CN111977475A - Intelligent calling landing method, system and medium - Google Patents

Intelligent calling landing method, system and medium Download PDF

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Publication number
CN111977475A
CN111977475A CN202010651280.8A CN202010651280A CN111977475A CN 111977475 A CN111977475 A CN 111977475A CN 202010651280 A CN202010651280 A CN 202010651280A CN 111977475 A CN111977475 A CN 111977475A
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China
Prior art keywords
elevator
information
calling
floor
voice
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CN202010651280.8A
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Chinese (zh)
Inventor
黄捷谟
黄玉群
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Sanyo Elevator Zhuhai Co Ltd
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Sanyo Elevator Zhuhai Co Ltd
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Priority to CN202010651280.8A priority Critical patent/CN111977475A/en
Publication of CN111977475A publication Critical patent/CN111977475A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B1/00Control systems of elevators in general
    • B66B1/02Control systems without regulation, i.e. without retroactive action
    • B66B1/06Control systems without regulation, i.e. without retroactive action electric
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B1/00Control systems of elevators in general
    • B66B1/34Details, e.g. call counting devices, data transmission from car to control system, devices giving information to the control system
    • B66B1/3415Control system configuration and the data transmission or communication within the control system
    • B66B1/3423Control system configuration, i.e. lay-out
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B1/00Control systems of elevators in general
    • B66B1/34Details, e.g. call counting devices, data transmission from car to control system, devices giving information to the control system
    • B66B1/46Adaptations of switches or switchgear
    • B66B1/468Call registering systems
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B2201/00Aspects of control systems of elevators
    • B66B2201/40Details of the change of control mode
    • B66B2201/46Switches or switchgear
    • B66B2201/4607Call registering systems

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  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Elevator Control (AREA)

Abstract

The invention discloses an intelligent calling method, a system and a medium, wherein the method comprises the following steps: reading elevator running information, and displaying the elevator running information and elevator control information through a touch screen; obtaining elevator calling information, and sending an elevator control signal according to the elevator calling information; receiving elevator calling information containing user information, extracting information of a floor and a target floor in the elevator calling information or associating the information of the floor and the target floor according to the user information, and sending an elevator control signal according to the information of the floor and the target floor. The embodiment of the invention realizes the combination of the non-contact calling system and the contact calling system in various modes, thoroughly liberates both hands, effectively prevents the propagation of contact viruses, is convenient for passengers, improves the efficiency, has longer service life, and is safer and more reliable.

Description

Intelligent calling landing method, system and medium
Technical Field
The invention relates to an elevator calling method, in particular to an intelligent calling method, an intelligent calling system and a medium.
Background
At present, the calling functions of the elevator industry are basically realized in a button signal transmission mode, and calling systems with single functions such as face recognition, voice calling and touch screens are also available in the market. The existing button calling system is easy to enter dust and garbage, so that button blockage is caused, the failure rate is high, and the service life is short. The utility model is inconvenient to use, especially when two hands carry things. Such single contact calls run the risk of viral transmission and the epidemic presents a wide variety of call patterns. With the improvement of living standard and the improvement of science and technology of people, the calling system with single function can not meet the trend of people to good life.
Disclosure of Invention
The present invention is directed to solving at least one of the problems of the prior art. Therefore, the intelligent calling method can provide diversified man-machine conversation for passengers, and adopts an intelligent calling method combining a non-contact data acquisition mode and a touch screen data acquisition mode.
The invention also provides an intelligent calling landing system.
The invention also provides a medium for implementing the intelligent call calling method.
An intelligent call method according to an embodiment of the first aspect of the invention comprises the following steps: reading elevator running information, and displaying the elevator running information and elevator control information through a touch screen; obtaining elevator calling information, and sending an elevator control signal according to the elevator calling information; receiving elevator calling information containing user information, extracting information of a floor and a target floor in the elevator calling information or associating the information of the floor and the target floor according to the user information, and sending an elevator control signal according to the information of the floor and the target floor; the elevator call information containing the user information at least comprises any one of the following items: bluetooth signal, face image information, two-dimensional code information, remote elevator taking request information.
The intelligent call calling method provided by the embodiment of the invention at least has the following beneficial effects:
the embodiment of the invention realizes the combination of non-contact and contact calling through various modes, thoroughly liberates both hands, effectively prevents the propagation of contact viruses, is convenient for passengers, improves the efficiency, has longer service life, and is safer and more reliable.
According to some embodiments of the invention, the obtaining elevator call information and sending an elevator control signal according to the elevator call information comprises: receiving a touch screen signal related to an uplink button or a downlink button or a floor selection digital button displayed by the touch screen, determining an elevator calling instruction based on the touch screen signal, and sending an elevator control signal according to the elevator calling instruction; and/or receiving a voice signal, determining that the voice signal is a wake-up voice signal, receiving a voice instruction signal fed back by a user after a preset prompt tone is played, determining an elevator call instruction based on the voice instruction signal, and sending an elevator control signal according to the elevator call instruction.
According to some embodiments of the invention, the user information comprises at least a user ID that uniquely identifies the user; the receiving includes the elevator calling information of user information, draws floor and target floor information in the elevator calling information or associates floor and target floor information according to the user information, and sending elevator control signals according to the floor and target floor information includes: receiving a Bluetooth signal, acquiring user information and corresponding call information, determining an elevator call instruction based on the call information, and sending an elevator control signal according to the elevator call instruction; and/or receiving face image information, matching user information and elevator taking information corresponding to the user information according to the face image information, determining an elevator calling instruction based on the elevator taking information, and sending an elevator control signal according to the elevator calling instruction; and/or receiving two-dimension code information, determining user information and corresponding elevator taking information according to the two-dimension code information, determining an elevator calling instruction based on the elevator taking information, and sending an elevator control signal according to the elevator calling instruction; and/or receiving remote elevator taking request information, determining an elevator calling instruction based on the remote elevator taking request information, and sending an elevator control signal according to the elevator calling instruction.
According to some embodiments of the invention, the obtaining elevator call information and sending an elevator control signal according to the elevator call information comprises: calling a voice call outside a hall; calling the elevator car by voice; wherein, the hall calling voice outside comprises: in the dormant state, receiving a voice signal, analyzing whether the received voice signal is a voice awakening instruction or not, and periodically carrying out camera infrared detection; the received voice signal is a voice awakening instruction, or the camera detects that someone is outside the hall door in an infrared mode and enters a response state; when in a response state, sending an elevator control signal according to a registered voice command, and entering a waiting state; when in a waiting state, the elevator car leaves the floor after arriving, and enters a dormant state; making a voice call within the car comprises: waiting for an elevator door opening in-place signal when the elevator is in a dormant state; after receiving an elevator door opening in-place signal, entering a response state; and in the answering state, sending an elevator control signal according to the registered voice command, and entering a dormant state.
According to some embodiments of the present invention, the receiving elevator call information including user information, extracting information of a floor and a target floor in the elevator call information, or associating information of the floor and the target floor according to the user information, and sending an elevator control signal according to the information of the floor and the target floor includes: receiving user information and a remote elevator taking request sent by a mobile terminal APP; registering the remote elevator taking request as a remote elevator taking instruction, and sending an elevator control signal; and receiving confirmation information sent by the mobile terminal APP, giving up the registered remote elevator taking instruction if the elevator car does not reach the floor where the elevator car is located in the remote elevator taking request at the moment, and updating elevator taking record information stored in the database if the elevator car reaches the floor where the elevator car is located in the remote elevator taking request at the moment.
An intelligent call system according to an embodiment of the second aspect of the invention comprises: the touch screen module is used for displaying the elevator operation information and the elevator control information by a touch screen; the voice module is used for collecting and playing voice information; the Bluetooth sensing module is used for calling a hall by an intelligent key or controlling an elevator by an IC card; the multifunctional camera module is used for image signal acquisition and thermal imaging to measure body temperature; the remote monitoring module is used for acquiring and sending network remote data; the touch screen module and the voice module acquire elevator calling information and send elevator control signals according to the elevator calling information; the Bluetooth sensing module, the multifunctional camera module and the remote monitoring module receive elevator calling information including user information, extract information of a floor and a target floor in the elevator calling information or associate the information of the floor and the target floor according to the user information, and send elevator control signals according to the information of the floor and the target floor.
The intelligent calling system provided by the embodiment of the invention at least has the following beneficial effects:
the embodiment of the invention realizes the combination of the non-contact calling system and the contact calling system in various modes, thoroughly liberates both hands, effectively prevents the propagation of contact viruses, is convenient for passengers, improves the efficiency, has longer service life, and is safer and more reliable.
According to some embodiments of the invention, the system further comprises a touch screen module; the touch screen module includes: the system comprises a touch screen signal input module and a human-computer interface display module; the touch screen signal input module is used for receiving an input touch screen signal; the human-computer interface display module is used for floor selection elevator taking display, system setting display, floor display, running direction display, elevator state display and visual rescue display.
According to some embodiments of the invention, the voice module comprises a dormant state and an answering state; the voice module is used for receiving a awakening voice instruction or a camera infrared signal, entering a response state from a dormant state, sending a voice response instruction according to the received voice instruction and sending an elevator calling instruction.
According to some embodiments of the present invention, the multifunctional camera module comprises a face recognition module, a body temperature detection module, and a two-dimensional code scanning module; the face recognition module is used for receiving a face image signal acquired by a camera, matching corresponding user information and elevator taking information according to the face image signal and sending an elevator calling instruction; the body temperature detection module is used for receiving thermal imaging information acquired by a camera, determining body temperature information according to the thermal imaging information and sending an elevator control instruction according to the body temperature information; and the two-dimension code scanning module is used for receiving the two-dimension code information and sending an elevator calling instruction according to the two-dimension code information.
According to some embodiments of the invention, the remote monitoring module further comprises a mobile phone call module and a mobile phone call module, and is used for receiving remote call request information, determining an elevator call instruction based on the remote elevator taking request information, and sending an elevator control signal according to the elevator call instruction.
According to some embodiments of the invention, the remote monitoring module further comprises a remote data acquisition module and a visual rescue module; the remote data acquisition module is used for acquiring network remote data; the visual rescue module is used for realizing a remote rescue function.
A computer readable storage medium according to an embodiment of the third aspect of the present invention has stored thereon program instructions which, when executed by a processor, implement the method according to any one of the embodiments of the first aspect of the present invention.
All of the benefits of the first aspect of the present invention accrue to the fact that the computer-readable storage medium of an embodiment of the present invention has stored thereon computer-executable instructions for performing the intelligent call method as set forth in any of the first aspect of the present invention.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
FIG. 1 is a flow chart of a method of an embodiment of the present invention;
FIG. 2 is a flow diagram of a method of making calls based on elevator call information according to an embodiment of the present invention;
FIG. 3 is a flow chart of a method of making calls based on elevator call information including user information in accordance with an embodiment of the present invention;
FIG. 4 is a flow diagram of a method of hall foreign voice calling in accordance with an embodiment of the present invention;
FIG. 5 is a flow chart of a method of in-car voice calling of an embodiment of the present invention;
FIG. 6 is a schematic diagram of remote calls of an embodiment of the present invention;
FIG. 7 is a flow chart of a method of moving end remote calls of an embodiment of the present invention;
FIGS. 8 and 9 are home page schematic diagrams of mobile-end remote calls of an embodiment of the present invention;
FIG. 10 is a schematic illustration of a pick-up request completion page for mobile-side remote calls in accordance with an embodiment of the present invention;
FIGS. 11 and 12 are schematic diagrams of a Mobile-end remote call property management page according to an embodiment of the present invention;
fig. 13 and 14 are schematic diagrams of an elevator booking and taking page of a mobile-end remote call according to an embodiment of the invention;
FIG. 15 is a system hardware architecture diagram of an embodiment of the present invention;
FIG. 16 is a system block diagram of an embodiment of the invention;
fig. 17 is a logic signal diagram of an elevator operating panel according to an embodiment of the present invention;
FIG. 18 is a diagram illustrating human-computer interaction of a touch screen module according to an embodiment of the invention.
Detailed Description
The conception, the specific structure and the technical effects of the present invention will be clearly and completely described in conjunction with the embodiments and the accompanying drawings to fully understand the objects, the schemes and the effects of the present invention.
It should be noted that, unless otherwise specified, when a feature is referred to as being "fixed" or "connected" to another feature, it may be directly fixed or connected to the other feature or indirectly fixed or connected to the other feature. As used herein, the singular forms "a", "an" and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. Furthermore, unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used in the description herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any combination of one or more of the associated listed items.
It will be understood that, although the terms first, second, third, etc. may be used herein to describe various elements, these elements should not be limited by these terms. These terms are only used to distinguish one element of the same type from another. For example, a first element could be termed a second element, and, similarly, a second element could be termed a first element, without departing from the scope of the present disclosure. The use of any and all examples, or exemplary language ("e.g.," such as "or the like") provided herein, is intended merely to better illuminate embodiments of the invention and does not pose a limitation on the scope of the invention unless otherwise claimed.
The invention aims to provide a set of intelligent calling system which is provided with a diversified man-machine conversation for passengers and combines a non-contact data acquisition mode and a touch screen data acquisition mode. Breathe out the special intelligent panel computer of installation with outer in elevator car, carry out real-time communication through protocol conversion's mode and elevator control system, develop dedicated APP software and realize: face identification calls the ladder, the pronunciation is called the ladder, cell-phone APP reservation calls the ladder, the intelligent key calls the ladder, contactless auto-induction calls the ladder, the remote control calls the ladder, the touch-sensitive screen calls the ladder, IC-card control, body temperature authentication, two-dimensional code authentication, remote monitoring, video and voice conversation realize the intelligent people mutual, can realize visual rescue when the elevator is stranded.
Referring to fig. 1 and 15, in some embodiments, the intelligent call system hardware consists essentially of a car central control microcomputer and a signal transfer panel. The car central control microcomputer is composed of a touch screen module, a voice calling elevator module, a Bluetooth induction module, a multifunctional camera module and a remote monitoring module. The touch screen, the Bluetooth module, the multifunctional camera and the remote monitoring module collect passenger instructions, the passenger instructions are converted into serial 485 signals after being processed by the car central control microcomputer, the 485 signals are transmitted to the MCTC-KZ-AOS conversion board, the conversion board converts the signals into serial signals of a special protocol and then transmits the serial signals to the elevator control board, information interaction is carried out through the conversion board, and information is read, written, sent and received in real time, so that elevator control is achieved.
With further reference to fig. 17, the PC14-OSC32 IN of the elevator control panel receives the external signal, and U20 performs data analysis and processing, and sends commands to allow each component of the elevator to execute corresponding commands, thereby completing the operation. Meanwhile, the car central control microcomputer is connected with a PC15-OSC32 OUT interface of the main board through a conversion board, and the running state, the running direction, the state of a door machine, the current floor, the internal calling state, the external calling state and the like of the elevator are read continuously. After the communication is realized to accuse computer and elevator control mainboard in the car, can develop various APP software, multiple mode realizes contactless and has the contact to exhale the calling card system and combine together, thoroughly liberates both hands, effectively prevents contact nature virus propagation, makes things convenient for the passenger, raises the efficiency, and life is longer, safe and reliable more.
In some embodiments, the touch screen module is mainly used for touch screen signal input, floor selection and elevator taking, system setting, floor display, running direction display, elevator state display, visual rescue display and the like, and is mainly used for visual human-computer interaction. The voice module is mainly used for collecting and playing voice information to realize voice calling and man-machine conversation. The bluetooth response module mainly used is close the response and exhales terraced, when the user was equipped with the intelligent key and gets into the car, the system senses and realizes automatic selection layer after the signal and takes advantage of the ladder, can also realize IC-card control elevator in addition. The multifunctional camera is mainly used for image signal acquisition and thermal imaging body temperature measurement, and the image acquisition mainly has a face recognition elevator taking function, a two-dimensional code scanning elevator taking function, a visual rescue function and a video recording function. The remote monitoring module is used for acquiring and sending network remote data, and realizes a remote monitoring function, a remote rescue function and a mobile phone call.
Referring to fig. 1, in some embodiments, the intelligent call calling method includes reading elevator operation information, and displaying the elevator operation information and elevator control information through a touch screen; obtaining elevator calling information, and sending an elevator control signal according to the elevator calling information; and receiving elevator calling information containing user information, extracting information of a floor and a target floor in the elevator calling information or associating the information of the floor and the target floor according to the user information, and sending an elevator control signal according to the information of the floor and the target floor.
With further reference to fig. 2, in some embodiments, obtaining elevator call information and sending elevator control signals based on the elevator call information includes multiple ways: receiving a touch screen signal related to an uplink button or a downlink button or a floor selection digital button displayed by a touch screen, determining an elevator calling instruction based on the touch screen signal, and sending an elevator control signal according to the elevator calling instruction; and/or receiving a voice signal, determining that the voice signal is a wake-up voice signal, receiving a voice instruction signal fed back by a user after a preset prompt tone is played, determining an elevator call instruction based on the voice instruction signal, and sending an elevator control signal according to the elevator call instruction. In a practical application scenario, the user calls may be performed in any one of the above manners or in a combination of the two manners. For example, when waiting for an elevator, a user touches an up button or a down button displayed on a touch screen, and after entering an elevator car, selects a voice call mode to select a going floor. In this way, the elevator car is crowded, and the user can conveniently select floors under the condition that the touch screen button is inconvenient to press.
Further, in some embodiments, the response mode of the contactless voice call is set according to actual requirements. Refer to table 1 below.
TABLE 1 contactless Voice Call answer
Figure BDA0002575073750000061
Preferably, in some embodiments, voice call wake-up includes two ways, one being a voice call made while waiting outside the hall and one being a voice call made while determining the target floor within the car. The voice calling in the car is wakened up by a signal that the door of the elevator is opened in place, so that the system enters a response state, a voice command cannot be received within 10 seconds, infrared scanning is carried out through an intelligent camera, people ask for the voice calling, and no people enter a dormant state. The hall outside call voice call awakening is that the hall outside call voice call awakening enters a response state through an awakening word and a camera infrared detection mode, a voice command cannot be received within 10 seconds, infrared scanning is carried out through an intelligent camera, inquiry is carried out if someone exists, and the hall outside call voice call awakening enters a dormant state if no one exists.
With further reference to fig. 4, the specific implementation steps for hall foreign voice calls are as follows:
s101, receiving a voice signal, comparing the received voice signal with a voice signal of a wakeup word, and regularly carrying out camera infrared detection;
s102, judging whether a voice signal corresponding to the awakening word is received or not, or judging whether a person is detected outside the hall door by the camera, if so, executing a step S103, and if not, returning to the step S101;
s103, entering a response state;
s104, judging whether a voice command is registered, if so, executing a step S105, and if not, executing a step S107;
s105, determining an elevator calling instruction according to the voice instruction, and entering a waiting state;
s106, entering a dormant state after the elevator arrives, and executing the step S101;
s107, judging whether the system cannot receive the voice command within more than 10 seconds after sending the feedback voice, if so, executing the step S108, and if not, executing the step S105;
s108, infrared scanning of the camera;
s109, judging whether a person is in the infrared scanning of the camera, if so, executing a step S110, and if not, executing a step S106;
s110, the system plays the inquiry voice and executes the step S107.
With further reference to fig. 5, the specific implementation of an in-car voice call is as follows:
s201, waiting for an elevator door opening in-place signal;
s202, judging whether an elevator door opening in-place signal is received or not, if so, executing a step S203, otherwise, returning to the step S201;
s203, entering a response state;
s204, judging whether a voice command is registered or not, if so, executing a step S205, and if not, executing a step S107;
s205, determining an elevator calling instruction according to the voice instruction, and controlling the elevator to run to a corresponding floor;
s206, entering a dormant state;
s207, judging whether the voice command cannot be received within more than 10 seconds after the system sends the feedback voice, if so, executing a step S208, and if not, executing a step S205;
s208, infrared scanning is carried out on the camera;
s209, judging whether a person is in the infrared scanning of the camera, if so, executing a step S210, and if not, executing a step S206;
s210, playing the inquiry voice and executing the step S207.
In some embodiments, the user does not issue a passenger pronunciation valid command as recorded in table 1 above for a certain time after waking up the voice call system, and the system waits for a period of time before the command is not registered to remind the user to call again. When the user waits for the elevator for too long time, whether the system has voice prompt or not and the hall call register instruction 50S that the elevator does not arrive is provided, a comfort voice is reported once, and if the elevator has a fault, a prompt tone is directly played.
In some embodiments, after the first instruction is registered, the later received information from various modes for registering the floor is not sent to the control main board, and the direct voice response is 'going to XX floor', and the display also displays the stopping floor.
In some embodiments, multiple users entering the elevator cab make simultaneous voice commands via voice calls. The possibility of complete voice overlapping is low, the system analyzes and recognizes in a memory buffer background processing mode, and the registered instructions can be displayed on the display.
In some embodiments, in order to improve security, a user must use a certain elevator through identity authentication, the user needs to register in a mobile terminal APP mode and the like, after the user passes the property management authentication, the system stores registered user identity information and corresponding voiceprint information, when the user calls a call, the user identity is identified as the user having the authority to use the elevator through the voiceprint information, and the system enters a response state. And the system can also manage the elevator taking information of the user.
Referring to fig. 3, in some embodiments, receiving elevator call information including user information, extracting information of a floor and a target floor where the elevator call information is located or associating the information of the floor and the target floor where the elevator call information is located according to the user information, and sending an elevator control signal according to the information of the floor and the target floor includes any one or more of the following modes: receiving a Bluetooth signal, acquiring user information and corresponding call information, determining an elevator call instruction based on the call information, and sending an elevator control signal according to the elevator call instruction; receiving face image information, matching user information and elevator taking information corresponding to the user information according to the face image information, determining an elevator calling instruction based on the elevator taking information, and sending an elevator control signal according to the elevator calling instruction; receiving the two-dimension code information, determining user information and corresponding elevator taking information according to the two-dimension code information, determining an elevator calling instruction based on the elevator taking information, and sending an elevator control signal according to the elevator calling instruction; receiving remote elevator taking request information, determining an elevator calling instruction based on the remote elevator taking request information, and sending an elevator control signal according to the elevator calling instruction.
With further reference to fig. 6 and 7, in some embodiments, the user may make mobile-end remote calls through APP or a wechat applet. S1, the intelligent calling system responds to the two-dimensional code scanned by the user and returns a login page to the user mobile terminal;
s2, receiving user login information, and returning a home page to the user mobile terminal;
s3, receiving the information of the user selecting the elevator taking application;
s4, returning to the elevator taking application page to the user moving end;
s5, receiving elevator information applied by a user, and sending the elevator information to a property terminal;
s6, receiving the auditing passing information of the property end, and returning the home page to the user mobile end;
s7, receiving a request of a user for taking an elevator;
s8, determine whether the user passes the property side audit? If yes, go to step S9, if not, go back to step S4;
s9, returning to the reserved elevator taking page;
and S10, receiving the information of the floor where the user is and the target floor.
With further reference to fig. 8, the first page includes "take elevator" and "take elevator application" function entries, and the take elevator application function is used for the user to apply for the elevator to take and wait for the property manager to check, so that authority authentication is performed, and the safety of the owner can be guaranteed. Through the entrance of the function of taking the elevator, the user selects the selected elevator and inputs the floor where the elevator is located and the destination floor to call remotely.
With further reference to fig. 9, the first page also includes "taking the elevator record" and "question feedback" function entries, wherein the taking the elevator record is checked to realize the function of taking the elevator quickly.
With further reference to fig. 10, the elevator boarding request page includes information required to be input as the two-dimensional code of the requested elevator, the building number, the applicant's name, and the authentication identity and authentication description. The identity authentication comprises an owner, a tenant and a service staff.
With further reference to fig. 11 and 12, the property manager generates the elevator two-dimensional code via the property web site. And manages elevator information and audits elevator taking application information.
With further reference to fig. 13 and 14, after the user inputs the floor and the destination floor on the reservation elevator boarding page, the user performs an elevator calling operation, and when the "home entry registration is completed, the page can be closed", that is, the intelligent call system has registered a call instruction.
Corresponding to the foregoing embodiments, the present invention also provides system embodiments. For the system embodiment, since it basically corresponds to the method embodiment, reference may be made to the partial description of the method embodiment for relevant points. The above-described embodiments of the apparatus are merely illustrative, and the units described as separate parts may or may not be physically separate, and the parts displayed as units may or may not be physical units, may be located in one place, or may be distributed on a plurality of network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the disclosed solution. One of ordinary skill in the art can understand and implement it without inventive effort.
Referring to fig. 15, the intelligent call system hardware mainly comprises a car central control microcomputer and a signal conversion board. The car central control microcomputer is composed of a touch screen module, a voice calling elevator module, a Bluetooth induction module, a multifunctional camera module and a remote monitoring module. The touch screen, the Bluetooth module, the multifunctional camera and the remote monitoring module collect passenger instructions, the passenger instructions are converted into serial 485 signals after being processed by the car central control microcomputer, the 485 signals are transmitted to the MCTC-KZ-AOS conversion board, the conversion board converts the signals into serial signals of a special protocol and then transmits the serial signals to the elevator control board, information interaction is carried out through the conversion board, and information is read, written, sent and received in real time, so that elevator control is achieved.
With further reference to fig. 16, the touch screen module includes a touch signal input module and a human-machine interface display module, and is mainly used for touch screen signal input, floor selection, elevator taking, system setting, floor display, running direction display, elevator state display, visual rescue display, and the like, and is mainly used for visual human-machine interaction. Referring to fig. 18, the interactive interface displayed by the touch screen includes elevator stop floor display, elevator status, touch screen numeric keypad and carousel picture, wherein the elevator status includes elevator running direction, full load, overload, overhaul and fault status. The voice module comprises a voice calling and calling module and is used for carrying out human-computer voice conversation and voice calling according to a preset mode. The Bluetooth induction module comprises an intelligent key calling call module and an intelligent IC card control module, and is used for realizing intelligent key calling call and intelligent IC card control. The multifunctional camera module comprises a face recognition module, a body temperature detection module and a two-dimensional code scanning module. The face recognition module is used for acquiring face image information through the camera, comparing the face image information with image information in a face library, recognizing the identity of a user, determining a target floor according to the identity of the user and realizing the face recognition call calling function. The user registers the face information and needs to transmit the management password, photographs on the touch screen and inputs corresponding information. If the system is networked, the user information can be transmitted in batch by a computer. The body temperature detection module is used for voice prompt when detecting the person with the over-high body temperature, the elevator does not operate when the door is opened, and after all passengers go out, the door is closed to sterilize for 10 minutes (a sterilization device is configured in the car). The function can be closed in non-epidemic situations, the function is set to play and prompt 'the body temperature exceeds the standard, and the passenger is asked to take the elevator independently' to remind other passengers, but the use is not influenced. The remote monitoring module comprises a remote data acquisition module, a mobile phone calling module and a visual rescue module and is used for acquiring and sending network remote data and realizing a remote monitoring function, a remote rescue function and a mobile phone calling.
It should be recognized that the method steps in embodiments of the present invention may be embodied or carried out by computer hardware, a combination of hardware and software, or by computer instructions stored in a non-transitory computer readable memory. The method may use standard programming techniques. Each program may be implemented in a high level procedural or object oriented programming language to communicate with a computer system. However, the program(s) can be implemented in assembly or machine language, if desired. In any case, the language may be a compiled or interpreted language. Furthermore, the program can be run on a programmed application specific integrated circuit for this purpose.
Further, the operations of processes described herein can be performed in any suitable order unless otherwise indicated herein or otherwise clearly contradicted by context. The processes described herein (or variations and/or combinations thereof) may be performed under the control of one or more computer systems configured with executable instructions, and may be implemented as code (e.g., executable instructions, one or more computer programs, or one or more applications) collectively executed on one or more processors, by hardware, or combinations thereof. The computer program includes a plurality of instructions executable by one or more processors.
Further, the method may be implemented in any type of android computing platform that is operatively connected to a suitable. Aspects of the invention may be embodied in machine-readable code stored on a non-transitory storage medium or device, whether removable or integrated into a computing platform, such as a hard disk, optically read and/or write storage medium, RAM, ROM, or the like, such that it may be read by a programmable computer, which when read by the storage medium or device, is operative to configure and operate the computer to perform the procedures described herein. Further, the machine-readable code, or portions thereof, may be transmitted over a wired or wireless network. The invention described herein includes these and other different types of non-transitory computer-readable storage media when such media include instructions or programs that implement the steps described above in conjunction with a microprocessor or other data processor. The invention may also include the computer itself when programmed according to the methods and techniques described herein.
A computer program can be applied to input data to perform the functions described herein to transform the input data to generate output data that is stored to non-volatile memory. The output information may also be applied to one or more output devices, such as a display. In a preferred embodiment of the invention, the transformed data represents physical and tangible objects, including particular visual depictions of physical and tangible objects produced on a display.
The above description is only a preferred embodiment of the present invention, and the present invention is not limited to the above embodiment, and any modifications, equivalent substitutions, improvements, etc. within the spirit and principle of the present invention should be included in the protection scope of the present invention as long as the technical effects of the present invention are achieved by the same means. The invention is capable of other modifications and variations in its technical solution and/or its implementation, within the scope of protection of the invention.

Claims (10)

1. An intelligent call calling method is characterized by comprising the following steps:
reading elevator running information, and displaying the elevator running information and elevator control information through a touch screen;
obtaining elevator calling information, and sending an elevator control signal according to the elevator calling information;
receiving elevator calling information containing user information, extracting information of a floor and a target floor in the elevator calling information or associating the information of the floor and the target floor according to the user information, and sending an elevator control signal according to the information of the floor and the target floor;
the elevator call information containing the user information at least comprises any one of the following items: bluetooth signal, face image information, two-dimensional code information, remote elevator taking request information.
2. The intelligent call method of claim 1, wherein said obtaining elevator call information, sending elevator control signals according to the elevator call information comprises:
receiving a touch screen signal related to an uplink button or a downlink button or a floor selection digital button displayed by the touch screen, determining an elevator calling instruction based on the touch screen signal, and sending an elevator control signal according to the elevator calling instruction; and/or
The method comprises the steps of receiving a voice signal, determining that the voice signal is a wake-up voice signal, receiving a voice instruction signal fed back by a user after a preset prompt tone is played, determining an elevator calling instruction based on the voice instruction signal, and sending an elevator control signal according to the elevator calling instruction.
3. Intelligent call method according to claim 1, characterized in that the user information comprises at least a user ID that uniquely identifies the user; the receiving includes the elevator calling information of user information, draws floor and target floor information in the elevator calling information or associates floor and target floor information according to the user information, and sending elevator control signals according to the floor and target floor information includes:
receiving a Bluetooth signal, acquiring user information and corresponding call information, determining an elevator call instruction based on the call information, and sending an elevator control signal according to the elevator call instruction; and/or
Receiving face image information, matching user information and elevator taking information corresponding to the user information according to the face image information, determining an elevator calling instruction based on the elevator taking information, and sending an elevator control signal according to the elevator calling instruction; and/or
Receiving two-dimension code information, determining user information and corresponding elevator taking information according to the two-dimension code information, determining an elevator calling instruction based on the elevator taking information, and sending an elevator control signal according to the elevator calling instruction; and/or
Receiving remote elevator taking request information, determining an elevator calling instruction based on the remote elevator taking request information, and sending an elevator control signal according to the elevator calling instruction.
4. The intelligent call method of claim 1, wherein said obtaining elevator call information, sending elevator control signals according to the elevator call information comprises:
calling a voice call outside a hall; and
calling a voice call in the car;
wherein, the hall calling voice outside comprises:
in the dormant state, receiving a voice signal, analyzing whether the received voice signal is a voice awakening instruction or not, and periodically carrying out camera infrared detection;
the received voice signal is a voice awakening instruction, or the camera detects that someone is outside the hall door in an infrared mode and enters a response state;
when in a response state, sending an elevator control signal according to a registered voice command, and entering a waiting state;
when in a waiting state, the elevator car leaves the floor after arriving, and enters a dormant state;
making a voice call within the car comprises:
waiting for an elevator door opening in-place signal when the elevator is in a dormant state;
after receiving an elevator door opening in-place signal, entering a response state;
and in the answering state, sending an elevator control signal according to the registered voice command, and entering a dormant state.
5. The intelligent call method of claim 1, wherein the receiving elevator call information including user information, extracting floor and destination floor information in the elevator call information or associating floor and destination floor information according to the user information, and sending elevator control signals according to the floor and destination floor information comprises:
receiving user information and a remote elevator taking request sent by a mobile terminal APP;
registering the remote elevator taking request as a remote elevator taking instruction, and sending an elevator control signal;
and receiving confirmation information sent by the mobile terminal APP, giving up the registered remote elevator taking instruction if the elevator car does not reach the floor where the elevator car is located in the remote elevator taking request at the moment, and updating elevator taking record information stored in the database if the elevator car reaches the floor where the elevator car is located in the remote elevator taking request at the moment.
6. An intelligent call system, comprising:
the touch screen module is used for displaying the elevator operation information and the elevator control information by a touch screen;
the voice module is used for collecting and playing voice information;
the Bluetooth sensing module is used for calling a hall by an intelligent key or controlling an elevator by an IC card;
the multifunctional camera module is used for image signal acquisition and thermal imaging to measure body temperature; and
the remote monitoring module is used for acquiring and sending network remote data;
the touch screen module and the voice module acquire elevator calling information and send elevator control signals according to the elevator calling information;
the Bluetooth sensing module, the multifunctional camera module and the remote monitoring module receive elevator calling information including user information, extract information of a floor and a target floor in the elevator calling information or associate the information of the floor and the target floor according to the user information, and send elevator control signals according to the information of the floor and the target floor.
7. The intelligent call system of claim 6, wherein the voice module comprises a dormant state and an answer state;
the voice module is used for receiving a awakening voice instruction or a camera infrared signal, entering a response state from a dormant state, sending a voice response instruction according to the received voice instruction and sending an elevator calling instruction.
8. The intelligent call system of claim 6, wherein the multi-function camera module comprises a face recognition module, a body temperature detection module, and a two-dimensional code scanning module;
the face recognition module is used for receiving a face image signal acquired by a camera, matching corresponding user information and elevator taking information according to the face image signal and sending an elevator calling instruction;
the body temperature detection module is used for receiving thermal imaging information acquired by a camera, determining body temperature information according to the thermal imaging information and sending an elevator control instruction according to the body temperature information;
and the two-dimension code scanning module is used for receiving the two-dimension code information and sending an elevator calling instruction according to the two-dimension code information.
9. The intelligent call system of claim 6, wherein the remote monitoring module further comprises a cell phone call module, a remote data collection module, and a visual rescue module;
the mobile phone calling module is used for receiving remote calling request information, determining an elevator calling instruction based on the remote calling request information, and sending an elevator control signal according to the elevator calling instruction.
10. A computer readable storage medium having stored thereon program instructions which, when executed by a processor, implement the method of any one of claims 1 to 5.
CN202010651280.8A 2020-07-08 2020-07-08 Intelligent calling landing method, system and medium Pending CN111977475A (en)

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CN112478963A (en) * 2020-12-11 2021-03-12 小爱智能科技(苏州)有限公司 Elevator control auxiliary system and elevator control method
CN112596409A (en) * 2020-12-24 2021-04-02 深圳市康必达控制技术有限公司 Building automation control method and system, equipment and storage medium
CN112850390A (en) * 2021-01-09 2021-05-28 江苏威尔曼科技有限公司 Call registration method based on voice comparison
CN112875449B (en) * 2021-01-21 2023-02-14 上海新时达电气股份有限公司 Elevator control method, elevator control device, electronic equipment and storage medium
CN112875449A (en) * 2021-01-21 2021-06-01 上海新时达电气股份有限公司 Elevator control method, elevator control device, electronic equipment and storage medium
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CN114368654A (en) * 2021-12-06 2022-04-19 北京声智科技有限公司 Data processing method, device, equipment and computer readable storage medium
CN114644265A (en) * 2022-03-18 2022-06-21 深圳市富菱楼宇科技有限公司 Internet of things intelligent building automatic calling landing method and system and storage medium
CN114644265B (en) * 2022-03-18 2023-12-12 深圳市富菱楼宇科技有限公司 Internet of things intelligent building automatic call method, system and storage medium
CN114873386A (en) * 2022-05-25 2022-08-09 日立电梯(中国)有限公司 Elevator hall outside floor selection control method and system
CN115611104A (en) * 2022-09-20 2023-01-17 江苏威尔曼科技有限公司 Elevator calling method, elevator calling device, computer equipment and storage medium

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