New energy vehicle-mounted signal connector bundle monitoring method, production system and device

Through the unwinder and body machine in the production system of new energy vehicle-mounted signal connectors, the collection process of signal connection singles is optimized, and the problem of excessive collection or metal fatigue of new energy vehicle-mounted audio/video signal shielded connectors is easily encountered during the collection process, improving communication reliability.

CN119687852BActive Publication Date: 2025-06-20MINGSHANG TECH CO LTD +1
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Patent Information

Application Number
CN202510198932.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-06-20
Estimated Expiration
2045-02-24

AI Technical Summary

Technical Problem

New energy vehicle-mounted audio/video signal shielded connectors are prone to excessive collection or metal fatigue during the collection process, resulting in uneven connections or cracks, affecting communication reliability.

Method used

The new energy vehicle-mounted signal connector production system is adopted, including an unwinding machine and a beam machine. By obtaining the unwinding state parameters of the electrically connected single-unwinding coil of the signal conductive coil, the mode adjustment processing of the electrically connected single-unwinding is carried out, and the linearly gathering and closing working mode of the signal-connecting single is adjusted to optimize the collection process of the signal-connecting single.

Benefits of technology

It effectively improves the communication reliability of the signal shielded connector, reduces the chance of the connector being damaged, and keeps the connector of the signal connector being consistent.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure provides a method, a production system and a device for monitoring a signal connector bundle for new energy vehicles. The method includes obtaining the unwinding state parameters of the electrical connection monomers of the signal conductive coil; performing electrical connection monomer fixed mold leveling processing on the unwinding state parameters of the electrical connection monomers and the preset unwinding state parameters to obtain the monomer fixed mold leveling amount; sending an electrical connection monomer bundle combining adjustment signal to the bundle machine according to the monomer fixed mold leveling amount. The current signal connection monomer unwinding state of each signal connection monomer of the signal conductive coil is determined, and then the unwinding state parameters of the electrical connection monomers are compared with the standard signal monomer unwinding state parameters. Finally, according to the above difference value, the linear gathering and closing working mode of each signal connection monomer is optimized and adjusted, effectively improving the communication reliability of the signal shielding connector.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of new energy vehicles, and particularly to a monitoring method, production system and device for a signal connector bundle for new energy vehicles. Background Art

[0002] With the rapid development of digital technology, new energy vehicle communication devices are not only widely used in various new energy vehicles, but also more widely popularized in various mobile communication vehicles. The continuous expansion and extension of the new energy vehicle communication network, as well as the sharp increase in the amount of transmitted information, on the one hand, cause the usage of audio / video and other signal connectors for network deployment to increase significantly; on the other hand, it is required that the signal connectors have higher transmission speeds and wider transmission bandwidths to achieve fast and accurate information transmission. The transmission speed range has also developed from 10 Mbps to 10000 Mbps, and it can be foreseen that due to the increasing communication volume, the speed of the new energy vehicle communication network will far exceed 1000 Mbps in the near future, which urgently requires people to provide a signal connector with better electrical performance. The structure of an ordinary single-type signal connector is that a copper conductor is extruded with an insulating layer, and the signal connection monomers are gathered and closed for production, and the outside is provided with a polyolefin outer sheath. The main structure of a high-speed signal connector is that an inner monomer is extruded or wrapped with an insulating layer, and then aluminum foil or braiding is used as the outer conductor and polyolefin is used as the outer sheath.

[0003] Since the signal connection monomers are copper wires and have a certain ductility, in the process of closing of traditional new energy vehicle audio / video signal shielded connectors, the signal connection monomers are prone to excessive closing or metal fatigue, resulting in uneven connection bodies or cracks in the closed signal shielded connectors, thereby resulting in poor communication reliability of the signal shielded connectors and failing to meet the requirements of high-speed transmission. Summary of the Invention

[0004] The purpose of the present disclosure is to overcome the deficiencies in the prior art and provide a monitoring method, production system and device for a signal connector bundle for new energy vehicles that can effectively improve communication reliability.

[0005] The purpose of the present disclosure is achieved through the following technical solutions:

[0006] A monitoring method for a signal connector bundle for new energy vehicles, comprising: producing a signal shielding connector using a production system for signal connectors for new energy vehicles, the production system for signal connectors for new energy vehicles including: an unwinder and a bundler; the unwinder includes an unwinding roller and a winder, the unwinding roller and the winder are arranged opposite to each other, the unwinding roller is used for winding at least one signal conductive coil, the winding end of the winder faces the unwinding roller, and the winding end of the winder is used for pulling out the signal connection monomers of the signal conductive coil; the bundler is located on the side of the winder away from the unwinding roller, and the gathering end of the bundler faces the winding transmission channel of the winder, and the gathering end of the bundler is used for linearly gathering and closing a plurality of signal connection monomers;

[0007] The monitoring method for a signal connector bundle for new energy vehicles, comprising:

[0008] Obtaining the unwinding state parameters of the electrical connection monomers of the signal conductive coil;

[0009] Performing electrical connection monomer fixed mold adjustment processing on the unwinding state parameters of the electrical connection monomers and the preset unwinding state parameters to obtain a monomer fixed mold adjustment amount;

[0010] Sending an electrical connection monomer bundling adjustment signal to the bundler according to the monomer fixed mold adjustment amount to adjust the linear gathering and closing working mode of each signal connection monomer.

[0011] In one embodiment, the unwinding state parameters of the electrical connection monomers include the diameter and length of the electrical connection monomers of the signal conductive coil.

[0012] In one embodiment, the performing electrical connection monomer fixed mold adjustment processing on the unwinding state parameters of the electrical connection monomers and the preset unwinding state parameters to obtain a monomer fixed mold adjustment amount includes: obtaining the adjustment of the diameter of the electrical connection monomer and the preset monomer diameter to obtain a monomer diameter adjustment.

[0013] In one embodiment, the sending an electrical connection monomer bundling adjustment signal to the bundler according to the monomer fixed mold adjustment amount to adjust the linear gathering and closing working mode of each signal connection monomer includes: detecting whether the monomer diameter adjustment is greater than the preset diameter adjustment; when the monomer diameter adjustment is greater than the preset diameter adjustment, sending a torque increasing and speed increasing signal to the bundler.

[0014] In one embodiment, the performing electrical connection monomer fixed mold adjustment processing on the unwinding state parameters of the electrical connection monomers and the preset unwinding state parameters to obtain a monomer fixed mold adjustment amount includes: obtaining the adjustment of the length of the electrical connection monomer and the preset monomer length to obtain a monomer length adjustment.

[0015] In one embodiment, sending an electrical connection monomer beam combination adjustment signal to the beam body machine according to the monomer fixed mold adjustment amount to adjust the linear gathering and closing working mode of each signal-connected monomer includes: detecting whether the monomer length adjustment is greater than a preset length adjustment; when the monomer length adjustment is less than the preset length adjustment, sending a torque reduction and speed reduction signal to the beam body machine.

[0016] A signal connector beam body monitoring device for new energy vehicles includes: a signal monomer unwinding and collecting module, a fixed mold processing module, and a closing control module; the signal monomer unwinding and collecting module is used to obtain the electrical connection monomer unwinding state parameters of the signal conductive coil; the fixed mold processing module is used to perform electrical connection monomer fixed mold adjustment processing on the electrical connection monomer unwinding state parameters and preset unwinding state parameters to obtain a monomer fixed mold adjustment amount; the closing control module is used to send an electrical connection monomer beam combination adjustment signal to the beam body machine according to the monomer fixed mold adjustment amount to adjust the linear gathering and closing working mode of each signal-connected monomer.

[0017] A computer device includes a memory and a processor. When the processor executes the computer program, the following steps are implemented:

[0018] Obtaining the electrical connection monomer unwinding state parameters of the signal conductive coil;

[0019] Performing electrical connection monomer fixed mold adjustment processing on the electrical connection monomer unwinding state parameters and preset unwinding state parameters to obtain a monomer fixed mold adjustment amount;

[0020] Sending an electrical connection monomer beam combination adjustment signal to the beam body machine according to the monomer fixed mold adjustment amount to adjust the linear gathering and closing working mode of each signal-connected monomer.

[0021] A computer-readable storage medium stores a computer program. When the computer program is executed by a processor, the following steps are implemented:

[0022] Obtaining the electrical connection monomer unwinding state parameters of the signal conductive coil;

[0023] Performing electrical connection monomer fixed mold adjustment processing on the electrical connection monomer unwinding state parameters and preset unwinding state parameters to obtain a monomer fixed mold adjustment amount;

[0024] Sending an electrical connection monomer beam combination adjustment signal to the beam body machine according to the monomer fixed mold adjustment amount to adjust the linear gathering and closing working mode of each signal-connected monomer.

[0025] Compared with the prior art, the present disclosure has at least the following advantages:

[0026] After collecting the unwinding state parameters of the electrical connection monomers, determine the current unwinding state of each signal connection monomer of the signal conductive coil. Then, compare the unwinding state parameters of the electrical connection monomers with the standard unwinding state parameters of the signal monomers to facilitate determining the difference between the current unwinding state of each signal connection monomer and the specified unwinding state of the signal connection monomer. Finally, based on the above difference value, optimize and adjust the linear aggregation and closing working mode of each signal connection monomer, so that the connectors of the signal shielding connectors linearly aggregated and closed by multiple signal connection monomers are consistent, thereby reducing the probability of damage to the connectors of the signal shielding connectors and effectively improving the communication reliability of the signal shielding connectors. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the drawings required for use in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of the present disclosure and should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.

[0028] Figure 1 It is a flowchart of a method for monitoring a signal connector bundle for new energy vehicles in an embodiment;

[0029] Figure 2 It is an internal structure diagram of a computer device in an embodiment. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0030] To facilitate the understanding of the present disclosure, the present disclosure will be described more comprehensively below with reference to the relevant drawings. The preferred embodiments of the present disclosure are shown in the drawings. However, the present disclosure can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present disclosure more thorough and comprehensive.

[0031] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly on the other element or there can also be an intermediate element. When an element is considered to be "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are only for the purpose of illustration and do not represent the only embodiments.

[0032] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which the present disclosure belongs. The terms used herein in the specification of the present disclosure are only for the purpose of describing specific embodiments and are not intended to limit the present disclosure. The term "and / or" used herein includes any and all combinations of one or more of the related listed items.

[0033] The present disclosure relates to a signal connector bundle monitoring method for new energy vehicles. In one embodiment, the signal connector bundle monitoring method for new energy vehicles includes obtaining the unwinding state parameters of the electric connection monomer of the signal conductive coil; performing electric connection monomer fixed-mode adjustment processing on the electric connection monomer unwinding state parameters and the preset unwinding state parameters to obtain the monomer fixed-mode adjustment amount; and sending an electric connection monomer bundle adjustment signal to the bundle machine according to the monomer fixed-mode adjustment amount to adjust the linear gathering and retraction working mode of each signal connection monomer. After collecting the parameters of the unwinding state of the electrical connection monomer, the current signal connection monomer unwinding state of each signal connection monomer of the signal conductive reel is determined, and then the electrical connection monomer unwinding state parameters are compared with the standard signal monomer unwinding state parameters to facilitate determining the difference between the current signal connection monomer unwinding state of each signal connection monomer and the specified signal connection monomer unwinding state. Finally, according to the above difference value, the linear gathering and retraction working mode of each signal connection monomer is optimized and adjusted, so that the connector of the signal shielding connector formed by the linear gathering and retraction of multiple signal connection monomers remains consistent, so as to reduce the probability of damage to the connector of the signal shielding connector, and effectively improve the communication reliability of the signal shielding connector.

[0034] See also Figure 1 , which is a flow chart of a signal connector bundle monitoring method for new energy vehicles according to an embodiment of the present disclosure. The signal connector production system for new energy vehicles includes: an unwinder and a bundle machine; the unwinder includes an unwinding roller and a reel, the unwinding roller is arranged opposite to the reel, the unwinding roller is used to wind at least one signal conductive roll, the reeling end of the reel faces the unwinding roller, and the reeling end of the reel is used to pull out the signal connection monomer of the signal conductive roll; the bundle machine is located on the side of the reel away from the unwinding roller, the gathering end of the bundle machine faces the reeling transmission channel of the reel, and the gathering end of the bundle machine is used to linearly gather and retract multiple signal connection monomers. Among them, the signal connector bundle monitoring method for new energy vehicles includes some or all of the following steps.

[0035] S100: Obtaining the unwinding state parameters of the electrical connection unit of the signal conductive roll.

[0036] In this embodiment, the unrolling state parameter of the electrical connection monomer is the extraction state data of the signal connection monomer of the signal conductive coil during the signal monomer unrolling process, that is, the unrolling state parameter of the electrical connection monomer is the monomer release situation of the signal connection monomer of the signal conductive coil before linear aggregation and closing, that is, the unrolling state parameter of the electrical connection monomer corresponds to the current signal connection monomer unrolling specification of the signal connection monomer of the signal conductive coil. By collecting the unrolling state parameter of the electrical connection monomer, it is convenient to determine the signal connection monomer specification situation of each signal connection monomer of the signal conductive coil during unrolling.

[0037] S200: Perform electrical connection monomer fixed mold adjustment processing on the unrolling state parameter of the electrical connection monomer and the preset unrolling state parameter to obtain the monomer fixed mold adjustment amount.

[0038] In this embodiment, the unrolling state parameter of the electrical connection monomer is the extraction state data of the signal connection monomer of the signal conductive coil during the signal monomer unrolling process, that is, the unrolling state parameter of the electrical connection monomer is the monomer release situation of the signal connection monomer of the signal conductive coil before linear aggregation and closing, that is, the unrolling state parameter of the electrical connection monomer corresponds to the current extracted signal connection monomer specification of the signal connection monomer of the signal conductive coil. By collecting the unrolling state parameter of the electrical connection monomer, it is convenient to determine the signal connection monomer specification situation of each signal connection monomer of the signal conductive coil during unrolling. The preset unrolling state parameter is the predetermined unrolling state data of the signal connection monomer of the signal conductive coil during the signal monomer unrolling process, that is, the preset unrolling state parameter is the reference monomer release situation of the signal connection monomer of the signal conductive coil before linear aggregation and closing, that is, the preset unrolling state parameter corresponds to the unrolling signal connection monomer standard specification of the signal connection monomer of the signal conductive coil. By performing electrical connection monomer fixed mold adjustment processing on the unrolling state parameter of the electrical connection monomer and the preset unrolling state parameter, it is convenient to determine the difference degree between the current extracted signal connection monomer specification of the signal connection monomer of the signal conductive coil and the standard signal monomer unrolling specification.

[0039] S300: Send an electrical connection monomer beam combination adjustment signal to the beam body machine according to the monomer fixed mold adjustment amount to adjust the linear aggregation and closing working mode of each signal connection monomer.

[0040] In this embodiment, the monomer die setting adjustment amount is obtained based on the unwinding state parameters of the electrical connection monomer and the preset unwinding state parameters. The unwinding state parameters of the electrical connection monomer are the extraction state data of the signal connection monomer of the signal conductive coil during the signal monomer unwinding process, that is, the unwinding state parameters of the electrical connection monomer are the monomer release conditions of the signal connection monomer of the signal conductive coil before linear aggregation and convergence. That is to say, the unwinding state parameters of the electrical connection monomer correspond to the current extraction signal connection monomer specifications of the signal connection monomer of the signal conductive coil. By collecting the unwinding state parameters of the electrical connection monomer, it is convenient to determine the signal connection monomer specifications of each signal connection monomer of the signal conductive coil during unwinding. The preset unwinding state parameters are the predetermined unwinding state data of the signal connection monomer of the signal conductive coil during the signal monomer unwinding process, that is, the preset unwinding state parameters are the reference monomer release conditions of the signal connection monomer of the signal conductive coil before linear aggregation and convergence. That is to say, the preset unwinding state parameters correspond to the unwinding signal connection monomer standard specifications of the signal connection monomer of the signal conductive coil. By performing die setting adjustment processing on the unwinding state parameters of the electrical connection monomer and the preset unwinding state parameters, it is convenient to determine the degree of difference between the current extraction signal connection monomer specifications of the signal connection monomer of the signal conductive coil and the standard signal monomer unwinding specifications. The monomer die setting adjustment amount is used to reflect the signal connection monomer specification differences corresponding to the signal connection monomer of the signal conductive coil during unwinding, which is convenient for the beam body machine to adjust the linear aggregation and convergence method of the signal connection monomer during the linear aggregation and convergence process, so that the linear aggregation and convergence between multiple signal connection monomers is more uniform, thereby making the connection bodies of the signal shielded connectors formed by linear aggregation and convergence consistent.

[0041] In this embodiment, after collecting the unwinding state parameters of the electrical connection monomer, the current signal connection monomer unwinding state of each signal connection monomer of the signal conductive coil is determined. Then, the unwinding state parameters of the electrical connection monomer are compared with the standard signal monomer unwinding state parameters to facilitate determining the difference between the current signal connection monomer unwinding state of each signal connection monomer and the specified signal connection monomer unwinding state. Finally, based on the above difference value, the linear aggregation and convergence working mode of each signal connection monomer is optimized and adjusted, so that the connection bodies of the signal shielded connectors formed by linear aggregation and convergence of multiple signal connection monomers are consistent, thereby reducing the probability of damage to the connection bodies of the signal shielded connectors and effectively improving the communication reliability of the signal shielded connectors.

[0042] In one of the embodiments, obtaining the unwinding state parameters of the electrically connected monomers of the signal conductive coil includes: obtaining the diameter of the electrically connected monomers of the signal conductive coil. In this embodiment, the unwinding state parameters of the electrically connected monomers are the extraction state data of the signal-connected monomers of the signal conductive coil in the signal monomer unwinding process, that is, the unwinding state parameters of the electrically connected monomers are the monomer release conditions of the signal-connected monomers of the signal conductive coil before linear aggregation and convergence, that is, the unwinding state parameters of the electrically connected monomers correspond to the current signal connection monomer unwinding specifications of the signal-connected monomers of the signal conductive coil. By collecting the unwinding state parameters of the electrically connected monomers, it is convenient to determine the signal connection monomer specifications of each signal-connected monomer of the signal conductive coil during unwinding. The unwinding state parameters of the electrically connected monomers include the diameter of the electrically connected monomers of the signal conductive coil, and the diameter of the electrically connected monomers is the diameter of the signal-connected monomers. By collecting the diameter of the electrically connected monomers, it is convenient to determine the thickness of each signal-connected monomer extracted by the unwinding machine, thereby facilitating the subsequent adjustment of the linear aggregation and convergence method of each signal-connected monomer.

[0043] Further, the process of performing electro - connection monomer fixed - mold adjustment processing on the electro - connection monomer unwinding state parameters and preset unwinding state parameters to obtain the monomer fixed - mold adjustment amount includes: obtaining the adjustment between the diameter of the electro - connection monomer and the preset monomer diameter to obtain the monomer diameter adjustment. In this embodiment, the electro - connection monomer unwinding state parameter is the extraction state data of the signal - connecting monomer of the signal - conductive roll in the signal - monomer unwinding process, that is, the electro - connection monomer unwinding state parameter is the situation of the released monomer of the signal - connecting monomer of the signal - conductive roll before linear aggregation and closing, that is, the electro - connection monomer unwinding state parameter corresponds to the current extraction signal - connecting monomer specification of the signal - connecting monomer of the signal - conductive roll. By collecting the electro - connection monomer unwinding state parameters, it is convenient to determine the signal - connecting monomer specification situation of each signal - connecting monomer of the signal - conductive roll during unwinding. The preset unwinding state parameter is the predetermined unwinding state data of the signal - connecting monomer of the signal - conductive roll in the signal - monomer unwinding process, that is, the preset unwinding state parameter is the reference released monomer situation of the signal - connecting monomer of the signal - conductive roll before linear aggregation and closing, that is, the preset unwinding state parameter corresponds to the unwinding signal - connecting monomer standard specification of the signal - connecting monomer of the signal - conductive roll. By performing electro - connection monomer fixed - mold adjustment processing on the electro - connection monomer unwinding state parameters and the preset unwinding state parameters, it is convenient to determine the difference degree between the current extraction signal - connecting monomer specification of the signal - connecting monomer of the signal - conductive roll and the standard signal - monomer unwinding specification. The electro - connection monomer unwinding state parameter includes the diameter of the electro - connection monomer of the signal - conductive roll, and the electro - connection monomer diameter is the diameter of the signal - connecting monomer. By collecting the electro - connection monomer diameter, it is convenient to determine the thickness situation of each signal - connecting monomer extracted by the unwinder, so as to facilitate subsequent adjustment of the linear aggregation and closing method of each signal - connecting monomer. The preset monomer diameter is the reference diameter of the signal - connecting monomer. For example, the preset monomer diameter is the diameter of the signal - connecting monomer corresponding to a new - energy vehicle - mounted video / audio signal - shielding connector with a signal transmission of 5000 Mbps; another example is that the preset monomer diameter is the diameter of the signal - connecting monomer corresponding to a 2K new - energy vehicle - mounted video / audio signal - shielding connector. By performing the adjustment operation between the electro - connection monomer diameter and the preset monomer diameter, the least - squares difference between the electro - connection monomer diameter and the preset monomer diameter is obtained to improve the accuracy of the difference degree between the two, that is, to improve the acquisition accuracy of the monomer diameter adjustment.

[0044] Furthermore, the step of sending an electric connection monomer bundling adjustment signal to the bundling machine according to the monomer fixed die adjustment to adjust the linear gathering and retracting working mode of each signal connection monomer includes: detecting whether the monomer diameter adjustment is greater than the preset diameter adjustment; when the monomer diameter adjustment is greater than the preset diameter adjustment, sending a torque increase and speed increase signal to the bundling machine. In this embodiment, the monomer fixed die adjustment is obtained based on the electric connection monomer unwinding state parameter and the preset unwinding state parameter, and the electric connection monomer unwinding state parameter is the extraction state data of the signal connection monomer of the signal conductive roll in the signal monomer unwinding process, that is, the electric connection monomer unwinding state parameter is the unwinding monomer state of the signal connection monomer of the signal conductive roll before the linear gathering and retracting, that is, the electric connection monomer unwinding state parameter corresponds to the current extracted signal connection monomer specification of the signal connection monomer of the signal conductive roll. By collecting the electric connection monomer unwinding state parameter, it is convenient to determine the signal connection monomer specification of each signal connection monomer of the signal conductive roll when unwinding. The preset unwinding state parameter is the predetermined unwinding state data of the signal connection monomer of the signal conductive roll in the signal monomer unwinding process, that is, the preset unwinding state parameter is the reference unwinding monomer situation of the signal connection monomer of the signal conductive roll before the linear gathering and contraction, that is, the preset unwinding state parameter corresponds to the standard specification of the unwinding signal connection monomer of the signal connection monomer of the signal conductive roll. By processing the electric connection monomer unwinding state parameter with the electric connection monomer fixed mold adjustment of the preset unwinding state parameter, it is convenient to determine the difference between the current extracted signal connection monomer specification of the signal connection monomer of the signal conductive roll and the standard signal monomer unwinding specification. The monomer fixed mold adjustment amount is used to reflect the difference in signal connection monomer specifications corresponding to the signal connection monomer of the signal conductive roll when unwinding, so as to facilitate the linear gathering and contraction method of the signal connection monomer of the bundle body machine in the linear gathering and contraction process to make the linear gathering and contraction between multiple signal connection monomers more uniform, so as to make the connector of the signal shielded connector after linear gathering and contraction consistent. The electrical connection monomer unwinding state parameter includes the electrical connection monomer diameter of the signal conductive coil, and the electrical connection monomer diameter is the diameter of the signal connection monomer. By collecting the electrical connection monomer diameter, it is convenient to determine the thickness of each signal connection monomer extracted by the unwinding machine, so as to facilitate the subsequent adjustment of the linear gathering and folding mode of each signal connection monomer. The preset monomer diameter is the reference diameter of the signal connection monomer. For example, the preset monomer diameter is the diameter of the signal connection monomer corresponding to the signal shielding connector of the new energy vehicle video / audio with a signal transmission of 5000Mbps; for another example, the preset monomer diameter is the diameter of the signal connection monomer corresponding to the signal shielding connector of the 2K new energy vehicle video / audio.By performing an adjustment operation on the diameter of the electrical connection monomer and the preset monomer diameter, the least square difference between the diameter of the electrical connection monomer and the preset monomer diameter is obtained to improve the accuracy of the difference degree between the two, that is, to improve the acquisition accuracy of the adjustment of the monomer diameter. The adjustment of the monomer diameter is greater than the preset diameter adjustment, indicating that the diameter of the extracted signal connection monomer exceeds the specified diameter, that is, indicating that the monomer diameter of the signal conductive coil is too large during the unwinding of the signal monomer, that is, indicating that the signal conductive coil will have excessive unwinding and extension of the signal monomer before linear aggregation and closing. At this time, excessive aggregation is likely to occur during linear aggregation and closing, that is, convex bumps appear on the connection body of the signal shielded connector formed by linear aggregation and closing, resulting in unevenness of the connection body of the signal shielded connector. To avoid the above situation, a signal of increasing torque and speed is sent to the beam body machine to increase the linear aggregation and closing torque of the beam body machine, and at the same time increase the signal monomer unwinding speed of the unwinding machine. By increasing the linear aggregation and closing torque, it is convenient to tighten the signal connection monomer during linear aggregation and closing to flatten the surface of the connection body of the signal shielded connector. At the same time, by increasing the signal monomer unwinding speed, it is convenient to straighten the signal connection monomer and avoid the situation of overlapping between signal connection monomers during linear aggregation and closing, effectively improving the consistency of the connection body of the signal shielded connector after linear aggregation and closing.

[0045] In another embodiment, when the adjustment of the monomer diameter is less than the preset diameter adjustment, a signal of decreasing torque and speed is sent to the beam body machine to reduce the linear aggregation and closing torque of the beam body machine, and at the same time reduce the signal monomer unwinding speed of the unwinding machine. Among them, reducing the linear aggregation and closing torque can avoid overstretching the signal connection monomer with too small a monomer diameter, thereby avoiding cracks or fractures in the signal connection monomer. And since the monomer diameter is too small at this time and the mass of the signal connection monomer is too light, it is easy to swing during the unwinding process. By reducing the signal monomer unwinding speed, it is possible to avoid the situation where signal connection monomers cross and contact each other during the unwinding of the signal monomer, ensuring that the signal connection monomers are separated from each other before linear aggregation and closing, and also avoiding excessive aggregation.

[0046] In another embodiment, when the adjustment of the monomer diameter is equal to the preset diameter adjustment, the current torque and the signal monomer unwinding speed are maintained.

[0047] In one of the embodiments, obtaining the unwinding state parameters of the electrically connected monomers of the signal conductive coil includes: obtaining the length of the electrically connected monomers of the signal conductive coil. In this embodiment, the unwinding state parameters of the electrically connected monomers are the extraction state data of the signal connection monomers of the signal conductive coil in the signal monomer unwinding process, that is, the unwinding state parameters of the electrically connected monomers are the monomer release conditions of the signal connection monomers of the signal conductive coil before linear aggregation and closing, that is, the unwinding state parameters of the electrically connected monomers correspond to the current signal connection monomer unwinding specifications of the signal connection monomers of the signal conductive coil. By collecting the unwinding state parameters of the electrically connected monomers, it is convenient to determine the signal connection monomer specifications of each signal connection monomer of the signal conductive coil during unwinding. The unwinding state parameters of the electrically connected monomers include the length of the electrically connected monomers of the signal conductive coil, and the length of the electrically connected monomers is the length of the signal connection monomers. By collecting the length of the electrically connected monomers, it is convenient to determine the length conditions of the signal connection monomers extracted by the unwinding machine, so as to facilitate the subsequent adjustment of the linear aggregation and closing methods of the signal connection monomers.

[0048] Further, the process of performing electrical connection monomer fixed mold adjustment processing on the electrical connection monomer unwinding state parameters and the preset unwinding state parameters to obtain the monomer fixed mold adjustment amount includes: obtaining the adjustment between the length of the electrical connection monomer and the preset monomer length to obtain the monomer length adjustment. In this embodiment, the electrical connection monomer unwinding state parameter is the extraction state data of the signal connection monomer of the signal conductive coil during the signal monomer unwinding process, that is, the electrical connection monomer unwinding state parameter is the situation of the released monomer of the signal connection monomer of the signal conductive coil before linear aggregation and closing, that is, the electrical connection monomer unwinding state parameter corresponds to the current extracted signal connection monomer specification of the signal connection monomer of the signal conductive coil. By collecting the electrical connection monomer unwinding state parameters, it is convenient to determine the signal connection monomer specifications of each signal connection monomer of the signal conductive coil during unwinding. The preset unwinding state parameter is the predetermined unwinding state data of the signal connection monomer of the signal conductive coil during the signal monomer unwinding process, that is, the preset unwinding state parameter is the reference released monomer situation of the signal connection monomer of the signal conductive coil before linear aggregation and closing, that is, the preset unwinding state parameter corresponds to the unwinding signal connection monomer standard specification of the signal connection monomer of the signal conductive coil. By performing electrical connection monomer fixed mold adjustment processing on the electrical connection monomer unwinding state parameter and the preset unwinding state parameter, it is convenient to determine the difference degree between the current extracted signal connection monomer specification of the signal connection monomer of the signal conductive coil and the standard signal monomer unwinding specification. The electrical connection monomer unwinding state parameter includes the length of the electrical connection monomer of the signal conductive coil, and the length of the electrical connection monomer is the length of the signal connection monomer. By collecting the length of the electrical connection monomer, it is convenient to determine the length of each signal connection monomer extracted by the unwinder, so as to facilitate the subsequent adjustment of the linear aggregation and closing method of each signal connection monomer. The preset monomer length is the reference length of the signal connection monomer. For example, the preset monomer length is the length of the signal connection monomer corresponding to the signal shielded connector of new energy vehicle video / audio with a signal transmission of 5000 Mbps; another example is that the preset monomer length is the length of the signal connection monomer corresponding to the signal shielded connector of 2K new energy vehicle video / audio. By performing the adjustment operation between the length of the electrical connection monomer and the preset monomer length, the least square difference between the length of the electrical connection monomer and the preset monomer length is obtained to improve the accuracy of the difference degree between the two, that is, to improve the acquisition accuracy of the monomer length adjustment.

[0049] Further, sending an electrical connection monomer beam combination adjustment signal to the beam body machine according to the monomer fixed mold adjustment amount to adjust the linear gathering and closing working mode of each signal-connected monomer, including: detecting whether the monomer length adjustment is greater than a preset length adjustment; when the monomer length adjustment is less than the preset length adjustment, sending a torque reduction and speed reduction signal to the beam body machine. In this embodiment, the monomer fixed mold adjustment amount is obtained based on the electrical connection monomer unwinding state parameter and the preset unwinding state parameter. The electrical connection monomer unwinding state parameter is the extraction state data of the signal-connected monomer of the signal conductive coil in the signal monomer unwinding process, that is, the electrical connection monomer unwinding state parameter is the monomer release situation of the signal-connected monomer of the signal conductive coil before linear gathering and closing, that is, the electrical connection monomer unwinding state parameter corresponds to the current extracted signal-connected monomer specification of the signal-connected monomer of the signal conductive coil. By collecting the electrical connection monomer unwinding state parameter, it is convenient to determine the signal-connected monomer specification situation of each signal-connected monomer of the signal conductive coil during unwinding. The preset unwinding state parameter is the predetermined unwinding state data of the signal-connected monomer of the signal conductive coil in the signal monomer unwinding process, that is, the preset unwinding state parameter is the reference monomer release situation of the signal-connected monomer of the signal conductive coil before linear gathering and closing, that is, the preset unwinding state parameter corresponds to the unwinding signal-connected monomer standard specification of the signal-connected monomer of the signal conductive coil. By performing electrical connection monomer fixed mold adjustment processing on the electrical connection monomer unwinding state parameter and the preset unwinding state parameter, it is convenient to determine the difference degree between the current extracted signal-connected monomer specification of the signal-connected monomer of the signal conductive coil and the standard signal monomer unwinding specification. The monomer fixed mold adjustment amount is used to reflect the signal-connected monomer specification difference situation corresponding to the signal-connected monomer of the signal conductive coil during unwinding, which is convenient for the beam body machine to adjust the linear gathering and closing method of the signal-connected monomer in the linear gathering and closing process, so that the linear gathering and closing between multiple signal-connected monomers is more uniform, and thus the connection body of the signal shielding connector obtained by linear gathering and closing remains consistent. The electrical connection monomer unwinding state parameter includes the length of the electrical connection monomer of the signal conductive coil. The length of the electrical connection monomer is the length of the signal-connected monomer. By collecting the length of the electrical connection monomer, it is convenient to determine the length and shortness of each signal-connected monomer extracted by the unwinding machine, so as to facilitate subsequent adjustment of the linear gathering and closing method of each signal-connected monomer. The preset monomer length is the reference length of the signal-connected monomer. For example, the preset monomer length is the length of the signal-connected monomer corresponding to a signal shielding connector for new energy vehicle video / audio with a signal transmission of 5000 Mbps; another example is that the preset monomer length is the length of the signal-connected monomer corresponding to a 2K new energy vehicle video / audio signal shielding connector.By performing an adjustment operation on the length of the electrical connection monomer and the preset monomer length, the least squares difference between the length of the electrical connection monomer and the preset monomer length is obtained to improve the accuracy of the difference degree between the two, that is, to improve the acquisition accuracy of the adjustment of the monomer length. The adjustment of the monomer length is less than the preset length adjustment, indicating that the length of the extracted signal connection monomer is shorter than the specified length, that is, indicating that the monomer length of the signal conductive coil is too small during the unwinding of the signal monomer, that is, indicating that the signal conductive coil will have a crack in the unwinding of the signal monomer before linear aggregation and closing. At this time, the core wire is likely to break during linear aggregation and closing, that is, the connection body of the signal shielded connector produced by linear aggregation and closing is discontinuous, resulting in an incomplete connection body of the signal shielded connector. To avoid the above situation, a signal for reducing torque and speed is sent to the beam body machine to reduce the linear aggregation and closing torque of the beam body machine and at the same time reduce the signal monomer unwinding speed of the unwinding machine. Among them, reducing the linear aggregation and closing torque can avoid overstretching the signal connection monomer that is too short, thereby avoiding cracks or breaks in the signal connection monomer. And because the core length is too short at this time and the mass of the signal connection monomer is too light, it is easy to swing during the unwinding process. By reducing the signal monomer unwinding speed, it is possible to avoid the situation where the signal connection monomers cross and contact each other during the unwinding of the signal monomer, ensuring that the signal connection monomers are separated from each other before linear aggregation and closing, and at the same time avoiding over-aggregation.

[0050] In another embodiment, when the adjustment of the monomer length is greater than the preset length adjustment, a signal for increasing torque and speed is sent to the beam body machine. The adjustment of the monomer length being greater than the preset length adjustment indicates that the length of the extracted signal connection monomer exceeds the specified length, that is, indicating that the monomer length of the signal conductive coil is too large during the unwinding of the signal monomer, that is, indicating that the signal conductive coil will have excessive extension in the unwinding of the signal monomer before linear aggregation and closing. At this time, over-aggregation is likely to occur during linear aggregation and closing, that is, the connection body of the signal shielded connector produced by linear aggregation and closing has convex bumps, resulting in unevenness of the connection body of the signal shielded connector. To avoid the above situation, a signal for increasing torque and speed is sent to the beam body machine to increase the linear aggregation and closing torque of the beam body machine and at the same time increase the signal monomer unwinding speed of the unwinding machine. By increasing the linear aggregation and closing torque, it is convenient to tighten the signal connection monomer during linear aggregation and closing to flatten the surface of the connection body of the signal shielded connector. At the same time, by increasing the signal monomer unwinding speed, it is convenient to straighten the signal connection monomer and avoid the situation where the signal connection monomers are stacked on top of each other during linear aggregation and closing, effectively improving the consistency of the connection body of the signal shielded connector after linear aggregation and closing.

[0051] In another embodiment, when the adjustment of the monomer length is equal to the preset length adjustment, the current torque and the signal monomer unwinding speed are maintained.

[0052] In the actual production process of the signal shielding connector, after the signal connection monomer is drawn out from the unwinding roller, it is necessary to perform encapsulation on the signal connection monomer, that is, spray the surface insulating layer on the signal connection monomer. When spraying the insulating layer, the insulating material is heated and atomized into an aerosol, and then attached to the signal connection monomer by spraying to achieve the effect of evenly coating the signal connection monomer. However, at this time, the sprayed insulating material is in a high-temperature state, and direct linear aggregation and closing will cause the uncured insulating layer to be squeezed and displaced, resulting in partial loss of the insulating layer. Therefore, an annealing tank is added between the unwinding machine and the beam body machine to facilitate the curing of the insulating layer, so as to ensure that the insulating layer completely wraps the signal connection monomer to prevent the internal copper wire from being exposed. Moreover, a spark electrical detector is also added after the annealing tank to facilitate the testing of the insulation condition on the signal connection monomer.

[0053] However, during the annealing process, limited by the size of the annealing tank, the curing degree of the insulating layer of the signal connection monomer will vary depending on the insulating material when passing through the annealing tank, which easily leads to incomplete curing of the insulating layer.

[0054] In order to improve the curing efficiency of the insulating layer, an electrical connection monomer beam combination adjustment signal is sent to the beam body machine according to the monomer die setting adjustment amount to adjust the linear aggregation and closing working mode of each signal connection monomer. The steps also include the following before:

[0055] Obtain the monomer insulation wrapping concave point coordinates of the signal conductive coil;

[0056] Detect whether the monomer insulation wrapping concave point coordinates are greater than or equal to the preset concave point coordinates;

[0057] When the monomer insulation wrapping concave point coordinates are greater than or equal to the preset concave point coordinates, send a point-back annealing delay signal to the annealing tank displacement controller to make the annealing tank move towards the beam body machine to extend the front-section annealing time of the signal conductive coil.

[0058] In this embodiment, the coordinates of the monomer insulation-wrapped concave point are the information of the downward bending point of the signal connection monomer of the signal conductive coil when passing through the annealing tank, which is convenient for determining the downward bending degree of the signal connection monomer after wrapping the insulation layer. Moreover, the position corresponding to the coordinates of the monomer insulation-wrapped concave point is used to clarify the distribution of the insulation layer on the signal connection monomer of the signal conductive coil. Specifically, the preset concave point coordinates are the midpoint of the annealing tank. The coordinates of the monomer insulation-wrapped concave point being greater than or equal to the preset concave point coordinates indicates that the downward bending point of the signal connection monomer of the signal conductive coil is behind during annealing, that is, it indicates that there is a situation of excessive spraying of insulation material in the front section when the signal connection monomer of the signal conductive coil is wrapped with the insulation layer. At this time, there is too much insulation material on the front section of the signal connection monomer. By sending a post-annealing delay signal to the annealing tank displacement controller, the annealing tank moves towards the beam machine, so that the front section of the signal connection monomer can continue the annealing operation again, that is, the annealing time of the front section of the signal connection monomer is extended, and then the insulation layer of the signal connection monomer is completely cured, avoiding the situation of incomplete curing of the insulation layer.

[0059] Further, after detecting whether the coordinates of the monomer insulation-wrapped concave point are greater than or equal to the preset concave point coordinates, it further includes:

[0060] When the coordinates of the monomer insulation-wrapped concave point are greater than the preset concave point coordinates, obtain the vibration amplitude of the encapsulating monomer of the signal conductive coil;

[0061] Detect whether the vibration amplitude of the encapsulating monomer is greater than or equal to the preset vibration amplitude;

[0062] When the vibration amplitude of the encapsulating monomer is greater than or equal to the preset vibration amplitude, send a leakage current reduction signal to the spark electrical detector to reduce the leakage current detection voltage.

[0063] In this embodiment, the coordinates of the monomer insulation-wrapped concave points are less than the preset concave point coordinates, indicating that there is an excessive amount of insulating material sprayed in the later stage when the signal connection monomers of the signal conductive coil are wrapped with the insulating layer. However, since the later stage needs to pass through the entire annealing tank, and most of the heat on the insulating layer has been dissipated when the front stage passes through the annealing tank, the curing of the insulating layer can be completed at this time. However, at this time, after the signal connection monomers are cured, when the insulating layer contacts the coolant in the annealing tank, there is likely to be a short-term friction with the annealing tank before complete curing. By collecting the vibration amplitude of the rubber-coated monomers of the signal conductive coil, the transmission vibration situation before the linear aggregation and convergence of the signal connection monomers after annealing is sampled, which is convenient for determining the adhesion situation of the insulating layer on the signal connection monomers with cured insulation. When the vibration amplitude of the rubber-coated monomers is greater than or equal to the preset vibration amplitude, it indicates that the adhesion amount of the insulating layer on the signal connection monomers is too small, that is, it indicates that there is a lack of the insulating layer on the signal connection monomers due to short-term friction with the annealing tank. At this time, a leakage current reduction signal is sent to the spark electrical detector to reduce the leakage detection voltage, so as to test the integrity of the insulating layer on the signal connection monomers, and at the same time avoid the breakdown and damage of the outer insulating layer of other normal signal connection monomers around due to excessive detection voltage.

[0064] In another embodiment, when the vibration amplitude of the rubber-coated monomers is less than the preset vibration amplitude, step S300 is executed.

[0065] The above various preset variables are all set in the database for easy extraction in a timely manner, and different preset variables are placed in different storage units, that is, in different storage stacks. Moreover, the coordinates of the monomer insulation-wrapped concave points and the vibration amplitude of the rubber-coated monomers can be collected by corresponding detectors. For example, they are collected by the CCD camera in the signal monomer unwinding and collecting module.

[0066] In one of the embodiments, the present disclosure also relates to a monitoring device for a signal connector bundle for new energy vehicles, including: a signal monomer unwinding and collecting module, a fixed mold processing module, and a convergence control module; the signal monomer unwinding and collecting module is used to obtain the unwinding state parameters of the electrical connection monomers of the signal conductive coil; the fixed mold processing module is used to perform electrical connection monomer fixed mold adjustment processing on the unwinding state parameters of the electrical connection monomers and the preset unwinding state parameters to obtain a monomer fixed mold adjustment amount; the convergence control module is used to send an electrical connection monomer bundling adjustment signal to the bundle machine according to the monomer fixed mold adjustment amount to adjust the linear aggregation and convergence working mode of each signal connection monomer.

[0067] In this embodiment, after the signal monomer unwinding acquisition module acquires the unwinding state parameters of the electrical connection monomers, the current signal connection monomer unwinding state of each signal connection monomer of the signal conductive coil is determined. Then, the fixed mold processing module compares the electrical connection monomer unwinding state parameters with the standard signal monomer unwinding state parameters to facilitate determining the difference between the current signal connection monomer unwinding state of each signal connection monomer and the specified signal connection monomer unwinding state. Finally, the closing and regulation module optimally adjusts the linear gathering and closing working mode of each signal connection monomer according to the above difference value, so that the connectors of the signal shielding connectors linearly gathered and closed by multiple signal connection monomers are consistent, thereby reducing the probability of damage to the connectors of the signal shielding connectors and effectively improving the communication reliability of the signal shielding connectors.

[0068] In one embodiment, a computer device is provided. The computer device can be a server, and its internal structural diagram can be as Figure 2 shown. The computer device includes a processor, a memory, and a network interface connected through a system bus. Among them, the processor of the computer device is used to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system, a computer program, and a database. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The database of the computer device is used for storing data such as electrical connection monomer unwinding state parameters, monomer fixed mold adjustment amounts, and electrical connection monomer bunching adjustment signals. The network interface of the computer device is used to communicate with an external terminal through a network connection. When the computer program is executed by the processor, it implements a method for monitoring a signal connector bundle for new energy vehicles.

[0069] Those skilled in the art can understand that Figure 2 the structure shown in

[0070] is only a block diagram of some structures related to the solution of the present application, and does not constitute a limitation on the computer device to which the solution of the present application is applied. The specific computer device may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.

[0071] In one of the embodiments, the present application also provides a computer device, including a memory and a processor. A computer program is stored in the memory, and when the processor executes the computer program, the steps in the above method embodiments are implemented.

[0072] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. The computer program can be stored in a non-volatile computer-readable storage medium. When the computer program is executed, it can include the processes of the embodiments of the above methods. Among them, any reference to a memory, storage, database, or other medium used in the embodiments provided in the present application can include at least one of non-volatile and volatile memories. Non-volatile memory can include read-only memory (ROM), magnetic tape, floppy disk, flash memory, or optical memory, etc. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM can be in various forms, such as static random access memory (SRAM) or dynamic random access memory (DRAM), etc.

[0073] The above-described embodiments merely represent several implementation manners of the present disclosure. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present disclosure, several modifications and improvements can still be made, and these all belong to the protection scope of the present disclosure. Therefore, the protection scope of the patent of the present disclosure shall be subject to the appended claims.

Claims

1. A method for monitoring a signal connector bundle for a new energy vehicle, characterized in that: include: Acquire an unwinding state parameter of an electric connection monomer of a signal conductive roll, wherein the electric connection monomer unwinding state parameter corresponds to a current signal connection monomer unwinding specification of a signal connection monomer of the signal conductive roll; The electric connection monomer unwinding state parameter and the preset unwinding state parameter are subjected to electric connection monomer fixed-mode adjustment processing to obtain monomer fixed-mode adjustment amount, wherein the fixed-mode adjustment processing is the difference between the current extracted signal connection monomer specification of the signal conductive coil and the standard signal monomer unwinding specification; Sending an electrical connection monomer bundling adjustment signal to the bundling machine according to the monomer fixed-mode adjustment amount to adjust the linear gathering and retracting working mode of each signal connection monomer; Wherein, the step of sending an electric connection monomer bundling adjustment signal to the bundling machine according to the monomer fixed-mode adjustment amount to adjust the linear gathering and retracting working mode of each signal connection monomer also includes the following steps: Obtaining the coordinates of the concave points of the single-unit insulation wrapping of the signal conductive volume; Detecting whether the coordinates of the concave points of the monomer insulation package are greater than or equal to the preset concave point coordinates; When the coordinates of the concave point of the single insulating package are greater than or equal to the preset concave point coordinates, a post-point annealing delay signal is sent to the annealing tank displacement controller to move the annealing tank toward the bundle body machine to extend the front annealing time of the signal conductive volume; And, the detecting whether the coordinates of the concave points of the single-unit insulation package are greater than or equal to the preset concave point coordinates, further comprises: When the coordinates of the concave points of the monomer insulation package are greater than the preset concave point coordinates, the vibration amplitude of the encapsulated monomer of the signal conductive volume is obtained; Detecting whether the vibration amplitude of the encapsulated monomer is greater than or equal to a preset vibration amplitude; When the vibration amplitude of the encapsulated monomer is greater than or equal to the preset vibration amplitude, a leakage decompression signal is sent to the spark detector to reduce the leakage detection voltage.

2. The method for monitoring the signal connector bundle for new energy vehicles according to claim 1, characterized in that: The electrical connection monomer unwinding state parameters include: The electrical connection monomer diameter and the electrical connection monomer length of the signal conductive roll.

3. The method for monitoring the signal connector bundle for new energy vehicles according to claim 2, characterized in that: The step of performing an electric connection monomer fixed mold adjustment process on the electric connection monomer unwinding state parameter and the preset unwinding state parameter to obtain a monomer fixed mold adjustment amount includes: The adjustment between the electrically connected monomer diameter and the preset monomer diameter is calculated to obtain the monomer diameter adjustment.

4. The method for monitoring the signal connector bundle for new energy vehicles according to claim 3, characterized in that: The step of sending an electrical connection monomer bundling adjustment signal to the bundling machine according to the monomer fixed-mode adjustment amount to adjust the linear gathering and retracting working mode of each signal connection monomer includes: Detecting whether the monomer diameter adjustment is greater than a preset diameter adjustment; When the single body diameter adjustment is greater than the preset diameter adjustment, a torque increase and speed increase signal is sent to the beam machine.

5. The method for monitoring the signal connector bundle for new energy vehicles according to claim 2, characterized in that: The step of performing an electric connection monomer fixed mold adjustment process on the electric connection monomer unwinding state parameter and the preset unwinding state parameter to obtain a monomer fixed mold adjustment amount includes: The adjustment between the electrically connected monomer length and the preset monomer length is calculated to obtain the monomer length adjustment.

6. The method for monitoring the signal connector bundle for new energy vehicles according to claim 5, characterized in that: The step of sending an electrical connection monomer bundling adjustment signal to the bundling machine according to the monomer fixed-mode adjustment amount to adjust the linear gathering and retracting working mode of each signal connection monomer includes: Detecting whether the monomer length adjustment is greater than a preset length adjustment; When the single body length adjustment is less than the preset length adjustment, a torque reduction and speed reduction signal is sent to the beam machine.

7. A production system for a signal connector for a new energy vehicle using the signal connector bundle monitoring method for a new energy vehicle as claimed in any one of claims 1 to 6, characterized in that: The signal connector production system for new energy vehicles includes: An unwinder, the unwinder comprising an unwinding roller and a reel, the unwinding roller being arranged opposite to the reel, the unwinding roller being used to wind at least one signal conductive roll, the reeling end of the reel facing the unwinding roller, the reeling end of the reel being used to pull out a signal connection monomer of the signal conductive roll; The bundle machine is located on the side of the winder away from the unwinding roller, and the gathering end of the bundle machine faces the winding transmission channel of the winder. The gathering end of the bundle machine is used to linearly gather and retract multiple signal connection monomers.

8. A signal connector bundle monitoring device for new energy vehicles, characterized in that: include: A signal monomer unwinding acquisition module, the signal monomer unwinding acquisition module is used to obtain the electrical connection monomer unwinding state parameters of the signal conductive roll, the electrical connection monomer unwinding state parameters correspond to the current signal connection monomer unwinding specifications of the signal conductive roll's signal connection monomer; A fixed-mode processing module, the fixed-mode processing module is used to perform fixed-mode adjustment processing on the electric connection monomer unwinding state parameters and the preset unwinding state parameters to obtain a monomer fixed-mode adjustment amount, wherein the fixed-mode adjustment processing is the difference between the current extracted signal connection monomer specification of the signal conductive coil and the standard signal monomer unwinding specification; The folding and retracting control module is used to send an electrical connection monomer bundling adjustment signal to the bundling machine according to the monomer fixed mold adjustment amount, so as to adjust the linear gathering and retracting working mode of each signal connection monomer.

9. A computer device comprising a memory and a processor, wherein the memory stores a computer program, wherein: When the processor executes the computer program, the steps of the method according to any one of claims 1 to 6 are implemented.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 6 are implemented.

Citation Information

Patent Citations

  • Post-processing single machine capable of preventing foil breakage, production process, control method and control system

    CN111364070A

  • Battery pole piece pre-rolling monitoring method and device, computer equipment and storage medium

    CN116979015A