This application claims priority to Chinese Patent Application No. 2151331415.1, filed Jun. 16, 215, and all the benefits accruing therefrom under 35 U.S.C. § 119, the contents of which in its entirety are herein incorporated by reference.
The present invention relates to the field of elevator control technologies, and to an elevator system that provides better experience for passengers and a control method thereof.
Elevator systems have been extensively used in various buildings, and people have been continuously seeking better elevator riding experience. Whether an elevator system can provide good riding experience directly influences a passenger's first impression of the building or even a company in the building.
Often times, existing elevator systems can only meet conventional demands by passengers, for example, when a passenger sends an elevator call request in a waiting area, an elevator system schedules the running of cars thereof according to unified orders, thereby providing relatively standardized operation services. As a result, an existing elevator system is unable to provide personalized services, and moreover, is unable to provide corresponding advanced services to VIPs. In addition, it has a low operating efficiency, is unable to promptly identify potential safety risks or safety issues that have already taken place, and is not intelligent enough.
In light of the above, it is necessary to propose an elevator system and a control method thereof to improve user experience, for example, providing VIP-level user experience throughout the process from a passenger starting to wait for an elevator to leaving the elevator.
One object of the present invention is to make operations of an elevator system more intelligent.
Another object of the present invention is to improve a user's elevator riding experience.
To attain the above objects or other objects, the present invention provides the following technical solutions.
According to one aspect of the present invention, an elevator system is provided, which comprises a car and an elevator control device, and further comprises:
a first information collection device that is disposed in a passenger waiting area of the elevator system and used for at least acquiring first passenger characteristic information of the passenger waiting area;
a second information collection device that is used for at least acquiring second passenger characteristic information inside the car;
an information analysis and processing device that at least receives the first passenger characteristic information and the second passenger characteristic information, is configured to perform analysis and processing, at least based on the first passenger characteristic information, so as to transmit a first control command for dispatching the elevator to the elevator control device, is configured to perform analysis and processing on the first passenger characteristic information so as to at least acquire classification information of a passenger and to further transmit, based on the classification information, a second control command that is applicable for passengers in a corresponding classification to the elevator control device, and is further configured to dynamically transmit, based on the second passenger characteristic information, a third control command to the elevator control device.
According to another aspect of the present invention, an elevator system control method is provided, comprising:
at least acquiring first passenger characteristic information of the passenger waiting area;
at least acquiring second passenger characteristic information inside the car;
performing analysis and processing, based on the first passenger characteristic information, so as to transmit a first control command for dispatching the elevator;
performing analysis and processing on the first passenger characteristic information so as to at least acquire classification information of a waiting passenger and to further transmit a second control command that is applicable for passengers in a corresponding classification;
dynamically transmitting, based on the second passenger characteristic information, a third control command
The above and other objects and advantages of the present invention will become more complete and clearer through the following detailed description with reference to the accompanying drawings, wherein identical or similar elements are represented by the same legends.
Some of a plurality of potential embodiments of the present invention will be described, which are intended to provide a basic understanding of the present invention, and are not intended to confirm critical or key elements of are intended to or to limit the protection scope of the present invention. It shall be understood that those skilled in the art may propose other exchangeable implementations according to the technical solutions of the present invention without departing from the essence and spirit of the present invention. Therefore, the following specific embodiments and accompanying drawings are only exemplary description of the technical solutions of the present invention, and shall not be construed as all of the present invention or construed as restrictions or limitations to the technical solutions of the present invention.
To make the following description clear and concise, not all parts of an elevator system are shown in the figures. The figures highlight a plurality of parts for those skilled in the art to completely implement the present invention. For those skilled in the art, operations of many parts are familiar and obvious.
“Passenger waiting area” and “passenger arriving area” herein are defined relative to the elevator riding process of a passenger. A floor may be either a “passenger waiting area” in one elevator riding process, or a “passenger arriving area” in another elevator riding process.
Referring to both
In one embodiment, the first information collection device 111/the second information collection device 112 may be one or more 3D sensors, for example, RGB-D (three primary colors plus distance) sensors, or may be 2D smart IP cameras. Along with increasingly extensive applications of various smart terminals in passengers, moreover, it is possible to conveniently acquire passenger identity information by an elevator system. Therefore, the first information collection device 111/the second information collection device 112 may also be wearable smart terminals (not shown) carried by passengers, the smart terminals may, for example, include but are not limited to RFID cards, smart phones or smart wearable devices, which can at least store passenger characteristic information of passengers, for example labeling a passenger's VIP identity information. By providing a corresponding device for reading the smart terminals in an elevator system, passenger identity information can be conveniently acquired when a passenger places a smart terminal close to the device. The applicant understands that a smart terminal is more accurate and convenient than a 3D sensor or a 2D smart IP camera in terms of acquiring passenger identity information. In another embodiment, therefore, the first information collection device 111/the second information collection device 112 may be a combination of any one of the 3D sensor and the 2D smart IP camera with a smart terminal carried by a passenger.
As shown in
By considering that the passenger arriving area 82 may also function as a passenger waiting area of the same floor, the third information collection device 113 may be set to be the same as the first information collection device 111. In one embodiment, the third information collection device 113 may be a 3D sensor or a 2D smart IP camera, which can perform facial image acquisition and face recognition on the arriving passengers 90, thereby acquiring passenger characteristic information 713; in another alternative embodiment, the third information collection device 113 may be a smart terminal such as a RFID card, and passenger characteristic information 713 related to the identity information of the passengers 90 may be acquired by directly reading the smart terminal. In such a way, corresponding special services will be provided later for the subsequent elevator rides of the VIP.
It should be noted that the specific installation position of the first information collection device 111, the second information collection device 112, and/or the third information collection device 113 is not restrictive, and they can be specifically installed for more accurately acquiring passenger characteristic information.
As shown in
Referring to
Referring to
The commands 611a and 611b in the above embodiment primarily form the control command 611, which is transmitted by the information analysis and processing device 120 to a confirmation part 13.
Referring to
Specifically, the passenger age information classification sub-module 1231 is used for performing analysis and processing on the passenger characteristic information 711, for example, performing analysis and processing on passenger body shape information in the passenger characteristic information 711, and consequently substantially identifying whether each passenger is one of three passenger classifications of children, adults and seniors, thereby acquiring classification information of children, adults and seniors. When the classification information at least comprises senior classification information, it can be determined that the currently waiting passengers comprise seniors. At this moment, the passenger age information classification sub-module 1231 transmits a command 612a for extending the elevator car door open and wait time and/or slowing down the elevator car door closing speed. As a result, senior passengers can be provided with a good user experience, and dangerous accidents can be prevented. When the classification information is only children classification information, it can be determined that the currently waiting passengers are children and that they are not accompanied by corresponding guardians. At this moment, the passenger age information classification sub-module 1231 transmits a command 612a for ignoring an elevator call request from the current passenger waiting area. As a result, children can be directly prevented from riding an elevator alone, and dangerous accidents can be prevented in advance.
Specifically, the passenger gender information classification sub-module 1232 is used for performing analysis and processing on the passenger characteristic information 711 so as to acquire classification information of males and females, for example, performing analysis and processing on passenger body shape information in the passenger characteristic information 711, and consequently substantially identifying the gender of each passenger. The classification information may be, but is not limited to, the amounts of current male/female passengers and the amount ratio of male to female passengers. The passenger gender information classification sub-module 1232 further transmits, based on the ratio of male to female classification information, a command 612b for controlling contents played by display devices in the passenger waiting area and/or cars. For example, based on the command 612b, when the classified female passengers are more than the classified male passengers, display devices in the passenger waiting area and/or cars to arrive soon may be switched to playing entertainment news, advertisements or shopping guide information, and when the classified male passengers are more than the classified female passengers, display devices in the passenger waiting area and/or cars to arrive soon may be switched to playing sports news. In such a way, based on the command 612b, the played contents are applicable for most passengers, leading to a better experience.
Specifically, the passenger importance information classification sub-module 1233 is used for performing analysis and processing on the passenger characteristic information 711 so as to acquire classification information of VIPs and non-VIPs. For example, a building's management staff may issue corresponding RIFD cards or smart devices to a VIP or the entourage thereof to identify their identity information. When the VIP swipes the card to take an elevator, the passenger characteristic information 711 will comprise the identity information thereof, and consequently the classification information that they belong to VIPs can be rapidly recognized. When the classification information acquired by the passenger importance information classification sub-module 1233 at least comprises VIP classification information, it indicates that a VIP currently needs to take an elevator, and the passenger importance information classification sub-module 1233 transmits a command 612c for dispatching a special elevator to the passenger's waiting area, and in such a way, the VIP is provided with excellent riding experience.
Specifically, the passenger specific information classification sub-module 1234 is used for performing analysis and processing on the passenger characteristic information 711 so as to acquire classification information of specific passengers, including disabled people, people carrying strollers, or people carrying large luggage or luggage carts, and consequently can rapidly recognize specific passengers currently present in the waiting hall and in need of specific riding services, such as disabled people, the passenger specific information classification sub-module 1234 can transmit a command 612d, the command 612d is, for example, used for dispatching a special elevator to the passenger waiting area, and in another example, is used for extending the elevator car door open and wait time and/or slowing down the elevator car door closing speed. In such a way, excellent riding experience can be provided to specific passengers.
The above commands 612a, 612b, and 612c primarily form the control command 612, which is transmitted by the information analysis and processing device 120 to a confirmation part 130. Among the commands 612a, 612b, and 612c, different cars can be controlled simultaneously, or the same car may be dynamically controlled in different time periods. With the presence of various commands 612a and 612b, commands applicable for corresponding classified passengers may be transmitted according to passenger characteristic information, and personalized user experience may be provided to various classified passengers.
Referring to
In one embodiment, occupied space information is collected by the second information collection device 112 as a part of the passenger characteristic information 712, and at the same time, a space occupying analysis module 124 is introduced into the information analysis and processing device 12, which may realize that, when a car space has been fully occupied, elevator call requests from other floors passed by are ignored. Specifically, the space occupying analysis module 124 performs analysis, at least based on the occupied space information (e.g. analyzing the space occupied by a carried article 910 when said carried article is present) in the passenger characteristic information 712, to obtain a space occupying degree of the car 190, it indicates that the car has been fully occupied when the space occupying degree is equal to or greater than a predetermined value, and at this moment, it may be indicated that the car is “fully loaded”, then the space occupying analysis module 124 transmits a command 613a for ignoring elevator call requests from other floors. In such a way, the command 613a can be adjusted according to the real-time space occupying situation of the car 190, which prevents unnecessary operational interruption to the car 19, improves the operating efficiency of elevators, and also improves passenger experience.
It should be understood that, in other embodiments, the current loading information of a car may be further combined, i.e. the space occupying information and the current loading information are combined, to determine if it is “fully loaded”, when any one of the two conditions is equal to or greater than its corresponding predetermined value, or when both of the two conditions are equal to or greater than their respective corresponding predetermined values, it can be used to indicate that the car is “fully loaded”.
Referring to
It should be noted that the HVAC system 151 is directly coupled to the elevator control device 150 in the embodiment shown in
Referring to
Furthermore, to save energy, when it is determined that no passenger is present in the car 190, the vacancy determining module 126 further transmits the command 613c for turning off or dimming an illuminating device 192 in the car.
Referring to
By promptly transmitting the command 613d, it facilitates a prompt alarm and promptly prevents unsafe situations from occurring.
Furthermore, the command 613d transmitted by the safety issue analysis module 127 can further control an elevator to a predetermined floor. In such a way, when a passenger 90 in a car 190 is determined to be in an unsafe situation, the elevator automatically runs to a relatively safe predetermined floor, which facilitates prompt gathering actions and ensures passenger safety.
The commands 613a, 613b, 613c, and 613d in the above embodiment primarily form the control command 613, which is transmitted by the information analysis and processing device 120 to a confirmation part 130 (see
Referring to
The command 614 in the above embodiment primarily forms the control command 613, which is transmitted by the information analysis and processing device 120 to a confirmation part 130 (see
As shown in
As shown in
As shown in
It should be noted that “passenger characteristic information” in the present invention is not limited to body information of a “passenger”, and all characteristic information that is related to the passenger, such as clothing, carried articles, characteristics of the environment in which the passenger is located, etc., can be construed as the “passenger characteristic information”.
It should be understood that, when it is claimed that a part is “connected” or “coupled” to another part, it may be directly connected or coupled to another part, or an intermediate part may be present. On the contrary, when it is claimed that a part is “directly connected” or “directly coupled” to another part, no intermediate part is present.
The above examples mainly describe the elevator system and the control method thereof according to the present invention. although only some of embodiments of the present invention are described, those skilled in the art should understand that the present invention may be implemented in many other forms without departing from the spirit and range thereof. For example, a module or sub-module of the information analysis and processing device 120 illustrated in
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