Login method and apparatus for control system, and control system and readable storage medium

By using radio frequency identification technology to authenticate identities in concrete pump trucks, the problem of low efficiency has been solved, the login process has been simplified, and information recording and traceability have been enabled, thereby improving operational efficiency and product improvement capabilities.

WO2026031799A1PCT designated stage Publication Date: 2026-02-12SANY AUTOMOBILE MFG CO LTD
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Patent Information

Application Number
PCT/CN2025/102861
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-08-07
Filing Date
2025-06-23
Publication Date
2026-02-12

AI Technical Summary

Technical Problem

The current authentication method for concrete pump trucks is inefficient, user input errors lead to repeated input, and after-sales information cannot be recorded and traced, which affects product improvement.

Method used

An authentication method based on radio frequency identification technology is adopted. The authentication is performed by receiving feature information sent by the signal transmitter carried by the user, which simplifies the login process and collects authentication data in real time, including time, location, result and vehicle information.

Benefits of technology

It improves the efficiency of concrete pump truck operation, simplifies the login process, enables the recording and tracking of after-sales information, and supports continuous product improvement.

✦ Generated by Eureka AI based on patent content.

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Abstract

Provided in the present application are a login method and apparatus for a control system, and a control system and a readable storage medium. The control system is used for controlling engineering vehicles. The login method for a control system comprises: when a first distance value is less than a distance threshold value, receiving feature information transmitted by a signal transmitter, wherein the first distance value is a distance value between an engineering vehicle and the signal transmitter; upon receiving the feature information, verifying the feature information; providing feedback on the basis of the verification result; and when receiving the feature information transmitted by the signal transmitter, starting the collection of first data information, wherein the first data information comprises: one or a combination of several of reception time of the feature information, verification time, verification location, verification result, vehicle information of the engineering vehicle, and parameter modification information of the engineering vehicle. The present application eliminates the step of a user inputting a password and a verification code, and also solves the problem of it being impossible to record and trace after-sales information, thereby facilitating the continuous improvement of products.
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Description

Login method and device of control system, control system and readable storage medium

[0001] The present application claims priority to the Chinese patent application No. 202411075867.3, filed on August 7, 2024, entitled "Login method and device of control system, control system and readable storage medium", the whole content of which is incorporated herein by reference. TECHNICAL FIELD

[0002] The present application relates to the technical field of device control, more specifically, to a login method and device of control system, control system and readable storage medium. BACKGROUND

[0003] In the operation system of a concrete pump truck, in order to ensure safety, the current identity verification method requires a service personnel to input a prompt code, and then input a verification code again after the remote receipt verifies the password, which can log in. However, this method has the problems of low efficiency, repeated input caused by input error, inability to record and trace after-sales information, and is not conducive to the continuous improvement of products. SUMMARY

[0004] The embodiments of the present application provide a login method and device of control system, control system and readable storage medium to solve the problems of low efficiency, repeated input caused by input error, inability to record and trace after-sales information in the prior art.

[0005] To this end, the first aspect of the present application is to provide a login method of control system.

[0006] The second aspect of the present application is to provide a login device of control system.

[0007] The third aspect of the present application is to provide a control system.

[0008] The fourth aspect of the present application is to provide another control system.

[0009] The fifth aspect of the present application is to provide a readable storage medium.

[0010] The sixth aspect of the present application is to provide an engineering vehicle.

[0011] In the first aspect, the embodiments of the present application provide a login method of control system, the control system is used for controlling an engineering vehicle, and the login method of the control system comprises:

[0012] In the case that the first distance value is less than the distance threshold, the feature information sent by the signal transmitter is received, and the first distance value is the distance value between the engineering vehicle and the signal transmitter;

[0013] In the case of receiving the feature information, the feature information is verified;

[0014] According to the verification result, feedback is given;

[0015] When receiving the feature information sent by the signal transmitter, the first data information is collected, wherein the first data information includes one or a combination of several of the following: the time of receiving the feature information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle, and the modification information of the parameters of the engineering vehicle.

[0016] The control system login method provided by the application, wherein the control system is mainly used for controlling an engineering vehicle, such as controlling a pumping device or a conveying device of the engineering vehicle to work. The control system login method comprises: receiving feature information sent by a signal transmitter when a first distance value is less than a distance threshold value, wherein the first distance value is a distance between the engineering vehicle and a signal receiver, that is, when the distance value between the engineering vehicle and the signal transmitter is less than the distance threshold value, the control system receives the feature information sent by the signal transmitter, wherein the control system can be arranged in the engineering vehicle, the signal transmitter can be carried by a user, the signal transmitter can be an electronic identification transmitter, and an RFID (Radio Frequency Identification) chip is arranged in the electronic identification transmitter, so that the feature information can be identity information, which can include an identity identifier. After receiving the feature information, the feature information is identified to obtain an identification result, that is, the identity and authority of the user corresponding to the feature information are determined, and then a feedback is performed according to the verification result, that is, different operations are performed according to the identity and authority of the user, for example, when the verification result shows that the identity of the current user cannot log in to the control system, prompt information is fed back to the user, and when the verification result shows that the identity of the current user can log in to the control system, information that the login is successful is fed back to the user. Further, when the feature information sent by the signal transmitter is received, first data information is also started to be collected, wherein the first data information comprises one or a combination of the following: a time of receiving the feature information, a verification time, a verification location, a verification result, vehicle information of the engineering vehicle, and modification information of parameters of the engineering vehicle. That is, from the time when the feature information sent by the signal transmitter is received to the time when the control system completes all work, the control system needs to collect the first data information, such as the time of receiving the feature information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle, and the modification information of the parameters of the engineering vehicle, in the time period. By collecting the above first data information, the problem that after-sales information cannot be recorded and traced back is avoided. Based on the radio frequency identification technology, the identity of the feature information sent by the signal transmitter carried by the user is verified, so that the step of inputting a password and a verification code by the user is omitted, the step of the user logging in to the operation system of the engineering vehicle is simplified, the operation time of the engineering vehicle is shortened, and the operation efficiency of the engineering vehicle is improved. Further, by starting to collect the first data information when the feature information is received, the problem that after-sales information cannot be recorded and traced back is solved, and the continuous improvement of the engineering vehicle and the control system is facilitated.

[0017] In addition, the technical solutions provided by the application can also have the following additional technical features:

[0018] In an embodiment, the step of verifying the feature information comprises: matching the feature information with a set of authorized information, wherein the set of authorized information comprises at least one preset feature information; determining that the verification result is qualified when the feature information is the same as the at least one preset feature information in the set of authorized information; and determining that the verification result is unqualified when the feature information is different from any preset feature information in the set of authorized information.

[0019] In the technical solution, the step of verifying the feature information comprises: first matching the feature information with a set of authorized information, wherein the set of authorized information comprises at least one preset feature information, that is, there is a set of pre-stored authorized information in the control system, the set of authorized information comprises a plurality of preset feature information, and each preset feature information further corresponds to permission information. When the feature information is the same as the at least one preset feature information in the set of authorized information, it is determined that the verification result is qualified, that is, when the feature information sent by the signal transmitter is the same as any one of the preset feature information in the set of authorized information, it means that the user carrying the signal transmitter can operate the control system, that is, the verification result is qualified. When the feature information is different from any preset feature information in the set of authorized information, it is determined that the verification result is unqualified, that is, when the feature information sent by the signal transmitter is different from any one of the preset feature information in the set of authorized information, it means that the user carrying the signal transmitter cannot operate the control system, that is, the verification result is unqualified. Further, the preset feature information in the set of authorized information is updated regularly, that is, the administrator of the control system has flexible permission management capability, and can set different operation permissions according to the responsibilities and levels of the users. The administrator can modify or revoke the permissions of the users at any time, that is, the preset feature information in the set of authorized information and the permission information corresponding to each preset feature information can be modified and deleted at any time, by setting the set of authorized data, the preset feature information corresponding to the signal transmitter carried by the user and the permission information corresponding to the preset feature information are stored, so as to ensure that only authorized personnel can operate the system.

[0020] In an embodiment, after the step of determining that the verification result is unqualified, the login method of the control system further comprises: receiving a first input, wherein the first input is an input of a target object corresponding to the signal transmitter; and performing work according to a matching result between the first input and preset information.

[0021] In the technical solution, after the step of determining that the verification result is unqualified, the login method of the control system further includes: receiving a first input, wherein the first input is an input of a target object corresponding to the signal transmitter to the control system, that is, when the verification result is unqualified, it indicates that the user carrying the signal transmitter, that is, the target object corresponding to the signal transmitter, cannot log in to the control system, or it indicates that the signal transmitter carried by the user fails to send the characteristic information, and therefore, the backup identity verification method can be switched to, the backup identity verification method being that the target object corresponding to the signal transmitter, that is, the user carrying the signal transmitter, inputs the first input to the control system, wherein the first input can be an account password or a facial feature of the target object. After receiving the first input, the control system matches the first input with preset information preset in the control system to obtain a matching result, wherein the preset information can be a set account password or a set facial feature. Then, the control system can work according to the matching result, if the matching result is the same, it indicates that the user can log in to the control system, and if the matching result is different, it indicates that the user cannot log in to the control system. The present application realizes that when the characteristic information sent by the signal transmitter is unqualified or the signal transmitter fails, the backup identity verification method can be switched to, for example, password verification or face verification, thereby improving the satisfaction of the user.

[0022] In a specific embodiment, optionally, the step of feeding back according to the verification result includes: based on the verification result being qualified, determining first permission information corresponding to the characteristic information in the authorization information set; working according to the first permission information and a second input, wherein the second input is an input of a target object corresponding to the signal transmitter to the control system; based on the verification result being unqualified, outputting prompt information and recording the characteristic information and the verification result into first data information.

[0023] In the technical solution, the step of feeding back according to the verification result comprises: when the verification result is qualified, i.e., the characteristic information sent by the signal transmitter is the same as any one of the preset characteristic information in the authorized information set, the first permission information corresponding to the preset characteristic information same as the characteristic information needs to be determined in the authorized information set, the first permission information comprises the operation permission of the user corresponding to the preset characteristic information on the control system, and the permission information corresponding to each preset characteristic information is different. After the first permission information is determined, the control system works according to the first permission information and the second input, wherein the second input is the input of the target corresponding to the signal transmitter on the control information, i.e., when the verification result is qualified, the control system works according to the permission information corresponding to the user carrying the signal transmitter and the second input of the user. When the verification result is unqualified, i.e., the characteristic information sent by the signal transmitter is not the same as any one of the preset characteristic information in the authorized information set, the prompt information is output, wherein the content of the prompt information can be verification failure, and the characteristic information and the verification result are recorded in the first data information, thereby providing a basis for subsequent after-sales.

[0024] In a specific embodiment, optionally, in the case that the first distance value is less than the distance threshold, the step of receiving the characteristic information sent by the signal transmitter comprises: broadcasting the first signal in the case that the first distance value is less than the distance threshold; and receiving the characteristic information sent by the signal transmitter in response to the first signal.

[0025] In the technical solution, in the case that the first distance value is less than the distance threshold, the step of receiving the characteristic information sent by the signal transmitter comprises: when the first distance value is less than the distance threshold, the first signal is broadcasted, and then the characteristic information sent by the signal transmitter in response to the first signal is received, i.e., when the first distance value between the engineering vehicle and the signal transmitter is less than the distance threshold, the control system is controlled to broadcast the first signal first, so that the signal transmitter determines the position of the engineering vehicle, wherein the distance threshold can be 20 meters. Then the signal transmitter determines the position of the engineering vehicle after receiving the first signal, and sends the characteristic information. By broadcasting the first signal in the case that the first distance value is less than the distance threshold, the signal transmitter can accurately determine the specific position of the engineering vehicle.

[0026] In a specific embodiment, optionally, after the step of starting to collect the first data information when the characteristic information sent by the signal transmitter is received, the login method of the control system further comprises: uploading the first data information to a target database in the cloud.

[0027] In the technical solution, after receiving the characteristic information sent by the signal transmitter, starting the step of collecting the first data information, the method comprises: uploading the first data information to a target database in the cloud, that is, during the working process of the control system, the collected first data information is uploaded to the target database in the cloud in real time, by uploading the first data information to the cloud, the control system has detailed log recording function, records the time, place, verification result, vehicle information, modification content and other information of each identity verification. Realize the automatic registration of information, the record of the change content can be traced back, the service personnel and the vehicle change information are aligned, which is beneficial to the after-sales data statistics and the continuous improvement of the product.

[0028] In a specific embodiment, optionally, after receiving the characteristic information sent by the signal transmitter, starting the step of collecting the first data information, the login method of the control system further comprises: periodically analyzing and reviewing the first data information.

[0029] In the technical solution, after receiving the characteristic information sent by the signal transmitter, starting the step of collecting the first data information, the method comprises: periodically analyzing and reviewing the first data information, by setting the audit function, periodically analyzing and reviewing the first data information, so as to ensure the security of the control system, and discover and handle potential security problems in time.

[0030] In a second aspect, the embodiments of the present application provide a login device of a control system, wherein the control system is used for controlling an engineering vehicle, and the login device of the control system comprises:

[0031] The first receiving module is used for receiving the characteristic information sent by the signal transmitter when the first distance value is less than the distance threshold value, and the first distance value is the distance value between the engineering vehicle and the signal transmitter.

[0032] The first verification module is used for verifying the characteristic information when the characteristic information is received.

[0033] The first feedback module is used for feeding back according to the verification result.

[0034] The first collection module is used for starting to collect the first data information when the characteristic information sent by the signal transmitter is received, wherein the first data information comprises one or several combinations of the time of receiving the characteristic information, the verification time, the verification place, the verification result, the vehicle information of the engineering vehicle and the modification information of the parameters of the engineering vehicle.

[0035] The login device of the control system provided in the application, wherein the control system is mainly used for controlling an engineering vehicle, for example, controlling a pumping device or a conveying device of the engineering vehicle to work. The login device of the control system specifically comprises a first receiving module, a first verification module, a first feedback module and a first collecting module. In the case that a first distance value is less than a distance threshold value, the first receiving module receives characteristic information sent by a signal transmitter, wherein the first distance value is the distance between the engineering vehicle and the signal receiver, that is, when the distance value between the engineering vehicle and the signal transmitter is less than the distance threshold value, the control system receives the characteristic information sent by the signal transmitter, wherein the control system can be arranged in the engineering vehicle, the signal transmitter can be carried by a user, the signal transmitter can be an electronic identification transmitter, and an RFID (Radio Frequency Identification) chip is arranged in the electronic identification transmitter, so that the characteristic information can be identity information, which can include an identity identifier. After receiving the characteristic information, the first verification module starts to identify the characteristic information, so as to obtain an identification result, that is, to determine the identity and authority of the user corresponding to the characteristic information, and then the first feedback module feeds back according to the verification result, that is, different operations are performed according to the identity and authority of the user, for example, when the verification result shows that the identity of the current user cannot log in to the control system, prompt information is fed back to the user, and when the verification result shows that the identity of the current user can log in to the control system, information that the login is successful is fed back to the user. Further, when receiving the characteristic information sent by the signal transmitter, the first collecting module also starts to collect first data information, wherein the first data information includes one or several combinations of the time of receiving the characteristic information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle and the modification information of the parameters of the engineering vehicle. That is, from the time of receiving the characteristic information sent by the signal transmitter to the time when the control system completes all the work, the control system needs to collect the first data information including the time of receiving the characteristic information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle and the modification information of the parameters of the engineering vehicle in this time period. By collecting the above first data information, the problem that the after-sales information cannot be recorded and traced back is avoided. Based on the radio frequency identification technology, the identity of the user carrying the signal transmitter is verified by receiving the characteristic information sent by the signal transmitter, so that the step of inputting the password and the verification code by the user is omitted, the step of the user logging in to the operation system of the engineering vehicle is simplified, the operation time of the engineering vehicle is shortened, and the operation efficiency of the engineering vehicle is improved. Further, by starting to collect the first data information when receiving the characteristic information, the problem that the after-sales information cannot be recorded and traced back is solved, which is beneficial to the continuous improvement of the engineering vehicle and the control system.

[0036] In a third aspect, the embodiments of the present application provide a control system for controlling an engineering vehicle, wherein the control system comprises:

[0037] a radio frequency device, the radio frequency device being configured to receive characteristic information transmitted by a signal transmitter to the control system;

[0038] a wake-up circuit, the wake-up circuit being connected to the radio frequency device and configured to start the radio frequency device when a first distance value is less than a distance threshold, the first distance value being a distance value between the engineering vehicle and the signal transmitter;

[0039] an information reader, the information reader being connected to the radio frequency device and configured to verify the characteristic information after the radio frequency device receives the characteristic information, and determine a verification result;

[0040] a data collector, the data collector being connected to the information reader and the radio frequency device respectively, and configured to start collecting first data information when the characteristic information transmitted by the signal transmitter is received, wherein the first data information comprises one or a combination of the following: a time of receiving the characteristic information, a verification time, a verification location, the verification result, vehicle information of the engineering vehicle, and modification information of parameters of the engineering vehicle.

[0041] The control system provided by the application is used for controlling an engineering vehicle, and the control system comprises a radio frequency device, a wake-up circuit, an information reader and a data collector. The radio frequency device can receive characteristic information sent by a signal transmitter to the control system when working. The wake-up circuit is connected with the radio frequency device, and when a first distance between the signal transmitter and the engineering vehicle is less than a distance threshold, the wake-up circuit is triggered, so that the radio frequency device is started to receive the characteristic information sent by the signal transmitter to the control system. The information reader is connected with the radio frequency device, and when the radio frequency device receives the characteristic information, the information reader sends the characteristic information to the information reader, and the information reader verifies the characteristic information and determines a verification result. The verification of the characteristic information can be a comparison between the characteristic information and preset characteristic information in a preset authorized information set in the control system. The control system can also be controlled to feed back according to the verification result. The data collector is connected with the information reader and the radio frequency device, respectively, and when the characteristic information sent by the signal transmitter is received, the first data information is collected. The first data information includes one or a combination of the time of receiving the characteristic information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle and the modification information of the parameters of the engineering vehicle. That is, when the radio frequency device receives the characteristic information, the data collector collects the first data information such as the time of receiving the characteristic information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle and the modification information of the parameters of the engineering vehicle in the information reader. The application is based on the radio frequency identification technology, and the identity verification is performed by receiving the characteristic information sent by the signal transmitter carried by the user, so that the step of inputting the password and the verification code by the user is omitted, the step of logging in the operation system of the engineering vehicle by the user is simplified, the operation time of the engineering vehicle is shortened, and the operation efficiency of the engineering vehicle is improved. Further, when the characteristic information is received, the first data information is collected, so that the problem that the after-sales information cannot be recorded and traced is solved, and the continuous improvement of the engineering vehicle and the control system is facilitated.

[0042] In a fourth aspect, an embodiment of the application provides a control system, comprising a memory and a processor, the memory storing a computer program, and the processor executing the computer program; wherein the processor, when executing the computer program, implements the steps of the login method of the control system according to any of the technical solutions of the application.

[0043] The control system provided by the application implements the steps of the login method of the control system according to any of the technical solutions of the application, and thus has all the beneficial effects of the login method of the control system according to any of the technical solutions of the application, which will not be repeated here.

[0044] In a fifth aspect, an embodiment of the present application provides a readable storage medium, the readable storage medium storing a computer program, and the computer program, when executed by a processor, implements the steps of the login method of the control system according to any one of the preceding aspects.

[0045] The readable storage medium provided by the technical solution has all the beneficial effects of the login method of the control system according to any one of the preceding aspects, and thus is not described here again.

[0046] In a sixth aspect, an embodiment of the present application provides an engineering vehicle, which comprises the login device of the control system according to any one of the preceding aspects, and / or the control system according to any one of the preceding aspects, and / or the readable storage medium according to any one of the preceding aspects.

[0047] In a seventh aspect, an embodiment of the present application provides a chip, which comprises a memory and a processor, the memory storing codes and data, and the memory being coupled to the processor, and the processor running a program in the memory so that the chip is used to execute the login method of the control system according to any one of the preceding aspects.

[0048] In an eighth aspect, an embodiment of the present application provides a program product, which comprises a computer program, and when the program product is executed on a computer, the computer program makes the computer execute the login method of the control system according to any one of the preceding aspects.

[0049] In a ninth aspect, an embodiment of the present application provides a computer program, which, when executed by a processor, is used to execute the login method of the control system according to any one of the preceding aspects.

[0050] The engineering vehicle provided by the embodiment of the present application comprises the login device of the control system according to any one of the preceding aspects, and / or the control system according to any one of the preceding aspects, and / or the readable storage medium according to any one of the preceding aspects. Thus, the engineering vehicle has all the beneficial effects of the login device of the control system and / or the control system and / or the readable storage medium according to any one of the preceding aspects, and thus is not described here again. The engineering vehicle can be a concrete pump truck, a tunneling vehicle, etc.

[0051] Additional aspects and advantages of the present application will become apparent from the following description, or will be learned by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0052] The above and / or additional aspects and advantages of the present application will become apparent and be readily appreciated from the following description, taken in conjunction with the following drawings in which:

[0053] FIG. 1 shows a flowchart of a login method of a control system according to an embodiment of the present application;

[0054] FIG. 2 shows a flowchart of the step of verifying feature information in the login method of the control system according to an embodiment of the present application;

[0055] FIG. 3 shows a flowchart of the step after determining that the verification result is unqualified in the login method of the control system according to an embodiment of the present application;

[0056] FIG. 4 shows a flowchart of the step of feeding back according to the verification result in the login method of the control system according to an embodiment of the present application;

[0057] FIG. 5 shows a flowchart of the step of receiving the feature information sent by the signal transmitter when the first distance value is less than the distance threshold in the login method of the control system according to an embodiment of the present application;

[0058] FIG. 6 shows a schematic diagram of the login method of the control system according to an embodiment of the present application;

[0059] FIG. 7 shows a schematic block diagram of the login device of the control system according to an embodiment of the present application;

[0060] FIG. 8 shows a schematic block diagram of the control system according to an embodiment of the present application;

[0061] FIG. 9 shows a schematic block diagram of the control system according to an embodiment of the present application. DETAILED DESCRIPTION

[0062] In order to more clearly understand the above-mentioned purposes, features and advantages of the present application, the present application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0063] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments made by those skilled in the art according to the inspiration of the present embodiments are within the scope of protection of the present application.

[0064] The terms "first", "second", "third", "fourth" and the like in the description and in the claims of the present application and above-mentioned drawings, if any, are used for distinguishing between similar objects and not necessarily for describing a particular sequential or chronological order. It is to be understood that the use of the terms so construed herein can be interchanged, under appropriate circumstances, without changing the meaning of the description by the applicant. Furthermore, the terms "comprise" and "include", and their conjugates, do not exclude the presence of other elements or steps than those listed. It is clear that many of the materials and devices described herein have a plurality of modified forms which have not been explicitly described in order to simplify and clarify the description. In the description of the present application use has been made of the following terms that are to be understood as indicated.

[0065] In the following description, numerous specific details are set forth in order to provide a thorough understanding of the application. However, it will be apparent to one skilled in the art that the present application can be practiced without the specific details and other implementations can be employed. Thus, the present application is not intended to be limited to the specific embodiments disclosed below, and one skilled in the art will understand that the scope of the application is not limited to the specific embodiments disclosed.

[0066] Figure 1 shows a flowchart of a login method of a control system according to an embodiment of the present application, wherein the control system is used for controlling an engineering vehicle, and the login method of the control system comprises:

[0067] Step 102: receiving feature information sent by a signal transmitter, the first distance value being a distance value between the engineering vehicle and the signal transmitter;

[0068] Step 104: verifying the feature information upon receiving the feature information;

[0069] Step 106: feeding back according to the verification result;

[0070] Step 108: starting to collect first data information upon receiving the feature information sent by the signal transmitter, wherein the first data information comprises one or a combination of the following: time of receiving the feature information, verification time, verification location, verification result, vehicle information of the engineering vehicle, and modification information of parameters of the engineering vehicle.

[0071] The control system login method provided by the application is mainly used for controlling an engineering vehicle, such as controlling a pumping device or a conveying device of the engineering vehicle to work. The control system login method comprises: receiving feature information sent by a signal transmitter when a first distance value is less than a distance threshold value, wherein the first distance value is a distance between the engineering vehicle and a signal receiver, that is, when the distance value between the engineering vehicle and the signal transmitter is less than the distance threshold value, the control system receives the feature information sent by the signal transmitter, the control system can be arranged in the engineering vehicle, the signal transmitter can be carried by a user, the signal transmitter can be an electronic identification transmitter, an RFID (Radio Frequency Identification) chip is arranged in the electronic identification transmitter, and therefore the feature information can be identity information, which can include an identity identifier. After receiving the feature information, the feature information is identified to obtain an identification result, that is, the identity and authority of the user corresponding to the feature information are determined, and then a feedback is performed according to the verification result, that is, different operations are performed according to the identity and authority of the user, for example, when the verification result shows that the identity of the current user cannot log in to the control system, prompt information is fed back to the user, and when the verification result shows that the identity of the current user can log in to the control system, information that the login is successful is fed back to the user. Further, when the feature information sent by the signal transmitter is received, first data information is also collected, wherein the first data information comprises one or a combination of the following: the time of receiving the feature information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle, and the modification information of the parameters of the engineering vehicle. That is, from the time when the feature information sent by the signal transmitter is received to the time when the control system completes all work, the control system needs to collect the first data information, such as the time of receiving the feature information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle, and the modification information of the parameters of the engineering vehicle, in this time period. By collecting the above first data information, the problem that after-sales information cannot be recorded and traced back is avoided. Based on the radio frequency identification technology, the identity of the feature information sent by the signal transmitter carried by the user is verified, so that the step of inputting a password and a verification code by the user is omitted, the step of the user logging in to the operation system of the engineering vehicle is simplified, the operation time of the engineering vehicle is shortened, and the operation efficiency of the engineering vehicle is improved. Further, by collecting the first data information when the feature information is received, the problem that after-sales information cannot be recorded and traced back is solved, and the continuous improvement of the engineering vehicle and the control system is facilitated.

[0072] FIG. 2 shows a flowchart of the step of verifying the feature information in the control system login method of one embodiment of the application; wherein the step of verifying the feature information comprises:

[0073] Step 202: matching the feature information with the authorization information set, wherein the authorization information set includes at least one preset feature information;

[0074] Step 204: determining that the verification result is qualified based on the feature information being the same as the at least one preset feature information in the authorization information set;

[0075] Step 206: determining that the verification result is unqualified based on the feature information being different from any of the preset feature information in the authorization information set.

[0076] In this embodiment, the step of verifying the feature information includes: first matching the feature information with the authorization information set, wherein the authorization information set includes at least one preset feature information, that is, there is a pre-stored authorization information set in the control system, the authorization information set includes a plurality of preset feature information, and each preset feature information also corresponds to permission information. When the feature information is the same as at least one preset feature information in the authorization information set, it is determined that the verification result is qualified, that is, when the feature information sent by the signal transmitter is the same as any one of the preset feature information in the authorization information set, it means that the user carrying the signal transmitter can operate the control system, that is, the verification result is qualified. When the feature information is different from any of the preset feature information in the authorization information set, it is determined that the verification result is unqualified, that is, when the feature information sent by the signal transmitter is different from any one of the preset feature information in the authorization information set, it means that the user carrying the signal transmitter cannot operate the control system, that is, the verification result is unqualified. Further, the preset feature information in the authorization information set is updated periodically, that is, the administrator of the control system has flexible permission management capability, can set different operation permissions according to the responsibilities and levels of the users. The administrator can modify or revoke the permissions of the users at any time, that is, the preset feature information in the authorization information set and the permission information corresponding to each preset feature information can be modified and deleted at any time, by setting the authorization data set, the preset feature information corresponding to the signal transmitter carried by the user and the permission information corresponding to the preset feature information are stored, so as to ensure that only authorized personnel can operate the system.

[0077] FIG. 3 shows a flowchart of the login method of the control system according to an embodiment of the present application after the step of determining that the verification result is unqualified; wherein the login method of the control system further includes:

[0078] Step 302: receiving a first input, wherein the first input is an input of a target object corresponding to the signal transmitter;

[0079] Step 304: working according to the matching result between the first input and the preset information.

[0080] In this embodiment, after the step of determining that the verification result is unqualified, the login method of the control system further includes: receiving a first input, wherein the first input is an input of a target object corresponding to the signal transmitter to the control system, that is, when the verification result is unqualified, it indicates that the user carrying the signal transmitter, that is, the target object corresponding to the signal transmitter, cannot log in to the control system, or it indicates that the signal transmitter carried by the user fails to send the characteristic information, so the backup identity verification method can be switched to, and the backup identity verification method is that the target object corresponding to the signal transmitter, that is, the user carrying the signal transmitter, inputs the first input to the control system, wherein the first input can be an account password or a facial feature of the target object. After receiving the first input, the control system matches the first input with preset information preset in the control system to obtain a matching result, wherein the preset information can be a set account password or a set facial feature. Then the control system can work according to the matching result, if the matching results are the same, it indicates that the user can log in to the control system, if the matching results are different, it indicates that the user cannot log in to the control system. The present application realizes that when the characteristic information sent by the signal transmitter is unqualified or the signal transmitter fails, the backup identity verification method can be switched to, for example, password verification or face verification, thereby improving the satisfaction of the user.

[0081] FIG. 4 shows a flowchart of the step of feeding back according to the verification result in the login method of the control system of one embodiment of the present application; wherein the step of feeding back according to the verification result includes:

[0082] Step 402: based on the verification result being qualified, determining first permission information corresponding to the characteristic information in the authorization information set;

[0083] Step 404: working according to the first permission information and a second input, wherein the second input is an input of a target object corresponding to the signal transmitter to the control system;

[0084] Step 406: based on the verification result being unqualified, outputting prompt information and recording the characteristic information and the verification result into first data information.

[0085] In this embodiment, the step of feeding back according to the verification result comprises: when the verification result is qualified, i.e., the feature information sent by the signal transmitter is the same as any one of the preset feature information in the authorized information set, the first permission information corresponding to the preset feature information with the same feature information needs to be determined in the authorized information set, and the first permission information includes the operation permission of the user corresponding to the preset feature information to the control system. The permission information corresponding to each preset feature information is different. After the first permission information is determined, the working according to the first permission information and the second input is performed, wherein the second input is the input of the target corresponding to the signal transmitter to the control information, i.e., when the verification result is qualified, the control system will work according to the permission information corresponding to the user carrying the signal transmitter and the second input of the user. When the verification result is unqualified, i.e., the feature information sent by the signal transmitter is not the same as any one of the preset feature information in the authorized information set, the prompt information is outputted, wherein the content of the prompt information can be verification failure, and the feature information and the verification result are recorded in the first data information, thereby providing a basis for subsequent after-sales.

[0086] FIG. 5 shows a flowchart of the step of receiving the feature information sent by the signal transmitter when the first distance value is less than the distance threshold in the login method of the control system of one embodiment of the application; wherein the step of receiving the feature information sent by the signal transmitter when the first distance value is less than the distance threshold comprises:

[0087] Step 502: broadcasting the first signal when the first distance value is less than the distance threshold;

[0088] Step 504: receiving the feature information sent by the signal transmitter in response to the first signal.

[0089] In this embodiment, the step of receiving the feature information sent by the signal transmitter when the first distance value is less than the distance threshold comprises: when the first distance value is less than the distance threshold, the control information will broadcast the first signal, and then the signal transmitter will send the feature information in response to the first signal, i.e., when the first distance value between the engineering vehicle and the signal transmitter is less than the distance threshold, the control system will first broadcast the first signal to make the signal transmitter determine the position of the engineering vehicle, wherein the distance threshold can be 20 meters. Then the signal transmitter will determine the position of the engineering vehicle after receiving the first signal, and send the feature information. By broadcasting the first signal when the first distance value is less than the distance threshold, the signal transmitter can accurately determine the specific position of the engineering vehicle.

[0090] In some embodiments, optionally, after the step of starting to collect the first data information upon receiving the characteristic information sent by the signal transmitter, the login method of the control system further comprises: uploading the first data information to a target database in the cloud.

[0091] In this embodiment, after the step of starting to collect the first data information upon receiving the characteristic information sent by the signal transmitter, the login method of the control system further comprises: uploading the first data information to a target database in the cloud, that is, during the operation of the control system, the collected first data information is uploaded to the target database in the cloud in real time. By uploading the first data information to the cloud, the control system has a detailed log recording function, recording the time, place, verification result, vehicle information, modification content, etc. of each identity verification. The automatic registration of information is realized, the record of modification content can be traced back, the service personnel and vehicle modification information are aligned, which is beneficial to after-sales data statistics and continuous improvement of products.

[0092] In some embodiments, optionally, after the step of starting to collect the first data information upon receiving the characteristic information sent by the signal transmitter, the login method of the control system further comprises: periodically analyzing and reviewing the first data information.

[0093] In this embodiment, after the step of starting to collect the first data information upon receiving the characteristic information sent by the signal transmitter, the login method of the control system further comprises: periodically analyzing and reviewing the first data information. By setting the audit function, the first data information is analyzed and reviewed periodically, thereby ensuring the security of the control system and discovering and handling potential security problems in time.

[0094] FIG. 6 shows a schematic diagram of the login method of the control system according to an embodiment of the present application; as shown in FIG. 6, the signal transmitter can be an electronic identification transmitter. When the electronic device transmitter approaches the engineering vehicle, the wake-up circuit of the control system in the engineering vehicle is started. The electronic identification transmitter sends a signal, i.e. characteristic information, to the RFID reader. The RFID reader identifies the signal after receiving it. The control system is unlocked when the verification result is qualified, i.e. the control system can be controlled by the user carrying the electronic identification transmitter. At the same time, when the control system is unlocked, the first data information is collected, i.e. the control system and the electronic identification transmitter perform data transmission to the system, i.e. the cloud, so that the system, i.e. the cloud, has a detailed log recording function, recording the time, place, verification result, vehicle information, modification content, etc. of each identity verification.

[0095] Figure 7 shows a schematic block diagram of a login device of a control system according to an embodiment of the application, wherein the control system is used for controlling a construction vehicle, and the login device 70 of the control system comprises:

[0096] The first receiving module 702 is configured to receive the feature information sent by the signal transmitter when the first distance value is less than the distance threshold, the first distance value being a distance value between the construction vehicle and the signal transmitter;

[0097] The first verification module 704 is configured to verify the feature information when the feature information is received.

[0098] The first feedback module 706 is configured to feed back according to the verification result.

[0099] The first collecting module 708 is configured to start collecting first data information when the feature information sent by the signal transmitter is received, wherein the first data information comprises one or a combination of the following: a time of receiving the feature information, a verification time, a verification location, a verification result, vehicle information of the construction vehicle, and modification information of parameters of the construction vehicle.

[0100] The control system login device 70 provided by the application, wherein the control system is mainly used for controlling the engineering vehicle, such as controlling the pumping device or the conveying device of the engineering vehicle to work. The control system login device 70 specifically comprises a first receiving module 702, a first verification module 704, a first feedback module 706 and a first collection module 708. Wherein, in the case that the first distance value is less than the distance threshold value, the first receiving module 702 receives the characteristic information sent by the signal transmitter, wherein the first distance value is the distance between the engineering vehicle and the signal receiver, that is, when the distance value between the engineering vehicle and the signal transmitter is less than the distance threshold value, the control system will receive the characteristic information sent by the signal transmitter, wherein the control system can be arranged in the engineering vehicle, the signal transmitter can be carried by the user, the signal transmitter can be electronically identified, and the RFID (Radio Frequency Identification, Radio Frequency Identification) chip is arranged in the electronically identified transmitter, so that the characteristic information can be the identity information, which can include the identity identifier. After receiving the characteristic information, the first verification module 704 starts to identify the characteristic information, so as to obtain the identification result, that is, to determine the identity and the right of the user corresponding to the characteristic information, and then the first feedback module 706 feeds back according to the verification result, that is, different operations are performed according to the identity and the right of the user, for example, when the verification result shows that the identity of the current user cannot log in the control system, the user is fed back with prompt information, and when the verification result shows that the identity of the current user can log in the control system, the user is fed back with the information that the login is successful. Further, when receiving the characteristic information sent by the signal transmitter, the first collection module 708 also starts to collect the first data information, wherein the first data information comprises one or several combinations of the time of receiving the characteristic information, the verification time, the verification place, the verification result, the vehicle information of the engineering vehicle and the modification information of the parameters of the engineering vehicle. That is, from the beginning of receiving the characteristic information sent by the signal transmitter to the end of the control system completing all the work, in this period of time, the control system needs to collect the first data information of the time of receiving the characteristic information, the verification time, the verification place, the verification result, the vehicle information of the engineering vehicle and the modification information of the parameters of the engineering vehicle. By collecting the above first data information, the problem that the after-sales information cannot be recorded and traced back is avoided. Based on the radio frequency identification technology, the identity of the user carrying the signal transmitter is verified by receiving the characteristic information sent by the signal transmitter, so that the step of the user inputting the password and the verification code is omitted, the step of the user logging in the engineering vehicle operating system is simplified, the operation time of the engineering vehicle is shortened, and the operation efficiency of the engineering vehicle is improved. Further, by starting to collect the first data information when receiving the characteristic information, the problem that the after-sales information cannot be recorded and traced back is solved, which is beneficial to the continuous improvement of the engineering vehicle and the control system.

[0101] In some embodiments, the first verification module 704 optionally comprises: a first matching module configured to match the feature information with a set of authorized information, wherein the set of authorized information comprises at least one preset feature information; a first determination module configured to determine that the verification result is qualified when the feature information is the same as the at least one preset feature information in the set of authorized information; and a second determination module configured to determine that the verification result is unqualified when the feature information is different from any of the preset feature information in the set of authorized information.

[0102] In this embodiment, the first verification module 704 comprises the first matching module, the first determination module, and the second determination module. The first matching module can match the feature information with a set of authorized information, wherein the set of authorized information comprises at least one preset feature information. That is, there is a set of pre-stored authorized information in the control system, which comprises a plurality of preset feature information, and each preset feature information further corresponds to permission information. When the feature information is the same as at least one preset feature information in the set of authorized information, the first determination module determines that the verification result is qualified. That is, when the feature information sent by the signal transmitter is the same as any one of the preset feature information in the set of authorized information, it means that the user carrying the signal transmitter can operate the control system, i.e., the verification result is qualified. When the feature information is different from any of the preset feature information in the set of authorized information, the second determination module determines that the verification result is unqualified. That is, when the feature information sent by the signal transmitter is different from any one of the preset feature information in the set of authorized information, it means that the user carrying the signal transmitter cannot operate the control system, i.e., the verification result is unqualified. Further, the preset feature information in the set of authorized information is updated periodically. That is, the administrator of the control system has flexible permission management capability, which can set different operation permissions according to the responsibilities and levels of the users. The administrator can modify or revoke the permissions of the users at any time. That is, the preset feature information in the set of authorized information and the permission information corresponding to each preset feature information can be modified and deleted at any time. By setting the set of authorized data, the preset feature information corresponding to the signal transmitter carried by the user and the permission information corresponding to the preset feature information are stored, so as to ensure that only authorized personnel can operate the system.

[0103] In some embodiments, the login device 70 of the control system further comprises: a second receiving module configured to receive a first input, wherein the first input is an input of a target object corresponding to the signal transmitter; and a second matching module configured to work according to a matching result between the first input and preset information.

[0104] In this embodiment, the login device 70 of the control system further comprises a second receiving module and a second matching module. The second receiving module can receive a first input, wherein the first input is an input of the target object corresponding to the signal transmitter to the control system, that is, when the verification result is unqualified, it indicates that the user carrying the signal transmitter, that is, the target object corresponding to the signal transmitter, cannot log in to the control system, or it indicates that the signal transmitter carried by the user fails to send the characteristic information, and therefore, the backup identity verification method can be switched to, that is, the target object corresponding to the signal transmitter, that is, the user carrying the signal transmitter, inputs the first input to the control system, wherein the first input can be an account password or a face feature of the target object. After receiving the first input, the second matching module matches the first input with preset information preset in the control system to obtain a matching result, wherein the preset information can be a set account password or a set face feature. Then, the control system can work according to the matching result, if the matching result is the same, it indicates that the user can log in to the control system, if the matching result is different, it indicates that the user cannot log in to the control system. The present application realizes that when the characteristic information sent by the signal transmitter is unqualified or the signal transmitter fails, the backup identity verification method can be switched to, for example, password verification or face verification, thereby improving the satisfaction of the user.

[0105] In some embodiments, optionally, the first feedback module 706 comprises a third determination module configured to determine, based on the verification result being qualified, first authority information corresponding to the characteristic information in the authority information set; a second feedback module configured to work according to the first authority information and a second input, wherein the second input is an input of the target object corresponding to the signal transmitter to the control system; and a first output module configured to output prompt information based on the verification result being unqualified, and record the characteristic information and the verification result into the first data information.

[0106] In this embodiment, the first feedback module 706 comprises a third determination module, a second feedback module and a first output module. When the verification result is qualified, i.e. the characteristic information sent by the signal transmitter is the same as any one of the preset characteristic information in the authorized information set, the third determination module needs to determine the first permission information corresponding to the preset characteristic information in the authorized information set. The first permission information includes the operation permission of the user corresponding to the preset characteristic information on the control system, and the permission information corresponding to each preset characteristic information is different. After determining the first permission information, the second feedback module works according to the first permission information and the second input, wherein the second input is the input of the target corresponding to the control information of the signal transmitter, i.e. when the verification result is qualified, the control system will work according to the permission information corresponding to the user carrying the signal transmitter and the second input of the user. When the verification result is unqualified, i.e. the characteristic information sent by the signal transmitter is not the same as any one of the preset characteristic information in the authorized information set, the first output module outputs prompt information, wherein the content of the prompt information can be verification failure, and the characteristic information and the verification result are recorded in the first data information, thereby providing a basis for subsequent after-sales.

[0107] In some embodiments, optionally, the first receiving module 702 comprises a first broadcasting module for broadcasting the first signal when the first distance value is less than the distance threshold value, and a second receiving module for receiving the characteristic information sent by the signal transmitter in response to the first signal.

[0108] In this embodiment, the first receiving module 702 comprises a first broadcasting module and a second receiving module. When the first distance value is less than the distance threshold value, the first broadcasting module broadcasts the first signal, and then the second receiving module receives the characteristic information sent by the signal transmitter in response to the first signal, i.e. when the first distance value between the engineering vehicle and the signal transmitter is less than the distance threshold value, the control system is first controlled to broadcast the first signal to make the signal transmitter determine the position of the engineering vehicle, wherein the distance threshold value can be 20 meters. Then the signal transmitter determines the position of the engineering vehicle after receiving the first signal, and sends the characteristic information. By broadcasting the first signal when the first distance value is less than the distance threshold value, the signal transmitter can accurately determine the specific position of the engineering vehicle.

[0109] In some embodiments, optionally, the login device 70 of the control system further comprises a first uploading module for uploading the first data information to a target database in the cloud.

[0110] In this embodiment, the login device 70 of the control system further comprises a first uploading module. The first uploading module can upload the first data information to a target database in the cloud. That is, during the operation of the control system, the first data information collected can be uploaded to the target database in the cloud in real time. By uploading the first data information to the cloud, the control system has detailed log recording function, recording the time, place, verification result, vehicle information, modification content and other information of each identity verification. The automatic registration of information is realized, the record of modification content can be traced back, the service personnel and vehicle modification information are aligned, which is beneficial to after-sales data statistics and continuous improvement of products.

[0111] In some embodiments, the login device 70 of the control system further comprises an analysis module for periodically analyzing and reviewing the first data information.

[0112] In this embodiment, the login device 70 of the control system further comprises an analysis module. The analysis module can periodically analyze and review the first data information. By setting the audit function, the first data information is analyzed and reviewed periodically, so as to ensure the security of the control system and timely discover and handle potential security problems.

[0113] FIG. 8 shows a schematic block diagram of a control system according to an embodiment of the present application. The control system 80 is used to control an engineering vehicle. The control system 80 comprises a radio frequency device 802, a wake-up circuit 804, an information reader 806 and a data collector 808. The radio frequency device 802 is used to receive characteristic information sent by a signal transmitter to the control system 80. The wake-up circuit 804 is connected to the radio frequency device 802 and is used to start the radio frequency device 802 when a first distance value is less than a distance threshold value. The first distance value is the distance value between the engineering vehicle and the signal transmitter. The information reader 806 is connected to the radio frequency device 802 and is used to verify the characteristic information and determine a verification result after the radio frequency device 802 receives the characteristic information. The data collector 808 is connected to the information reader 806 and the radio frequency device 802 respectively and is used to start collecting first data information when the characteristic information sent by the signal transmitter is received. The first data information includes one or a combination of the time of receiving the characteristic information, the verification time, the verification place, the verification result, the vehicle information of the engineering vehicle and the modification information of the internal parameters of the control system 80.

[0114] The control system 80 provided in the application is used for controlling the engineering vehicle, wherein the control system 80 comprises a radio frequency device 802, a wake-up circuit 804, an information reader 806 and a data collector 808. The radio frequency device 802 can receive the characteristic information sent by the signal transmitter to the control system 80 when working. The wake-up circuit 804 is connected with the radio frequency device 802, and when the first distance between the signal transmitter and the engineering vehicle is less than the distance threshold, the wake-up circuit 804 is triggered, so as to control the radio frequency device 802 to start to receive the characteristic information sent by the signal transmitter to the control system 80. The information reader 806 is connected with the radio frequency device 802, and when the radio frequency device 802 receives the characteristic information, the information reader 806 sends the characteristic information to the information reader 806, and the information reader 806 verifies the characteristic information and determines the verification result. The process of verifying the characteristic information can be that the characteristic information is compared with the preset characteristic information in the authorized information set in the control system 80. The control system 80 can also be controlled to feedback according to the verification result. The data collector 808 is connected with the information reader 806 and the radio frequency device 802 respectively, and when receiving the characteristic information sent by the signal transmitter, the data collector 808 starts to collect the first data information, wherein the first data information comprises one or several combinations of the time of receiving the characteristic information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle and the modification information of the internal parameters of the control system 80. That is to say, when the radio frequency device 802 receives the characteristic information, the data collector 808 collects the first data information such as the time of receiving the characteristic information, the verification time, the verification location, the verification result, the vehicle information of the engineering vehicle and the modification information of the internal parameters of the control system 80 in the information reader 806. Based on the radio frequency identification technology, the application verifies the identity by receiving the characteristic information sent by the signal transmitter carried by the user, so that the step of inputting the password and the verification code by the user is omitted, the step of the user logging in the operation system of the engineering vehicle is simplified, the operation time of the engineering vehicle is shortened, and the operation efficiency of the engineering vehicle is improved. Further, by starting to collect the first data information when receiving the characteristic information, the problem that the after-sales information cannot be recorded and traced is solved, and the continuous improvement of the engineering vehicle and the control system 80 is facilitated.

[0115] FIG. 9 shows a schematic block diagram of the control system according to an embodiment of the application; wherein the control system 90 comprises a memory 902 and a processor 904, the memory 902 stores a computer program, and the processor 904 executes the computer program; wherein the processor 904 implements the steps of the login method of the control system according to any embodiment of the application when executing the computer program.

[0116] The control system 90 provided in the present application, when the processor 904 executes the computer program, implements the steps of the login method of the control system according to any one of the embodiments of the present application, thus having all the beneficial effects of the login method of the control system according to any one of the embodiments of the present application, which will not be repeated here.

[0117] One embodiment of the present application provides a readable storage medium, which stores a computer program, and when the computer program is executed by a processor, the steps of the login method of the control system according to any one of the embodiments described above are implemented.

[0118] The readable storage medium provided in the present embodiment implements the steps of the login method of the control system according to any one of the embodiments of the present application, thus having all the beneficial effects of the login method of the control system according to any one of the embodiments of the present application, which will not be repeated here.

[0119] The readable storage medium can be, for example, a Read-Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk or an optical disk, etc.

[0120] The computer readable storage medium can be a tangible device that can retain and store instructions for use by an instruction execution device. The computer readable storage medium can be an electronic storage device, a magnetic storage device, an optical storage device, an electromagnetic storage device, a semiconductor storage device, or any suitable combination of the foregoing. A non-exhaustive list of more specific examples of the computer readable storage medium includes a portable computer diskette, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM), a static random access memory (SRAM), a portable compact disc read-only memory (CD-ROM), a digital versatile disk (DVD), a memory stick, a floppy disk, a mechanically encoded device such as punch-cards or punched tape, as well as any suitable combination of the foregoing. A computer readable storage medium, as used herein, is not to be construed as being transitory signals per se, such as radio waves or other freely propagating electromagnetic waves, electromagnetic waves propagating through a waveguide or other transmission media, or electrical signals through a wire, digital or analog communication links, wireless communications links, etc.

[0121] One embodiment of the present application provides an engineering vehicle, which comprises: the login device of the control system according to any one of the embodiments described above, and / or the control system according to any one of the embodiments described above, and / or the readable storage medium according to any one of the embodiments described above.

[0122] The engineering vehicle provided by the embodiment comprises the login device of the control system of any one of the above embodiments, and / or the control system of any one of the above embodiments, and / or the readable storage medium of any one of the above embodiments. Thus, the engineering vehicle has all the beneficial effects of the login device of the control system, the control system and / or the readable storage medium of any one of the embodiments of the present application, which will not be described herein again. The engineering vehicle can be a concrete pump truck, a tunneling vehicle, etc.

[0123] The embodiment further provides a program product comprising a computer program stored in a readable storage medium. At least one processor of an electronic device can read the computer program from the readable storage medium, and the at least one processor executes the computer program to enable the electronic device to implement the login method of the control system provided by the various embodiments described above.

[0124] The embodiment further provides a chip comprising a memory and a processor. The memory stores codes and data, and is coupled to the processor. The processor executes a program in the memory to enable the chip to execute the login method of the control system provided by the various embodiments described above.

[0125] The embodiment further provides a computer program for executing the login method of the control system provided by the various embodiments described above when the computer program is executed by a processor.

[0126] It should be noted that, in the claims, the specification and the drawings of the present application, the term "a plurality of" refers to two or more, unless otherwise explicitly limited, and the terms "upper", "lower", and the like indicate the orientation or positional relationship shown in the drawings based on the orientation or positional relationship shown in the drawings, and are only used to facilitate the description of the present application and make the description process more simple, and therefore these descriptions cannot be understood as limiting the present application; the terms "connection", "installation", "fixation" and the like should be understood in a broad sense, for example, "connection" can be a fixed connection between objects, or a detachable connection between objects, or an integral connection; can be a direct connection between objects, or an indirect connection between objects through an intermediate medium. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances of the above data.

[0127] In the claims, specification, and drawings of this application, terms have their plain, ordinary meaning unless otherwise indicated by the context of their use. The terms "comprise", "comprising", "include", "including", "have" and "having" are used interchangeably and mean "including but not limited to". It is further noted that the claims can be drafted to exclude any optional element. As such, these terms are to be read to disclaim any possibility of interpretation of the application in contravention to that set forth in the previous paragraph.

[0128] The preferred embodiments of this application are described herein, including the best mode known to the inventors of practicing the application. Of course, variations on the preferred embodiments will occur to those of ordinary skill in the art once advised of the application in this application. Those variations will fall within the scope of the application. Accordingly, the application is not to be limited by the preferred embodiments set forth herein.

Claims

1. A login method of a control system, characterized by, The control system is used for controlling an engineering vehicle, and the method comprises: In a case where a first distance value is less than a distance threshold value, receiving characteristic information sent by a signal transmitter, the first distance value being a distance value between the engineering vehicle and the signal transmitter; In a case where the characteristic information is received, verifying the characteristic information; According to a verification result, feeding back; When the characteristic information sent by the signal transmitter is received, starting to collect first data information, wherein the first data information comprises one or a combination of the following: a time of receiving the characteristic information, a verification time, a verification location, the verification result, vehicle information of the engineering vehicle, and modification information of a parameter of the engineering vehicle.

2. The method of claim 1, wherein, The verification of the characteristic information comprises: According to the characteristic information and an authorized information set, wherein the authorized information set comprises at least one preset characteristic information; Based on the characteristic information being the same as the at least one preset characteristic information in the authorized information set, determining that the verification result is qualified; Based on the characteristic information being different from any one of the preset characteristic information in the authorized information set, determining that the verification result is unqualified.

3. The method according to claim 1 or 2, characterized in that, After the determination that the verification result is unqualified, the method further comprises: Receiving a first input, wherein the first input is an input of a target object corresponding to the signal transmitter; According to a matching result between the first input and preset information, working.

4. The method according to any one of claims 1 to 3, characterized in that, The feedback according to the verification result comprises: Based on the verification result being qualified, determining first permission information corresponding to the characteristic information in the authorized information set; According to the first permission information and a second input, working, wherein the second input is an input of a target object corresponding to the signal transmitter to the control system; Based on the verification result being unqualified, outputting prompt information, and recording the characteristic information and the verification result into the first data information.

5. The method according to any one of claims 1 to 4, characterized in that, The receiving of the characteristic information sent by the signal transmitter in a case where the first distance value is less than the distance threshold value comprises: In a case where the first distance value is less than the distance threshold value, broadcasting a first signal; Receiving the characteristic information sent by the signal transmitter in response to the first signal.

6. The method according to any one of claims 1 to 5, characterized in that, After the starting to collect the first data information when the characteristic information sent by the signal transmitter is received, the method further comprises: Uploading the first data information to a target database in the cloud.

7. The method according to any one of claims 1 to 6, characterized in that, After the starting to collect the first data information when the characteristic information sent by the signal transmitter is received, the method further comprises: Periodically analyzing and reviewing the first data information.

8. A login apparatus of a control system, characterized by, The control system is used for controlling an engineering vehicle, and the device comprises: A first receiving module, the first receiving module being used for receiving characteristic information sent by a signal transmitter in a case where a first distance value is less than a distance threshold value, the first distance value being a distance value between the engineering vehicle and the signal transmitter; A first verification module, configured to verify the feature information when the feature information is received; A first feedback module, configured to feed back according to the verification result; A first collection module, configured to collect first data information when the feature information sent by the signal transmitter is received, wherein the first data information comprises one or more combinations of time of receiving the feature information, verification time, verification location, the verification result, vehicle information of the engineering vehicle, and modification information of parameters of the engineering vehicle.

9. A control system for controlling a work vehicle, characterized by, Comprising: A radio frequency device, configured to receive feature information sent by a signal transmitter to the control system; A wake-up circuit, connected with the radio frequency device, configured to start the radio frequency device when a first distance value is less than a distance threshold, wherein the first distance value is a distance value between the engineering vehicle and the signal transmitter; An information reader, connected with the radio frequency device, configured to verify the feature information and determine a verification result after the radio frequency device receives the feature information; A data collector, connected with the information reader and the radio frequency device respectively, configured to collect first data information when the feature information sent by the signal transmitter is received, wherein the first data information comprises one or more combinations of time of receiving the feature information, verification time, verification location, the verification result, vehicle information of the engineering vehicle, and modification information of parameters of the engineering vehicle.

10. A control system characterized by, Comprising: A processor; A memory, in which a program or instruction is stored, and the processor realizes the steps of the login method of the control system according to any one of claims 1 to 7 when executing the program or instruction in the memory.

11. A readable storage medium, characterized by, A program or instruction is stored on the readable storage medium, and the program or instruction is executed by the processor to realize the steps of the login method of the control system according to any one of claims 1 to 7.

12. An engineering vehicle characterized by, Comprising computer instructions, comprising: The login device of the control system according to claim 8; and / or The control system according to claim 9; and / or The control system according to claim 10; and / or The readable storage medium according to claim 11.

13. A chip, comprising a memory and a processor, the memory stores codes and data, the memory is coupled with the processor, and the processor runs a program in the memory so that the chip is used to execute the login method of the control system according to any one of claims 1 to 7.

14. A program product characterized in that Comprising: A computer program, when the program product is run on a computer, so that the computer executes the login method of the control system according to any one of claims 1 to 7.

15. A computer program, characterized in that, When the computer program is executed by the processor, it is used to execute the login method of the control system according to any one of claims 1 to 7.

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