Axle counting double reset mode based axle counting reset method and device

By generating push-button switch voltage levels through the master reset button and mode switch, the axle counter reset relay is replaced, which solves the problems of complex circuitry and high power consumption in the existing axle counter reset method, and realizes a flexible reset method and simplified equipment maintenance.

CN116001843BActive Publication Date: 2026-02-17CASCO SIGNAL (BEIJING) CO LTD
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Patent Information

Application Number
CN202310128969.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-17
Publication Date
2026-02-17
Estimated Expiration
2043-02-17

AI Technical Summary

Technical Problem

Existing shaft counting reset methods require the use of a large number of relays, resulting in complex circuits and high system power consumption.

Method used

A preset mode reset circuit is connected by a master reset button, preset reset buttons for preset sections, and a mode switching switch to generate button switch level values ​​and determine the axle count reset command, replacing the traditional axle count reset relay.

Benefits of technology

It achieves both pre-reset and direct reset functions, simplifies the reset circuit equipment, reduces system power consumption, and simplifies equipment maintenance and troubleshooting.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of based on axle counting double reset mode's axle counting reset method and device, it is related to train control technical field, main purpose is in to realize not using axle counting reset relay makes line to simultaneously have pre-reset and direct reset function, simplify reset circuit equipment, equipment maintenance and troubleshooting are more convenient, reduce system power consumption.The main technical scheme of the application is as follows: the preset mode reset circuit of the preset section is connected by using total reset button, the preset reset button of preset section and the mode switch of the preset section, to generate corresponding button switch level value;Determine axle counting reset command based on the preset mode reset circuit corresponding button switch level value of the preset section, the axle counting reset command includes pre-reset command and direct reset command;Axle counting system obtains the axle counting reset command, and executes the axle counting reset command to complete axle counting reset.The application is used for axle counting reset.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of train control technology, and in particular to a wheel counting reset method and device based on a double reset mode. BACKGROUND

[0002] A CBTC (Communication Based Train Control System) divides a line into multiple physical sections through a wheel counting system and determines the occupancy and clearance information of the sections based on the number of train wheel pairs. The wheel counting system is composed of a wheel counting head installed on a rail and a wheel counting host arranged in a signal machine room. The wheel counting head divides the line into multiple independent physical sections, and determines the occupancy and clearance information of the sections by counting the number of train wheel pairs entering and leaving the sections. When unexpected occupancy of a wheel counting section occurs due to a fault such as disturbance of the wheel counting head, the wheel counting reset can be used to reset the section to a clearance state.

[0003] At present, the method for resetting the section to a clearance state through wheel counting reset is a reset circuit supporting both wheel counting pre-reset and direct reset functions, and a wheel counting reset relay is used to realize the reset function.

[0004] However, the above-mentioned wheel counting reset method requires a large number of relays to be used, and increases the fault points, resulting in a complex circuit and large system power consumption. SUMMARY

[0005] In view of the above problems, the present application provides a wheel counting reset method and device based on a double reset mode, which mainly aims to realize the pre-reset and direct reset functions of the line without using a wheel counting reset relay, simplify the reset circuit device, make the device maintenance and fault troubleshooting more convenient, and reduce the system power consumption.

[0006] To solve the above technical problems, the present application proposes the following solutions:

[0007] In a first aspect, the present application provides a wheel counting reset method based on a double reset mode, which comprises:

[0008] The total reset button, the preset reset button of the preset section and the mode switching switch of the preset section are connected to the preset mode reset circuit of the preset section to generate corresponding button switch level values, and the preset mode includes a pre-reset mode and a direct reset mode; the preset reset button includes a pre-reset button and a direct reset button;

[0009] The wheel counting reset command is determined based on the button switch level values corresponding to the preset mode reset circuit of the preset section, and the wheel counting reset command includes a pre-reset command and a direct reset command;

[0010] The axle counting system acquires the axle counting reset command, and executes the axle counting reset command to complete axle counting reset.

[0011] In a second aspect, the present application provides an axle counting reset device based on axle counting double reset mode, which comprises:

[0012] The switching unit is configured to generate corresponding button switch level value by using the total reset button, preset reset buttons of preset sections and preset mode reset circuit of the preset sections to generate corresponding button switch level value, wherein the preset mode comprises pre-reset mode and direct reset mode; and the preset reset button comprises pre-reset button and direct reset button.

[0013] The determining unit is configured to determine axle counting reset command based on the corresponding button switch level value of preset mode reset circuit of the preset sections, wherein the axle counting reset command comprises pre-reset command and direct reset command.

[0014] The executing unit is configured to acquire the axle counting reset command by the axle counting system, and execute the axle counting reset command to complete axle counting reset.

[0015] In order to achieve the above-mentioned purpose, according to the third aspect of the present application, a storage medium is provided, which comprises a stored program, wherein when the program is running, the device where the storage medium is located is controlled to execute the axle counting reset method based on axle counting double reset mode as described in the first aspect.

[0016] In order to achieve the above-mentioned purpose, according to the fourth aspect of the present application, an electronic device is provided, which comprises a memory, a processor and a computer program stored in the memory and executable on the processor, wherein when the processor executes the program, all or part of the steps of the axle counting reset device based on axle counting double reset mode as described in the second aspect are implemented.

[0017] By the above technical scheme, the axle counting reset method and device based on the axle counting double reset mode provided by the application is because the axle counting reset of the reset circuit currently supporting the axle counting pre-reset and direct reset functions uses the axle counting reset relay to realize the reset function, and the method for resetting the section to the clear state exists the problems of needing to use a large number of relays to realize and increasing the fault points, resulting in the problems of complex circuit and large system power consumption. Therefore, the application generates the corresponding button switch level value by using the total reset button, the preset reset button of the preset section and the mode switching switch of the preset section to connect the preset mode reset circuit of the preset section, the preset mode includes the pre-reset mode and the direct reset mode; the preset reset button includes the pre-reset button and the direct reset button; the axle counting reset command is determined based on the button switch level value corresponding to the preset mode reset circuit of the preset section, the axle counting reset command includes the pre-reset command and the direct reset command; the axle counting system acquires the axle counting reset command, and executes the axle counting reset command to complete the axle counting reset. The application can realize the pre-reset and direct reset functions at the same time, the axle counting reset relay is no longer used in the device realizing the reset function, but the switch value of the button is used as the input of the axle counting system, the reset circuit device is simplified, the reset mode selection of the user is more flexible, and the device maintenance and fault troubleshooting are more convenient.

[0018] The above description is only a summary of the technical scheme of the application, in order to more clearly understand the technical means of the application, the specific embodiments of the application can be implemented according to the content of the specification, and in order to make the above and other purposes, characteristics and advantages of the application more obvious and easy to understand, the following specific embodiments of the application are described. BRIEF DESCRIPTION OF DRAWINGS

[0019] Various other advantages and benefits will become apparent to those of ordinary skill in the art upon reading the following detailed description of the preferred embodiments. The accompanying drawings are included to provide a description of the preferred embodiments and are not meant to limit the present application. Furthermore, the same reference numerals are used throughout the several drawings to represent similar components. In the drawings:

[0020] Figure 1 A flow chart of an axle counting reset method based on axle counting double reset mode provided by an embodiment of the application is shown;

[0021] Figure 2 A flow chart of another axle counting reset method based on axle counting double reset mode provided by an embodiment of the application is shown;

[0022] Figure 3 A composition block diagram of an axle counting reset device based on axle counting double reset mode provided by an embodiment of the application is shown;

[0023] Figure 4This invention provides a block diagram of another axle counting reset device based on axle counting dual reset mode.

[0024] Figure 5 The diagram shows a reset circuit diagram corresponding to a shaft counting reset device based on a shaft counting dual reset mode provided in an embodiment of the present invention;

[0025] Figure 6 The embodiments of the present invention are shown. Figure 5 Corresponding pre-reset circuit continuity diagram;

[0026] Figure 7 The embodiments of the present invention are shown. Figure 5 The corresponding direct reset circuit continuity diagram. Detailed Implementation

[0027] Exemplary embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.

[0028] Terminology Explanation:

[0029] IBP panel: The full English name is integrated backup panel, also known as integrated backup panel. It is placed in the integrated control room of the subway station and consists of IBP panel, PLC, human-machine interface terminal and monitoring workbench.

[0030] When unintended occupancy of the axle counting section occurs due to faults such as interference with the axle counting head, a reset circuit that simultaneously supports axle counting pre-reset and direct reset functions can be used, employing an axle counting reset relay to reset the section to a cleared state. However, this axle counting reset method requires a large number of relays, increases the number of potential failure points, and results in complex circuitry and high system power consumption. To address this issue, the inventors devised a solution that replaces the traditional reset relays with a push-button switch signal. The axle counting system directly reads the push-button switch signal level as the reset command input, saving a significant number of reset relays and simplifying the equipment required for the reset circuit.

[0031] Therefore, this invention provides an axle counting reset method based on axle counting dual reset mode. This method enables the circuit to simultaneously possess pre-reset and direct reset functions without using an axle counting reset relay, simplifying the reset circuit equipment, making equipment maintenance and troubleshooting more convenient, and reducing system power consumption. The specific execution steps are as follows: Figure 1 As shown, it includes:

[0032] 101. By using the master reset button, the preset reset button of the preset section, and the mode switching switch of the preset section to connect the preset mode reset circuit of the preset section, the corresponding button switch level value is generated.

[0033] The preset modes include a pre-reset mode and a direct reset mode; the preset reset button includes a pre-reset button and a direct reset button.

[0034] Currently, in rail transit systems, axle counters are used to detect whether a section of track has vehicles. Axle counters are susceptible to interference from factors such as power failure recovery, electromagnetic interference, and metal objects scraping against the read / write head. Therefore, axle counter resets are necessary. Existing reset methods include direct reset and pre-reset. Direct reset involves directly resetting the axle counter, clearing the wheelset count to zero, and putting the section into an idle state. Pre-reset involves the dispatcher executing a pre-reset zeroing command, clearing the wheelset count of the axle counter to zero, but the section does not immediately become an idle section; instead, it remains in an "occupied" state. Only after a track-driving vehicle passes and confirms that the section is idle and the axle counter is functioning correctly does the section transition to an idle state.

[0035] This invention provides two parallel reset circuits on the IBP panel for each preset section of the railway. One reset circuit is a pre-reset circuit, which includes a pre-reset button and a mode switching switch. The other reset circuit is a direct reset circuit, which includes a direct reset button and a mode switching switch. A master reset button is provided on the main line of the two parallel reset circuits.

[0036] When you want to connect the pre-reset circuit, rotate the mode switch on the pre-reset circuit to the pre-reset mode. If you press the master reset button and the pre-reset button on the pre-reset circuit, the pre-reset circuit will be connected. If you release the master reset button and the pre-reset button on the pre-reset circuit, the pre-reset circuit will be disconnected.

[0037] To connect the direct reset circuit, rotate the mode switch on the direct reset circuit to the direct reset mode. If the master reset button and the direct reset button on the direct reset circuit are pressed, the direct reset circuit is connected. If the master reset button and the direct reset button on the direct reset circuit are released, the direct reset circuit is disconnected.

[0038] It should be noted that when the pre-reset circuit or the direct reset circuit is connected, a corresponding button switch level value will be generated.

[0039] 102. The reset command for the axle counter is determined by the button switch level value corresponding to the preset mode reset circuit of the preset section.

[0040] The axle reset command includes a pre-reset command and a direct reset command.

[0041] According to step 101, the button switch level value generated by the connected pre-reset circuit or direct reset circuit can be obtained. The present invention directly uses the button switch level value as the axis reset command. That is to say, whether it is a pre-reset command or a direct reset command, it is the button switch electronic value generated after the corresponding reset circuit is connected.

[0042] 103. The axle counting system obtains the axle counting reset command and executes the axle counting reset command to complete the axle counting reset.

[0043] The axle counting system acquires axle counting reset commands through acquisition terminals. For example, the axle counting system acquires a pre-reset command through the pre-reset acquisition terminal; the axle counting system acquires a direct reset command through the reset acquisition terminal. The axle counting system completes the axle counting reset based on the axle counting reset command. For example, the axle counting system completes axle counting pre-reset based on the pre-reset command; the axle counting system performs axle counting direct reset based on the direct reset command.

[0044] In the two reset circuits of this invention, a push-button switch replaces the traditional reset relay. The axle counting system directly reads the push-button switch level value as the input for the axle counting reset command, saving a significant number of reset relays and simplifying the equipment required for the reset circuit. Based on the above... Figure 1 As can be seen from the implementation of the embodiments, this invention provides an axle counting reset method based on axle counting dual reset modes. This invention utilizes a master reset button, preset reset buttons for preset sections, and a mode switching switch for the preset sections to connect a preset mode reset circuit for the preset sections, generating corresponding button switch level values. The preset modes include a pre-reset mode and a direct reset mode. The preset reset buttons include a pre-reset button and a direct reset button. An axle counting reset command is determined based on the button switch level value corresponding to the preset mode reset circuit of the preset section. The axle counting reset command includes a pre-reset command and a direct reset command. The axle counting system obtains the axle counting reset command and executes it to complete the axle counting reset. This invention can simultaneously achieve pre-reset and direct reset functions. Devices implementing the reset function no longer use axle counting reset relay; instead, they use the button switch value as the input to the axle counting system, simplifying the reset circuit equipment, making the user's reset method selection more flexible, and facilitating equipment maintenance and troubleshooting.

[0045] Furthermore, as a response to Figure 1 Further refinement and extension of the illustrated embodiment, this invention also provides another axle counting reset method based on axle counting dual reset mode, such as... Figure 2 As shown, the specific steps are as follows:

[0046] 201. By using the master reset button, the preset reset button of the preset section, and the mode switching switch of the preset section to connect the preset mode reset circuit of the preset section, the corresponding button switch level value is generated.

[0047] The preset modes include a pre-reset mode and a direct reset mode; the preset reset button includes a pre-reset button and a direct reset button.

[0048] This step combines the description of step 101 in the above method, and the same content will not be repeated here.

[0049] The preset mode reset circuit is a pre-reset circuit; the step of using the master reset button, the preset reset button of the preset section, and the mode switching switch of the preset section to connect the preset mode reset circuit of the preset section to generate a corresponding button switch level value includes: using the mode switching switch of the preset section to switch the reset circuit mode of the preset section to the pre-reset mode; based on the preset section's reset circuit mode being switched to the pre-reset mode, using the master reset button and the preset section's pre-reset button to connect the pre-reset circuit of the preset section, wherein the preset section's pre-reset button is located on the preset section's pre-reset circuit; the connected preset section's pre-reset circuit generates a corresponding button switch level value.

[0050] The step of switching the reset circuit mode based on the preset segment to the pre-reset mode, and connecting the pre-reset circuit of the preset segment using the main reset button and the pre-reset button of the preset segment, includes: simultaneously pressing the main reset button and the pre-reset button of the preset segment for a preset time, thereby closing the contacts corresponding to the main reset button and the contacts corresponding to the pre-reset button of the preset segment to connect the pre-reset circuit of the preset segment.

[0051] The preset mode reset circuit is a direct reset circuit. The step of using the master reset button, the preset reset button of the preset section, and the mode switching switch of the preset section to connect the preset mode reset circuit of the preset section and generate a corresponding button switch level value includes: using the mode switching switch of the preset section to switch the reset circuit mode of the preset section to the direct reset mode; based on the preset section's reset circuit mode being switched to the direct reset mode, using the master reset button and the direct reset button of the preset section to connect the direct reset circuit of the preset section, wherein the direct reset button of the preset section is located on the direct reset circuit of the preset section; and the connected direct reset circuit of the preset section generates a corresponding button switch level value.

[0052] The step of switching the reset circuit mode based on the preset segment to the direct reset mode, and connecting the direct reset circuit of the preset segment using the master reset button and the direct reset button of the preset segment, includes: simultaneously pressing the master reset button and the direct reset button of the preset segment for a preset time, thereby closing the contacts corresponding to the master reset button and the direct reset button of the preset segment to connect the direct reset circuit of the preset segment.

[0053] For example:

[0054] like Figure 5 As shown, the axle counting system of the present invention is equipped with pre-reset and direct reset function devices, including and providing independent pre-reset and direct reset acquisition interfaces; a reset circuit is designed on the reset button panel to provide the axle counting system with reset commands for a certain section and different reset methods. Specifically, this refers to the reset circuit configuration for section 1 of the railway, including the reset button panel, the central station distribution cabinet, and the axle counter cabinet. The reset button panel is equipped with a parallel pre-reset circuit and a direct reset circuit for section 1, as well as a parallel circuit for the pre-reset indicator light and a circuit for the reset indicator light. The circuit on the reset button panel is connected to the equipment on the axle counter cabinet via the central station distribution cabinet. The axle counter cabinet includes at least a section 1 pre-reset terminal, a section 1 direct reset terminal, and a corresponding module for section 1 pre-reset feedback. The pre-reset circuit is connected to the section 1 pre-reset terminal; the direct reset circuit is connected to the section 1 direct reset circuit; and the circuit for the pre-reset indicator light is connected to the corresponding module for section 1 pre-reset feedback. The specific details are as follows: On the reset button panel, the main bus includes a master reset button 1 (master reset ZFWA) and a master reset button 2. (ZFWA, the main reset circuit) includes a pre-reset circuit connected in parallel with the direct reset circuit. This circuit includes a mode switch 1 (pre-reset), a mode switch 2 (pre-reset), a 1-segment reset button 1 (1-segment FWA), and a 1-segment reset button 2 (1-segment FWA). An equipotential point is provided between the mode switch 1 (pre-reset) and the 1-segment reset button 1 (1-segment FWA), and an equipotential point is provided between the mode switch 2 (pre-reset) and the 1-segment reset button 2 (1-segment FWA). These two equipotential points are connected to the "n-segment FWA-1 contact" and the "n-segment FWA-2 contact" respectively. The "n-segment FWA-1 contact" and the "n-segment FWA-2 contact" are connected to the corresponding segment pre-reset function input interface provided by the axle counting system. This pre-reset circuit is connected to the 1-segment pre-reset terminal of the axle counting cabinet through the central station distribution cabinet.

[0055] On the reset button panel, the direct reset circuit connected in parallel with the pre-reset circuit includes a mode switch 3 (direct reset), a mode switch 4 (direct reset), a 1-segment reset button 3 (1-segment FWA), and a 1-segment reset button 4 (1-segment FWA). An equipotential point is provided between the mode switch 3 (direct reset) and the 1-segment reset button 3 (1-segment FWA), and an equipotential point is provided between the mode switch 4 (direct reset) and the 1-segment reset button 4 (1-segment FWA). These two equipotential points are respectively connected to the "n-segment FWA-3 contact" and the "n-segment FWA-4 contact". The "n-segment FWA-3 contact" and the "n-segment FWA-4 contact" are connected to the corresponding segment direct reset function input interface provided by the axle counting system. This direct reset circuit is connected to the 1-segment direct reset terminal of the axle counting cabinet through the central station distribution cabinet.

[0056] To connect the pre-reset circuit, rotate both mode switch 1 (pre-reset) and mode switch 2 (pre-reset) on the pre-reset circuit to the pre-reset mode. If you press and hold the main reset button 1 (main reset ZFWA) and main reset button 2 (main reset ZFWA) for 2 seconds, as well as the first-segment reset button 1 (segment FWA) and first-segment reset button 2 (segment FWA) on the pre-reset circuit, the corresponding contacts of main reset button 1 (main reset ZFWA) and main reset button 2 (main reset ZFWA) will close, and the corresponding contacts of first-segment reset button 1 (segment FWA) and first-segment reset button 2 (segment FWA) will also close. Then the pre-reset circuit is connected and generates the button switch level value corresponding to the pre-reset mode. If you release the switch, the pre-reset circuit is disconnected, and the button switch level value corresponding to the pre-reset mode disappears.

[0057] To connect the direct reset circuit, rotate both mode switch 3 (direct reset) and mode switch 4 (direct reset) on the direct reset circuit to direct reset mode. If you press and hold the main reset button 1 (main reset ZFWA) and main reset button 2 (main reset ZFWA) and the section 1 reset button 3 (section 1 FWA) and section 1 reset button 4 (section 1 FWA) on the direct reset circuit for 2 seconds, the corresponding contacts of main reset button 1 (main reset ZFWA) and main reset button 2 (main reset ZFWA) will close, and the corresponding contacts of section 1 reset button 3 (section 1 FWA) and section 1 reset button 4 (section 1 FWA) will close. Then the direct reset circuit is connected and generates the button switch level value corresponding to the direct reset mode. If you release the switch, the direct reset circuit is disconnected, and the button switch level value corresponding to the direct reset mode disappears.

[0058] It should be noted that: such as Figure 5As shown, the main reset button ZFWA represents the main reset button. Both main reset buttons 1 and 2 are self-resetting. Mode switching switches 1, 2, 3, and 4 are all gear-type. The 1-segment reset button FWA represents the 1-segment reset button. All 1-segment reset buttons 1, 2, 3, 4, and 5 are self-resetting. The n-segment FWA-1, n-segment FWA-2, n-segment FWA-3, n-segment FWA-4, and n-segment FWA-5 contacts represent the contacts corresponding to the equipotential points of a certain segment. In this invention, the 1-segment indicator also includes a 1-segment pre-reset indicator light and a 1-segment reset indicator light. The components and functions of the reset button panel are as follows:

[0059] (1) Master reset button: The master reset switch for shaft reset, self-resetting button, with two sets of normally open contacts;

[0060] (2) Mode switching switch: used to switch between pre-reset mode, direct reset mode and normal mode; three-position rotary switch;

[0061] (3) Section reset button: used to distinguish the sections that need to be reset; self-resetting button with five sets of normally open contacts. A reset button is provided for each section according to the actual axle counting section settings of the station.

[0062] ① n-section FWA-1 contact and n-section FWA-2 contact: Connect to the corresponding section pre-reset function input interface provided by the axle counting system;

[0063] ② n-section FWA-3 contact and n-section FWA-4 contact: Connect to the corresponding section direct reset function input interface provided by the axle counting system;

[0064] ③n-segment FWA-5 contact: Segment button press display interface.

[0065] (4) Pre-reset indicator light: Each section is equipped with a pre-reset indicator light, which is connected to the corresponding interface of the pre-reset board. When the axle counting system receives the pre-reset command for the corresponding section, the pre-reset indicator light will light up to indicate to the operator that the axle counting system has received the pre-reset command.

[0066] It should be noted that because the circuit of this invention replaces the traditional relay with a button and a gear switch to achieve the pre-reset and direct reset functions of the axle counter, therefore:

[0067] ① The master reset button must meet the fault-oriented safety principle; a button malfunction must not lead to a dangerous situation. That is, when the button malfunctions (the master reset button is not pressed), the button node for master reset should be in the open state, and there should be no situation where the button node is connected.

[0068] ② The mode selector switch must meet the fault-oriented safety principle; a button malfunction must not lead to a dangerous situation. That is, when the switch malfunctions, the mode selector switch is actually in the "normal" position and cannot be connected to the "pre-reset mode" or "direct reset mode"; when the mode selector switch malfunctions, if the switch is actually in the "pre-reset mode", it cannot be connected to the "direct reset mode".

[0069] ③ Section buttons must meet the fault-oriented safety principle; button malfunctions must not lead to dangerous situations. That is, when a button malfunctions (the section button is not pressed), the section button node should be in an open state, and there should be no situation where the button node is connected.

[0070] 202. The reset command for the axle is determined by the button switch level value corresponding to the preset mode reset circuit of the preset section.

[0071] The axle reset command includes a pre-reset command and a direct reset command.

[0072] This step combines the description of step 102 in the above method, and the same content will not be repeated here.

[0073] 203. When the axle reset command is a pre-reset command, the circuits containing the pre-reset indicator lamp and the reset indicator lamp in the preset section will be turned on to illuminate the pre-reset indicator lamp and the reset indicator lamp respectively.

[0074] For example:

[0075] like Figure 6 As shown, when the axle counting reset command is a pre-reset command, step 201 shows that the pre-reset circuit is already conducting and generates a corresponding button switch level value as the pre-reset command. At this time, the contacts of the 1st section reset button 5 are closed, connecting the circuit where the 1st section reset indicator light is located, illuminating the reset indicator light, and informing the user that the 1st section reset button 5 has been pressed; at the same time, after the pre-reset acquisition terminal of the 1st section acquires the pre-reset command, the circuit where the 1st section pre-reset indicator light is located is conducted, illuminating the pre-reset indicator light, informing the user that the axle counting system has received the 1st section pre-reset command.

[0076] 204. When the axle reset command is a direct reset command, the circuit containing the reset indicator lamp in the preset section will be activated to illuminate the reset indicator lamp.

[0077] For example:

[0078] like Figure 7 As shown, when the axle reset command is a direct reset command, it can be seen from step 201 that the direct reset circuit has been turned on and generates the corresponding button switch level value as a direct reset command. At this time, the contacts of the 1st section reset button 5 are closed, connecting the circuit where the 1st section reset indicator light is located, lighting up the reset indicator light, and indicating that the 1st section reset button 5 has been pressed.

[0079] 205. The axle counting system obtains the axle counting reset command and executes the axle counting reset command to complete the axle counting reset.

[0080] This step combines the description of step 103 in the above method, and the same content will not be repeated here.

[0081] The axle counting system uses the preset mode reset acquisition terminal corresponding to the preset section to acquire the axle counting reset command; when the axle counting reset command is the pre-reset command, the axle counting system resets the wheelset count to zero and detects whether the train has passed through the train line corresponding to the preset section; wherein, the preset section is in an occupied state; when the train passes through the train line corresponding to the preset section, the axle counting system changes the occupied state of the preset section to an idle state; when the axle counting reset command is the direct reset command, the axle counting system resets the wheelset count to zero and simultaneously sets the preset section to an idle state.

[0082] It should be noted that after the pre-reset is completed, the pre-reset indicator light will turn off, informing the user that the pre-reset of section 1 is complete.

[0083] Based on the above Figure 2 As can be seen from the implementation method, this invention provides a shaft counting reset method based on a dual-reset mode. This invention simultaneously implements both pre-reset and direct reset functions, providing users with a more flexible reset method to meet their needs. Furthermore, it replaces the reset-related relays, simplifying the circuit, saving on relay equipment usage, reducing fault points, lowering power consumption, and making fault diagnosis and daily maintenance simpler.

[0084] Furthermore, as a response to the above Figure 1 In addition to the implementation of the method shown, this embodiment of the invention also provides a shaft counting reset device based on a shaft counting dual reset mode, used for the above-mentioned... Figure 1 The method shown is implemented accordingly. This device embodiment corresponds to the foregoing method embodiment. For ease of reading, this device embodiment will not repeat the details of the foregoing method embodiment, but it should be clear that the device in this embodiment can implement all the contents of the foregoing method embodiment. Figure 3 As shown, the device includes:

[0085] The switching unit 31 is used to connect the preset mode reset circuit of the preset section using the main reset button, the preset reset button of the preset section and the mode switching switch of the preset section to generate corresponding button switch level values. The preset mode includes a pre-reset mode and a direct reset mode. The preset reset button includes a pre-reset button and a direct reset button.

[0086] The determining unit 32 is used to determine the axle counting reset command based on the button switch level value corresponding to the preset mode reset circuit of the preset segment obtained from the switching unit 31. The axle counting reset command includes a pre-reset command and a direct reset command.

[0087] The execution unit 33 is used to obtain the axle counting reset command from the determination unit 32 and execute the axle counting reset command to complete the axle counting reset.

[0088] Furthermore, as a response to the above Figure 2 In addition to the method shown, this embodiment of the invention also provides another axle counting reset device based on axle counting dual reset mode, used for the above-mentioned... Figure 2 The method shown is implemented accordingly. This device embodiment corresponds to the foregoing method embodiment. For ease of reading, this device embodiment will not repeat the details of the foregoing method embodiment, but it should be clear that the device in this embodiment can implement all the contents of the foregoing method embodiment. Figure 4 As shown, the device includes:

[0089] The switching unit 31 is used to connect the preset mode reset circuit of the preset section using the main reset button, the preset reset button of the preset section and the mode switching switch of the preset section to generate corresponding button switch level values. The preset mode includes a pre-reset mode and a direct reset mode. The preset reset button includes a pre-reset button and a direct reset button.

[0090] The determining unit 32 is used to determine the axle counting reset command based on the button switch level value corresponding to the preset mode reset circuit of the preset segment obtained from the switching unit 31. The axle counting reset command includes a pre-reset command and a direct reset command.

[0091] The execution unit 33 is used to obtain the axle counting reset command from the determination unit 32 and execute the axle counting reset command to complete the axle counting reset;

[0092] The first connection unit 34 is used to turn on the pre-reset indicator lamp and the reset indicator lamp circuit of the preset section respectively when the axle reset command obtained from the determination unit 32 is a pre-reset command.

[0093] The second connection unit 35 is used to connect the circuit where the reset indicator lamp of the preset section is located and light up the reset indicator lamp when the axle reset command obtained from the determination unit 32 is a direct reset command.

[0094] Furthermore, the preset mode reset circuit is a pre-reset circuit; the switching unit 31 includes:

[0095] The switching module 311 is used to switch the reset circuit mode of the preset section to the pre-reset mode using the mode switching switch of the preset section.

[0096] The connection module 312 is used to switch to the pre-reset mode based on the reset circuit mode of the preset segment obtained from the switching module 311, and to connect the pre-reset circuit of the preset segment using the main reset button and the pre-reset button of the preset segment, wherein the pre-reset button of the preset segment is located on the pre-reset circuit of the preset segment.

[0097] The generation module 313 is used to generate a corresponding button switch level value from the pre-reset circuit of the connected preset section obtained from the connection module 312.

[0098] Furthermore, the connection module 312 is also used to simultaneously press the main reset button and the pre-reset button of the preset section, and continue for a preset time, so as to close the contacts corresponding to the main reset button and the contacts corresponding to the pre-reset button of the preset section to connect the pre-reset circuit of the preset section.

[0099] Furthermore, the preset mode reset circuit is a direct reset circuit; the switching unit 31 includes:

[0100] The switching module 311 is also used to switch the reset circuit mode of the preset section to the direct reset mode using the mode switching switch of the preset section.

[0101] The connection module 312 is also used to switch to the direct reset mode based on the reset circuit mode of the preset segment obtained from the switching module 311, and to connect the direct reset circuit of the preset segment using the main reset button and the direct reset button of the preset segment, wherein the direct reset button of the preset segment is located on the direct reset circuit of the preset segment.

[0102] The generation module 313 is also used to generate a corresponding button switch level value from the direct reset circuit of the connected preset section obtained from the connection module 312.

[0103] Furthermore, the connection module 312 is also used to simultaneously press the main reset button and the direct reset button of the preset section, and continue for a preset time, so as to close the contacts corresponding to the main reset button and the contacts corresponding to the direct reset button of the preset section to connect the direct reset circuit of the preset section.

[0104] Furthermore, the execution unit 33 includes:

[0105] The acquisition module 331 is used by the axle counting system to acquire the axle counting reset command using the preset mode reset acquisition terminal corresponding to the preset section;

[0106] The pre-reset execution module 332 is used to, when the axle counting reset command obtained from the acquisition module 331 is the pre-reset command, reset the wheelset count of the axle counting system to zero and detect whether the train has passed through the train line corresponding to the preset section; wherein, the preset section is in an occupied state;

[0107] Modification module 333 is used to modify the occupied state of the preset section to an idle state when the train obtained from the pre-reset execution module 332 passes through the train line corresponding to the preset section.

[0108] The direct reset module 334 is used to reset the wheelset count of the axle counting system to zero and set the preset section to an idle state when the axle counting reset command obtained from the acquisition module 331 is the direct reset command.

[0109] Furthermore, embodiments of the present invention also provide a processor for running a program, wherein the program executes the above-described... Figures 1-2 The axle counting reset method based on the dual reset mode of axle counting is described in the article.

[0110] Furthermore, embodiments of the present invention also provide a storage medium for storing a computer program, wherein the computer program, when running, controls the device where the storage medium is located to execute the above-described... Figures 1-2 The axle counting reset method based on the dual reset mode of axle counting is described in the article.

[0111] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.

[0112] It is understood that the relevant features in the above methods and apparatus can be referenced interchangeably. Furthermore, the terms "first," "second," etc., in the above embodiments are used to distinguish between embodiments and do not represent the superiority or inferiority of any particular embodiment.

[0113] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.

[0114] The algorithms and displays provided herein are not inherently related to any particular computer, virtual system, or other device. Various general-purpose systems can also be used in conjunction with the teachings herein. The required structure for constructing such systems is apparent from the above description. Furthermore, this invention is not directed to any particular programming language. It should be understood that the contents of the invention described herein can be implemented using various programming languages, and the above description of specific languages ​​is for the purpose of disclosing the best mode of implementation of the invention.

[0115] In addition, the memory may include non-permanent memory in computer-readable media, such as random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM, and the memory includes at least one memory chip.

[0116] Those skilled in the art will understand that embodiments of this application can be provided as methods, systems, or computer program products. Therefore, this application can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, this application can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0117] This application is described with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of this application. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, generate instructions for implementing the flowchart... Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.

[0118] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing device to function in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function specified in one or more boxes.

[0119] These computer program instructions may also be loaded onto a computer or other programmable data processing equipment to cause a series of operational steps to be performed on the computer or other programmable equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 Figure 1 The steps of the function specified in one or more boxes.

[0120] In a typical configuration, a computing device includes one or more processors (CPU), input / output interfaces, network interfaces, and memory.

[0121] Memory may include non-persistent memory in computer-readable media, such as random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM. Memory is an example of computer-readable media.

[0122] Computer-readable media includes both permanent and non-permanent, removable and non-removable media that can store information using any method or technology. Information can be computer-readable instructions, data structures, modules of programs, or other data. Examples of computer storage media include, but are not limited to, phase-change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, CD-ROM, digital versatile optical disc (DVD) or other optical storage, magnetic tape, magnetic magnetic disk storage or other magnetic storage devices, or any other non-transferable medium that can be used to store information accessible by a computing device. As defined herein, computer-readable media does not include transient computer-readable media, such as modulated data signals and carrier waves.

[0123] It should also be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.

[0124] Those skilled in the art will understand that embodiments of this application can be provided as methods, systems, or computer program products. Therefore, this application can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, this application can take the form of a computer program product embodied on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0125] The above are merely embodiments of this application and are not intended to limit the scope of this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the scope of the claims of this application.

Claims

1. A shaft counting reset method based on a shaft counting dual reset mode, characterized in that, The method includes: The preset mode reset circuit of the preset section is connected by the main reset button, the preset reset button of the preset section, and the mode switching switch of the preset section to generate corresponding button switch level values. The preset mode includes a pre-reset mode and a direct reset mode; the preset reset button includes a pre-reset button and a direct reset button. The axle counting reset command is determined based on the button switch level value corresponding to the preset mode reset circuit of the preset section. The axle counting reset command includes a pre-reset command and a direct reset command. The axle counting system uses a preset mode to reset the acquisition terminal to obtain the axle counting reset command, and executes the axle counting reset command to complete the axle counting reset.

2. The method according to claim 1, characterized in that, The preset mode reset circuit is a pre-reset circuit; The method of using the master reset button, the preset reset button of the preset section, and the mode switching switch of the preset section to connect the preset mode reset circuit of the preset section to generate the corresponding button switch level value includes: The reset circuit mode of the preset section is switched to the pre-reset mode using the mode switching switch of the preset section; The reset circuit mode of the preset section is switched to the pre-reset mode, and the pre-reset circuit of the preset section is connected by the main reset button and the pre-reset button of the preset section. The pre-reset button of the preset section is located on the pre-reset circuit of the preset section. The pre-reset circuit of the connected preset section generates a corresponding button switch level value.

3. The method according to claim 2, characterized in that, The switching of the reset circuit mode based on the preset segment to the pre-reset mode, and the activation of the pre-reset circuit of the preset segment using the master reset button and the pre-reset button of the preset segment, includes: Simultaneously press the main reset button and the pre-reset button of the preset section for a preset time to close the contacts corresponding to the main reset button and the pre-reset button of the preset section, thus connecting the pre-reset circuit of the preset section.

4. The method according to claim 1, characterized in that, The preset mode reset circuit is a direct reset circuit; The method of using the master reset button, the preset reset button of the preset section, and the mode switching switch of the preset section to connect the preset mode reset circuit of the preset section to generate the corresponding button switch level value includes: The reset circuit mode of the preset section is switched to the direct reset mode using the mode switching switch of the preset section; The reset circuit mode of the preset section is switched to the direct reset mode, and the direct reset circuit of the preset section is connected by the main reset button and the direct reset button of the preset section. The direct reset button of the preset section is located on the direct reset circuit of the preset section. The direct reset circuit of the connected preset section generates the corresponding button switch level value.

5. The method according to claim 4, characterized in that, The switching from the reset circuit mode based on the preset segment to the direct reset mode, and connecting the direct reset circuit of the preset segment using the master reset button and the direct reset button of the preset segment, includes: Simultaneously press the main reset button and the direct reset button of the preset section for a preset time to close the contacts corresponding to the main reset button and the direct reset button of the preset section, thus activating the direct reset circuit of the preset section.

6. The method according to any one of claims 1-5, characterized in that, After determining the axle reset command based on the button switch level value corresponding to the preset mode reset circuit of the preset segment, the method includes: When the axle reset command is a pre-reset command, the pre-reset indicator lamp and the reset indicator lamp circuit of the preset section are respectively turned on to illuminate the pre-reset indicator lamp and the reset indicator lamp; When the axle reset command is a direct reset command, the circuit containing the reset indicator lamp in the preset section is activated to illuminate the reset indicator lamp.

7. The method according to claim 6, characterized in that, The axle counting system acquires the axle counting reset command and executes the axle counting reset command to complete the axle counting reset, including: The axle counting system uses the preset mode reset acquisition terminal corresponding to the preset section to acquire the axle counting reset command; When the axle counting reset command is the pre-reset command, the axle counting system will reset the wheelset count to zero and detect whether the train has passed through the train line corresponding to the preset section; wherein, the preset section is in an occupied state; When a train passes through the train line corresponding to the preset section, the axle counting system changes the occupied state of the preset section to the idle state. When the axle counting reset command is the direct reset command, the axle counting system will reset the wheelset count to zero and simultaneously set the preset section to an idle state.

8. A shaft counting reset device based on a shaft counting dual reset mode, characterized in that, include: A switching unit is used to connect the preset mode reset circuit of the preset section using the main reset button, the preset reset button of the preset section, and the mode switching switch of the preset section to generate corresponding button switch level values. The preset mode includes a pre-reset mode and a direct reset mode. The preset reset button includes a pre-reset button and a direct reset button. The determining unit is used to determine the axle counting reset command based on the button switch level value corresponding to the preset mode reset circuit of the preset section. The axle counting reset command includes a pre-reset command and a direct reset command. The execution unit is used to obtain the axle counting reset command from the reset acquisition terminal using a preset mode, and to execute the axle counting reset command to complete the axle counting reset.

9. A storage medium comprising a stored program, characterized in that, When the program is running, it controls the device where the storage medium is located to execute the axle counting reset method based on the axle counting dual reset mode as described in any one of claims 1 to 7.

10. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the program, it implements the axle counting reset method based on the axle counting dual reset mode as described in any one of claims 1 to 7.

Citation Information

Patent Citations

  • Axle counting method and equipment

    CN113665625A