Non-inductive collection cabin
Through integrated design and automated control, the contactless collection cabin solves the problems of scattered traditional biometric collection equipment and high manual intervention, achieving efficient, accurate and secure collection of multiple data, adapting to different individuals and protecting privacy.
Patent Information
- Application Number
- CN202510755795.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-07
- Publication Date
- 2025-09-12
AI Technical Summary
Traditional biometric collection equipment is scattered, requires a lot of manual intervention, has low collection efficiency, and has poor device adaptability, resulting in incomplete or inaccurate data and a high risk of privacy leakage.
A contactless collection cabin is designed, which adopts an integrated collection body, integrates multiple biometric collection devices, and combines automatic guidance module, progress monitoring module, anomaly detection module and permission management module to achieve full automation, adaptive adjustment and data security protection.
It improves collection efficiency and data accuracy, reduces manual intervention, protects privacy, adapts to different heights and body shapes, and ensures data integrity and security.
Smart Images

Figure CN120625947A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of biometric collection, and in particular to a contactless collection cabin. Background Art
[0002] In the field of modern law enforcement and justice, biometric collection is an important means of personal identity authentication and is widely used in criminal investigation, judicial trials and other social management work. Traditional biometric collection methods usually rely on a variety of scattered collection devices to collect data item by item, such as fingerprints, irises, faces, weight, etc. Most of these devices require manual guidance, and the collected personnel complete each operation one by one, which is cumbersome and prone to errors. In addition, due to the decentralized distribution of equipment, the collection process is inefficient and occupies a large space. Especially when there are many people collecting, the complexity of the operation and the space occupied by the equipment become problems that cannot be ignored.
[0003] In the existing technology, biometric collection usually needs to rely on multiple independent devices for operation. For example, fingerprint collection, iris collection and face collection often require their own equipment, and personnel guidance and equipment adjustment are required between operations. The collectors need to adjust their posture and position many times, which not only increases the collection time, but also increases the error rate of data collection. The independence and spatial layout of the equipment often lead to the cumbersomeness of the collection process. Especially in high-frequency use environments, the traditional equipment layout and operation method appear to be more inefficient and inconvenient. Moreover, since the traditional collection system generally relies on manual participation, the collection process will inevitably result in the exposure of the privacy of the collected person, and the participation of the collector will bring the risk of privacy leakage, which makes the traditional collection process to a certain extent. The automation level of the system is greatly reduced. Manual guidance is often one of the main reasons for the low collection efficiency. At the same time, it is difficult to avoid operational errors and human interference, which affects the accuracy and completeness of the final data. Moreover, due to the fixed design of traditional collection equipment, it is often difficult to adapt and adjust according to individual differences such as the height and body shape of the collected persons. The angle and position of the equipment are not easy to adjust flexibly, resulting in some shorter or taller collected persons being unable to complete data collection at the optimal collection position, thereby affecting the accuracy and efficiency of data collection. Especially when facing collected persons with large differences in height and body shape, the existing technology has failed to effectively solve the data inconsistency problem caused by equipment adaptation problems, resulting in incomplete or inaccurate data collected by biometrics. For this reason, those skilled in the art have proposed a non-sensing collection cabin to solve the above problems. Summary of the Invention
[0004] In view of the shortcomings of the existing technology, the present invention provides a sensorless collection cabin, which solves the problems of scattered equipment, excessive manual intervention, and low collection efficiency in the existing technology.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solutions: a sensorless collection cabin, comprising: A cabin for accommodating the collected personnel; A doorless passage is provided on the front and rear sides of the cabin, so that the subjects can enter and exit the cabin freely; Two integrated collection bodies are respectively installed on the left and right sides of the interior of the cabin, and are used to collect biometric data of personnel. The bottom of the integrated collection body is provided with foot length and weight collection, and the left and right sides of the exterior of the integrated collection body are provided with cross marks. A double-pivot rotating arm is installed on the upper side of the integrated collection body, and a face collection is installed on the bottom of the double-pivot rotating arm. The exterior of the integrated collection body is provided with a collection panel.
[0006] Preferably, the face acquisition device includes a plurality of cameras, and the plurality of cameras are installed in an array inside the face acquisition device.
[0007] Preferably, the acquisition panel includes an iris acquisition, two palm print acquisitions and two fingerprint acquisitions. The iris acquisition is installed on the upper side of the acquisition panel, the two palm print acquisitions are respectively installed on the left and right sides of the outside of the acquisition panel, and the two fingerprint acquisitions are both installed on the lower side of the acquisition panel.
[0008] Preferably, an integrated screen is installed on the front side of the cabin for displaying the collection progress, prompt information and collection results, and a status prompt light is installed on the front side of the cabin for providing visual feedback of the collection status.
[0009] A control system for a sensorless collection cabin is also provided, including: The automatic guidance module is used to control the collection process, guide the collected personnel to complete the data collection according to the preset sequence of the collection equipment, provide voice and visual prompts to standardize the collection process, and provide the collection progress information to the progress monitoring module; The progress monitoring module is used to track the operating status of each collection device in real time and record the progress of each collection progress information to ensure the integrity of the collected data; The anomaly detection module is used to receive the collected data provided by the progress monitoring module, further analyze the collected data of the collected personnel and the operating status of the collection equipment, identify abnormal situations, and classify and record abnormal events; The data storage and encryption module is used to store and encrypt the collected data of the collected personnel and receive the collection progress information from the progress monitoring module to ensure the synchronous storage and integrity of the data; The rights management module is used to receive abnormal event information from the anomaly detection module, implement access restrictions or locks on data access involving abnormal situations, and set access permissions based on the stored data of the data storage and encryption module to prevent unauthorized access and data abuse.
[0010] Preferably, the automatic guidance module includes: The voice guidance unit is used to guide the person being collected to complete the collection of various biometric data through voice prompts; A cursor positioning unit, used to provide accurate height measurement assistance based on the cross mark and ensure that the camera of the face acquisition device obtains standardized image data; The visual guidance unit is used to provide visual prompts through status indicator lights and an integrated screen to guide the person being collected to complete the collection.
[0011] Preferably, the progress monitoring module includes: Equipment operation monitoring unit, used to monitor the working status of each acquisition device in real time to ensure the normal operation of the acquisition equipment; Progress feedback unit, used to synchronize collection progress information to the integrated screen for collection personnel and management personnel to view; The data synchronization unit is used to synchronize the collected biometric data to the central data storage system in real time and match it with the identity information.
[0012] Preferably, the anomaly detection module includes: Behavior analysis unit, used to analyze the behavioral characteristics of the person being collected during the collection process and determine whether there are any abnormalities; Safety warning unit, used to issue warning information through status indicator lights and integrated screen in abnormal situations and notify management personnel; The environmental monitoring unit is used to detect external environmental interference through the monitoring sensors built into the integrated acquisition body and perform abnormal processing.
[0013] Preferably, the data storage and encryption module includes: Data encryption unit, used to encrypt the collected biometric data using the AES symmetric encryption algorithm to prevent data leakage; Access log unit, used to record all data access and modification operations in order to track data usage; The data backup unit is used to regularly back up biometric data to ensure data security and integrity.
[0014] Preferably, the rights management module includes: User hierarchical management unit, used to manage the permissions of system users at different levels, so that users of different levels can access data of different levels; Data access control unit, used to set access rules to allow only authorized users to access specific data; The two-person synchronous collection management unit is used to ensure that the voice prompts and visual guidance of each person being collected do not interfere with each other when two integrated collection bodies are running at the same time, and optimize the voice prompt experience through directional audio technology.
[0015] The present invention provides a sensorless data collection cabin with the following beneficial effects: 1. The present invention uses an integrated collection device, so that a single collection cabin can complete the collection of multiple data such as height, weight, foot length, fingerprint, face, iris, etc., achieving an efficient collection process and space utilization. Compared with the existing technology that requires multiple devices to be distributed, the present invention solves the problems of large equipment footprint and cumbersome collection process, making collection more centralized and efficient.
[0016] 2. The present invention realizes full automatic guidance through the contactless collection cabin, which reduces the full participation of case-handling staff and reduces manpower requirements, and provides guidance for the collected persons through voice and visual prompts. Compared with the traditional technology that requires full supervision by personnel, the present invention can effectively protect the privacy of the collected persons and reduce unnecessary interference and operational errors.
[0017] 3. The present invention adopts a dual-pivot rotating arm and an adjustable collection panel, so that the collection equipment can be adaptively adjusted according to the height and body shape of the person being collected, ensuring that all types of people can complete data collection at the optimal angle. Compared with the collection method of fixed equipment in the existing technology, the present invention solves the problem of inaccurate collection angles caused by height differences and greatly improves the accuracy and completeness of the collected data. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 A perspective view of the device of the present invention; Figure 2 This is a schematic diagram of the gateless channel structure of the present invention; Figure 3 This is a schematic diagram of the integrated collection body structure of the present invention; Figure 4 Schematic diagram of the camera structure of the present invention; Figure 5 This is a schematic diagram of the fingerprint collection structure of the present invention; Figure 6 Schematic diagram of the system architecture of the present invention; Figure 7 This is a schematic diagram of the automatic guidance module architecture of the present invention; Figure 8 This is a schematic diagram of the progress monitoring module architecture of the present invention; Figure 9This is a schematic diagram of the anomaly detection module architecture of the present invention; Figure 10 This is a schematic diagram of the data storage and encryption module architecture of the present invention; Figure 11 This is a schematic diagram of the rights management module architecture of the present invention.
[0019] Among them, 1. Cabin; 2. Doorless passage; 3. Integrated collection body; 4. Foot length and weight collection; 5. Cross mark; 6. Double-point rotating arm; 7. Face collection; 701. Camera; 8. Collection panel; 801. Iris collection; 802. Palm print collection; 803. Fingerprint collection; 9. Integrated screen; 10. Status indicator light. DETAILED DESCRIPTION
[0020] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the present specification. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0021] Please see the attached Figure 1 and attached Figure 2 An embodiment of the present invention provides a contactless collection cabin, comprising: a cabin 1 for accommodating the person being collected; a doorless passage 2, which is opened on the front and rear sides of the cabin 1, so that the person being collected can freely enter and exit the cabin 1.
[0022] Specifically, the cabin 1 is used to accommodate the collected persons and can provide a comfortable environment for the collection personnel; in order to facilitate the entry and exit of the collected persons, the cabin 1 is provided with a doorless passage 2, which is opened on the front and rear sides of the cabin 1. This design allows the collected persons to freely enter and exit the cabin 1. The design of the doorless passage 2 has no door frame structure, ensuring that the collected persons can pass through easily, reducing the inconvenience caused by the access control design in traditional collection equipment. The opening sizes on both sides of the doorless passage 2 are reasonably designed to accommodate collected persons of different heights and body shapes.
[0023] Please see the attached Figure 2 -Attached Figure 5, two integrated collection bodies 3, the two integrated collection bodies 3 are respectively installed on the left and right sides of the interior of the cabin 1, for collecting the biometric data of the personnel, the bottom of the integrated collection body 3 is provided with a foot length and weight collection 4, the left and right sides of the outside of the integrated collection body 3 are provided with a cross mark 5, the upper side of the integrated collection body 3 is installed with a double-pivot rotating arm 6, the bottom of the double-pivot rotating arm 6 is installed with a face collection 7, the face collection 7 includes multiple cameras 701, and the multiple cameras 701 are installed in an array inside the face collection 7, the outside of the integrated collection body 3 is provided with a collection panel 8, the collection panel 8 includes an iris collection 801, two palm print collections 802 and two fingerprint collections 803, the iris collection 801 is installed on the upper side of the collection panel 8, the two palm print collections 802 are respectively installed on the left and right sides of the outside of the collection panel 8, and the two fingerprint collections 803 are both installed on the lower side of the collection panel 8.
[0024] Specifically, two integrated collection bodies 3 are respectively installed on the left and right sides of the interior of the cabin 1, so that the collected person can collect biometric data in a reasonable standing posture; the bottom of the integrated collection body 3 is provided with a foot length and weight collection 4, which is used to measure the foot size and weight data of the collected person, and realize fast and accurate measurement through sensors; cross marks 5 are provided on the left and right sides of the exterior of the integrated collection body 3, and the cross marks 5 are used to provide visual references to guide the collected person to stand in the best collection position to ensure the accuracy of subsequent biometric data collection; a double-pivot rotating arm 6 is installed on the upper side of the integrated collection body 3, and the double-pivot rotating arm 6 can be rotated and adjusted at multiple angles to adapt to collected persons of different heights to ensure the best angle for facial data collection. A face collection 7 is installed at the bottom of the double-pivot rotating arm 6, and the face collection 7 includes multiple cameras 701. The multiple cameras 701 are installed in an array manner inside the face collection 7. The array layout can realize multi-angle and high-precision collection of the face, thereby improving the integrity and accuracy of the facial data.
[0025] A collection panel 8 is provided on the outside of the integrated collection body 3. The collection panel 8 integrates a variety of biometric data collection devices and can complete the collection of multiple biometric features on a single operation interface, thereby improving collection efficiency. The collection panel 8 includes an iris collection 801, which is installed on the upper side of the collection panel 8. The iris collection 801 uses a high-precision optical sensor to accurately capture the iris features of the person being collected. The collection panel 8 also includes two palm print collections 802, which are installed on the left and right sides of the outside of the collection panel 8, so that the hands of the person being collected can be naturally placed in the designated area to complete the palm print data collection. The palm print collection 802 uses high-resolution imaging technology to ensure the clarity and integrity of the palm print features. Two fingerprint collections 803 are installed on the lower side of the collection panel 8. The two fingerprint collections 803 can respectively collect the fingerprint data of the left and right hands of the person being collected, and complete efficient collection through rapid scanning technology, thereby ensuring the accuracy and security of the fingerprint data.
[0026] Please see the attached Figure 1 and attached Figure 2 An integrated screen 9 is installed on the front side of the cabin 1 for displaying the collection progress, prompt information and collection results. A status indicator light 10 is installed on the front side of the cabin 1 for providing visual feedback of the collection status.
[0027] Specifically, the integrated screen 9 is used to display the collection progress, so that the collected person can understand the completion status of the collection of various biometric data in real time. The integrated screen 9 is also used to provide prompt collection information. The integrated screen 9 adopts a high-definition LCD screen to ensure the readability of the information. The integrated screen 9 can also display the collection results after the collection is completed, so that the collected person can confirm the integrity and accuracy of the data collection in a short time; a status indicator light 10 is installed on the front side of the cabin 1. The status indicator light 10 is used to provide visual feedback on the collection status, so that the collected person can intuitively judge the current collection status. The status indicator light 10 adopts a multi-color LED light design, and different colors indicate different collection status.
[0028] The control system of a non-contact collection cabin described below can refer to the non-contact collection cabin described above.
[0029] Please see the attached Figure 6 -Attached Figure 11 , a control system for a sensorless collection cabin, comprising: The automatic guidance module is used to control the collection process, guide the collected personnel to complete the data collection according to the preset sequence of the collection equipment, provide voice and visual prompts to standardize the collection process, and provide the collection progress information to the progress monitoring module; The progress monitoring module is used to track the operating status of each collection device in real time and record the progress of each collection progress information to ensure the integrity of the collected data; The anomaly detection module is used to receive the collected data provided by the progress monitoring module, further analyze the collected data of the collected personnel and the operating status of the collection equipment, identify abnormal situations, and classify and record abnormal events; The data storage and encryption module is used to store and encrypt the collected data of the collected personnel and receive the collection progress information from the progress monitoring module to ensure the synchronous storage and integrity of the data; The rights management module is used to receive abnormal event information from the anomaly detection module, implement access restrictions or locks on data access involving abnormal situations, and set access permissions based on the stored data of the data storage and encryption module to prevent unauthorized access and data abuse.
[0030] Specifically, a control system for a sensorless data collection cabin includes an automatic guidance module, a progress monitoring module, an anomaly detection module, a data storage and encryption module, and a permission management module. Each module works together to ensure the accuracy, security, and efficiency of the data collection process.
[0031] The automatic guidance module is used to control the collection process, guiding the person being collected to complete data collection according to the preset sequence of the collection equipment, and providing voice and visual prompts to standardize the collection process. At the same time, it provides collection progress information to the progress monitoring module. The automatic guidance module includes a voice guidance unit, a cursor positioning unit, and a visual guidance unit. The voice guidance unit uses voice prompts to enable the person being collected to complete each data collection step by step according to the standard process, avoiding collection failures due to improper operation. The cursor positioning unit provides accurate height measurement assistance based on the cross mark 5 and ensures that the camera 701 of the face collection device 7 obtains standardized image data, improving the accuracy of biometric data. The visual guidance unit provides visual prompts through the status indicator light 10 and the integrated screen 9 to guide the person being collected to correctly complete the collection, ensuring the standardization and efficiency of data collection.
[0032] The progress monitoring module is used to track the operating status of each collection device in real time and record the progress of each collection progress information to ensure the integrity of the collected data. The progress monitoring module includes an equipment operation monitoring unit, a progress feedback unit and a data synchronization unit. The equipment operation monitoring unit can detect the status of each collection device to ensure that it is in normal working condition and avoid the collection process being affected by equipment failure; the progress feedback unit synchronizes the collection progress information to the integrated screen 9, so that the collected personnel can clearly understand the current progress and facilitate supervision by management personnel; the data synchronization unit is responsible for synchronizing the collected biometric data to the central data storage system in real time and matching it with the identity information to ensure the accuracy and timeliness of the data.
[0033] The anomaly detection module receives the collected data provided by the progress monitoring module and further analyzes the collected data of the collected personnel and the operating status of the collection equipment, identifying anomalies and classifying and recording them. The anomaly detection module includes a behavior analysis unit, a safety warning unit, and an environmental monitoring unit. The behavior analysis unit analyzes the collected personnel's behavioral characteristics to determine whether there are any abnormal operations, such as incorrect standing position or abnormal movements during the collection process. In the event of an abnormality, the safety warning unit issues a warning message through the status indicator light 10 and the integrated screen 9, notifying the management staff to promptly handle the situation. The environmental monitoring unit detects external environmental interference through the monitoring sensors built into the integrated collection body 3 and performs anomaly processing to ensure that the collection process is not affected by the external environment. The behavior analysis unit collects the collected personnel's standing posture and movement trajectory data using an image recognition camera and gravity sensor embedded in the collection cabin. It uses an image recognition algorithm based on the OpenCV library to determine whether there is any standing position deviation or facial angle deviation. The system sets a predetermined collection posture and behavior model. If the comparison between the collected data and the model exceeds the set threshold, an abnormality warning is triggered. All analysis is performed on the local edge computing chip to ensure response speed and data security.
[0034] The data storage and encryption module is used to store and encrypt the collected biometric data and receive collection progress information from the progress monitoring module to ensure synchronized storage and integrity. It comprises a data encryption unit, an access log unit, and a data backup unit. The data encryption unit encrypts collected biometric data using the AES symmetric encryption algorithm to ensure data security and prevent data leakage. The access log unit records all data access and modification operations to track data usage and improve transparency and security of data access. The data backup unit regularly backs up biometric data to ensure data integrity and recoverability, preventing data loss due to equipment failure or unexpected events. Collected data (images, texture data, and measurements) is packaged in JSON format, including necessary timestamps and unique IDs, and encrypted and stored using the AES-256 algorithm. The encryption key is managed by an embedded encryption chip. Data storage: All collected data is stored on an industrial-grade SSD within the cabin and synchronized to a backend encryption server every 12 hours via a secure channel. Access logs: The system records every data access operation and uses SHA256 checksums to ensure the integrity and security of the log data.
[0035] The rights management module is used to receive abnormal event information from the anomaly detection module, implement access restrictions or locks on data access related to abnormal situations, and set access permissions based on the stored data in the data storage and encryption module to prevent unauthorized access and data abuse. The rights management module includes a user hierarchical management unit, a data access control unit, and a two-person synchronous acquisition management unit. The user hierarchical management unit manages the rights of system users at different levels, allowing different levels of users to access different levels of data to ensure data security. The data access control unit sets access rules, allowing only authorized users to access specific data to prevent data leakage or abuse. When the two integrated acquisition bodies 3 are running simultaneously, the two-person synchronous acquisition management unit ensures that the voice prompts and visual guidance of each person being collected do not interfere with each other. It also optimizes the voice prompt experience through directional audio technology, improving the intelligence level of the acquisition process. User authentication is performed by logging into the system, and a dual verification mechanism using facial recognition and password can be configured. Different permission roles are loaded from the system configuration file, for example, "Administrator" has read and write capabilities, while "Auditor" has read-only capabilities. Data access control is implemented based on the ACL (Access Control List). The system reads the data request and verifies the caller's identity. When collecting data for two people, a directional microphone array is used in conjunction with a speech separation algorithm (such as Beamforming) to guide the two people separately to avoid speech interference.
[0036] The system of this embodiment can be used to execute the above-mentioned device embodiments. Its principles and technical effects are similar and will not be described in detail here.
[0037] Working principle: First, the person being collected enters the cabin 1. The cabin 1 has front and rear openings with a doorless passage 2, allowing the person being collected to enter and exit freely and stand in the designated collection area inside the cabin 1. The person being collected adjusts his or her position on the integrated collection body 3 based on the prompts of the cross mark 5. The foot length and weight collection 4 starts to measure the foot length and weight data of the person being collected, and transmits the collected data to the system for recording.
[0038] Next, the double-point rotating arm 6 is adjusted to an appropriate position, and the face acquisition 7 starts to acquire face data. The multiple cameras 701 inside the face acquisition 7 acquire the facial features of the person being acquired in an array manner and complete the data storage. At the same time, the acquisition panel 8 starts the iris acquisition 801 to acquire iris feature data. The iris acquisition 801 captures the iris image through the optical sensor and stores it. Afterwards, the person being acquired places both hands on the designated positions of the acquisition panel 8 according to the prompts. The palm print acquisition 802 acquires the left and right palm print feature data in turn and stores it in the system. At the same time, the fingerprint acquisition 803 scans the fingerprint features of the left and right hands and completes the data storage.
[0039] Finally, after all data collection is completed, the collection results are displayed on the integrated screen 9, and the status prompt light 10 sends an indication signal to notify the collected personnel that the data collection is completed. The collected personnel leave the cabin 1 according to the doorless passage 2, ending the collection process.
[0040] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. A sensorless collection cabin, characterized in that: include: A cabin (1) for accommodating the collected personnel; A doorless passage (2), the doorless passage (2) being opened on both the front and rear sides of the cabin (1), so that the person being collected can freely enter and exit the cabin (1); Two integrated collection bodies (3), the two integrated collection bodies (3) are respectively installed on the left and right sides of the interior of the cabin (1), and are used to collect biometric data of personnel, the bottom of the integrated collection body (3) is provided with foot length and weight collection (4), the left and right sides of the exterior of the integrated collection body (3) are both provided with cross marks (5), the upper side of the integrated collection body (3) is installed with a double-pivot rotating arm (6), the bottom of the double-pivot rotating arm (6) is installed with a face collection (7), and the exterior of the integrated collection body (3) is provided with a collection panel (8).
2. The sensorless collection cabin according to claim 1, characterized in that: The face acquisition device (7) comprises a plurality of cameras (701), and the plurality of cameras (701) are installed in an array inside the face acquisition device (7).
3. The sensorless collection cabin according to claim 1, characterized in that: The acquisition panel (8) comprises an iris acquisition panel (801), two palm print acquisition panels (802) and two fingerprint acquisition panels (803); the iris acquisition panel (801) is mounted on the upper side of the acquisition panel (8); the two palm print acquisition panels (802) are mounted on the left and right sides of the outside of the acquisition panel (8); and the two fingerprint acquisition panels (803) are mounted on the lower side of the acquisition panel (8).
4. The sensorless data collection cabin according to claim 1, characterized in that: An integrated screen (9) is installed on the front side of the cabin (1) for displaying collection progress, prompt information and collection results. A status indicator light (10) is installed on the front side of the cabin (1) for providing visual feedback of the collection status.
5. A control system for a sensorless data collection cabin, applied to a sensorless data collection cabin according to any one of claims 1 to 4, characterized in that: include: The automatic guidance module is used to control the collection process, guide the collected personnel to complete the data collection according to the preset sequence of the collection equipment, provide voice and visual prompts to standardize the collection process, and provide the collection progress information to the progress monitoring module; The progress monitoring module is used to track the operating status of each collection device in real time and record the progress of each collection progress information to ensure the integrity of the collected data; The anomaly detection module is used to receive the collected data provided by the progress monitoring module, further analyze the collected data of the collected personnel and the operating status of the collection equipment, identify abnormal situations, and classify and record abnormal events; The data storage and encryption module is used to store and encrypt the collected data of the collected personnel and receive the collection progress information from the progress monitoring module to ensure the synchronous storage and integrity of the data; The rights management module is used to receive abnormal event information from the anomaly detection module, implement access restrictions or locks on data access involving abnormal situations, and set access permissions based on the stored data of the data storage and encryption module to prevent unauthorized access and data abuse.
6. The control system of the sensorless data collection cabin according to claim 5, characterized in that: The automatic guidance module includes: The voice guidance unit is used to guide the person being collected to complete the collection of various biometric data through voice prompts; A cursor positioning unit for providing accurate height measurement assistance based on the cross mark (5) and ensuring that the camera (701) of the face acquisition device (7) acquires standardized image data; The visual guidance unit is used to provide visual prompts through the status prompt light (10) and the integrated screen (9) to guide the person being collected to complete the collection.
7. The control system of the sensorless data collection cabin according to claim 5, characterized in that: The progress monitoring module includes: Equipment operation monitoring unit, used to monitor the working status of each acquisition device in real time to ensure the normal operation of the acquisition equipment; A progress feedback unit is used to synchronize the collection progress information to the integrated screen (9) so that it can be viewed by the collection personnel and management personnel; The data synchronization unit is used to synchronize the collected biometric data to the central data storage system in real time and match it with the identity information.
8. The control system of the sensorless data collection cabin according to claim 5, characterized in that: The anomaly detection module includes: Behavior analysis unit, used to analyze the behavioral characteristics of the person being collected during the collection process and determine whether there are any abnormalities; A safety warning unit, used to issue warning information through a status indicator light (10) and an integrated screen (9) in abnormal situations and notify management personnel; The environmental monitoring unit is used to detect external environmental interference through the monitoring sensor built into the integrated acquisition body (3) and perform abnormal processing.
9. The control system of the sensorless data collection cabin according to claim 5, characterized in that: The data storage and encryption module includes: Data encryption unit, used to encrypt the collected biometric data using the AES symmetric encryption algorithm to prevent data leakage; Access log unit, used to record all data access and modification operations in order to track data usage; The data backup unit is used to regularly back up biometric data to ensure data security and integrity.
10. The control system of the sensorless data collection cabin according to claim 5, characterized in that: The rights management module includes: User hierarchical management unit, used to manage the permissions of system users at different levels, so that users of different levels can access data of different levels; Data access control unit, used to set access rules to allow only authorized users to access specific data; The two-person synchronous collection management unit is used to ensure that the voice prompts and visual guidance of each collected person do not interfere with each other when two integrated collection bodies (3) are running at the same time, and optimize the voice prompt experience through directional audio technology.