CN111259731B - Underground mine personnel access identification system and method - Google Patents

Underground mine personnel access identification system and method Download PDF

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Publication number
CN111259731B
CN111259731B CN201911415094.8A CN201911415094A CN111259731B CN 111259731 B CN111259731 B CN 111259731B CN 201911415094 A CN201911415094 A CN 201911415094A CN 111259731 B CN111259731 B CN 111259731B
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verification
height
sequencing
module
personnel
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CN111259731A (en
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张滇豫
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Chinalco Intelligent Technology Development Co ltd
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Chinalco Intelligent Technology Development Co ltd
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V40/00Recognition of biometric, human-related or animal-related patterns in image or video data
    • G06V40/70Multimodal biometrics, e.g. combining information from different biometric modalities
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/30Computing systems specially adapted for manufacturing

Abstract

The invention discloses a system and a method for identifying the entrance and exit of underground mine personnel, wherein the system comprises the following steps: the personnel carries the marker when entering, the verification unit reads the marker code and measures the height and weight; the decision unit selects a corresponding biological feature verification module according to the height and/or weight value, and the result is stored together with the code; passing verification, and prompting if not passing verification; when the person leaves, the verification unit reads the identification code and measures the height and weight; the decision unit selects a corresponding biological feature verification module according to the height and/or weight value, and the result is verified with the code check; and if the verification is passed, the verification is released, and if the verification is not passed, the prompt is provided. The essential effects of the invention include: by combining the traditional mode with the new mode, the biological characteristics of the personnel are fully utilized, the reliability of verification is improved on the premise that the verification process is not complex and time-consuming, and the personnel access management is facilitated.

Description

Underground mine personnel access identification system and method
Technical Field
The invention relates to the field of underground operator identification, in particular to an underground mine operator access identification system and an underground mine operator access identification method.
Background
The existing underground mine personnel management system mainly manages well entering and exiting personnel in a mode of identifying personnel carrying the positioning card, but whether the positioning card is carried by the person cannot be determined.
The invention discloses a method for positioning underground personnel in a coal mine, which is characterized in that in a roadway where personnel positioning is required to be realized in the coal mine, a radio frequency scale cable is laid, a baseband of the radio frequency scale cable is a wire, a plurality of passive radio frequency tags are arranged close to the wire at equal intervals, the passive radio frequency tags carry out non-contact radio frequency identification communication with active radio frequency tags carried by personnel entering the coal mine, an ID (identification) code and time sequence information of the radio frequency tags in a communication state can be read by a reader, and are uploaded to a ground server through a network, and then the personnel positioning function is completed by combining a two-dimensional or three-dimensional mine map through calculation and analysis.
The prior art is too dependent on verification modes such as a positioning card or a label, and is easy to cause inaccurate statistical information.
Disclosure of Invention
Aiming at the problems of single information verification mode and inaccurate statistics in the prior art, the invention provides an underground mine personnel access identification system and method, which can prevent impossibility and displacement and improve the reliability of statistical data by changing verification means.
The following is a technical scheme of the invention.
An underground mine personnel access identification system, comprising: the verification unit comprises a plurality of biological characteristic verification modules, a measurement module and an article verification module and is used for verifying the identity of personnel; the decision unit is used for controlling the system and selecting a corresponding biological feature verification module according to the specified rule; the identifier stores specific data, can be read by the article verification module and is carried by personnel.
The identifier has a basic verification function similar to a common identity card, and is combined with the biological characteristic verification module to carry out selective verification by the decision unit without excessive information verification, so that the verification step can be simplified, and meanwhile, the information to be verified cannot be prejudged due to the existence of a specified rule, so that the impersonation can be effectively prevented.
Preferably, the biometric verification module comprises a face recognition module, a fingerprint recognition module and a voiceprint recognition module, and the measurement module comprises a height measurement module and a weight measurement module.
Preferably, the specified rule executed by the decision unit includes: which biometric verification module is selected is determined based on the weight value and/or height value currently measured. Since the height and weight can vary within a certain range, the device cannot be directly used for verifying the identity, but can be used as an auxiliary means for participation.
Preferably, the specified rule is selected from three modes: sequencing the biological feature verification modules, and designating the position behind the decimal point of the height value measured in centimeters, wherein the position exceeds the sequencing upper limit; sequencing the biological feature verification modules, and designating the position behind the decimal point of the measured weight value in kilograms, wherein the decimal point exceeds the forward extension of the sequencing upper limit; sequencing the biological feature verification module, multiplying the measured weight value in kilograms by the height value in centimeters, and designating the position behind the decimal point of the result according to the forward extension exceeding the sequencing upper limit. For example, when the height of a person is 180.8cm, the biometric verification module with the sequence number of 8 is used according to the sequence, if the sequence number of 8 is exceeded, the exceeding value corresponds to the sequence number, and so on, the method can ensure that no person can accurately know what information is to be verified before verification, so that the fake cost and the fake difficulty are greatly increased.
Preferably, the decision unit and the verification unit are both enabled when a person enters and leaves. If necessary, additional conditions can be added, such as different appointed rules or different biological feature verification modules are selected for the same person to enter and leave, so as to further improve the reliability.
The scheme also comprises an underground mine personnel access identification method, and the underground mine personnel access identification system comprises the following steps: the personnel carries the marker when entering, the verification unit reads the marker code and measures the height and weight; the decision unit selects a corresponding biological feature verification module according to the height and/or weight value, and the result is stored together with the code; passing verification, and prompting if not passing verification; when the person leaves, the verification unit reads the identification code and measures the height and weight; the decision unit selects a corresponding biological feature verification module according to the height and/or weight value, and the result is verified with the code check; and if the verification is passed, the verification is released, and if the verification is not passed, the prompt is provided.
Preferably, the biometric verification module comprises a face recognition module, a fingerprint recognition module and a voiceprint recognition module, and the measurement module comprises a height measurement module and a weight measurement module.
Preferably, the selection manner of the decision unit includes: sequencing the biological feature verification modules, and designating the position behind the decimal point of the height value measured in centimeters, wherein the position exceeds the sequencing upper limit; sequencing the biological feature verification modules, and designating the position behind the decimal point of the measured weight value in kilograms, wherein the decimal point exceeds the forward extension of the sequencing upper limit; sequencing the biological feature verification module, multiplying the measured weight value in kilograms by the height value in centimeters, and designating the position behind the decimal point of the result according to the forward extension exceeding the sequencing upper limit.
The essential effects of the invention include: by combining the traditional mode with the new mode, the biological characteristics of the personnel are fully utilized, the reliability of verification is improved on the premise that the verification process is not complex and time-consuming, and the personnel access management is facilitated.
Drawings
FIG. 1 is a schematic diagram of an embodiment of the present invention;
the drawings include: 1-biological feature verification module, 2-article verification module, 3-measurement module, 4-decision unit, 5-identifier.
Detailed Description
The technical solutions in the embodiments of the present application will be described below with reference to the drawings in the embodiments of the present application. In addition, numerous specific details are set forth in the following description in order to provide a better understanding of the present invention. It will be understood by those skilled in the art that the present invention may be practiced without some of these specific details. In some instances, well known methods, procedures, components, and circuits have not been described in detail so as not to obscure the present invention.
Wherein, in the description of the embodiments of the present application, "/" means or is meant unless otherwise indicated, for example, a/B may represent a or B; "and/or" herein is merely an association relationship describing an association object, and means that three relationships may exist, for example, a and/or B may mean: a exists alone, A and B exist together, and B exists alone. In addition, in the description of the embodiments of the present application, "plurality" means two or more than two.
Examples:
an underground mine personnel access identification system, comprising: the system comprises a plurality of biological characteristic verification modules 1, a measurement module 3 and an article verification module 2, wherein the biological characteristic verification modules are used for verifying the identity of personnel; the decision unit 4 controls the system and selects the corresponding biological feature verification module 1 according to the specified rule; the identifier 5 holds specific data and can be read by the article authentication module 2 and carried by a person. Wherein the identifier 5 is a common item such as a radio frequency tag or a locator card.
The biological characteristic verification module 1 comprises a face recognition module, a fingerprint recognition module and a voiceprint recognition module, and the measurement module 3 comprises a height measurement module 3 and a weight measurement module 3.
The identifier 5 is similar to an identity card, plays a basic verification role, is combined with the biological characteristic verification module 1, is subjected to selective verification by the decision unit 4, does not need to verify excessive information, can simplify the verification step, and can not pre-judge which information is required to be verified due to the existence of a specified rule, so that the impersonation displacement can be effectively prevented.
The specified rules executed by the decision unit 4 include: which biometric authentication module 1 is selected is determined on the basis of the weight value and/or the height value measured at the time. Since the height and weight can vary within a certain range, the device cannot be directly used for verifying the identity, but can be used as an auxiliary means for participation.
Specifically, the specified rule is selected randomly from three modes: sequencing the biological feature verification module 1, and designating the position behind the decimal point of the height value measured in centimeters, wherein the position exceeds the forward extension of the sequencing upper limit; sequencing the biological feature verification module 1, and designating the position behind the decimal point of the weight value which is measured by taking kilograms as a unit, wherein the position exceeds the forward direction of the sequencing upper limit; sequencing the biological feature verification module 1, multiplying the measured weight value in kilograms by the height value in centimeters, and designating the position behind the decimal point of the result according to the forward extension exceeding the sequencing upper limit. For example, when the height of a person is 180.8cm, the biometric verification module 1 with the sequence number of 8 is used according to the sequence, if the sequence number of 8 is exceeded, the exceeding value corresponds to the sequence number again, and so on, the method can ensure that no person can accurately know what information is to be verified before verification, so that the fake cost and the fake difficulty are greatly increased.
The decision unit 4 and the verification unit are both enabled when a person enters and leaves. If necessary, additional conditions can be added, such as different specified rules or different biometric verification modules 1 are selected for the same person to enter and leave, so as to further improve the reliability.
The scheme also comprises an underground mine personnel access identification method, and the underground mine personnel access identification system comprises the following steps: when a person enters, the person carries the marker 5, and the verification unit reads the code of the marker 5 and measures the height and weight; the decision unit 4 selects the corresponding biological feature verification module 1 according to the height and/or weight value, and the result is stored together with the code; passing verification, and prompting if not passing verification; when the person leaves, the verification unit reads the code of the marker 5 and measures the height and weight; the decision unit 4 selects the corresponding biological feature verification module 1 according to the height and/or weight value, and the result is verified with the code check; and if the verification is passed, the verification is released, and if the verification is not passed, the prompt is provided.
The biological characteristic verification module 1 comprises a face recognition module, a fingerprint recognition module and a voiceprint recognition module, and the measurement module 3 comprises a height measurement module 3 and a weight measurement module 3.
The selection mode of the decision unit comprises the following steps: sequencing the biological feature verification module 1, and designating the position behind the decimal point of the height value measured in centimeters, wherein the position exceeds the forward extension of the sequencing upper limit; sequencing the biological feature verification module 1, and designating the position behind the decimal point of the weight value which is measured by taking kilograms as a unit, wherein the position exceeds the forward direction of the sequencing upper limit; sequencing the biological feature verification module 1, multiplying the measured weight value in kilograms by the height value in centimeters, and designating the position behind the decimal point of the result according to the forward extension exceeding the sequencing upper limit.
From the foregoing description of the embodiments, it will be appreciated by those skilled in the art that, for convenience and brevity of description, only the above-described division of functional modules is illustrated, and in practical application, the above-described functional allocation may be implemented by different functional modules according to needs, i.e. the internal structure of a specific apparatus is divided into different functional modules to implement all or part of the functions described above.
The units described as separate parts may or may not be physically separate, and the parts shown as units may be one physical unit or a plurality of physical units, may be located in one place, or may be distributed in a plurality of different places. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.
The integrated units, if implemented in the form of software functional units and sold or used as stand-alone products, may be stored in a readable storage medium. Based on such understanding, the technical solution of the embodiments of the present application may be essentially or a part contributing to the prior art or all or part of the technical solution may be embodied in the form of a software product stored in a storage medium, including several instructions to cause a device (may be a single-chip microcomputer, a chip or the like) or a processor (processor) to perform all or part of the steps of the methods of the embodiments of the present application. And the aforementioned storage medium includes: a U-disk, a removable hard disk, a Read Only Memory (ROM), a random access memory (random access memory, RAM), a magnetic disk, or an optical disk, or other various media capable of storing program codes.
The foregoing is merely specific embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art can easily think about changes or substitutions within the technical scope of the present application, and the changes and substitutions are intended to be covered by the scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.

Claims (7)

1. An underground mine personnel access identification system, comprising:
the verification unit comprises a plurality of biological characteristic verification modules, a measurement module and an article verification module and is used for verifying the identity of personnel;
the decision unit is used for controlling the system and according to the specified rule: randomly selecting from three modes: sequencing the biological feature verification modules, and designating the position behind the decimal point of the height value measured in centimeters, wherein the position exceeds the sequencing upper limit; sequencing the biological feature verification modules, and designating the position behind the decimal point of the measured weight value in kilograms, wherein the decimal point exceeds the forward extension of the sequencing upper limit; sequencing the biological feature verification modules, multiplying the measured weight value in kilograms by the height value in centimeters, and selecting a corresponding biological feature verification module according to the specification of the last decimal point of the result and the forward extension exceeding the sequencing upper limit;
the identifier stores specific data, can be read by the article verification module, is similar to a common identity card, and is carried by personnel.
2. The underground mine personnel access identification system of claim 1, wherein the biometric verification module comprises a face recognition module, a fingerprint recognition module and a voiceprint recognition module, and the measurement module comprises a height measurement module and a weight measurement module.
3. The underground mine personnel access identification system of claim 2, wherein the designated rules executed by the decision unit comprise: which biometric verification module is selected is determined based on the weight value and/or height value currently measured.
4. A subterranean mine personnel access identification system according to claim 1 or 3, wherein the decision unit and verification unit are both enabled upon entry and exit of personnel.
5. A method for identifying the ingress and egress of underground mine personnel using the underground mine personnel ingress and egress identification system of claim 1, comprising:
the personnel carries the marker when entering, the verification unit reads the marker code and measures the height and weight;
the decision unit selects a corresponding biological feature verification module according to the height and/or weight value, and the result is stored together with the code;
passing verification, and prompting if not passing verification;
when the person leaves, the verification unit reads the identification code and measures the height and weight;
the decision unit selects a corresponding biological feature verification module according to the height and/or weight value, and the result is verified with the code check;
and if the verification is passed, the verification is released, and if the verification is not passed, the prompt is provided.
6. The method for identifying the ingress and egress of underground mine personnel according to claim 5, wherein the biometric verification module comprises a face recognition module, a fingerprint recognition module and a voiceprint recognition module, and the measurement module comprises a height measurement module and a weight measurement module.
7. The method for identifying the ingress and egress of persons from a subterranean mine according to claim 5, wherein the decision unit is selected in a manner comprising: sequencing the biological feature verification modules, and designating the position behind the decimal point of the height value measured in centimeters, wherein the position exceeds the sequencing upper limit; sequencing the biological feature verification modules, and designating the position behind the decimal point of the measured weight value in kilograms, wherein the decimal point exceeds the forward extension of the sequencing upper limit; sequencing the biological feature verification module, multiplying the measured weight value in kilograms by the height value in centimeters, and designating the position behind the decimal point of the result according to the forward extension exceeding the sequencing upper limit.
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