Intelligent management method and system of elevator

By collecting and storing facial and target floor data of elevator passengers, and using a response module to automatically press elevator buttons, the problem of loose elevator management in smart parks is solved, realizing an intelligent elevator riding experience that does not require manual operation, and improving the safety and practicality of elevators.

CN113620130BActive Publication Date: 2026-02-17XINJIANG CONSTR ENG GRP
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Patent Information

Application Number
CN202110879113.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-08-02
Publication Date
2026-02-17
Estimated Expiration
2041-08-02

AI Technical Summary

Technical Problem

The existing elevator management system is loosely managed in the smart park, requiring frequent pressing of floor buttons when riding the elevator, and easily causing contact problems when multiple people are riding.

Method used

The data acquisition module collects facial data of people and target floor data, which are then stored and sorted using the data storage module. The response module automatically presses the predicted floor button, reducing manual operation.

Benefits of technology

This enables a smart riding experience without the need for manual button pressing, reducing the risk of contact while riding the elevator and improving its safety and practicality.

✦ Generated by Eureka AI based on patent content.
Patent Text Reader

Abstract

The present application relates to elevator management technical field, specifically, it is a kind of intelligent management method of elevator mainly includes personnel ride elevator upstairs, personnel enter elevator and press elevator floor button, data acquisition module collects personnel face data and personnel elevator target floor data, while data storage module is numbered to personnel, and personnel face data record personnel's elevator arrival layer is stored, obtain and store the elevator data of personnel, the floor that personnel has gone in elevator data is arranged from high to low according to percentage probability;Personnel enter elevator again, if personnel 5s do not press elevator floor button, response module automatically presses the button of all arrival floors of personnel elevator data according to the elevator data of personnel.The application effectively improves the convenience of elevator ride, also reduces the risk of indirectly contacting by pressing floor button when riding elevator.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of elevators, in particular, to an intelligent management method and system of an elevator. BACKGROUND

[0002] In recent years, effective park management has become an important means to promote the healthy development of the park. With the continuous development of the park, the traditional management method has been increasingly unable to meet the needs of the rapid development of the park. The construction of a smart park is not only a necessity of scientific and technological development, but also a major progress in the management of the park. In the perspective of park management and operation and providing high-quality services to the park, the park provides high-quality park services through advanced technological products, and also brings great changes in the way of life to the people living and working in the park. The elevator is an important part of the smart park, and all buildings in the park are equipped with elevators. The smart park management includes the smart operation and management of the elevator. The existing elevator management usually includes maintenance, operation, daily supervision and other aspects.

[0003] The smart park platform in the prior art is relatively loose in the management of the elevator, and is usually limited to maintenance, operation and regular inspection of the elevator. The actual application of the elevator is not well managed, and the elevator needs to be pressed every time it is used, which is very inconvenient, and multiple people riding the elevator may have indirect contact with each other when pressing the elevator button. SUMMARY

[0004] The purpose of the present application is to provide an intelligent management method and system for an elevator to solve the problems raised in the background art.

[0005] An intelligent management method for an elevator comprises the following steps:

[0006] Step one: when a person rides an elevator to go upstairs, the person presses the elevator floor button when entering the elevator, the data acquisition module acquires the person's facial data and the person's elevator target floor data, the data storage module numbers the person and stores the person's facial data, records the elevator arrival floor of the person, obtains and stores the elevator data of the person, and arranges the floors visited by the person in the elevator data from high to low according to the percentage probability;

[0007] Step two: the person enters the elevator again, if the person does not press the elevator floor button within 5s, the response module automatically presses all the arrival floor buttons of the person's elevator data according to the person's elevator data;

[0008] Step three: after pressing all the arrival floor buttons of the person's elevator data, the person presses the floor button, and the response module cancels the automatically lit floor button under the premise that the person presses the floor button.

[0009] Step four: when the person gets off the elevator, the person presses the elevator floor button, and the elevator runs according to the pressed floor button; if the person does not press the elevator floor button for 5s, the response module automatically presses the 1st floor and -1st floor buttons of the elevator, and if the person presses the elevator floor button after the response module is started, the response module will cancel the automatically lit floor button under the premise that the person presses the floor button.

[0010] Preferably, the person in step one is specifically a person who takes the elevator, and the data collection module in step one collects data of at least 100 target floors of the person taking the elevator, and the person updates the percentage probability of the floors the person has been to in the elevator data from high to low each time the person takes the elevator.

[0011] Preferably, it further includes an intelligent management process when at least two people enter the elevator, and the steps are as follows:

[0012] S1: When at least two people get on the elevator, if both press the floor button, the elevator runs according to the pressed floor button, and if someone does not press the elevator floor button, the next step is run;

[0013] S2: Record the person who does not press the elevator floor button, and perform probability matching between the elevator data of the person who presses the floor button and the pressed elevator floor button data;

[0014] S3: When at least two people get on the elevator, if both press the floor button, the elevator runs according to the pressed floor button, and if someone does not press the elevator floor button, the next step is run;

[0015] S4: If both do not press the elevator floor button, the elevator automatically presses the 1st floor and -1st floor buttons of the elevator.

[0016] Preferably, the probability matching in S2 is that each person who does not press the elevator button will be matched once in the order of pressing the elevator, and the matching is performed in the order of probability matching according to the order of pressing the elevator.

[0017] Preferably, the probability matching process is as follows:

[0018] Get the elevator data of the person who does not press the elevator floor button, match the pressed floor button with the floor in the elevator data of the person, calculate the probability of the pressed floor button for the person to reach the floor, if the probability is greater than 90%, the elevator runs according to the currently pressed floor button, if the probability is less than 90%, the elevator automatically presses the floor in the elevator data of the person except the pressed floor, and the pressed floor is pressed in the order of the percentage of the floors the person has been to from high to low in the elevator data of the person until the probability of the pressed floor button of the elevator is greater than 90%.

[0019] The application further discloses an intelligent management system of the elevator, which comprises a data acquisition module, a data storage module and a response module.

[0020] The data acquisition module is a camera, which is used for recording the face of the person and the arrival floor of the elevator of the person, and obtaining the face data of the person and the target floor data of the elevator of the person.

[0021] The data storage module is used for numbering the person and storing the elevator data of the person, wherein the elevator data comprises the number of the person, the face and the data of the arrival floor of the elevator of the person, and the floors visited by the person in the elevator data are arranged from high to low according to the percentage probability.

[0022] The response module is used for identifying the behavior of the person and responding to the behavior.

[0023] Preferably, the behavior of the person is specifically the behavior of not pressing the elevator floor button and pressing the elevator floor button after the response module is started.

[0024] Compared with the prior art, the application has the beneficial effects that: the dynamic behavior information of the person riding the elevator is acquired by the data acquisition module, the elevator data of the person is stored by the data storage module, the target floor of the person riding the elevator is counted and calculated by probability, the behavior of not pressing the elevator floor button when the person rides the elevator and the behavior of pressing the elevator floor button after the response module is started are responded to by the response module, the person does not need to press the elevator button when riding the elevator, the riding of the elevator is facilitated, the possibility of indirect contact of the person when riding the elevator is reduced, and the safety and practicability of the elevator are improved. DETAILED DESCRIPTION

[0025] The application discloses an intelligent management method and system of an elevator.

[0026] Embodiment 1

[0027] The intelligent management method of the elevator of the embodiment comprises the following steps.

[0028] Step 1: when the person rides the elevator to go upstairs, the person enters the elevator and presses the elevator floor button, the data acquisition module acquires the face data of the person and the target floor data of the elevator of the person, the data storage module numbers the person and stores the face data of the person, records the arrival floor of the elevator of the person, obtains and stores the elevator data of the person, and arranges the floors visited by the person in the elevator data from high to low according to the percentage probability.

[0029] Step two: the person enters the elevator again, if the person does not press the elevator floor button for 5s, the response module automatically presses all the floor buttons of the person's elevator data according to the person's elevator data;

[0030] Step three: after pressing all the floor buttons of the person's elevator data, the person presses the floor button, and the response module cancels the automatic lighting of the floor button under the premise that the person presses the floor button;

[0031] Step four: when the person gets off the elevator, the person enters the elevator and presses the elevator floor button, and the elevator runs according to the pressed floor button; if the person does not press the elevator floor button for 5s, the response module automatically presses the 1st floor and -1st floor buttons of the elevator, and if the person presses the elevator floor button after the response module is started, the response module will cancel the automatic lighting of the floor button under the premise that the person presses the floor button.

[0032] The person in step one is the person who takes the elevator, and the data collection module collects at least 100 target floor data of the person taking the elevator, and the person updates the percentage probability of the floors the person has been to in the elevator data from high to low each time the person takes the elevator.

[0033] It also includes an intelligent management system of an elevator, which includes a data collection module, a data storage module and a response module;

[0034] The data collection module is a camera for recording the face of the person and the arrival floor of the person's elevator, obtaining the face data of the person and the target floor data of the person's elevator;

[0035] The data storage module is used to number the person and store the elevator data of the person, and the elevator data includes the person's number, face and elevator arrival floor data of the person, and the floors the person has been to in the elevator data are arranged from high to low according to the percentage probability;

[0036] The response module is used to identify the behavior of the person and respond to the behavior.

[0037] The behavior of the person is specifically the behavior of not pressing the elevator floor button and pressing the elevator floor button after the response module is started.

[0038] Embodiment 2

[0039] The intelligent management method of the elevator of the embodiment includes the following steps

[0040] Step one: when the person takes the elevator upstairs, the person enters the elevator and presses the elevator floor button, the data acquisition module collects the person's face data and the person's elevator target floor data, at the same time the data storage module numbers the person and stores the person's face data record the elevator floor arrived by the person, gets and stores the elevator data of the person, the floors visited by the person in the elevator data are arranged from high to low according to the percentage probability;

[0041] Step two: the person enters the elevator again, if the person does not press the elevator floor button for 5s, the response module automatically presses the buttons of all the floors arrived by the person according to the elevator data of the person;

[0042] Step three: after pressing the buttons of all the floors arrived by the person, the person presses the floor button, and the response module will cancel the automatically lit floor button under the premise of ensuring that the person presses the floor button;

[0043] Step four: when the person takes the elevator downstairs, the person enters the elevator and presses the elevator floor button, the elevator runs according to the pressed floor button; if the person does not press the elevator floor button for 5s, the response module automatically presses the 1st floor and -1st floor buttons of the elevator, and if the person presses the elevator floor button after the response module is started, the response module will cancel the automatically lit floor button under the premise of ensuring that the person presses the floor button.

[0044] The person in step one is the person who takes the elevator, and the data acquisition module in step one will collect at least 100 data of the person's target floors taken by the elevator, and the person will update the percentage probability of the floors visited by the person in the elevator data from high to low each time the person takes the elevator.

[0045] The intelligent management process when at least two people enter the elevator, the steps are as follows:

[0046] S1: when at least two people enter the elevator to take the elevator upstairs, if both people press the floor button, the elevator runs according to the pressed floor button, if someone does not press the elevator floor button, run the next step;

[0047] S2: record the person who does not press the elevator floor button, and match the elevator data of the person who presses the floor button with the elevator floor button data that has been pressed;

[0048] S3: when at least two people enter the elevator to take the elevator upstairs, if both people press the floor button, the elevator runs according to the pressed floor button, if someone does not press the elevator floor button, run the next step;

[0049] S4: if no one presses the elevator floor button, the elevator automatically presses the 1st floor and -1st floor buttons of the elevator.

[0050] The probability matching in S2 matches the probability of entering the elevator for each person who does not press the elevator button, and the matching is performed according to the order of entering the elevator.

[0051] The probability matching process is as follows:

[0052] The elevator data of the person who does not press the elevator floor button is obtained, the pressed floor button is matched with the floor in the elevator data of the person, the probability of the pressed floor button for the person to reach the floor is calculated, if the probability is greater than 90%, the elevator is operated according to the currently pressed floor button, if the probability is less than 90%, the elevator automatically presses the floor in the elevator data of the person except the pressed floor, and the pressed floor is pressed from high to low according to the percentage of the floor visited by the person in the elevator data of the person until the probability of the pressed floor button of the elevator for the person to reach the floor is greater than 90%.

[0053] The application also discloses an intelligent management system of the elevator, and the intelligent management system of the elevator comprises a data acquisition module, a data storage module and a response module.

[0054] The data acquisition module is a camera, which is used for recording the face of the person and the arrival floor of the elevator of the person, and obtaining the face data of the person and the target floor data of the elevator of the person.

[0055] The data storage module is used for numbering the person and storing the elevator data of the person, and the elevator data comprises the number of the person, the face and the data of the arrival floor of the elevator of the person, and the floors visited by the person in the elevator data are arranged from high to low according to the percentage probability.

[0056] The response module is used for identifying the behavior of the person and responding to the behavior.

[0057] The behavior of the person is specifically the behavior of not pressing the elevator floor button and pressing the elevator floor button after the response module is started.

[0058] The basic principle, main features and advantages of the application are shown and described above. It should be understood by those skilled in the art that the application is not limited by the above examples, and the above examples and descriptions in the specification are only preferred examples of the application, and are not used to limit the application, and various changes and improvements of the application fall within the scope of the application. The scope of protection of the application is defined by the appended claims and their equivalents.

Claims

1. An intelligent management method for elevators, characterized in that: Includes the following steps: Step 1: When a person takes the elevator upstairs, they enter the elevator and press the elevator floor button. The data acquisition module collects the person's facial data and the person's target elevator floor data. At the same time, the data storage module assigns a number to the person and stores the person's facial data and records the floor the person arrives at in the elevator. The elevator data of the person is obtained and stored. The floors visited by the person in the elevator data are arranged from high to low percentage probability. Step 2: When a person re-enters the elevator, if the person does not press any floor button within 5 seconds, the response module will automatically press all the floor buttons corresponding to the person's elevator data. Step 3: After all the floor buttons in the elevator data are pressed, when a person presses a floor button, the response module will deactivate the automatically lit floor buttons, provided that the floor button pressed by the person is still active. Step 4: When a person takes the elevator downstairs, they enter the elevator and press the elevator floor button. The elevator then operates according to the pressed floor button. If the person does not press a floor button within 5 seconds, the response module automatically presses the 1st and -1st floor buttons. After the response module is activated, if the person presses a floor button, the response module will deactivate the automatically lit floor buttons, provided that the pressed floor button is still in use. It also includes a smart management process when at least two people enter the elevator, the steps of which are as follows: S1: When taking the elevator upstairs, at least two people must enter the elevator. If both people press the floor button, the elevator will run according to the pressed floor button. If no one presses the elevator floor button, proceed to the next step. S2: Record the people who did not press the elevator floor button, and perform probability matching between the elevator data of people who did not press the floor button and the data of people who did press the elevator floor button; S3: When taking the elevator downstairs, at least two people must enter the elevator. If both people press the floor button, the elevator will run according to the pressed floor button. If no one presses the elevator floor button, proceed to the next step. S4: If no one presses the elevator floor button, the elevator automatically presses the 1st floor and -1st floor buttons; In S2, the probability matching will be performed once for each person who has not pressed the elevator button, according to the order in which they entered the elevator. The probability matching will be performed sequentially according to the order in which they entered the elevator. The probability matching process is as follows: Retrieve elevator data for people who have not pressed any floor buttons. Match the pressed floor buttons with the floors in the person's elevator data. Calculate the probability that the pressed floor button corresponds to the floor the person has reached. If the probability is greater than 90%, the elevator will run according to the currently pressed floor button. If the probability is less than 90%, the elevator will automatically press the floor in the person's elevator data other than the floor already pressed. The pressed floors will be pressed sequentially from high to low based on the percentage of floors the person has visited in the elevator data, until the probability that the pressed floor button corresponds to the floor the person has reached is greater than 90%.

2. The intelligent management method for elevators according to claim 1, characterized in that: In step one, the people are specifically those who ride the elevator. The data acquisition module in step one will collect data on at least 100 people who ride the elevator to the target floor. Each time a person rides the elevator, the percentage probability of the floors visited by the person will be updated in the elevator data and sorted from high to low.

3. An intelligent management system for elevators, used to implement the intelligent management method for elevators according to any one of claims 1-2, characterized in that: The elevator intelligent management system includes a data acquisition module, a data storage module, and a response module; The data acquisition module is specifically a camera, used to record the faces of people and the floors reached by the elevator, and to obtain facial data and target floor data of the elevator. The data storage module is used to number personnel and store their elevator data. The elevator data includes personnel number, facial features, and data on the floors the personnel have visited in the elevator. The floors visited by the personnel in the elevator data are arranged from high to low percentage probability. The response module is used to identify the behavior of personnel and to respond to that behavior.

4. The intelligent management system for an elevator according to claim 3, characterized in that: The specific actions of the personnel are not pressing the elevator floor button and pressing the elevator floor button after the response module is activated.

Citation Information

Patent Citations

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