CN210048351U - Automatic door and escalator linkage system - Google Patents

Automatic door and escalator linkage system Download PDF

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Publication number
CN210048351U
CN210048351U CN201822232103.7U CN201822232103U CN210048351U CN 210048351 U CN210048351 U CN 210048351U CN 201822232103 U CN201822232103 U CN 201822232103U CN 210048351 U CN210048351 U CN 210048351U
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escalator
door
automatic door
controller
shutdown
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CN201822232103.7U
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邱少华
黄中新
赵捷
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SJEC Corp
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SJEC Corp
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Abstract

The application provides an automatically-controlled door and automatic escalator linked system, the system includes: an escalator having an escalator controller for controlling the operation or stop of the escalator; the automatic door is arranged in front of an entrance of the escalator and is provided with a main controller and a door motor, the door motor is used for driving the automatic door to move, and the main controller is used for controlling the door motor; and the induction detector is arranged at the automatic door and used for inducing whether a person or an object approaches the automatic door, and the induction detector is in signal connection with the main controller and the escalator controller. Utilize each embodiment in this application, can realize the linkage of automatic escalator and automatically-controlled door, improve automatic escalator's security.

Description

Automatic door and escalator linkage system
Technical Field
The application relates to the technical field of escalators, in particular to an automatic door and escalator linkage system.
Background
Escalator and automatically-controlled door have been widely used in public places such as market, station, airport, center of doing business, among the prior art, people can get into escalator immediately after getting into indoorly from the auto-induction door, and in order to save the electric energy, a lot of escalator now are induction type, and when people got into the escalator entry, the inductor of entrance induced personnel and aroused the escalator after getting into and start.
However, some existing automatic doors have a short distance to an entrance of the escalator, and the automatic doors are automatically closed after a person passes through the automatic doors, so that the escalator needs to be started and gradually accelerated to a normal running speed by the person entering the escalator. This results in the need for passengers to stop or slow down the distance between the door and the escalator to wait for the escalator to start and accelerate, which can lead to congestion in the event of a large number of people. There is a certain potential safety hazard. Especially, in the case that the escalator is out of order or is being maintained to stop running, the passengers may be blocked between the escalator and the automatic door, which causes a greater potential safety hazard.
The prior art has at least the following problems: after people or moving objects walk into the escalator from the automatic door, the people or the moving objects need to enter the entrance of the escalator to wake up the escalator, so that congestion can be caused, and great potential safety hazards exist.
SUMMERY OF THE UTILITY MODEL
The embodiment of the application aims to provide an automatic door and escalator linkage system, so that the linkage of an escalator and an automatic door is realized, and the safety of the escalator is improved.
The embodiment of the application provides an automatic door and escalator linkage system is realized like this:
an automatic door and escalator linkage system, the system comprising:
an escalator having an escalator controller for controlling the operation or stop of the escalator;
the automatic door is arranged in front of an entrance of the escalator and is provided with a main controller and a door motor, the door motor is used for driving the automatic door to move, and the main controller is used for controlling the door motor;
and the induction detector is arranged at the automatic door and used for inducing whether a person or an object approaches the automatic door, and the induction detector is in signal connection with the main controller and the escalator controller.
In a preferred embodiment, when the sensing detector detects that a person or an object enters a preset range of the automatic door, a door opening signal is sent to the main controller, a starting signal is sent to the escalator controller, and the escalator controller controls the automatic escalator to start when receiving the starting signal.
In a preferred embodiment, the escalator has a waiting mode in which the escalator stops moving;
and when the escalator controller receives the starting signal, the escalator is controlled to be switched from a waiting mode to a running mode, and the escalator is controlled to move towards the exit of the escalator.
In a preferred embodiment, the induction detector is arranged at the top end of the side of the automatic door, which faces away from the escalator, and the detection range of the induction detector covers the opening range of the automatic door.
In a preferred embodiment, an escalator shutdown prompter is further arranged on one side of the automatic door, which faces away from the escalator, and is connected with the escalator controller in a signal mode, when the escalator is in a shutdown state, the escalator controller sends a control command to the shutdown prompter, and the shutdown prompter responds to the control command to generate a corresponding shutdown indication signal indicating that the escalator is in a shutdown state.
In a preferred embodiment, when receiving the door opening signal, the main controller controls the door motor to operate, and drives the automatic door to move in the door opening direction.
In a preferred embodiment, the shut down state comprises: the escalator is in a maintenance state when the escalator is in a fault state.
In a preferred embodiment, the outage prompter comprises a light prompter, and the light indicator is used for indicating a safe exit.
Utilize an automatic door and automatic escalator linked system that this application embodiment provided, can open when moving object or personnel walk to automatic door department the automatic door awakens up simultaneously the automatic door starts, like this, before moving object or personnel get into automatic escalator, automatic escalator just can start and move, and moving object or personnel need not slow down or pause and wait for automatic escalator to start like this, can avoid personnel to block up, improve automatic escalator security. In addition, by using the shutdown prompter, when the escalator is shutdown or has a fault, the shutdown of the escalator can be indicated before people enter the door, and the direction of a safety passage can be indicated, so that more serious congestion caused by shutdown of the escalator can be avoided.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced below, it is obvious that the drawings in the following description are only some embodiments described in the present application, and for those skilled in the art, other drawings can be obtained according to the drawings without any creative effort.
Fig. 1 is a schematic block diagram of an automatic door and escalator linkage system according to an embodiment of the present disclosure;
fig. 2 is a schematic view of an implementation scenario of an automatic door and escalator linkage system provided in an example of the present application.
Detailed Description
The embodiment of the application provides an automatic door and escalator linkage system.
In order to make those skilled in the art better understand the technical solutions in the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
Fig. 1 is a schematic block diagram of an embodiment of an automatic door and escalator linkage system according to the present application. While the present application provides apparatus structures as shown in the following examples or figures, more or fewer modular units may be included in the methods or apparatus based on conventional or non-inventive efforts. In a structure in which a necessary cause and effect relationship does not logically exist, the execution order of the steps or the block structure of the apparatus is not limited to the block structure shown in the embodiment or the drawings of the present application. The described module structures can be implemented in a device or an end product in practice according to the embodiments or the module structures shown in the drawings, and executed sequentially or executed in parallel (for example, in the environment of parallel processors or multi-thread processing, or even in the environment of distributed processing).
Specifically, as shown in fig. 1, an embodiment of an automatic door and escalator linkage system provided by the present application may include:
an escalator 1 having an escalator controller 101 for controlling the operation or stop of the escalator 1;
the automatic door 2 is arranged in front of an entrance of the escalator 1 and is provided with a main controller 201 and a door motor 202, the door motor 202 is used for driving the automatic door to move, and the main controller 201 is used for controlling the door motor 202;
and the induction detector 203 is arranged at the automatic door 2 and used for sensing whether a person or an object approaches the automatic door 2, and the induction detector 203 is in signal connection with the main controller 201 and the escalator controller 101.
The inductive detector 203 can be connected to the escalator controller 101 by radio, or can be connected to the escalator controller 101 by a wired transmission interface.
Specifically, the sensing detector 203 may be disposed at the top of the automatic door 2, or may be disposed on a side of the automatic door 2 facing away from the escalator 1, that is, a side of the door. The inductive detector 203 may be an infrared detector or an optical detector.
In this example, when the sensing detector detects that a person or an object enters the preset range of the automatic door 2, a door opening signal is sent to the main controller 201, a starting signal is sent to the escalator controller 101, and the escalator controller 101 controls the escalator 1 to start when receiving the starting signal. When a person or a moving object reaches the detection range of the induction detector 203, the induction detector 203 sends an activation signal to the escalator controller 101. The detection range of the induction detector 203 covers the entrance area of the whole door.
The escalator controller 101 controls the motor of the escalator to control the stopping, starting and running speeds of the escalator. The escalator controller 101 has a corresponding power supply, which is integrated into the escalator controller 101. Correspondingly, the door motor and the escalator motor in the embodiment are both connected with 220V or 380V alternating current, and the main controller and the induction detector are integrated with a power supply.
In this example, the escalator 1 automatically enters a waiting mode under the condition of no starting signal in the preset running time, and the escalator 1 stops moving in the waiting mode; the escalator controller 101 is integrated with a clock timing module, and can control the escalator 1 to stop running and enter a waiting mode after receiving the starting signal for preset time each time. Of course, if the starting signal is received during the operation of the escalator 1, the clock timing module is cleared and is restarted.
When the escalator controller 101 receives the starting signal, the escalator 1 is controlled to be switched from the waiting mode to the running mode, and the escalator 1 is controlled to run towards the exit direction.
In this example, the sensing detector 203 is disposed at the top end or the side surface of the side of the automatic door 2 facing away from the escalator 1, and the detection range of the sensing detector 203 covers the opening range of the automatic door.
In this example, an escalator shutdown prompter 204 is further disposed on a side of the automatic door 2 facing away from the escalator 1, the shutdown prompter 204 is in signal connection with the escalator controller 101, when the escalator 1 is in a shutdown state, the escalator controller 101 sends a control command to the shutdown prompter 204, and the shutdown prompter 204 responds to the control command to generate a corresponding shutdown indication signal indicating that the escalator 1 is in a shutdown state. Wherein the shutdown state comprises: the escalator is in a maintenance state when the escalator is in a fault state. It is determined by the escalator controller 101 whether the escalator 1 is in a standstill.
The escalator controller 101 is used to determine whether there is a danger such as a fire in addition to a stoppage due to a malfunction or operation and maintenance, for example, a smoke or temperature detector may be integrated, and the escalator controller 101 controls the escalator 1 to stop operating when a fire occurs. Meanwhile, a control instruction of the shutdown prompt is sent to the shutdown prompt 204, and the shutdown prompt 204 gives a prompt, so that the safety of the escalator can be further improved.
In this example, the outage prompt 204 includes a light indicator that indicates a safe exit. For example, arrow-shaped lights may be used at least in the direction of the security exit. Therefore, people can know that the escalator 1 stops running before entering the door, can directly choose to go out of a safe exit,
in this embodiment, when receiving the door opening signal, the main controller 201 controls the door motor 202 to operate, and drives the automatic door 202 to move in the door opening direction. The linkage of the automatic door 2 and the escalator 1 is realized.
Fig. 2 is a schematic view of an implementation scenario of an automatic door and escalator linkage system provided in an example of the present application. As shown in fig. 2, the automatic door 2 is disposed in front of the entrance of the escalator 1, and the detection area of the sensing detector 203 covers the entrance area of the automatic door 2, so that it is ensured that all people or moving objects arriving at the entrance area are detected. A shutdown indicator 204 is arranged on the side of the automatic door 2 facing away from the escalator 1. The person can see the shutdown prompt before entering the door.
By utilizing the implementation mode of the automatic door and escalator linkage system provided by the embodiments, when a moving object or a person walks to the automatic door, the automatic door can be opened and the escalator can be awakened to start at the same time, so that the escalator can start and run before the moving object or the person enters the escalator, the moving object or the person does not need to slow down or stop for waiting for the starting of the escalator, the person can be prevented from being blocked, and the safety of the escalator is improved. In addition, by using the shutdown prompter, when the escalator is shutdown or has a fault, the shutdown of the escalator can be indicated before people enter the door, and the direction of a safety passage can be indicated, so that more serious congestion caused by shutdown of the escalator can be avoided.
The embodiments in the present specification are described in a progressive manner, and the same or similar parts among the embodiments are referred to each other, and each embodiment focuses on the differences from the other embodiments.
While the present application has been described with examples, those of ordinary skill in the art will appreciate that there are numerous variations and permutations of the present application without departing from the spirit of the application, and it is intended that the appended claims encompass such variations and permutations without departing from the spirit of the application.

Claims (7)

1. An automatic door and escalator linkage system, said system comprising:
an escalator having an escalator controller for controlling the operation or stop of the escalator;
the automatic door is arranged in front of an entrance of the escalator and is provided with a main controller and a door motor, the door motor is used for driving the automatic door to move, and the main controller is used for controlling the door motor;
the induction detector is arranged at the automatic door and used for inducing whether a person or an object approaches the automatic door, and the induction detector is in signal connection with the main controller and the escalator controller;
the escalator control device comprises an escalator controller, an escalator door and an escalator door, wherein the escalator controller is arranged on the escalator door, the escalator door is arranged on the escalator door, one side of the escalator door, back to the escalator, is provided with an escalator shutdown prompter, the shutdown prompter is in signal connection with the escalator controller, when the escalator is in a shutdown state, the escalator controller sends a control command to the shutdown prompter, and the shutdown prompter responds to the control command to generate a corresponding shutdown indication signal for indicating that the escalator is in a shutdown state.
2. The automatic door and escalator linkage system according to claim 1, wherein when said sensing detector detects that a person or an object enters a preset range of said automatic door, a door opening signal is sent to said main controller, and a starting signal is sent to said escalator controller, and when said escalator controller receives said starting signal, said escalator controller controls said escalator to start.
3. An automatic door and escalator linkage system according to claim 2, wherein said escalator automatically enters a waiting mode in which said escalator stops moving without a start signal for a predetermined time of operation;
and when the escalator controller receives the starting signal, the escalator is controlled to be switched from a waiting mode to a running mode, and the escalator is controlled to move towards the exit of the escalator.
4. The automatic door and escalator linkage system according to claim 1, wherein said induction detector is disposed at the top end of the side of said automatic door facing away from said escalator, and the detection range of said induction detector covers the opening range of said automatic door.
5. The linked system as claimed in claim 2, wherein the main controller controls the door motor to operate to drive the automatic door to move in the door opening direction when receiving the door opening signal.
6. An automatic door and escalator linkage system according to claim 1, wherein said shutdown condition comprises: the escalator is in a maintenance state when the escalator is in a fault state.
7. The automatic door and escalator linkage system according to claim 1, wherein said shutdown indicator comprises a light indicator for indicating a safe exit.
CN201822232103.7U 2018-12-28 2018-12-28 Automatic door and escalator linkage system Active CN210048351U (en)

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Application Number Priority Date Filing Date Title
CN201822232103.7U CN210048351U (en) 2018-12-28 2018-12-28 Automatic door and escalator linkage system

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Application Number Priority Date Filing Date Title
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CN210048351U true CN210048351U (en) 2020-02-11

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109502466A (en) * 2018-12-28 2019-03-22 苏州江南嘉捷电梯有限公司 A kind of automatically-controlled door and escalator linked system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109502466A (en) * 2018-12-28 2019-03-22 苏州江南嘉捷电梯有限公司 A kind of automatically-controlled door and escalator linked system

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