Elevator boarding management method based on safety monitoring and man-machine interaction terminal
By monitoring elevator operation data through IoT devices and optimizing visitor code restrictions, the problem of inaccurate monitoring of elevator occupancy status during elevator renovation in old residential communities has been solved, thus improving the reliability of elevator operation and optimizing residents' waiting time.
Patent Information
- Application Number
- CN202511115698.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-11
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2045-08-11
AI Technical Summary
Existing technologies cannot effectively monitor elevator occupancy during elevator renovation in older residential communities, resulting in inaccurate safety monitoring data, which affects the reliability of elevator operation and residents' waiting time.
By monitoring elevator motor vibration, speed, and acceleration data through IoT devices, the target passenger volume can be determined, and the method for removing visitor code restrictions can be optimized. This ensures accurate monitoring and optimization of personnel restriction measures when the elevator is fully occupied, thereby improving the reliability of elevator safety monitoring.
This improves the data acquisition efficiency of elevator monitoring equipment when the elevator is fully occupied, reduces residents' waiting time, and enhances the reliability and safety of elevator operation.
Smart Images

Figure CN120622261B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of elevator management, and particularly relates to an elevator management method based on safety monitoring and a man-machine interaction terminal. BACKGROUND
[0002] When old communities are renovated, the renovation is often realized through the way of raising funds, and there is a technical defect that the time consumption is long, so the new scheme for the renovation of old communities is to raise funds and charge according to the use, and at the same time, how to realize the charging according to the use becomes a technical problem to be solved.
[0003] The specific prior art scheme is to realize the charging through a camera device or a card swiping mode, and the specific similar technical scheme is given in the invention patent application CN201811392710.8 "elevator charging method, device, equipment and storage medium", but the above technical scheme has the following technical problems:
[0004] In order to improve the use flexibility of the residents, the residents can purchase monthly tickets on the applet, one purchase can realize the binding of multiple users, and when there are visitors, the residents can generate visitor codes on the applet and share them with the visitors, but the prior art scheme ignores the restriction of the visitor code according to the safety monitoring state of the elevator, specifically, because the elevator reaches the full capacity, the probability of the elevator reaching the full capacity is low, and therefore, the safety monitoring data under the full capacity state cannot be effectively obtained, so the running state of the elevator cannot be accurately obtained, therefore, how to optimize the restriction release processing scheme of the visitor code, on the basis of reducing the influence on the waiting time of other residents, so that the Internet of Things monitoring equipment can effectively monitor the running data of the elevator reaching the full capacity, and improve the reliability of the safety monitoring processing of the elevator becomes a technical problem to be solved.
[0005] To solve the above technical problems, the application provides an elevator management method based on safety monitoring and a man-machine interaction terminal. SUMMARY
[0006] To achieve the purpose of the application, the application adopts the following technical scheme:
[0007] Specifically, the application provides an elevator management method based on safety monitoring, which specifically comprises:
[0008] S1 obtaining monitoring data of the elevator reaching a target passenger capacity by an Internet of Things device of the elevator, when the monitoring data does not meet the requirements, determining a target period according to the matching of the passenger data in different periods with the target passenger capacity, and releasing the restriction of the visitor code of different residents in the target period.
[0009] S2 takes the elevator reaching the target boarding time under the target boarding amount as the target boarding time, and determines the optimization processing mode of the personnel restriction measure of the elevator based on the monitoring data of the target boarding time within the preset time period until the Internet of Things device reaches the target monitoring times;
[0010] S3 determines the boarding management method of the elevator in the target period based on the optimization processing data of the personnel restriction measure of the elevator for safety monitoring by the Internet of Things device.
[0011] The beneficial effects of the present application are:
[0012] In the present application, the optimization processing mode of the personnel restriction measure of the elevator is determined based on the monitoring data of the target boarding time within the preset time period, thereby avoiding the occurrence of the technical problem that the time length for the Internet of Things monitoring device to reach the target monitoring times is long under the condition that the number of periods reaching the target boarding amount is still small due to the release of the visitor code restriction processing of different residents only in the target period, and further optimizing the restriction measure in different periods, improving the efficiency of the acquisition and processing of the Internet of Things monitoring device, and avoiding the influence of the release of the visitor code restriction processing on the waiting time of the residents in the target period for a long time.
[0013] In the present application, the optimization processing data of the personnel restriction measure of the elevator for safety monitoring by the Internet of Things device is used to determine the boarding management method of the elevator in the target period, thereby further ensuring the reliability of the monitoring processing of the Internet of Things device under the target boarding amount of the elevator, and by combining the optimization processing data of the personnel restriction measure of the elevator for safety monitoring by the Internet of Things device, the optimization of the visitor code restriction measure in the target period is targeted, thereby avoiding the influence of the release of the visitor code restriction processing in different periods on the waiting time of the residents.
[0014] Further, the monitoring data includes vibration data of the motor of the elevator, speed data of the elevator, acceleration and deceleration curves.
[0015] Further, the target boarding amount is the rated number of personnel of the elevator.
[0016] Specifically, determining that the monitoring data does not meet the requirements specifically includes:
[0017] Based on the monitoring data, the monitoring period of the Internet of Things monitoring device under the target boarding amount is determined;
[0018] According to the distribution data of the monitoring period, the interval length between different adjacent monitoring periods is determined.
[0019] determine whether the monitoring data meets a requirement based on the interval duration.
[0020] Further, the method for determining the elevator passenger management method in the target period is:
[0021] Based on the optimization processing data of the personnel restriction measure of the elevator for safety monitoring, the adjustment times of the personnel restriction measure of the elevator for safety monitoring are determined.
[0022] Based on the visitor code quantity release restriction data of the residents in different adjustment times in different periods, the adjustment times of the visitor code quantity release restriction processing of the residents in all periods are determined as the impact adjustment times.
[0023] According to the impact adjustment times, the elevator passenger management method in the target period is determined.
[0024] Further, when the impact adjustment times are more, it means that the monitoring reliability of the elevator under the target passenger quantity is low and the number of periods reaching the target passenger quantity under the target passenger quantity is small, so on this basis, the visitor code quantity of different residents in different target periods is released restriction processing, thereby avoiding the influence of frequent release restriction processing in different periods on the waiting time of the residents.
[0025] On the other hand, the application provides a human-computer interaction terminal adopting the elevator passenger management method based on safety monitoring, which specifically comprises:
[0026] a camera, a smart screen, an elevator control device, and a communication module.
[0027] The camera is responsible for face recognition of the passengers and determination of the passenger quantity, the smart screen is responsible for card swiping, identification of the passenger code and the visitor code, and face recognition, the communication module is responsible for obtaining the running data of the elevator of the Internet of Things monitoring device, and the card swiping data, the passenger code data and the visitor code data, the face recognition data of the smart screen, and the running data of the elevator are transmitted to a remote management platform.
[0028] Further, the smart screen can display time, floor, announcement or promotional video.
[0029] Other features and advantages will be set forth in the following description of the application, and in part will be apparent from the description and the accompanying drawings, or can be learned by practice of the application as claimed in the claims.
[0030] In order to make the above-mentioned objects, features and advantages of the application more obvious and easy to understand, the following preferred embodiments are specifically described, and the accompanying drawings are shown as follows. BRIEF DESCRIPTION OF DRAWINGS
[0031] The above and other features and advantages of the present application will become more apparent by describing in detail its example embodiments with reference to the attached drawings.
[0032] Figure 1 is a flowchart of an elevator boarding management method based on safety monitoring;
[0033] Figure 2 is a flowchart of a method for determining a target period;
[0034] Figure 3 is a flowchart of a method for determining an optimization processing mode of personnel restriction measures for an elevator;
[0035] Figure 4 is a flowchart of a method for determining an elevator boarding management method in a target period;
[0036] Figure 5 is a framework diagram of a human-computer interaction terminal;
[0037] Figure 6 is a schematic diagram of a travel applet. DETAILED DESCRIPTION
[0038] In order for those skilled in the art to better understand the technical solutions in the specification, the technical solutions in the specification will be clearly and completely described below in conjunction with the drawings in the specification. Obviously, the described embodiments are only some of the embodiments of the specification, not all. Based on the embodiments of the specification, all other embodiments obtained by those skilled in the art without creative labor should be within the scope of protection of the specification.
[0039] The shared elevator in the prior art is limited by the elevator control measures, so that the elevator is not in a full-occupancy state for a long time, so that the Internet of Things device for monitoring the vibration data of the motor for the elevator, the speed data of the elevator, and the acceleration and deceleration curve cannot obtain the real running state of the elevator.
[0040] In order to solve the above technical problems, the present application removes the restriction on the number of visitor codes of different households in a target period, that is, the number of visitors who can take the elevator in the target period, so that the elevator can obtain the real running state of the elevator in a full-occupancy state in time and effectively, and use the data when the number of elevator boarding reaches full occupancy in the target period to determine the elevator boarding management method in the target period, dynamically remove the restriction on the number of visitors in the target period, thereby improving the reliability of the monitoring and processing of the elevator.
[0041] Embodiment 1
[0042] As Figure 1 shown, the application provides an elevator boarding management method based on safety monitoring, specifically comprising:
[0043] S1 obtains monitoring data of the elevator reaching a target boarding quantity by an Internet of Things device of the elevator, and when the monitoring data does not meet the requirements, determines a target period according to the matching of boarding data in different periods and the target boarding quantity, and performs visitor code release processing of different residents in the target period.
[0044] Further, the monitoring data includes vibration data of the motor of the elevator, speed data, acceleration and deceleration curves of the elevator.
[0045] Further, the target boarding quantity is the rated number of personnel of the elevator.
[0046] Specifically, it is determined that the monitoring data does not meet the requirements, specifically comprising:
[0047] Based on the monitoring data, the monitoring period of the Internet of Things monitoring device under the target boarding quantity is determined.
[0048] According to the distribution data of the monitoring period, the interval length between different adjacent monitoring periods is determined.
[0049] Based on the interval length, it is determined whether the monitoring data meets the requirements.
[0050] It can be understood that when there is a monitoring period whose interval length between adjacent monitoring periods does not meet the requirements, it means that the Internet of Things monitoring device does not effectively monitor the monitoring data of the elevator under the target boarding quantity, so on this basis, it may not be able to effectively determine the real running state of the elevator, so it is determined that the monitoring data does not meet the requirements, and certain boarding restrictions must be released to ensure that the Internet of Things monitoring device can determine the real running state of the elevator as soon as possible.
[0051] In one possible embodiment, when there is a monitoring period whose interval length between adjacent monitoring periods is greater than 12 hours, it is determined that the monitoring data does not meet the requirements.
[0052] Optionally, it is determined that the monitoring data does not meet the requirements, specifically comprising:
[0053] Based on the monitoring data, the monitoring period of the Internet of Things monitoring device under the target boarding quantity is determined.
[0054] According to the distribution data of the monitoring period, it is determined whether the monitoring data meets the requirements.
[0055] It can be understood that when the number of monitoring time periods within a certain time length does not meet the requirements, it is determined that the monitoring data does not meet the requirements. In a possible embodiment, if the number of monitoring time periods within a week is less than 10, it means that the Internet of Things monitoring device does not effectively monitor the monitoring data of the elevator under the target passenger quantity, so that the real running state of the elevator cannot be effectively determined, and therefore it is determined that the monitoring data does not meet the requirements. The certain passenger limit means must be removed to ensure that the Internet of Things monitoring device can determine the real running state of the elevator as soon as possible.
[0056] When the monitoring data meets the requirements, the real running state of the elevator can be effectively determined at this time, and therefore the removal process of the passenger limit means is not required.
[0057] Further, the matching condition of the passenger data and the target passenger quantity is determined according to the deviation amount of the number of passengers in different historical passenger time periods from the target passenger quantity.
[0058] It can be understood that the passenger data is distribution data of passenger time periods under different numbers of passengers, and a specific passenger time period is the number of times of rising or falling of the same elevator as a passenger time period.
[0059] Specifically, as shown in Figure 2 The method for determining the target time period is:
[0060] determining, according to the matching condition of the passenger data and the target passenger quantity in the time period, the deviation amount of the number of passengers in different passenger time periods in the time period from the target passenger quantity;
[0061] determining, based on the deviation amount, a matching passenger time period in the time period;
[0062] determining, according to the constituent data of the matching passenger time period of the time period, whether the time period is a target time period.
[0063] It should be noted that the matching passenger time period is a passenger time period whose deviation amount from the target passenger quantity meets the requirements. In a possible embodiment, a passenger time period whose deviation amount from the target passenger quantity is less than 3 people is taken as a matching passenger time period.
[0064] It can be understood that when the number of matching elevator time periods in the time period meets the requirements, the time period is determined as a target time period, and in a possible embodiment, when the number of matching elevator time periods in the time period is more than 4, for example, when the number of matching elevator time periods in the time period in different days is more than 4, it indicates that the elevator is busy in this time period, and therefore, only in the target time period, the visitor code restriction release processing of different residents is performed, so that different residents can generate visitor codes without restriction, so as to ensure that the number of elevator personnel in the target time period can reach the target elevator quantity, and further ensure that the reliability of the monitoring processing of the Internet of Things monitoring data meets the requirements.
[0065] Further, the visitor code restriction release processing of different residents in the target time period includes:
[0066] In the target time period, the number of generated visitor codes of different residents is released from restriction, and in other time periods except the target time period, the number of generated visitor codes of different residents is limited in a fixed number interval.
[0067] It should be noted that the fixed number interval is generally set to be between 5 and 10 people, that is, in other time periods, different residents can only authorize a maximum of 5 to 10 visitors.
[0068] S2 takes the elevator time period reaching the target elevator quantity as the target elevator time period, determines the optimization processing mode of the personnel restriction measure of the elevator based on the monitoring data of the target elevator time period in the preset time period, until the Internet of Things device reaches the target monitoring number.
[0069] Specifically, as shown in Figure 3 The method for determining the optimization processing mode of the personnel restriction measure of the elevator is:
[0070] Determine the number of target elevator time periods in the target time period in the preset time period based on the monitoring data of the target elevator time period.
[0071] Determine the number of target elevator time periods in the preset time period based on the monitoring data of the target elevator time period in the preset time period.
[0072] Determine the optimization processing mode of the personnel restriction measure of the elevator based on the number of target elevator time periods in the target time period and the number of target elevator time periods.
[0073] It can be understood that, after the visitor code restriction release processing in the target period, if the number of target elevator periods in the target period and the number of target elevator periods in the preset time period, for example, 3 days, are still small within the preset time period, for example, 3 days, the monitoring data of the elevator under the target elevator quantity cannot be effectively obtained at this time, and therefore the number of visitor codes of all residents in all periods is directly released.
[0074] In one possible embodiment, if the total number of target elevator periods in the target period within the preset time period is less than 3, and the number of target elevator periods within the preset time period is less than 10, it means that the monitoring data of the elevator under the target elevator quantity cannot be effectively obtained at this time.
[0075] In another embodiment, the method for determining the optimization processing mode of the personnel restriction measure of the elevator is:
[0076] The dates of the target elevator periods in the target period within the preset time period are determined based on the monitoring data of the target elevator period.
[0077] The number of target elevator periods within the preset time period is determined based on the monitoring data of the target elevator period within the preset time period.
[0078] Based on the dates of the target elevator periods in the target period within the preset time period and the number of target elevator periods, the optimization processing mode of the personnel restriction measure of the elevator is determined.
[0079] It can be understood that, when the number of dates of target elevator periods in the target period within the preset time period, for example, 3 days, is less than 2, and the number of target elevator periods is less than 10 within the preset time period, it means that the monitoring data of the elevator under the target elevator quantity cannot be effectively obtained at this time, and therefore the number of visitor codes of all residents in all periods is directly released.
[0080] Further, until the Internet of Things device reaches the target monitoring number, specifically including:
[0081] When the Internet of Things device reaches the target monitoring number, the running state of the elevator can be accurately determined at this time, wherein when the vibration data of the motor, the speed data of the elevator, the acceleration and deceleration curves are within the range required in the specification of the elevator, the number of visitor codes of different residents in all periods is continued to be processed at this time, thereby reducing the waiting time of the elevator of different residents.
[0082] It should be noted that the target monitoring number of times is in the range of 20 to 30, and is determined according to the use data of the elevator, wherein the higher the use frequency of the elevator is, the greater the target monitoring number of times is.
[0083] S3 determines the elevator boarding management method of the elevator in the target period based on the optimization processing data of the personnel restriction measure of the elevator for safety monitoring by the Internet of Things device.
[0084] Specifically, as shown in Figure 4 The method for determining the elevator boarding management method of the elevator in the target period is:
[0085] Based on the optimization processing data of the personnel restriction measure of the elevator for safety monitoring by the Internet of Things device, the adjustment number of times of the personnel restriction measure of the elevator for safety monitoring by the Internet of Things device is determined.
[0086] Based on the visitor code quantity release restriction data of the residents in different time periods in different adjustment number of times, the adjustment number of times of the visitor code quantity release restriction processing of the residents in all time periods is determined as the impact adjustment number of times.
[0087] According to the impact adjustment number of times, the elevator boarding management method of the elevator in the target period is determined.
[0088] Further, when the impact adjustment number of times is too large, i.e., not meeting the requirement, it means that the monitoring reliability of the elevator under the target boarding quantity is low and the number of time periods reaching the target boarding quantity under the target time period is small, so on this basis, the visitor code quantity of different residents in different time periods is released restriction processing, thereby avoiding the influence of frequent release restriction processing in different time periods on the waiting time of the residents.
[0089] In one possible embodiment, if the impact adjustment number of times in the last month is 2 or more than 2, it is determined that the impact adjustment number of times is too large.
[0090] In addition, it should be noted that when the impact adjustment number of times is not too large, it is also necessary to determine whether the adjustment number of times in the recent pre-time period meets the requirement, wherein when the adjustment number of times in the last month is more than 2, it means that the monitoring reliability of the Internet of Things monitoring device under the normal running state is not high, so on this basis, if the monitoring number of times of the Internet of Things monitoring device under the target boarding quantity in the recent preset time period is less than 5, the visitor code quantity of different residents in the next target time period is released restriction processing.
[0091] In other cases, if the number of adjustments in the last month meets the requirements, then there is no need to remove the restrictions on the number of visitor codes for different households in the target period.
[0092] Optionally, the determined method of the elevator ride management method in the target period is:
[0093] Based on the optimization processing data of the personnel restriction measures of the elevator for safety monitoring, the number of adjustments of the personnel restriction measures of the elevator for safety monitoring is determined.
[0094] Based on the restriction removal data of the number of visitor codes for households in different periods in different adjustment numbers, the number of adjustments in which the number of visitor codes for households is removed in all periods is determined as the impact adjustment number.
[0095] According to the composition data of the impact adjustment number in the adjustment number, the elevator ride management method in the target period is determined.
[0096] Optionally, when the impact adjustment number is large, it means that the monitoring reliability of the elevator under the target ride volume is low and the number of periods in the target period that reach the target ride volume is small, so on this basis, the number of visitor codes for different households in the target period in different dates is removed. The restriction processing is carried out to avoid the influence of frequent removal of restrictions in different periods on the waiting time of the household.
[0097] It can be understood that when the impact adjustment number is large in the adjustment number, in a possible embodiment, if the number of impact adjustment numbers in the adjustment number is more than two-thirds, it means that the number of ride periods that reach the target ride volume in the target period is small, so on this basis, the number of visitor codes for different households in the target period is removed. The restriction processing is carried out according to the preset period, for example, the number of visitor codes for different households in the target period is removed every 3 days in a possible embodiment.
[0098] Embodiment 2
[0099] On the other hand, as Figure 5 shown, the present application provides a human-computer interaction terminal which adopts the above-mentioned elevator ride management method based on safety monitoring, and specifically comprises:
[0100] Camera, smart screen, elevator control device, communication module;
[0101] The camera is responsible for face recognition of the person taking the elevator and determination of the number of people taking the elevator, the intelligent screen is responsible for card swiping, identification of elevator taking code and visitor code, face recognition, the communication module is responsible for obtaining operation data of the elevator of the Internet of Things monitoring device, and the card swiping data, elevator taking code data and visitor code data, face recognition data of the intelligent screen and the operation data of the elevator are transmitted to a remote management platform.
[0102] Further, the intelligent screen can display time, floor, announcement or promotional video.
[0103] System operation logic:
[0104] A digital camera is installed on the top of the elevator car for face recognition and head portrait collection and number statistics
[0105] A 10.1-inch intelligent screen (human-computer interaction terminal) is installed on the wall or embedded in the elevator car for card swiping, two-dimensional code and face recognition for taking the elevator, and the intelligent screen can display time, floor, announcement or promotional video, and display the elevator taking code for non-registered users to take the elevator. The data of the residents is stored locally.
[0106] The intelligent screen is connected with the state of the elevator control and communicates with the cloud platform through 4G or wired communication
[0107] The administrator inputs basic parameters of the building, such as floor height, public floor, number of households per floor, number of elevators and elevator price, through the quotation function of the elevator bus taking system, and the program automatically generates the single ticket price and monthly ticket price of each household per floor.
[0108] The resident registers through the applet, submits a room binding application, and after the background administrator approves, the resident can normally use it. By default, a room can free of charge to record 6 faces and card numbers. The resident can purchase a monthly ticket on the applet, and a default of up to 6 people can use it at a time. If there are visitors, the resident can generate a visitor code on the applet and share it with the visitors.
[0109] Card swiping supports bus cards or ordinary IC cards, and the card number is identified through the intelligent screen. The resident data is matched locally, and if it does not exist, the cloud platform is queried. After verification, the floor is automatically registered, and the resident data is synchronized and saved to the intelligent screen.
[0110] Face recognition collects face data through the camera on the top of the car, and the intelligent screen face recognition algorithm matches the resident data locally. If it exists, the floor is automatically registered.
[0111] Two-dimensional code supports elevator taking code and visitor code, and the data is identified through the two-dimensional code reader. The resident data is matched locally, and if it exists, the floor is automatically registered. If it does not exist, the cloud platform is queried. After verification, the floor is automatically registered, and the resident data is synchronized and saved to the intelligent screen
[0112] Second ticket payment, mobile phone scan intelligent screen elevator code, select floor and click payment, cloud platform receives payment success state and issues elevator instruction to intelligent screen, and automatically registers floor. Second ticket does not limit the use of personnel
[0113] Collect elevator operation data through elevator operation monitoring device, and upload to cloud platform through intelligent screen. Real-time guarantee elevator normal operation through data analysis
[0114] Considering the safety of taking the elevator, this system does not limit the anti-ride. When the intelligent screen detects that the number of people taking the elevator and the number of registered people do not match, it will remind and upload screenshots. When the registered card number is abnormal, send a short message reminder, and take serious measures to block the number.
[0115] The platform functions of the remote management platform in the application include:
[0116] Community management
[0117] Used for managing community information, including community name, address, property contact information;
[0118] Building management
[0119] Used for managing building information of installed public elevator intelligent terminal in the community, including building name, total floor, room number, second ticket fee, elevator mode authorization, IC card and face registration number per household and charging state switch; operation management can view the charging situation of each building;
[0120] Resident management
[0121] Used for managing resident information, including user name, mobile phone number, associated room number, card and face number;
[0122] Owner audit
[0123] Each room has only one owner identity, and the owner needs to be audited before use;
[0124] Terminal management
[0125] Used for managing building elevator intelligent terminal, which can view device health status, remotely control device, issue announcements, synchronize resident information, etc.;
[0126] Order management
[0127] Manage the order record when the resident buys a monthly ticket or a second ticket;
[0128] Elevator record
[0129] Used for managing resident elevator record, including elevator person, elevator mode, elevator time, etc.;
[0130] Material Management
[0131] Used to manage video or image files sent to smart screens;
[0132] Announcement Management
[0133] Used to manage notification and announcement texts sent to smart screens;
[0134] Visitor Management
[0135] Records used to manage visitor codes generated by tenants;
[0136] Quotation Management
[0137] The system generates elevator fares for each floor and each household based on building information and elevator pricing, and can generate building and room information with a single click.
[0138] like Figure 6 The image shown is a schematic diagram of the travel mini-program of this application, and its functions are as follows:
[0139] Room Management
[0140] Owners can manage rooms, including adding residents and managing facial and card information;
[0141] Room registration
[0142] Residents need to register and bind their rooms when using the service for the first time;
[0143] Visitor elevator
[0144] Used to generate visitor codes;
[0145] Monthly pass purchase
[0146] This is used to purchase monthly elevator passes; you don't need to purchase them when building information is closed and fees are not charged.
[0147] Order records
[0148] Manage payment records for monthly pass purchases;
[0149] Elevator usage records
[0150] Used to record elevator usage information for all residents in the current room;
[0151] Feedback
[0152] Used to report fault information from smart terminals or elevators;
[0153] elevator code
[0154] This is used for scanning a QR code inside the elevator car to board the elevator. Unlike the visitor code, the elevator code can be used multiple times.
[0155] Personal Center
[0156] Used to manage resident account information;
[0157] Elevator status
[0158] You can check the elevator usage status on the floor where the resident is located.
[0159] The various embodiments in this specification are described in a progressive manner. Similar or identical parts between embodiments can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments. In particular, the embodiments of apparatus, devices, and non-volatile computer storage media are basically similar to the method embodiments, so the descriptions are relatively simple; relevant parts can be referred to the descriptions of the method embodiments.
[0160] The foregoing has described specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims may be performed in a different order than that shown in the embodiments and may still achieve the desired result. Furthermore, the processes depicted in the drawings do not necessarily require the specific or sequential order shown to achieve the desired result. In some embodiments, multitasking and parallel processing are possible or may be advantageous.
[0161] The above description is merely one or more embodiments of this specification and is not intended to limit this specification. Various modifications and variations can be made to the one or more embodiments of this specification by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of one or more embodiments of this specification should be included within the scope of the claims of this specification.
Claims
1. A method for elevator boarding management based on safety monitoring, characterized by, Specifically comprising: The Internet of Things device of the elevator acquires monitoring data of the elevator reaching the target passenger quantity, and when the monitoring data does not meet the requirement, the matching of the passenger data in different time periods with the target passenger quantity is determined to determine the target time period, and the visitor code restriction release processing of different residents is performed in the target time period; The passenger quantity of the elevator reaching the target passenger quantity is taken as the target passenger quantity, and the monitoring data of the target passenger quantity in the preset time period is used to determine the optimization processing mode of the personnel restriction measure of the elevator until the Internet of Things device reaches the target monitoring times; The optimization processing data of the personnel restriction measure of the elevator used by the Internet of Things device for safety monitoring is used to determine the passenger management method of the elevator in the target time period; The method for determining the optimization processing mode of the personnel restriction measure of the elevator is: The number of target passenger time periods in the preset time period is determined based on the monitoring data of the target passenger time period. The number of target passenger time periods in the preset time period is determined based on the monitoring data of the target passenger time period in the preset time period. Based on the number of target passenger time periods in the target time period and the number of target passenger time periods, the optimization processing mode of the personnel restriction measure of the elevator is determined.
2. The elevator boarding management method based on safety monitoring according to claim 1, characterized in that, The monitoring data includes vibration data of the motor of the elevator, speed data of the elevator, acceleration and deceleration curves.
3. The elevator boarding management method based on safety monitoring according to claim 1, characterized in that, The determination that the monitoring data does not meet the requirement specifically includes: Based on the monitoring data, the monitoring time period of the Internet of Things monitoring device under the target passenger quantity is determined. According to the distribution data of the monitoring time period, the interval length between different adjacent monitoring time periods is determined. Based on the interval length, it is determined whether the monitoring data meets the requirement.
4. The elevator boarding management method based on safety monitoring according to claim 1, characterized by, When the monitoring data meets the requirement, the passenger restriction release processing is not required.
5. The elevator boarding management method based on safety monitoring according to claim 1, characterized by, The matching of the passenger data with the target passenger quantity is determined according to the deviation amount of the passenger quantity in different historical passenger time periods from the target passenger quantity.
6. The elevator boarding management method based on safety monitoring according to claim 1, characterized by, The method for determining the target time period is: Based on the matching of the passenger data in the time period with the target passenger quantity, the deviation amount of the passenger quantity in different passenger time periods in the time period from the target passenger quantity is determined. Based on the deviation amount, the matching passenger time period in the time period is determined. According to the composition data of the matching passenger time period of the time period, it is determined whether the time period is the target time period.
7. The elevator boarding management method based on safety monitoring according to claim 6, characterized by, The matching passenger time period is the passenger time period whose deviation amount from the target passenger quantity meets the requirement.
8. The elevator boarding management method based on safety monitoring according to claim 1, characterized by, In the target time period, the visitor code restriction release processing of different residents is performed, specifically including: In the target time period, the generation quantity of visitor codes of different residents is released from the restriction, and in other time periods except the target time period, the generation quantity of visitor codes of different residents is limited in a fixed quantity interval.
9. The elevator boarding management method based on safety monitoring according to claim 1, characterized by, The method for determining the passenger management method of the elevator in the target time period is: The adjustment times of the personnel restriction measure of the elevator for safety monitoring by the Internet of Things device are determined based on the optimization processing data of the personnel restriction measure of the elevator for safety monitoring by the Internet of Things device; Based on the unlimiting data of the number of visitor codes of the household in different time periods in different adjustment times, the adjustment times in which the number of visitor codes of the household is unlimitted in all time periods are determined as the influence adjustment times; According to the influence adjustment times, the elevator management method in the target time period is determined.
10. A human-machine interaction terminal employing an elevator boarding management method based on safety monitoring according to any one of claims 1 to 9, characterized in that, Specifically comprising: Camera, smart screen, elevator control device, communication module; The camera is responsible for face recognition of the elevator personnel and determination of the number of elevator personnel, the smart screen is responsible for card swiping, identification of elevator codes and visitor codes, face recognition, the communication module is responsible for obtaining the running data of the elevator of the Internet of Things monitoring device, and the card swiping data, elevator code data and visitor code data, face recognition data of the smart screen and the running data of the elevator are transmitted to the remote management platform.
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