Elevator prompting device and elevator
By monitoring and alerting passengers to the elevator's operating status through an elevator notification device, the problem of passengers having difficulty accurately judging when the elevator's operating status changes is solved, thus improving the elevator riding experience.
Patent Information
- Application Number
- CN202520278092.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Passengers cannot accurately judge subtle changes in the elevator's operation through visual observation, resulting in a poor elevator experience.
An elevator notification device is provided, including an elevator status determination module, a notification method determination module, and a notification module. The device generates a target notification instruction by monitoring the elevator's operating status and uses visual and audio notification methods to remind passengers of the elevator's specific status.
This improved passengers' awareness of the elevator's operating status, eliminated their doubts, and enhanced their elevator experience.
Smart Images

Figure CN223704837U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of elevator technology, and in particular to an elevator notification device and an elevator. Background Technology
[0002] In everyday elevator use, passengers inside the elevator car can roughly determine the elevator's operating status through visual observation, such as whether the elevator doors are opening / closing or whether the elevator is going up or down.
[0003] However, when faced with subtle and critical changes in the elevator's operating status, such as when the elevator doors go from opening to closing completely, visual observation may not be able to detect the changes, which can easily lead to passengers having doubts about the elevator's operating status and affect their riding experience. Utility Model Content
[0004] This utility model embodiment provides an elevator notification device and an elevator, which can remind passengers of the elevator's operating status to eliminate passenger confusion and improve the passenger's elevator riding experience. The technical solution is as follows:
[0005] On the one hand, an elevator notification device is provided, the device comprising:
[0006] The system includes an elevator status determination module, a prompting method determination module, and a prompting module. The elevator status determination module is electrically connected to the prompting method determination module, and the prompting method determination module is electrically connected to the prompting module.
[0007] The elevator status determination module is used to determine the elevator's operating status and send the operating status to the prompting method determination module;
[0008] The prompting method determination module is used to generate a target prompting instruction based on the running status, and send the target prompting instruction to the prompting module;
[0009] The prompting module is used to provide prompts based on the target prompting instruction.
[0010] In one possible implementation, the elevator status determination module is also electrically connected to the elevator operation status monitoring module, and is further used to obtain the elevator operation status from the operation status monitoring module.
[0011] Alternatively, the elevator status determination module is also electrically connected to the elevator door sensor, car sensor, and fault sensor, and is also used to acquire sensor data from the elevator door sensor, car sensor, and fault sensor, and determine the operating status of the elevator based on the sensor data.
[0012] In one possible implementation, the prompting method determination module includes: a status parsing unit, a prompting method determination unit, an instruction determination unit, and an instruction sending unit, wherein the status parsing unit is electrically connected to the prompting method determination unit, and the prompting method determination unit is electrically connected to the instruction determination unit;
[0013] The status parsing unit is used to parse the running status, obtain the status information corresponding to the running status, and send the status information to the prompting method determination unit;
[0014] The prompting method determination unit is used to determine the target prompting method based on the status information, and send the target prompting method to the instruction determination unit;
[0015] The instruction determination unit is used to generate the target prompt instruction based on the target prompting method;
[0016] The instruction sending unit is used to send the target prompt instruction to the prompt module.
[0017] In one possible implementation, the state parsing unit includes: an elevator door state parsing subunit, a car movement state parsing subunit, a fault parsing subunit, and a state information generation subunit, wherein the state information generation subunit is electrically connected to the elevator door state parsing subunit, the car movement state parsing subunit, and the fault parsing subunit, respectively.
[0018] The elevator door status parsing subunit is used to parse the operating status, obtain the elevator door status, and send the elevator door status to the status information generation subunit.
[0019] The car movement status parsing subunit is used to parse the operating status, obtain the car movement status, and send the car movement status to the status information generation subunit;
[0020] The fault analysis subunit is used to analyze the operating state, obtain the fault state, and send the fault state to the state information generation subunit.
[0021] The status information generation subunit is used to generate the status information based on the elevator door status, the car movement status, and the fault status.
[0022] In one possible implementation, the prompting mode determination unit includes: a description information parsing subunit, a prompting mode determination subunit, and a prompting mode sending subunit, wherein the description information parsing subunit is electrically connected to the prompting mode determination subunit, and the prompting mode determination subunit is electrically connected to the prompting mode sending subunit;
[0023] The description information parsing subunit is used to parse the status information to obtain the elevator door status, car movement status and fault status, and send the elevator door status, car movement status and fault status to the prompting method determination subunit.
[0024] The prompting method determination subunit is used to determine a first prompting method based on the elevator door status; determine a second prompting method based on the car movement status; determine a third prompting method based on the fault status; determine a target prompting method based on the first prompting method, the second prompting method, and the third prompting method, and send the target prompting method to the prompting method sending subunit.
[0025] The prompting method sending subunit is used to send the target prompting method to the instruction determining unit.
[0026] In one possible implementation, the instruction determination unit includes: a prompt mode parsing subunit and an instruction encoding subunit, wherein the prompt mode parsing subunit is electrically connected to the instruction encoding subunit;
[0027] The prompting method parsing subunit is used to parse and standardize the target prompting method to obtain standardized parsing information;
[0028] The instruction encoding subunit is used to encode the standardized parsing information into instructions to obtain the target prompt instruction.
[0029] In one possible implementation, the prompting module includes at least one of: a content display component, a light-emitting panel, and a speaker;
[0030] The content display component is used to display content based on the target prompt instruction;
[0031] The light-emitting panel is used to emit light based on the target prompt instruction;
[0032] The speaker is used to play audio based on the target prompt instruction.
[0033] In one possible implementation, the device further includes a passenger information acquisition module, which is electrically connected to the prompting module;
[0034] The passenger information acquisition module is used to acquire passenger information of passengers in the elevator and send the passenger information to the prompt module;
[0035] The prompting module is also used to provide prompts based on the passenger information and the target prompting instruction.
[0036] In one possible implementation, the passenger information acquisition module includes a passenger image acquisition unit and a passenger image processing unit, wherein the passenger image acquisition unit and the passenger image processing unit are electrically connected.
[0037] The passenger image acquisition unit is used to acquire passenger images of the passengers inside the elevator;
[0038] The passenger image processing unit is used to process the passenger image to obtain the passenger information.
[0039] On one hand, an elevator is provided, the elevator including the elevator prompting device. Attached Figure Description
[0040] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0041] Figure 1 This is a structural schematic diagram of an elevator notification device provided in an embodiment of the present utility model;
[0042] Figure 2 This is a schematic diagram of the structure of a prompting method determination module provided in an embodiment of this utility model;
[0043] Figure 3 This is a schematic diagram of the structure of a state resolution unit provided in an embodiment of the present invention;
[0044] Figure 4 This is a schematic diagram of the structure of a prompting method determination unit provided in an embodiment of this utility model;
[0045] Figure 5 This is a schematic diagram of the structure of an instruction determination unit provided in an embodiment of the present invention;
[0046] Figure 6 This is a schematic diagram of the structure of a prompting module provided in an embodiment of the present utility model;
[0047] Figure 7 This is a schematic diagram of another prompting module provided in an embodiment of the present utility model;
[0048] Figure 8 This is a schematic diagram of a display pattern provided in an embodiment of the present utility model;
[0049] Figure 9 This is a schematic diagram of another display pattern provided in an embodiment of the present utility model;
[0050] Figure 10 This is a schematic diagram of another display pattern provided in an embodiment of the present utility model;
[0051] Figure 11 This is a schematic diagram of another display pattern provided in an embodiment of the present utility model;
[0052] Figure 12 This is a schematic diagram of another display pattern provided in an embodiment of the present utility model;
[0053] Figure 13 This is a schematic diagram of another display pattern provided in an embodiment of the present utility model.
[0054] The reference numerals in the attached figures are as follows: 100-Elevator prompting device, 101-Elevator status determination module, 102-Prompt mode determination module, 103-Prompt module; 1021-Status parsing unit, 1022-Prompt mode determination unit, 1023-Instruction determination unit, 1024-Instruction sending unit; 10211-Elevator door status parsing subunit, 10212-Car movement status parsing subunit, 10213-Fault parsing subunit, 10214-Status information generation subunit; 10221-Description information parsing subunit, 10222-Prompt mode determination subunit, 10223-Prompt mode sending subunit; 10231-Prompt mode parsing subunit, 10232-Instruction encoding subunit; 1031-Content display component, 1032-Light-emitting panel, 1033-Speaker; 701-Left LED dot matrix, 702-Right LED dot matrix. Detailed Implementation
[0055] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.
[0056] In this utility model, the terms "first", "second", etc. are used to distinguish identical or similar items with essentially the same function. It should be understood that there is no logical or temporal dependency between "first", "second", and "nth", nor is there any limitation on the quantity or execution order.
[0057] Elevator: An electromechanical device used for vertical or inclined transportation of people and goods. In this embodiment of the utility model, the elevator refers to a cabin elevator.
[0058] Enclosed elevator: An enclosed elevator is a common type of elevator. Its car is a closed box used to transport passengers or goods.
[0059] Dot matrix integrated board: A dot matrix integrated board is an electronic device used to display text, images and other information. It is usually composed of multiple light-emitting diodes (LEDs) forming a dot matrix structure and controlled by integrated circuits.
[0060] In related technologies, taking the final stage of elevator door closing (just before closing) as an example, the elevator door's movement speed slows down significantly, making it difficult for passengers to visually determine whether the door has closed completely. Similarly, in the final stage of elevator movement (just before stopping), the elevator's speed slows down considerably, making it difficult for passengers to intuitively judge whether the elevator has stopped moving. These judgment difficulties may cause some passengers to have doubts about the elevator's operational status, affecting their riding experience.
[0061] Based on this, this utility model embodiment provides an elevator notification device, which can remind passengers of the elevator's operating status, thereby enabling passengers to know the elevator's operating status in a timely manner, eliminating doubts, and improving the elevator riding experience.
[0062] The application scenarios of the technical solutions provided by the embodiments of this utility model are described below. The technical solutions provided by the embodiments of this utility model can be applied to various types of elevators. After adopting the elevator reminder device provided by the implementation of this utility model, timely reminders can be given when the elevator is in different operating states, so that passengers in the elevator can know the operating status of the elevator in a timely manner, thereby improving the passenger's elevator riding experience.
[0063] The elevator prompting device provided in the embodiments of this utility model is described below. See below. Figure 1 The elevator notification device 100 includes an elevator status determination module 101, a notification mode determination module 102, and a notification module 103. The elevator status determination module 101 is electrically connected to the notification mode determination module 102, and the notification mode determination module 102 is electrically connected to the notification module 103. The elevator status determination module 101 determines the elevator's operating status and sends this status to the notification mode determination module 102. The notification mode determination module 102 generates a target notification instruction based on the operating status and sends this target notification instruction to the notification module 103. The target notification instruction instructs that a notification be given according to a target notification mode matching the operating status. The notification module 103 provides the notification based on the target notification instruction.
[0064] Electrical connection refers to connecting two or more objects together through a conductive material to achieve current transmission and signal transmission. This connection can be direct physical contact or through an intermediate conductive medium. In this embodiment, two electrically connected modules can transmit information. The elevator's operating status includes elevator door status, car movement status, and fault status. Elevator door status indicates the opening and closing of the elevator door, such as opening, closing, opening completed, and closing completed. Car movement status indicates the movement of the elevator car, such as going up, going down, up finished, and down finished. Fault status indicates elevator malfunctions, such as elevator door malfunction, power outage malfunction, and movement malfunction. Target prompt instruction indicates a prompt in a target manner, which is a prompt method matching the operating status. The prompt module 103 provides prompts based on the target prompt instruction in ways including visual prompts and audio prompts. In this embodiment, the elevator prompting device is powered by the elevator's power supply module.
[0065] It should be noted that the elevator status determination module 101, the prompting method determination module 102, and the prompting module 103 mentioned above are all physical hardware modules with data processing capabilities.
[0066] The elevator notification device provided in this embodiment of the invention uses an elevator status determination module 101 to determine the elevator's operating status, thereby monitoring the elevator's operating status. A notification mode determination module 102 generates a target notification instruction based on this operating status, thus determining the notification mode. The notification module 103 executes the target notification instruction, providing notification of the elevator's operating status, thereby eliminating passengers' concerns about the elevator's operating status and improving their riding experience.
[0067] The elevator status determination module 101 is described below.
[0068] In one possible implementation, the elevator status determination module 101 is also electrically connected to the elevator operation status monitoring module and is also used to obtain the elevator's operation status from the operation status monitoring module.
[0069] The elevator's operation status monitoring module monitors the elevator's operating status, and the elevator controller uses this information to control the elevator. When the elevator is equipped with an operation status monitoring module, the elevator status determination module 101 can directly obtain the elevator's operating status from it. In this implementation, the operation status monitoring module has an interface (pins) for connection, allowing for convenient connection between the module and the module.
[0070] In this implementation, the elevator status determination module 101 can directly obtain the elevator's operating status from the operating status monitoring module without any further processing, resulting in high efficiency in determining the operating status.
[0071] In one possible implementation, the elevator status determination module 101 is also electrically connected to the elevator door sensor, car sensor and fault sensor, and is also used to acquire sensor data sets from the elevator door sensor, car sensor and fault sensor, and determine the operating status of the elevator based on the sensor data sets.
[0072] The elevator system includes: door sensors, car sensors, and fault sensors. Door sensors collect data related to elevator doors, reflecting their status; car sensors collect data related to the car's movement, reflecting its movement; and fault sensors collect data related to elevator malfunctions, reflecting the elevator's fault status. For example, fault sensors can identify power outages, determine door malfunctions based on door sensor data, and determine car movement malfunctions based on car sensor data. The sensor dataset includes data from the door sensors, car sensors, and fault sensors, allowing the determination of the elevator's operating status.
[0073] In this implementation, sensor data sets are obtained from the elevator door sensor, the car sensor, and the fault sensor. The operating status of the elevator is determined using the sensor data sets. Since the original sensor data is used directly, the accuracy of the determined operating status is relatively high.
[0074] For example, the elevator status determination module 101 acquires a set of sensor data from the elevator door sensor, the car sensor, and the fault sensor. The elevator status determination module 101 processes the sensor data set to obtain the elevator door status, car movement status, and fault status, which together form the elevator's operating status.
[0075] The processing of the sensor data set can be carried out using methods found in related technologies, and this embodiment of the present invention does not limit this to any particular method.
[0076] The following is an explanation of the prompt method determination module 102.
[0077] In one possible implementation, see Figure 2 The prompting mode determination module 102 includes: a status parsing unit 1021, a prompting mode determination unit 1022, an instruction determination unit 1023, and an instruction sending unit 1024. The status parsing unit 1021 is electrically connected to the prompting mode determination unit 1022, and the prompting mode determination unit 1022 is electrically connected to the instruction determination unit 1023. The status parsing unit 1021 is used to parse the operating state, obtain the status information corresponding to the operating state, and send the status information to the prompting mode determination unit 1022. The prompting mode determination unit 1022 is used to determine the target prompting mode based on the status information and send the target prompting mode to the instruction determination unit 1023. The instruction determination unit 1023 is used to generate the target prompting instruction based on the target prompting mode. The instruction sending unit 1024 is used to send the target prompting instruction to the prompting module 103.
[0078] The status information refers to the parsed operating status, which involves data extraction and standardization. Data extraction is used to obtain key data content, and standardization is used to convert the operating status into a form that is easy to process later. In this embodiment, it is also used to convert the operating status into a form that is easy for the prompting method determination unit 1022 to process. The target prompting method is the prompting method determined for prompting the elevator's operating status. The target prompting instruction is obtained after converting the target prompting method. The target prompting instruction is a state that the prompting module 103 can directly execute. In other words, by executing the target prompting instruction, the prompting module 103 can achieve the purpose of prompting the elevator status in the target prompting method. It should be noted that the status parsing unit 1021, the prompting method determination unit 1022, the instruction determination unit 1023, and the instruction sending unit 1024 are all hardware units with data processing capabilities.
[0079] In this implementation, the state parsing unit 1021 parses the operating state to obtain state information. The prompting mode determination unit 1022 determines the target prompting mode based on the state information, thereby finding the target prompting mode corresponding to the operating state. The instruction determination unit 1023 generates a target prompting instruction based on the target prompting mode, thus realizing the instructionization of the target prompting mode. The instruction sending unit 1024 sends the target prompting instruction to the prompting module 103, so that the prompting module 103 executes the target prompting instruction to implement the target prompting mode.
[0080] The state resolution unit 1021 will be described below.
[0081] In one possible implementation, see Figure 3 The state parsing unit 1021 includes: an elevator door state parsing subunit 10211, a car movement state parsing subunit 10212, a fault parsing subunit 10213, and a state information generation subunit 10214. The state information generation subunit 10214 is electrically connected to the elevator door state parsing subunit 10211, the car movement state parsing subunit 10212, and the fault parsing subunit 10213, respectively. The elevator door state parsing subunit 10211 is used to parse the operating state, obtain the elevator door state, and send the elevator door state to the state information generation subunit 10214. The car movement state parsing subunit 10212 is used to parse the operating state, obtain the car movement state, and send the car movement state to the state information generation subunit 10214. The fault parsing subunit 10213 is used to parse the operating state, obtain the fault state, and send the fault state to the state information generation subunit 10214. The status information generation subunit 10214 is used to generate the status information based on the elevator door status, the car movement status, and the fault status.
[0082] The elevator door status analysis subunit 10211 is used to analyze the operating status to obtain the elevator door status, the car movement status analysis subunit 10212 is used to analyze the operating status to obtain the car movement status, and the fault analysis subunit 10213 is used to analyze the operating status to obtain the fault status. It should be noted that the reason why elevator door status analysis subunits 10211, car movement status analysis subunits 10212, and fault analysis subunits 10213 are needed to analyze the elevator status to obtain the elevator door status, car movement status, and fault status respectively is because each of these subunits has a state analysis (data separation) filtering circuit. The filtering circuit can filter out irrelevant states from unrelated operating states, thereby obtaining relevant states. For example, for elevator door status analysis subunit 10211, it can filter out states unrelated to the elevator door status, thereby obtaining the elevator door status. This embodiment of the invention does not limit the structure of the filtering circuit. The status information generation subunit 10214 can also be implemented through logic circuits. That is, the status information generation subunit 10214 includes three input terminals and one output terminal. The three input terminals are respectively connected to the elevator door status analysis subunit 10211, the car movement status analysis subunit 10212, and the fault analysis subunit 10213. The output terminal directly outputs the status information. The status input by the three input terminals can be directly converted into status information after being processed by the logic circuit. This process is equivalent to the packaging process. Packaging is to ensure the integrity of the data.
[0083] The following is an explanation of the prompt method determination unit 1022.
[0084] In one possible implementation, see Figure 4The prompting mode determination unit 1022 includes: a description information parsing subunit 10221, a prompting mode determination subunit 10222, and a prompting mode sending subunit 10223. The description information parsing subunit 10221 is electrically connected to the prompting mode determination subunit 10222, and the prompting mode determination subunit 10222 is electrically connected to the prompting mode sending subunit 10223. The description information parsing subunit 10221 is used to parse the status information to obtain the elevator door status, car movement status, and fault status, and send the elevator door status, car movement status, and fault status to the prompting mode determination subunit 10222. The prompting mode determination subunit 10222 is used to determine a first prompting mode based on the elevator door status, a second prompting mode based on the car movement status, and a third prompting mode based on the fault status. Based on the first, second, and third prompting modes, a target prompting mode is determined, and the target prompting mode is sent to the prompting mode sending subunit 10223. The prompt sending subunit 10223 is used to send the target prompt to the instruction determination unit 1023.
[0085] The description information parsing subunit 10221 is used to parse the status information to obtain the elevator door status, car movement status, and fault status; this process is essentially an unpacking process. The prompting mode determination subunit 10222 is used to obtain different prompting modes. In some embodiments, different prompting modes correspond to different components in the prompting module 103. It should be noted that the description information parsing subunit 10221, the prompting mode determination subunit 10222, and the prompting mode sending subunit 10223 are all hardware units with data processing capabilities, such as logic circuits. For example, the description information parsing subunit 10221 has one input terminal and three output terminals. One input terminal is used to input the status information, and the three output terminals are used to output the elevator door status, car movement status, and fault status, respectively. The prompting mode determination subunit 10222 has three input terminals and one output terminal. The three input terminals are used to input the elevator door status, car movement status, and fault status, respectively, and the one output terminal is used to output the target prompting mode. In some embodiments, the process of obtaining the target prompting method based on the first prompting method, the second prompting method, and the third prompting method is to concatenate the first prompting method, the second prompting method, and the third prompting method.
[0086] The instruction determination unit 1023 will be described below.
[0087] In one possible implementation, see Figure 5The instruction determination unit 1023 includes a prompt mode parsing subunit 10231 and an instruction encoding subunit 10232, wherein the prompt mode parsing subunit 10231 and the instruction encoding subunit 10232 are electrically connected. The prompt mode parsing subunit 10231 is used to parse and standardize the target prompt mode to obtain standardized parsing information. The instruction encoding subunit 10232 is used to encode the standardized parsing information to obtain the target prompt instruction.
[0088] The parsing and standardization of the target prompt method aims to convert it into standardized parsed information. This standardized parsed information facilitates instruction encoding. The form of the standardized parsed information is determined by technicians based on the type of the subunit; this embodiment does not limit this. Instruction encoding is the process of converting the standardized parsed information into executable target prompt instructions. Both the prompt method parsing subunit 10231 and the instruction encoding subunit 10232 are hardware units with data processing capabilities, such as logic circuits.
[0089] The following is a description of the prompt module 103.
[0090] In one possible implementation, see Figure 6 The prompt module 103 includes at least one of a content display component 1031, a light-emitting panel 1032, and a speaker 1033. The content display component 1031 is used to display content based on the target prompt instruction. The light-emitting panel 1032 is used to emit light based on the target prompt instruction. The speaker 1033 is used to play audio based on the target prompt instruction.
[0091] The content display component 1031 is a display screen or a dot matrix integrated board. The dot matrix integrated board includes multiple light-emitting diodes (LEDs), which form different patterns by coordinating their illumination and deactivation. In this embodiment, the target prompt command can control the illumination and deactivation of the LEDs in the dot matrix integrated board. By illuminating and deactivating the light-emitting board 1032, prompts for different operating states can be generated. The speaker 1033 can play prompt audio, thereby providing prompts to passengers inside the elevator.
[0092] In some embodiments, when the content display component 1031 is a dot matrix integrated board, see [link to relevant documentation]. Figure 7 The dot matrix integrated board is divided into a left LED dot matrix 701 and a right LED dot matrix 702. The light-emitting board 1032 is mounted on the dot matrix integrated board, with the left LED dot matrix 701 and the right LED dot matrix 702 located on opposite sides of the light-emitting board 1032. The speaker 1033 is located above the light-emitting board 1032.
[0093] The following explanation uses the content display component 1031 as a dot matrix integrated board as an example to illustrate the prompting method of the prompting module 103 in combination with different elevator operating states.
[0094] 1. The elevator door opens
[0095] When the elevator door is about to open or is opening, the target prompt instruction is the first prompt instruction. The prompt module 103 executes this first prompt instruction, controlling the LED dot matrix on both sides of the dot matrix integrated board to dynamically display in the form of luminous arrows. The dynamic display means that the luminous arrows diffuse from the center to the left and right sides, with the luminous arrow formed by the left LED dot matrix pointing to the left and the luminous arrow formed by the right LED dot matrix pointing to the right. This dynamic light and shadow effect simulates the process of the elevator door opening. Whether the elevator door is about to open or is opening, passengers can grasp the opening progress by observing this dynamic picture. The switching frequency of the picture of the LED dot matrix on both sides is a preset frequency, such as 0.15s / frame, which is not limited in this embodiment of the utility model. In addition, before the LED dot matrix on both sides lights up, the speaker first plays the first prompt audio, which is used to indicate that the elevator door is currently performing the opening action.
[0096] For example, see Figure 8 The LED dot matrix on both sides of the control dot matrix integrated board displays patterns from top to bottom in a sequential manner, that is, it displays in a loop from top to bottom, thereby realizing the use of the LED dot matrix on both sides to indicate that the elevator door is open.
[0097] 2. The elevator door has opened.
[0098] Once the elevator door has opened, the target notification instruction changes from the first instruction to the second instruction due to the change in the elevator's operating status. The notification module 103 executes this second instruction, controlling the LED dot matrix on both sides of the dot matrix integrated board to turn off, thus reminding passengers that the elevator door has opened successfully. This concise visual feedback clearly informs passengers that the elevator door has successfully opened and is currently in a stable state of either fully open or completely open. Additionally, simultaneously with the LED dot matrix turning off, a second notification audio is played through the speaker, indicating that the elevator door has completed its opening action.
[0099] For example, see Figure 9 After the elevator doors opened, the LED dot matrix on both sides instantly turned off. Figure 8 and Figure 9 As you can see, it can provide intuitive prompts about the elevator door status.
[0100] 3. The elevator doors are closed.
[0101] When the elevator door is preparing to close or is closing, the target prompt instruction is the third prompt instruction. The prompt module 103 executes this third prompt instruction, controlling the LED dot matrix on both sides of the dot matrix integrated board to dynamically display in the form of luminous arrows. Dynamic display means that the luminous arrows diffuse from the left and right sides towards the center, with the luminous arrow formed by the left LED dot matrix pointing to the right and the luminous arrow formed by the right LED dot matrix pointing to the left. This dynamic light and shadow effect simulates the process of the elevator door closing. Whether the elevator door is preparing to close or is closing, passengers can grasp the closing progress by observing this dynamic image. The switching frequency of the images of the two LED dot matrices is a preset frequency, such as 0.15s / frame, which is not limited in this embodiment. In addition, before the two LED dot matrices light up, the speaker first plays the third prompt audio, which is used to indicate that the elevator door is currently performing a closing action.
[0102] For example, see Figure 10 The LED dot matrix on both sides of the control dot matrix integrated board displays patterns from top to bottom in a sequential manner, that is, it displays in a loop from top to bottom, thereby realizing the use of the LED dot matrix on both sides to indicate that the elevator door is open.
[0103] 4. The elevator doors have closed.
[0104] When the elevator doors have closed, the target notification instruction changes from the third to the fourth instruction due to the change in the elevator's operating status. The notification module 103 executes this fourth instruction, controlling the LED dot matrix on both sides of the dot matrix integrated board to turn off, thus reminding passengers that the elevator doors have opened. This concise visual feedback clearly informs passengers that the elevator doors have closed. Additionally, simultaneously with the LED dot matrix turning off, the speaker plays a fourth notification audio, which indicates that the elevator doors have now closed.
[0105] For example, see Figure 9 After the elevator doors opened, the LED dot matrix on both sides instantly turned off. Figure 10 and Figure 9 As you can see, it can provide intuitive prompts about the elevator door status.
[0106] 5. Elevator power outage
[0107] In the event of a power outage, i.e., a power failure, the elevator's emergency power supply activates, providing power to the elevator's notification device. At this time, the target notification instruction is the fifth notification instruction. The notification module 103 executes this fifth notification instruction, controlling the illuminator to illuminate. Even in dark environments, passengers can still clearly see that the elevator is in a state of power failure and emergency power activation. Simultaneously, the illuminated space allows passengers to observe the current status of the doors, minimizing passenger anxiety in emergency situations and ensuring elevator safety.
[0108] For example, see Figure 11 In the event of a power outage, the light-emitting panel lights up while the LED dot matrix on both sides turns off.
[0109] In addition to the above Figure 8 and Figure 10 The graphic shown can also be the graphic displayed on the LED dot matrix on both sides when the elevator doors open. Figure 12 The pattern shown can also be the same, where the LED dot matrix display on both sides shows the graphic when the elevator doors close. Figure 13 The style shown is not limited in this embodiment of the utility model.
[0110] It should be noted that the above description is based on the example of indicating the elevator door status. In other possible implementations, the prompting module can also be used to indicate the car movement status (car moving upward, car moving upward). The specific prompting pattern is set by the technician according to the actual situation, and this application embodiment does not limit it.
[0111] In one possible implementation, the device further includes a passenger information acquisition module electrically connected to the prompting module 103. The passenger information acquisition module acquires passenger information of the passengers inside the elevator and sends this information to the prompting module 103. The prompting module 103 is also used to provide prompts based on the passenger information and the target prompting instruction.
[0112] The passenger information includes passenger facial expressions or postures; correspondingly, the passenger information acquisition module is an expression recognition module or a posture recognition module. The method of combining target prompts and passenger information to provide prompts is set by technicians according to actual conditions, and this embodiment of the invention does not limit this.
[0113] In this implementation, passenger information is obtained using a passenger information acquisition module, and the prompting module 103 combines the passenger information and the target prompting instruction to provide prompts, making the prompts more consistent with the situation of the passengers in the elevator.
[0114] In one possible implementation, the passenger information acquisition module includes a passenger image acquisition unit and a passenger image processing unit, which are electrically connected. The passenger image acquisition unit is used to acquire passenger images of passengers inside the elevator. The passenger image processing unit is used to process the passenger images to obtain passenger information.
[0115] Specifically, when the passenger information is a passenger expression, the passenger image processing unit is an expression recognition unit; when the passenger information is a passenger posture, the passenger image processing unit is a posture recognition unit.
[0116] All the above-mentioned optional technical solutions can be combined in any way to form optional embodiments of this utility model, and will not be described in detail here.
[0117] This utility model embodiment also provides an elevator, which includes the above-mentioned elevator prompting device.
[0118] The installation location of the elevator notification device in the elevator is determined by technicians based on the actual situation, and this application embodiment does not limit this.
[0119] The above are merely optional embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. An elevator notification device, characterized in that, The device includes: The system includes an elevator status determination module, a prompting method determination module, and a prompting module. The elevator status determination module is electrically connected to the prompting method determination module, and the prompting method determination module is electrically connected to the prompting module. The elevator status determination module is used to determine the elevator's operating status and send the operating status to the prompting method determination module; The prompting method determination module is used to generate a target prompting instruction based on the running state, and send the target prompting instruction to the prompting module. The target prompting instruction is used to instruct that a prompting be made according to a target prompting method that matches the running state. The prompting module is used to provide prompts based on the target prompting instruction.
2. The apparatus of claim 1, wherein, The elevator status determination module is also electrically connected to the elevator operation status monitoring module, and is also used to obtain the elevator operation status from the operation status monitoring module; Alternatively, the elevator status determination module is also electrically connected to the elevator door sensor, car sensor, and fault sensor, and is also used to acquire sensor data sets from the elevator door sensor, car sensor, and fault sensor, and determine the operating status of the elevator based on the sensor data sets.
3. The apparatus according to claim 1, characterized in that, The prompting method determination module includes: a status parsing unit, a prompting method determination unit, an instruction determination unit, and an instruction sending unit. The status parsing unit is electrically connected to the prompting method determination unit, and the prompting method determination unit is electrically connected to the instruction determination unit. The status parsing unit is used to parse the running status, obtain the status information corresponding to the running status, and send the status information to the prompting method determination unit; The prompting method determination unit is used to determine the target prompting method based on the status information, and send the target prompting method to the instruction determination unit; The instruction determination unit is used to generate the target prompt instruction based on the target prompting method; The instruction sending unit is used to send the target prompt instruction to the prompt module.
4. The apparatus according to claim 3, characterized in that, The status analysis unit includes: an elevator door status analysis subunit, a car movement status analysis subunit, a fault analysis subunit, and a status information generation subunit. The status information generation subunit is electrically connected to the elevator door status analysis subunit, the car movement status analysis subunit, and the fault analysis subunit, respectively. The elevator door status parsing subunit is used to parse the operating status, obtain the elevator door status, and send the elevator door status to the status information generation subunit. The car movement status parsing subunit is used to parse the operating status, obtain the car movement status, and send the car movement status to the status information generation subunit; The fault analysis subunit is used to analyze the operating state, obtain the fault state, and send the fault state to the state information generation subunit. The status information generation subunit is used to generate the status information based on the elevator door status, the car movement status, and the fault status.
5. The apparatus according to claim 3, characterized in that, The prompting method determination unit includes: a description information parsing subunit, a prompting method determination subunit, and a prompting method sending subunit. The description information parsing subunit is electrically connected to the prompting method determination subunit, and the prompting method determination subunit is electrically connected to the prompting method sending subunit. The description information parsing subunit is used to parse the status information to obtain the elevator door status, car movement status and fault status, and send the elevator door status, car movement status and fault status to the prompting method determination subunit. The prompting method determination subunit is used to determine a first prompting method based on the elevator door status; determine a second prompting method based on the car movement status; determine a third prompting method based on the fault status; determine a target prompting method based on the first prompting method, the second prompting method, and the third prompting method, and send the target prompting method to the prompting method sending subunit. The prompting method sending subunit is used to send the target prompting method to the instruction determining unit.
6. The apparatus according to claim 3, characterized in that, The instruction determination unit includes: a prompt mode parsing subunit and an instruction encoding subunit, wherein the prompt mode parsing subunit and the instruction encoding subunit are electrically connected; The prompting method parsing subunit is used to parse and standardize the target prompting method to obtain standardized parsing information; The instruction encoding subunit is used to encode the standardized parsing information into instructions to obtain the target prompt instruction.
7. The apparatus according to claim 1, characterized in that, The prompting module includes at least one of: a content display component, a light-emitting panel, and a speaker; The content display component is used to display content based on the target prompt instruction; The light-emitting panel is used to emit light based on the target prompt instruction; The speaker is used to play audio based on the target prompt instruction.
8. The apparatus according to claim 1, characterized in that, The device also includes a passenger information acquisition module, which is electrically connected to the prompting module; The passenger information acquisition module is used to acquire passenger information of passengers in the elevator and send the passenger information to the prompt module; The prompting module is also used to provide prompts based on the passenger information and the target prompting instruction.
9. The apparatus according to claim 8, characterized in that, The passenger information acquisition module includes a passenger image acquisition unit and a passenger image processing unit, and the passenger image acquisition unit and the passenger image processing unit are electrically connected. The passenger image acquisition unit is used to acquire passenger images of the passengers inside the elevator; The passenger image processing unit is used to process the passenger image to obtain the passenger information.
10. An elevator, characterized in that, The elevator includes the elevator prompting device as described in any one of claims 1 to 9.