fault signal generating module comprises a first control signal output interface of the main controller, a second control signal output interface of the main controller, a fifth relay and an output end of the fault signal generating module, wherein the first control signal output interface of the main controller and the second control signal output interface of the main controller are connected in parallel and are connected with the fifth relay, and the fifth relay is connected with the output end of the fault signal generating module.
Further, when the main controller fails, the first control signal output interface of the main controller and the second control signal output interface of the main controller are disconnected.
Further, the fifth relay comprises a normally open contact and a normally closed contact, the output end of the fault signal generating module is connected with the normally closed contact, when the first control signal output interface of the main controller and the second control signal output interface of the main controller are disconnected, the fifth relay is powered off, the normally closed contact is connected, and the output end of the fault signal generating module outputs current.
Further, the main controller, the auxiliary controller, the digital signal input module, the digital signal output module, the analog signal input module, the analog signal output module and the fault signal generation module are all provided with a signal loss self-holding module.
Further, the main controller model is AB Logix5000, and the auxiliary controller model is AB SLC500.
Compared with the prior art, the invention has the following beneficial effects:
1) In the invention, signals are synchronously input to the main controller and the auxiliary controller through the digital signal input module and the analog signal input module, so that the information synchronization is ensured; when a fault occurs, the fault signal generating module activates the digital signal output module and the analog signal output module, so that the redundant switching of the controller is realized, the applicability is wide, and the cost is low.
2) The invention uses the relay and the distributor to make signal isolation, so that the signals can not be influenced mutually, and the signal transmission stability is ensured.
3) The invention can select the main controller and the auxiliary controller with different models to realize the switching control, and has high universality.
Drawings
Fig. 1 is a schematic diagram of the overall structure of the system of the present invention.
Fig. 2 is a schematic structural diagram of the digital signal input module of the present invention.
Fig. 3 is a schematic structural diagram of the digital signal output module of the present invention.
Fig. 4 is a schematic structural diagram of an analog signal input module according to the present invention.
Fig. 5 is a schematic structural diagram of an analog signal output module according to the present invention.
Fig. 6 is a schematic structural diagram of a fault signal generating module according to the present invention.
The figure indicates: 1. the device comprises a main controller, 2, a secondary controller, 3, a digital signal input module, 4, a digital signal output module, 5, an analog signal input module, 6, an analog signal output module, 7, a fault signal generation module, 11, a main controller digital signal input clamping piece, 12, a main controller digital signal output clamping piece, 13, a main controller analog signal input clamping piece, 14, a main controller analog signal output port, 15, a main controller first control signal output interface, 16, a main controller second control signal output interface, 21, a secondary controller digital signal input clamping piece, 22, a secondary controller digital signal output clamping piece, 23, a secondary controller analog signal input clamping piece, 24, a secondary controller analog signal output port, 31, a first relay, 32, a power supply, 33, a pressure switch, 41, a second relay, 42, a third relay, 43, an electromagnetic valve, 51, a distributor, 52, a transmitter, 62, an actuator, 61, a fourth relay, 70, a fault signal generation module output end, 71 and a fifth relay.
Detailed Description
The invention will now be described in detail with reference to the drawings and specific examples. The present embodiment is implemented on the premise of the technical scheme of the present invention, and a detailed implementation manner and a specific operation process are given, but the protection scope of the present invention is not limited to the following examples.
Example 1
The invention relates to a programmable logic controller redundancy system, as shown in fig. 1, which comprises a main controller 1, a secondary controller 2, a digital signal input module 3, a digital signal output module 4, an analog signal input module 5, an analog signal output module 6 and a fault signal generation module 7, wherein the main controller 1 and the secondary controller 2 are connected with the digital signal input module 3, the digital signal output module 4, the analog signal input module 5 and the analog signal output module 6, the main controller 1 is connected with the fault signal generation module 7, and the fault signal generation module 7 is connected with the digital signal output module 4 and the analog signal output module 6.
As shown in fig. 2, the digital signal input module includes a main controller digital signal input card 11, a sub-controller digital signal input card 21, a first relay 31, a power supply 32 and a pressure switch 33, wherein the main controller digital signal input card 11 and the sub-controller digital signal input card 21 are respectively connected with the first relay 31, and the first relay 31, the power supply 32 and the pressure switch 33 are connected in series and form a loop;
The pressure switch 33 is closed, the loop is closed, the coil of the first relay 31 is electrified, the digital signal input clamping piece 11 of the main controller and the digital signal input clamping piece 21 of the auxiliary controller are closed, and the redundant system is in an operating state.
As shown in fig. 3, the digital signal output module includes a main controller digital signal output card 12, a sub-controller digital signal output card 22, a second relay 41, a third relay 42, an electromagnetic valve 43, and a fault signal generation module output end 70, the main controller digital signal output card 12 and the sub-controller digital signal output card 22 are respectively connected to the second relay 41, the second relay 41 is respectively connected to the third relay 42 and the fault signal generation module output end 70, and the third relay 41 is respectively connected to the electromagnetic valve 43 and the fault signal generation module output end 70; when the main controller is normal, the main controller is connected to the solenoid valve 43.
As shown in fig. 4, the analog signal input module includes a main controller analog signal input card 13, a sub-controller analog signal input card 23, a distributor 51 and a transmitter 52, the main controller analog signal input card 13 and the sub-controller analog signal input card 23 are respectively connected with the distributor 51, and the distributor 51 is connected with the transmitter 52;
The signals of the transmitter 52 can be simultaneously sent to the main controller 1 and the auxiliary controller 2, so that the analog signal input received by the two controllers is identical, and the input of each controller is consistent after the control switching occurs.
As shown in fig. 5, the analog signal output module includes a main controller analog signal output port 14, a sub-controller analog signal output port 24, a fourth relay 61, an actuator 62, and a fault signal generation module output 70, the main controller analog signal output port 14 and the sub-controller analog signal output port 24 are respectively connected to the fourth relay 61, and the fourth relay 61 is respectively connected to the actuator 62 and the fault signal generation module output 70; when the master controller is normal, the master controller is connected to the actuator 62.
As shown in fig. 6, the fault signal generating module 70 includes a main controller first control signal output interface 15, a main controller second control signal output interface 16, a fifth relay 71, and a fault signal generating module output 70, where the main controller first control signal output interface 15 and the main controller second control signal output interface 16 are connected in parallel and connected to the fifth relay 71, and the fifth relay 71 is connected to the fault signal generating module output 70.
When the main controller is normal, the first control signal output interface 15 of the main controller and the second control signal output interface 16 of the main controller are connected, the coil of the fifth relay 71 is electrified, and the output end 70 of the fault signal generating module is disconnected, so that no current is generated;
When the main controller fails, the first control signal output interface 15 of the main controller and the second control signal output interface 16 of the main controller are disconnected, at the moment, the coil of the fifth relay 71 is deenergized, the output end 70 of the fault signal generation module is closed, current is generated and transmitted to the second relay 32, the third relay 41 and the fourth relay 61, the coils of the second relay 32, the third relay 41 and the fourth relay 61 are closed, the analog signal output port 12 of the main controller and the analog signal output port 14 of the main controller are disconnected, the analog signal output port 22 of the auxiliary controller and the analog signal output port 24 of the auxiliary controller are connected, so that the auxiliary controller 2 is connected with the electromagnetic valve 43 and the actuating mechanism 62, and the control switching of a redundant system is realized;
The primary controller first control signal output interface 15 and the primary controller second control signal output interface 16 are closed again, the coil of the fifth relay 71 is electrified, the output end 70 of the fault signal generating module is disconnected, the output current is stopped, the second relay 32, the third relay 41 and the fourth relay 61 are powered off, the primary controller analog signal output port 12 and the primary controller analog signal output port 14 are connected, the secondary controller analog signal output port 22 and the secondary controller analog signal output port 24 are disconnected, the primary controller 1 is reconnected with the electromagnetic valve 43 and the actuating mechanism 62, and the control switching of the redundant system is restored.
Preferably, in order to ensure the safe operation of the equipment and prevent the switching failure, all the equipment such as motors, executing mechanisms and the like in the system have a signal loss self-holding function.
In this embodiment, the main controller is an AB logic 5000 series controller, and the sub controller is an AB SLC500 series controller.
The foregoing describes in detail preferred embodiments of the present invention. It should be understood that numerous modifications and variations can be made in accordance with the concepts of the invention by one of ordinary skill in the art without undue burden. Therefore, all technical solutions which can be obtained by logic analysis, reasoning or limited experiments based on the prior art by the person skilled in the art according to the inventive concept shall be within the scope of protection defined by the claims.
Claims (10)
1. The programmable logic controller redundancy system is characterized by comprising a main controller (1), a secondary controller (2), a digital signal input module (3), a digital signal output module (4), an analog signal input module (5), an analog signal output module (6) and a fault signal generation module (7), wherein the main controller (1) and the secondary controller (2) are connected with the digital signal input module (3), the digital signal output module (4), the analog signal input module (5) and the analog signal output module (6), the main controller (1) is connected with the fault signal generation module (7), and the fault signal generation module (7) is connected with the digital signal output module (4) and the analog signal output module (6).
2. A programmable logic controller redundancy system according to claim 1, wherein the digital signal input module (3) comprises a main controller digital signal input card (11), a sub-controller digital signal input card (21), a first relay (31), a power supply (32) and a pressure switch (33), the main controller digital signal input card (11) and the sub-controller digital signal input card (21) are respectively connected to the first relay (31), and the first relay (31), the power supply (32) and the pressure switch (33) are connected in series and form a loop.
3. A programmable logic controller redundancy system according to claim 1, wherein the digital signal output module (4) comprises a main controller digital signal output card (12), a sub controller digital signal output card (22), a second relay (41), a third relay (42), a solenoid valve (43) and a fault signal generation module output (70), the main controller digital signal output card (12) and the sub controller digital signal output card (22) are respectively connected to the second relay (41), the second relay (41) is respectively connected to the third relay (42) and the fault signal generation module output (70), and the third relay (42) is respectively connected to the solenoid valve (43) and the fault signal generation module output (70).
4. The programmable logic controller redundancy system according to claim 1, wherein the analog signal input module (5) comprises a main controller analog signal input card (13), a sub controller analog signal input card (23), a power distributor (51) and a transmitter (52), the main controller analog signal input card (13) and the sub controller analog signal input card (23) are respectively connected to the power distributor (51), and the power distributor (51) is connected to the transmitter (52).
5. A programmable logic controller redundancy system according to claim 1, wherein the analog signal output module (6) comprises a main controller analog signal output port (14), a sub-controller analog signal output port (24), a fourth relay (61), an actuator (62) and a fault signal generation module output (70), the main controller analog signal output port (14) and the sub-controller analog signal output port (24) are respectively connected to the fourth relay (61), and the fourth relay (61) is respectively connected to the actuator (62) and the fault signal generation module output (70).
6. A programmable logic controller redundancy system according to claim 1, wherein the fault signal generating module (7) comprises a main controller first control signal output interface (15), a main controller second control signal output interface (16), a fifth relay (71) and a fault signal generating module output (70), the main controller first control signal output interface (15) and the main controller second control signal output interface (16) are connected in parallel and are connected to the fifth relay (71), and the fifth relay (71) is connected to the fault signal generating module output (70).
7. A programmable logic controller redundancy system according to claim 6, characterized in that the main controller first control signal output interface (15) and the main controller second control signal output interface (16) are disconnected when the main controller (1) fails.
8. A programmable logic controller redundancy system according to claim 7, wherein the fifth relay (71) comprises a normally open contact and a normally closed contact, the fault signal generating module output (70) is connected to the normally closed contact, the fifth relay (71) is de-energized when the main controller first control signal output interface (15) and the main controller second control signal output interface (16) are disconnected, the normally closed contact is turned on, and the fault signal generating module output (70) outputs current.
9. The programmable logic controller redundancy system according to claim 1, wherein the main controller (1), the sub controller (2), the digital signal input module (3), the digital signal output module (4), the analog signal input module (5), the analog signal output module (6) and the fault signal generation module (7) are all provided with a signal loss self-holding module.
10. A programmable logic controller redundancy system according to claim 1, wherein the main controller (1) is AB logic 5000 and the sub-controller (2) is AB SLC500.
Priority Applications (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202323040836.8U CN221485825U (en) | 2023-11-10 | 2023-11-10 | Programmable logic controller redundancy system |
JP2024002773U JP3248777U (en) | 2023-11-10 | 2024-08-19 | Programmable Logic Controller Redundancy System |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202323040836.8U CN221485825U (en) | 2023-11-10 | 2023-11-10 | Programmable logic controller redundancy system |
Publications (1)
Publication Number | Publication Date |
---|---|
CN221485825U true CN221485825U (en) | 2024-08-06 |
Family
ID=92368394
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202323040836.8U Active CN221485825U (en) | 2023-11-10 | 2023-11-10 | Programmable logic controller redundancy system |
Country Status (2)
Country | Link |
---|---|
JP (1) | JP3248777U (en) |
CN (1) | CN221485825U (en) |
-
2023
- 2023-11-10 CN CN202323040836.8U patent/CN221485825U/en active Active
-
2024
- 2024-08-19 JP JP2024002773U patent/JP3248777U/en active Active
Also Published As
Publication number | Publication date |
---|---|
JP3248777U (en) | 2024-10-18 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US20070182255A1 (en) | Safety switching module | |
CN102193543B (en) | Control system based on profibus redundant network topological structure and switching method of control system | |
CN105974841B (en) | A kind of output control system applied to fail-safe computer | |
US8188621B2 (en) | Apparatus and method for restricting power delivery | |
CN111816505A (en) | Control circuit of quick-closing electromagnetic valve of nuclear power plant and main steam system | |
KR20180125336A (en) | Nuclear power plant digital protection system | |
CN112531880A (en) | Redundancy control device and method | |
US10386832B2 (en) | Redundant control system for an actuator and method for redundant control thereof | |
CN221485825U (en) | Programmable logic controller redundancy system | |
CN115180003B (en) | Electronic execution unit and redundancy system for railway signal coded fault-oriented safety coding | |
CN217882960U (en) | Redundant switching unit and system | |
CN210377128U (en) | Redundancy automatic control frame of refrigerating system of data machine room | |
CN117406663A (en) | Programmable logic controller redundancy system and control method | |
KR102014691B1 (en) | Remote input-output apparatus for industrial controllers with duplicated power and compler module | |
CN111694271B (en) | Redundancy fault-tolerant control system and method based on distributed control system | |
EP3196913B1 (en) | Relay circuit and method for performing self-test of relay circuit | |
CN111624938A (en) | Redundant output and optimal switching method based on single set of PLC analog output signals | |
CN207232735U (en) | A kind of gas holder control system | |
CN114094614A (en) | MMC flexible direct-current transmission converter valve submodule bypass switch redundancy control device and method | |
WO2019006546A1 (en) | Valve bank communication module with safety i/o | |
CN118739543A (en) | Novel redundant power supply automatic switching and on-line monitoring device | |
CN220538259U (en) | Transmission control device and papermaking equipment | |
CN219086873U (en) | Circuit for improving reliability of control loop based on selection switch | |
CN219918492U (en) | Novel emergency shutdown device for safe power supply | |
CN114743830B (en) | Signal switching circuit, method and system based on relay logic |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant |