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CN209879331U - Terminal for simultaneously recording pass logic cases of multiple gate machines - Google Patents

Terminal for simultaneously recording pass logic cases of multiple gate machines Download PDF

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Publication number
CN209879331U
CN209879331U CN201920697540.8U CN201920697540U CN209879331U CN 209879331 U CN209879331 U CN 209879331U CN 201920697540 U CN201920697540 U CN 201920697540U CN 209879331 U CN209879331 U CN 209879331U
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CN
China
Prior art keywords
control board
logic
sliding rod
gate
sliding
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.)
Expired - Fee Related
Application number
CN201920697540.8U
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Chinese (zh)
Inventor
周聆
程少华
夏劲松
冯强
何加余
龙晓亮
刘乐
张沛
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.)
Operation General Headquarters Of Shenzhen Metro Group Co Ltd
South Bank (wuhan) Information Technology Services Ltd
Original Assignee
Operation General Headquarters Of Shenzhen Metro Group Co Ltd
South Bank (wuhan) Information Technology Services Ltd
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Publication date
Application filed by Operation General Headquarters Of Shenzhen Metro Group Co Ltd, South Bank (wuhan) Information Technology Services Ltd filed Critical Operation General Headquarters Of Shenzhen Metro Group Co Ltd
Priority to CN201920697540.8U priority Critical patent/CN209879331U/en
Application granted granted Critical
Publication of CN209879331U publication Critical patent/CN209879331U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a record terminal of the current logic use case of many floodgates machine simultaneously, this terminal includes: a test platform base; the test platform comprises two test platform frames which are arranged in parallel and are arranged on a test platform base, wherein a plurality of longitudinal supports and a plurality of transverse sliding rods are arranged on the test platform frames, and two ends of each sliding rod are respectively arranged on the two longitudinal supports; a plurality of correlation sensors installed on the sliding rod; the recording playback module is arranged on the testing platform frame and is electrically connected with each correlation sensor; and the I/O switching control board is arranged on the test platform frame and is electrically connected with the recording playback module, and the I/O switching control board is used for electrically connecting a passing logic control board of the gate to be tested. It is thus clear that implement the utility model discloses can realize that the automation of current logic use case records, once records the current logic use case that generates many floodgates machine, can also gather the current logic sensor's of many floodgates machine state data simultaneously, has guaranteed the uniformity of the record standard of current logic use case.

Description

Terminal for simultaneously recording pass logic cases of multiple gate machines
Technical Field
The utility model relates to a computer technology field, concretely relates to record terminal of the current logic use case of many floodgates machine simultaneously.
Background
The traffic logic is the core of gate control in the field of rail transit, and the technical difficulty is as follows: under the condition of ensuring the safety of pedestrians, the normal passing of the pedestrians and luggage carried by the pedestrians is accurately controlled to improve the passing efficiency of the pedestrians, illegal passing behaviors (such as the behavior of one person swiping a card and passing by multiple persons) are identified to reduce the ticket evading rate, and the working efficiency and the working accuracy of the gate are further improved. Because the integrity and accuracy of the pass logic can directly affect the control of the gate and further affect the operating efficiency of the gate, the pass logic of the gate needs to be accurately tested to detect the problems in the pass logic of the gate.
With the rapid development of the rail transit industry, different manufacturers research and develop different gates. Practice shows that when different gates are subjected to pass logic tests, test terminals corresponding to the gates are needed, only a sensor of one manufacturer is arranged on each gate channel, the test terminals can only test the pass logic conditions of one or one type of gates at a time, and the current pass logic case recording mode can only record a certain pass logic case of one or one type of gates at each time. Therefore, it is important to provide a terminal for simultaneously recording multiple pass logic cases of a gate to realize simultaneous recording of the multiple pass logic cases of the gate and to ensure consistency of recording standards of the multiple pass logic cases of the gate.
SUMMERY OF THE UTILITY MODEL
The embodiment of the utility model discloses record terminal of the current logic use case of many floodgates machine simultaneously, can realize that the automation of current logic use case is recorded, and once records the current logic use case that generates many floodgates machine simultaneously, can also gather the current logic sensor's of many floodgates machine state data simultaneously, guaranteed the uniformity of the record standard of current logic use case.
The embodiment of the utility model discloses record terminal of the current logic use case of many floodgates machine simultaneously, the terminal includes:
a test platform base; the two test platform frames are arranged in parallel and are respectively installed on the test platform base, a gate channel is formed between the two test platform frames, each test platform frame is provided with a plurality of longitudinal supports and a plurality of transverse sliding rods, two ends of each sliding rod are respectively installed on two different longitudinal supports, and the different sliding rods are installed at different heights of the longitudinal supports; a plurality of correlation sensors mounted on the sliding bar; the recording playback module is installed on the testing platform frame and is electrically connected with each correlation sensor; the I/O switching control board is arranged on the test platform frame and is electrically connected with the recording playback module, and the I/O switching control board is used for electrically connecting a passing logic control board of a door system of the gate machine to be tested;
when detecting that the state parameters of the correlation sensor change, the recording and playback module determines that a traffic sample needing to pass through the gate channel exists and records a traffic event of the traffic sample to obtain a plurality of traffic logic cases, executes playback operation on the traffic logic cases to simulate the traffic event of the traffic sample, and sends the state parameters of the correlation sensor to the I/O switching control board, and the I/O switching control board sends the state parameters of the correlation sensor to the traffic logic control board to trigger the traffic logic control board to realize control over the fan door system according to the state parameters of the correlation sensor;
and when the testing platform frame is an open-frame partially transparent frame, the transparent part of the testing platform frame is the part, corresponding to the sliding rod, of the outer side part of the testing platform frame.
As an optional implementation manner, in the embodiment of the present invention, an industrial personal computer, the pass logic control board, the door core of the door system, and the power module of the door system are further installed on the test platform frame, and the industrial personal computer is electrically connected to the I/O switch control board and the pass logic control board;
the I/O switching control board collects a control instruction sent by the passing logic control board to the door movement, and sends the control instruction and the state parameters of the correlation sensor to the industrial personal computer, wherein the control instruction is generated by the passing logic control board according to the state parameters of the correlation sensor;
when the two door cores arranged on the two test platform frames are respectively opened towards two sides, the gate channel is opened, and when the two door cores arranged on the two test platform frames are respectively closed towards the middle, the gate channel is closed.
As an optional implementation manner, in an embodiment of the present invention, a door opening and closing time testing sensor and/or a door opening and closing times counting sensor are further installed on the testing platform frame;
the door opening and closing time test sensor is electrically connected with the I/O switching control board and is used for testing the opening and closing time length of the door movement in the passing event;
the door opening and closing frequency counting sensor is electrically connected with the I/O switching control board and used for testing the opening and closing frequency of the door movement in the passing event.
As an optional implementation manner, in the embodiment of the present invention, a plurality of adjusting brackets are installed on the sliding rod, the correlation sensor is installed on the sliding rod through the adjusting brackets, and the adjusting brackets are used for adjusting the position of the correlation sensor on the sliding rod.
As an optional implementation manner, in an embodiment of the present invention, an adjusting component is installed on the adjusting bracket, and the adjusting component has at least a first adjusting state and a second adjusting state;
the adjusting component is used for controlling whether the adjusting bracket can move or not, when the adjusting component is in the first adjusting state, the adjusting bracket can move along the sliding rod, and when the adjusting component is in the second adjusting state, the adjusting bracket cannot move along the sliding rod.
As an optional implementation manner, in the embodiment of the present invention, a horizontal scale member parallel to the sliding rod and/or a longitudinal scale member parallel to the longitudinal support are mounted on the testing platform frame;
different scale values are displayed on the transverse scale component, and the scale values displayed on the transverse scale component are used for determining transverse coordinate values of the correlation sensor arranged on the sliding rod;
different scale values are displayed on the longitudinal scale member, and the scale values displayed on the longitudinal scale member are used for determining a longitudinal coordinate value of the correlation sensor mounted on the slide bar.
As an optional implementation manner, in the embodiment of the present invention, different scale values are set on the sliding rod, and the scale values on the sliding rod are used for determining the lateral coordinate value of the correlation sensor installed on the sliding rod; and/or the presence of a gas in the gas,
different scale values are arranged on the longitudinal support, and the scale values on the longitudinal support are used for determining longitudinal coordinate values of the correlation sensor arranged on the sliding rod.
As an optional implementation manner, in the embodiment of the present invention, the adjusting bracket is detachably mounted on the sliding rod, the correlation sensor is detachably mounted on the adjusting bracket, and the sliding rod is detachably mounted on the longitudinal bracket.
As an optional implementation manner, in the embodiment of the present invention, a sliding groove is disposed on the longitudinal support along the direction of the longitudinal support, a plurality of sliding blocks capable of sliding longitudinally along the sliding groove are installed on the sliding groove, one end of the sliding rod is detachably installed on one of the sliding blocks on the sliding groove of the longitudinal support, the other end of the sliding rod is detachably installed on the other one of the sliding blocks on the sliding groove of the longitudinal support, and one end of the sliding rod and the other end of the sliding rod are at the same height.
As an optional implementation manner, in the embodiment of the utility model provides an in, be provided with a plurality of electricity connection interface on the IO switching control panel, every electricity connection interface is used for the different equipment of electricity connection, equipment is including punching the card district antenna, passenger display screen, the indicator of going through, warning light, emergency button, bee calling organ, urgent audio frequency and video calling equipment, earth leakage protection switch, switching power supply record playback module and card reader.
Compared with the prior art, the embodiment of the utility model provides a following beneficial effect has:
the embodiment of the utility model discloses record the terminal of the current logic use case of many floodgates machine simultaneously includes: a test platform base; the device comprises two test platform frames, a plurality of transverse sliding rods and a plurality of longitudinal supports, wherein the two test platform frames are arranged in parallel and are respectively installed on a test platform base, a gate channel is formed between the two test platform frames, each test platform frame is provided with the plurality of longitudinal supports and the plurality of transverse sliding rods, two ends of each sliding rod are respectively installed on two different longitudinal supports, and the different sliding rods are installed at different heights of the longitudinal supports; a plurality of correlation sensors mounted on the sliding rod; the recording playback module is arranged on the testing platform frame and is electrically connected with each correlation sensor; an I/O switching control board which is arranged on the testing platform frame and is electrically connected with the recording playback module, and the I/O switching control board is used for electrically connecting a passing logic control board of a door system of the gate to be tested, when the recording playback module detects that the state parameters of the correlation sensor change, determining that a traffic sample needing to pass through a gate passage exists, recording traffic events of the traffic sample to obtain a plurality of traffic logic cases, executing playback operation on the traffic logic cases to simulate the traffic events of the traffic sample, and the state parameters of the correlation sensor are sent to an I/O switching control board, the I/O switching control board sends the state parameters of the correlation sensor to a traffic logic control board, the control of the door leaf system is realized by triggering the passing logic control board according to the state parameters of the correlation sensor. It is thus clear that implement the embodiment of the utility model provides a can realize that the automation of current logic use case is recorded, and can be according to certain rule with the unified overall arrangement of correlation sensor of many floodgates machines in the floodgate machine passageway, realize once recording the current logic use case that generates many floodgates machines simultaneously, can also gather the current logic sensor's of many floodgates machines state data simultaneously, guaranteed the uniformity of the record standard of current logic use case.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the embodiments will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a terminal for simultaneously recording multiple gate machine traffic logic use cases according to an embodiment of the present invention;
wherein the reference numerals have the following meanings:
1. a test platform base; 2. a test platform frame; 3. a longitudinal support; 4. a slide bar; 5. a correlation sensor; 6. a recording playback module; 7. an I/O switching control board; 8. a traffic logic control panel; 9. an industrial personal computer; 10. a door leaf core of the door leaf system; 11. a power module of the door system; 12. a card swiping area antenna; 13. a passenger display screen; 14. a traffic indicator; 15. a warning light; 16. a buzzer; 17. a leakage protection switch; 18. a switching power supply; 19. a card reader; 20. and a filter.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
It should be noted that the terms "comprises" and "comprising," and any variations thereof, of embodiments of the present invention are intended to cover non-exclusive inclusions, such that a process, method, system, article, or apparatus that comprises a list of steps or elements is not necessarily limited to those steps or elements expressly listed, but may include other steps or elements not expressly listed or inherent to such process, method, article, or apparatus.
The embodiment of the utility model discloses record terminal of the current logic use case of many floodgates machine simultaneously, can realize the automatic recording of the current logic use case, and can unify the corresponding sensor 5 overall arrangement in the floodgate machine passageway of many floodgates machine (fan door system) according to certain rule, realize once recording the current logic use case that generates many floodgates machine simultaneously, can also gather the state data of the current logic sensor of many floodgates machine simultaneously, guaranteed the uniformity of the record standard of the current logic use case; in addition, the detection of the passing logic can be realized to detect the problems of the passing logic, so that the risk caused by the passing logic leak can be avoided in time, and the detection result of the passing logic can be provided for a manufacturer of the door leaf system so as to improve the problems of the passing logic; in addition, the automatic detection of the corresponding structure of the gate can be realized, and the gate can be compatible with gates of different manufacturers; and when the pass logic of a certain gate or a certain type of gate is detected, the position of the corresponding correlation sensor 5 required to be used is only required to be specified, so that the pass logic use case of the correlation sensor 5 required by the test of the pass logic can be transmitted to the corresponding pass logic control board 8.
The details will be described below.
Referring to fig. 1, fig. 1 is a schematic structural diagram of a terminal for simultaneously recording pass logic cases of multiple gateways according to an embodiment of the present invention. Wherein, the terminal that fig. 1 is shown can be applied to in the arbitrary one kind of needs such as track traffic ticket checking equipment, entrance guard's equipment, access control equipment judges the equipment of passerby's action, the embodiment of the utility model provides an do not do the injecing. As shown in fig. 1, the terminal for simultaneously recording the use cases of multiple gate pass logics may include:
a test platform base 1;
the terminal comprises two testing platform frames 2, wherein the two testing platform frames 2 are arranged in parallel and are respectively installed on a testing platform base 1, a gate channel is formed between the two testing platform frames 2, each testing platform frame 2 is provided with a plurality of longitudinal supports 3 and a plurality of transverse sliding rods 4, two ends of each sliding rod 4 are respectively installed on two different longitudinal supports 3, and different sliding rods 4 are installed at different heights of the longitudinal supports 3, and it needs to be explained that the two testing platform frames 2 are symmetrically arranged on the testing platform base 1, and the terminal shown in the figure 1 is schematically illustrated by a structure that one of the testing platform frames 2 is installed on the testing platform base 1;
a plurality of correlation sensors 5, the correlation sensors 5 being mounted on the slide bar 4;
the recording playback module 6 is arranged on the testing platform frame 2, and the recording playback module 6 is electrically connected with each correlation sensor 5;
the I/O switching control board 7 is installed on the testing platform frame 2 and is electrically connected with the recording playback module 6, and the I/O switching control board 7 is used for electrically connecting a passing logic control board 8 of a door system of the gate to be tested;
when detecting that the state parameters of the correlation sensor 5 change, the recording and playback module 6 determines that a traffic sample needing to pass through a gate channel exists and records a traffic event of the traffic sample to obtain a plurality of traffic logic cases, executes playback operation on the traffic logic cases to simulate the traffic event of the traffic sample, sends the state parameters of the correlation sensor 5 to the I/O switching control board 7, and the I/O switching control board 7 sends the state parameters of the correlation sensor 5 to the traffic logic control board 8 to trigger the traffic logic control board 8 to realize control over the fan door system according to the state parameters of the correlation sensor 5.
In the embodiment of the present invention, specifically, the terminal shown in fig. 1 can collect all sensor data information of correlation sensor 5 (i.e. the state parameter of correlation sensor 5) that have been laid out, and according to the sensor information demand of each manufacturer, provide corresponding current logic control board 8 with corresponding sensor data information (i.e. the state parameter of correlation sensor 5) through the mode of packing, thereby control the action of door core 10 in the door system (for example, control the opening and closing of door core 10), and then reach and verify whether correct purpose of current logic use case.
Optionally, at least one of the test platform frames 2 is an open frame and fully transparent frame or an open frame and partially transparent frame. Further optionally, when the testing platform frame 2 is an open-frame partially transparent frame, the transparent portion of the testing platform frame 2 is a portion of the outer side portion of the testing platform frame 2 corresponding to the sliding rod 4. Such an open frame can facilitate the adjustment of the layout of the correlation sensor 5 mounted on the sliding rod 4, for example, the adjustment of the position of the correlation sensor 5, and also facilitate the maintenance of the various components in the terminal shown in fig. 1, and the clear observation of the operation of the door operator 10.
In an alternative embodiment, as shown in fig. 1, an industrial personal computer 9, a pass logic control board 8, a door core 10 of a door system, and a power module 11 of the door system are further mounted on the test platform frame 2, and the industrial personal computer 9 is electrically connected with the I/O switching control board 7 and the pass logic control board 8. The I/O switching control board 7 collects control instructions sent by the passing logic control board 8 to the door movement 10, and sends the control instructions and state parameters of the correlation sensor 5 to the industrial personal computer 9, wherein the control instructions are generated by the passing logic control board 8 according to the state parameters of the correlation sensor 5.
When the two door cores 10 installed on the two testing platform frames 2 are respectively opened towards two sides, the gate channel is opened, and when the two door cores 11 installed on the two testing platform frames 2 are respectively closed towards the middle, the gate channel is closed.
In this alternative embodiment, it is further optional that a door opening and closing time test sensor and/or a door opening and closing time counting sensor, which is not shown in fig. 1, is further installed on the test platform frame 2.
The door opening and closing time test sensor is electrically connected with the I/O switching control board 7 and is used for testing the opening and closing time length of the door movement 10 in a passing event; the door opening and closing frequency counting sensor is electrically connected with the I/O switching control board 7 and is used for testing the opening and closing frequency of the door movement 10 in a passing event. It can be seen that the terminal shown in fig. 1 can implement the test of the door opening and closing duration of the door leaf movement 10, and can also implement the test of the door opening and closing times of the door leaf movement 10.
The embodiment of the utility model provides an in, the terminal shown in figure 1 fully considers the mounting means of the door system of different producers, can carry out the dismouting of door system in a flexible way, the corresponding fixed hole site size drawing of configuration on the structural mounting, only need do corresponding switching mounting when installing the door system of different producers can, in the aspect of electrical interface, the terminal shown in figure 1 provides AC 200V/10A's commercial power for the door system of different producers, DC 24V/6A's power port, be connected to the serial ports of workstation, the emergency button interface, receiving end sensor interface, current logic control board serial communication interface, and provide corresponding cable connector model and interface definition. When detecting door systems of different manufacturers, the different manufacturers need to provide the door core 10 and corresponding switching base sheet metal parts, the passing logic control board 8 and corresponding switching base plate sheet metal parts, the transformer, the sensor receiving end incoming line switching board, the emergency interface incoming line switching board and the door system cable.
It can be seen that the terminal shown in fig. 1 is compatible with installation of a standard door system and a wide-channel door system, and reserves installation positions for each component in the door system and reserves interfaces for compatibility with door systems of different manufacturers.
In another alternative embodiment, a plurality of adjusting brackets are mounted on the sliding rod 4, and the correlation sensor 5 is mounted on the sliding rod 4 through the adjusting brackets, and the adjusting brackets are used for adjusting the position of the correlation sensor 5 on the sliding rod 4.
It should be noted that the correlation sensor 5 can also slide and be fixed by an adjustable fixed slide profile to adapt to different layouts of the correlation sensor 5.
The embodiment of the utility model provides an in, the terminal that fig. 1 is shown can be according to the mounted position and the size of each producer's correlation sensor 5, according to certain overall arrangement rule, with the unified distribution of the correlation sensor 5 of a plurality of producers in the terminal that fig. 1 is shown to can realize once typing the purpose of the current logic use case of the back automatic generation a plurality of producers fan door system. And for the pass logic use cases of the door leaf systems outside the unified layout, the pass logic use cases of the door leaf systems outside the unified layout can be generated by adjusting the positions of the corresponding correlation sensors 5, designating the corresponding ports, sending the information of the corresponding correlation sensors 5 and re-recording.
In this alternative embodiment, optionally, an adjusting part is mounted on the adjusting bracket, the adjusting part has at least a first adjusting state and a second adjusting state, the adjusting part is used for controlling whether the adjusting bracket can move or not, when the adjusting part is in the first adjusting state, the adjusting bracket can move along the sliding rod 4, and when the adjusting part is in the second adjusting state, the adjusting bracket cannot move along the sliding rod 4.
In this alternative embodiment, it is further optional that the test platform frame 2 has mounted thereon a lateral scale member parallel to the slide bar 4 and/or a longitudinal scale member parallel to the longitudinal support 3.
Wherein different scale values are displayed on the lateral scale member, and the scale values displayed on the lateral scale member are used to determine lateral coordinate values of the correlation sensor 5 mounted on the slide bar 4. The longitudinal scale member is displayed with different scale values, and the scale values displayed on the longitudinal scale member are used to determine the longitudinal coordinate value of the correlation sensor 5 mounted on the slide bar 4.
Optionally, the horizontal scale component may be a straight steel ruler, and the longitudinal scale component may also be a straight steel ruler.
In this alternative embodiment, it is further optional that the slide bar 4 is provided with different scale values, the scale values on the slide bar 4 being used to determine the lateral coordinate values of the correlation sensor 5 mounted on the slide bar 4; and/or different scale values are arranged on the longitudinal support 3, and the scale values on the longitudinal support 3 are used for determining the longitudinal coordinate value of the correlation sensor 5 arranged on the sliding rod 4.
It can be seen that the implementation of the terminal shown in fig. 1 enables accurate adjustment of the correlation sensor 5 on the slide bar 4 based on scale values when the correlation sensor 5 on the slide bar 4 is positionally adjusted.
In a further alternative embodiment, the adjustment bracket is removably mounted on a sliding rod 4, the correlation sensor 5 is removably mounted on the adjustment bracket, and the sliding rod 4 is removably mounted on the longitudinal bracket 3.
In this further alternative embodiment, it is further optional that the longitudinal supports 3 are provided with sliding grooves along the direction of the longitudinal supports 3, the sliding grooves are provided with a plurality of sliding blocks capable of sliding longitudinally along the sliding grooves, one end of the sliding rod 4 is detachably mounted on one of the sliding blocks on the sliding groove of one longitudinal support 3, the other end of the sliding rod 4 is detachably mounted on one of the sliding blocks on the sliding groove of the other longitudinal support 3, and one end of the sliding rod 4 is at the same height as the other end of the sliding rod 4.
In yet another alternative embodiment, the I/O switching control board 7 is provided with a plurality of electrical connection interfaces, each of which is used for electrically connecting different devices, and each of the devices includes a card swiping area antenna 12, a passenger display 13, a traffic indicator 14, a warning light 15, an emergency button (not shown in fig. 1), a buzzer 16, an emergency audio/video call device (not shown in fig. 1), an earth leakage protection switch 17, a switching power supply 18, a recording and playback module 6, a card reader 19 and a filter 20.
In the embodiment of the utility model, need to explain, the terminal that fig. 1 is shown realizes the verification to the current logic of fan door system and detects to the automation of the corresponding function of fan door system, specific detection operation can be triggered by the working interface that operating personnel passes through the workstation, and specific test result can show on the corresponding interface of workstation, for example show on the show screen of workstation, and the terminal that fig. 1 is shown can be through network connection to detection center intranet, be used for receiving the test application and issue the logic case of passing, and can also upload test result etc.. Namely: the terminal shown in fig. 1 can realize recording and sampling of different traffic forms through control of the workstation, and perform playback test on recording and sampling results of different traffic forms, so as to test whether traffic logics of the fan door systems of different manufacturers meet requirements, and achieve the purpose of automatic test.
It can be seen that, the terminal implementing the simultaneous recording of the pass logic use cases of multiple gate machines described in fig. 1 can implement the automatic recording of the pass logic use cases, and can uniformly arrange the correlation sensors 5 of multiple gate machines (fan door systems) in the gate machine channels according to a certain rule, implement the simultaneous generation of the pass logic use cases of multiple gate machines by one-time recording, and can also simultaneously acquire the state data of the pass logic sensors of multiple gate machines, thereby ensuring the consistency of the recording standards of the pass logic use cases; in addition, the detection of the passing logic can be realized to detect the problems of the passing logic, so that the risk caused by the passing logic leak can be avoided in time, and the detection result of the passing logic can be provided for a manufacturer of the door leaf system so as to improve the problems of the passing logic; in addition, the automatic detection of the corresponding structure of the gate can be realized, and the gate can be compatible with gates of different manufacturers; and when the pass logic of a certain gate or a certain type of gate is detected, the position of the corresponding correlation sensor 5 required to be used is only required to be specified, so that the pass logic use case of the correlation sensor 5 required by the test of the pass logic can be transmitted to the corresponding pass logic control board 8.
The terminal for simultaneously recording the logic cases of multiple gate passes disclosed by the embodiment of the present invention is introduced in detail, and the specific embodiment is applied to explain the principle and the implementation manner of the present invention, and the description of the above embodiment is only used to help understand the method and the core idea of the present invention; meanwhile, for the general technical personnel in the field, according to the idea of the present invention, there are changes in the specific implementation and application scope, to sum up, the content of the present specification should not be understood as the limitation of the present invention.

Claims (10)

1. A terminal for simultaneously recording logical use cases of multiple gateways, the terminal comprising:
a test platform base; the two test platform frames are arranged in parallel and are respectively installed on the test platform base, a gate channel is formed between the two test platform frames, each test platform frame is provided with a plurality of longitudinal supports and a plurality of transverse sliding rods, two ends of each sliding rod are respectively installed on two different longitudinal supports, and the different sliding rods are installed at different heights of the longitudinal supports; a plurality of correlation sensors mounted on the sliding bar; the recording playback module is installed on the testing platform frame and is electrically connected with each correlation sensor; the I/O switching control board is arranged on the test platform frame and is electrically connected with the recording playback module, and the I/O switching control board is used for electrically connecting a passing logic control board of a door system of the gate machine to be tested;
when detecting that the state parameters of the correlation sensor change, the recording and playback module determines that a traffic sample needing to pass through the gate channel exists and records a traffic event of the traffic sample to obtain a plurality of traffic logic cases, executes playback operation on the traffic logic cases to simulate the traffic event of the traffic sample, and sends the state parameters of the correlation sensor to the I/O switching control board, and the I/O switching control board sends the state parameters of the correlation sensor to the traffic logic control board to trigger the traffic logic control board to realize control over the fan door system according to the state parameters of the correlation sensor;
when the testing platform frame is an open-frame partially transparent frame, the transparent part of the testing platform frame is a part corresponding to the sliding rod in the outer side part of the testing platform frame.
2. The terminal for simultaneously recording the multiple gate machine passing logic cases according to claim 1, wherein an industrial personal computer, the passing logic control panel, a gate core of the gate system and a power module of the gate system are further installed on the test platform frame, and the industrial personal computer is electrically connected with the I/O switching control panel and the passing logic control panel;
the I/O switching control board collects a control instruction sent by the passing logic control board to the door movement, and sends the control instruction and the state parameters of the correlation sensor to the industrial personal computer, wherein the control instruction is generated by the passing logic control board according to the state parameters of the correlation sensor;
when the two door cores arranged on the two test platform frames are respectively opened towards two sides, the gate channel is opened, and when the two door cores arranged on the two test platform frames are respectively closed towards the middle, the gate channel is closed.
3. The terminal for simultaneously recording the logic use cases of multiple gate machines according to claim 2, wherein the testing platform frame is further provided with a door opening and closing time testing sensor and/or a door opening and closing times counting sensor;
the door opening and closing time test sensor is electrically connected with the I/O switching control board and is used for testing the opening and closing time length of the door movement in the passing event;
the door opening and closing frequency counting sensor is electrically connected with the I/O switching control board and used for testing the opening and closing frequency of the door movement in the passing event.
4. The terminal for simultaneously recording multiple use cases of gate traffic logic according to any one of claims 1-3, wherein a plurality of adjusting brackets are mounted on the sliding rod, the correlation sensor is mounted on the sliding rod through the adjusting brackets, and the adjusting brackets are used for adjusting the position of the correlation sensor on the sliding rod.
5. The terminal for simultaneously recording use cases of multiple gate pass logic according to claim 4, wherein the adjusting bracket is provided with an adjusting component, and the adjusting component has at least a first adjusting state and a second adjusting state;
the adjusting component is used for controlling whether the adjusting bracket can move or not, when the adjusting component is in the first adjusting state, the adjusting bracket can move along the sliding rod, and when the adjusting component is in the second adjusting state, the adjusting bracket cannot move along the sliding rod.
6. The terminal for simultaneously recording multiple use cases of gate traffic logic according to claim 5, wherein the test platform frame is provided with a horizontal scale member parallel to the sliding rod and/or a vertical scale member parallel to the vertical support;
different scale values are displayed on the transverse scale component, and the scale values displayed on the transverse scale component are used for determining transverse coordinate values of the correlation sensor arranged on the sliding rod;
different scale values are displayed on the longitudinal scale member, and the scale values displayed on the longitudinal scale member are used for determining a longitudinal coordinate value of the correlation sensor mounted on the slide bar.
7. The terminal for simultaneously recording use cases of multiple gate pass logic according to claim 5, wherein the slide bar is provided with different scale values, and the scale values on the slide bar are used for determining the lateral coordinate values of the correlation sensor mounted on the slide bar; and/or the presence of a gas in the gas,
different scale values are arranged on the longitudinal support, and the scale values on the longitudinal support are used for determining longitudinal coordinate values of the correlation sensor arranged on the sliding rod.
8. The terminal for simultaneously recording use cases of popular logic of multiple gateways as recited in claim 4, wherein said adjustment bracket is removably mounted to said sliding bar, said correlation sensor is removably mounted to said adjustment bracket, and said sliding bar is removably mounted to said longitudinal bracket.
9. The terminal for simultaneously recording multiple use cases of gate machine traffic logic according to claim 8, wherein the longitudinal supports are provided with sliding grooves along the direction of the longitudinal supports, the sliding grooves are provided with a plurality of sliding blocks capable of longitudinally sliding along the sliding grooves, one end of the sliding rod is detachably mounted on one of the sliding blocks on the sliding groove of one of the longitudinal supports, the other end of the sliding rod is detachably mounted on one of the sliding blocks on the sliding groove of the other longitudinal support, and one end of the sliding rod is at the same height as the other end of the sliding rod.
10. The terminal for simultaneously recording multiple gate machine traffic logic cases according to claims 1, 2, 3, 5, 6, 7, 8, or 9, wherein the I/O switching control board is provided with a plurality of electrical connection interfaces, each of which is used for electrically connecting different devices, and each of the devices includes a card swiping area antenna, a passenger display screen, a traffic indicator, a warning light, an emergency button, a buzzer, an emergency audio/video call device, an earth leakage protection switch, a switching power supply, the recording playback module, and a card reader.
CN201920697540.8U 2019-05-15 2019-05-15 Terminal for simultaneously recording pass logic cases of multiple gate machines Expired - Fee Related CN209879331U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110109444A (en) * 2019-05-15 2019-08-09 南方银通(武汉)信息技术服务有限公司 Terminal that is a kind of while recording the current logic use-case of more gates

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110109444A (en) * 2019-05-15 2019-08-09 南方银通(武汉)信息技术服务有限公司 Terminal that is a kind of while recording the current logic use-case of more gates

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