Elevator operation mode switching method and device, computer device and storage medium

By monitoring the energy consumption status of elevator auxiliary devices and collecting target monitoring data, the elevator's operating mode is adjusted in real time, solving the problem of insufficient auxiliary energy consumption and achieving real-time energy-saving effects for elevators.

CN115583541BActive Publication Date: 2026-04-24CHINA MERCHANTS SHEKOU DIGITAL CITY TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHINA MERCHANTS SHEKOU DIGITAL CITY TECH CO LTD
Filing Date
2022-09-28
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

In existing technologies, there are insufficient energy-saving methods for elevators' additional energy consumption, such as elevator advertising screens, projections, lighting, and floor display panels, making it impossible to achieve real-time and effective reduction of elevators' additional energy consumption.

Method used

By monitoring the energy consumption status of elevator auxiliary devices and collecting target monitoring data, the elevator's working mode is adjusted in real time according to the mode switching conditions, and the elevator is controlled to switch to the target working mode, thereby adjusting the status of the elevator auxiliary devices and reducing energy consumption.

Benefits of technology

This achieves real-time effective reduction of energy consumption of elevator auxiliary devices and improves the energy utilization efficiency of elevators.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses an elevator working mode switching method and device, computer equipment and a storage medium, and relates to the technical field of elevators. The method comprises the following steps: determining the current working mode of an elevator according to the additional energy consumption state of an elevator additional device; collecting target monitoring data corresponding to the current working mode; obtaining mode switching conditions of at least one working mode to be switched corresponding to the current working mode; if the target monitoring data meets the mode switching conditions corresponding to any working mode to be switched, determining the working mode to be switched corresponding to the mode switching conditions as a target working mode; controlling the elevator to switch to the target working mode and adjusting the working state of the elevator additional device. The method can switch the current working mode of the elevator to the target working mode in real time according to the target monitoring data, and can adjust the state of the elevator additional device according to the target working mode, so that the purpose of effectively reducing the additional energy consumption of the elevator in real time is achieved.
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Description

Technical Field

[0001] This invention relates to the field of elevator technology, and in particular to a method, apparatus, computer equipment, and storage medium for switching elevator operating modes. Background Technology

[0002] Elevators account for a significant portion of electricity consumption in public spaces. Currently, numerous technologies exist for energy conservation in elevator motors driving loads. However, technologies for saving energy on additional energy consumption from elevators, including advertising screens and projectors, elevator lighting, floor display panels, and elevator cameras, are still in their early stages. Existing technologies typically only save energy by automatically shutting off advertising screens and projectors at night, or by dimming lighting or adjusting the brightness of floor display panels when the elevator has not been used for extended periods. These methods cannot achieve a real-time and effective reduction in additional energy consumption. Summary of the Invention

[0003] This invention provides a method, apparatus, computer device, and storage medium for switching elevator operating modes, in order to solve the problem of how to effectively reduce the additional energy consumption of elevators in real time.

[0004] A method for switching elevator operating modes includes:

[0005] The current operating mode of the elevator is determined based on the additional energy consumption status of the elevator auxiliary devices.

[0006] Collect target monitoring data corresponding to the current working mode;

[0007] Obtain the mode switching conditions for at least one working mode to be switched corresponding to the current working mode;

[0008] If the target monitoring data satisfies the mode switching condition corresponding to any of the working modes to be switched, then the working mode to be switched corresponding to the mode switching condition is determined as the target working mode.

[0009] Control the elevator to switch to the target working mode and adjust the working status of the elevator auxiliary device.

[0010] An elevator operating mode switching device includes:

[0011] The current operating mode determination module is used to determine the current operating mode of the elevator based on the additional energy consumption status of the elevator auxiliary device.

[0012] The target monitoring data acquisition module is used to acquire target monitoring data corresponding to the current working mode;

[0013] The mode switching condition determination module is used to obtain the mode switching conditions of at least one working mode to be switched corresponding to the current working mode;

[0014] The target working mode determination module is used to determine the working mode to be switched corresponding to any of the working modes to be switched as the target working mode if the target monitoring data meets the mode switching condition corresponding to any of the working modes to be switched.

[0015] The target working mode switching module is used to control the elevator to switch to the target working mode and adjust the working status of the elevator auxiliary device.

[0016] A computer device includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the elevator operating mode switching method described above.

[0017] A computer-readable storage medium storing a computer program that, when executed by a processor, implements the above-described elevator operating mode switching method.

[0018] The aforementioned elevator operating mode switching method, device, computer, and storage medium switch the elevator's current operating mode to the target operating mode in real time based on the target monitoring data, and adjust the status of the elevator's auxiliary devices according to the target operating mode, thereby achieving the goal of effectively reducing the elevator's additional energy consumption in real time. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments of the present invention will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of an application environment for an elevator working mode switching method according to an embodiment of the present invention;

[0021] Figure 2 This is a flowchart of an elevator working mode switching method according to an embodiment of the present invention;

[0022] Figure 3 This is another flowchart of the elevator working mode switching method in one embodiment of the present invention;

[0023] Figure 4 This is another flowchart of the elevator working mode switching method in one embodiment of the present invention;

[0024] Figure 5 This is another flowchart of the elevator working mode switching method in one embodiment of the present invention;

[0025] Figure 6 This is another flowchart of the elevator working mode switching method in one embodiment of the present invention;

[0026] Figure 7 This is another flowchart of the elevator working mode switching method in one embodiment of the present invention;

[0027] Figure 8 This is a schematic diagram of an elevator working mode switching device according to an embodiment of the present invention;

[0028] Figure 9 This is a schematic diagram of a computer device according to an embodiment of the present invention. Detailed Implementation

[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0030] The elevator operating mode switching method provided in this embodiment of the invention can be applied to, for example... Figure 1 The application environment is shown. Specifically, this elevator operating mode switching method is applied in an elevator operating mode switching system, which includes, as shown in the example, [example of such system]. Figure 1 The diagram illustrates a client and server that communicate over a network to address the issue of reducing additional energy consumption in elevators. The client, also known as the user terminal, is the program that provides local services to the user, corresponding to the server. The client can be installed on, but is not limited to, various personal computers, laptops, smartphones, tablets, and portable wearable devices. The server can be a standalone server or a server cluster consisting of multiple servers.

[0031] In this embodiment of the invention, the client is an implementation terminal installed in the elevator system that performs real-time switching of the elevator's current operating mode. The server is a command terminal that monitors the elevator system in real time, determines mode switching conditions, and performs real-time switching of the elevator's current operating mode.

[0032] In one embodiment, such as Figure 2 As shown, a method for switching elevator operating modes is provided, which can be applied to... Figure 1 Taking the server in the example, the following steps are included:

[0033] S201: Determine the current operating mode of the elevator based on the additional energy consumption status of the elevator auxiliary device;

[0034] S202: Collect target monitoring data corresponding to the current working mode;

[0035] S203: Obtain the mode switching conditions for at least one working mode to be switched corresponding to the current working mode;

[0036] S204: If the target monitoring data meets the mode switching conditions corresponding to any working mode to be switched, then the working mode to be switched corresponding to the mode switching conditions shall be determined as the target working mode.

[0037] S205: Control the elevator to switch to the target working mode and adjust the working status of the elevator auxiliary device.

[0038] The current operating mode of the elevator refers to the operating mode in which the elevator is currently operating. As an example, the current operating mode can be any one of the following: active mode, preheating mode, and energy-saving mode.

[0039] As an example, in step S201, the server determines the current operating mode of the elevator based on the additional energy consumption status of the elevator's auxiliary devices. The additional energy consumption status refers to the energy consumption status of the elevator's auxiliary devices. These auxiliary devices include, but are not limited to, cameras, lighting devices, advertising devices, and floor display devices. In this example, the additional energy consumption status of the elevator includes the camera status, lighting status, advertising status, and floor display status. In this example, the server determines whether the elevator's current operating mode is an active mode, an energy-saving mode, or a preheating mode based on the elevator's current additional energy consumption status, such as the camera status, lighting status, advertising status, and floor display status. In this example, the server determines the elevator's current operating mode based on the elevator's additional energy consumption status.

[0040] The target monitoring data includes camera monitoring data and / or elevator control monitoring data. Camera monitoring data is the real-time monitoring data of the elevators from the smart camera devices deployed in the elevator area to be monitored. Elevator control monitoring data is the real-time monitoring data of the elevators from the elevator control system.

[0041] As an example, in step S202, after determining the current operating mode of the elevator, the server collects the target monitoring data corresponding to the current operating mode. In this example, the target monitoring data collected by the server includes camera monitoring data and / or elevator control monitoring data. Camera monitoring data includes, but is not limited to, car status and elevator door status; elevator control monitoring data includes, but is not limited to, car status, elevator door status, elevator activity status, and / or call command acquisition status. The car status reflects whether the car is occupied, including occupied and unoccupied. The elevator door status reflects whether the elevator door is open, including open and closed. The elevator activity status reflects the elevator's operating status, including stationary and active. The call command acquisition status reflects whether a call command has been received, including received and unreceived. In this example, camera monitoring data and / or elevator control monitoring data are used as target monitoring data. The server collects camera monitoring data and / or elevator control monitoring data corresponding to the current operating mode, providing feasibility for subsequently determining whether at least one mode switching condition corresponding to the target operating mode is met through the target monitoring data, and thus determining the target operating mode.

[0042] The mode switching condition is the switching condition corresponding to each current working mode switching to the working mode to be switched to. Each mode switching condition corresponds to a working mode to be switched to, which is a working mode that can be switched to under the current working mode.

[0043] As an example, in step S203, the server can obtain at least one working mode to be switched corresponding to the current working mode, and determine the mode switching conditions corresponding to each working mode to be switched. For example, if the current working mode is the active mode, its corresponding at least one working mode to be switched includes the energy-saving mode; therefore, the mode switching conditions corresponding to the energy-saving mode need to be obtained. As another example, if the current working mode is the preheating mode, its corresponding at least one working mode to be switched includes both the energy-saving mode and the active mode; in this case, the mode switching conditions corresponding to the energy-saving mode and the active mode need to be obtained. As yet another example, if the current working mode is the energy-saving mode, its corresponding at least one working mode to be switched includes the preheating mode; in this case, the mode switching conditions corresponding to the preheating mode need to be obtained.

[0044] In this example, the server first determines the working mode to be switched to corresponding to the current working mode, and then obtains the mode switching conditions corresponding to the working mode to be switched to, so as to determine whether the working mode to be switched to be determined as the target working mode based on the working mode to be switched to corresponding to the mode switching conditions.

[0045] The target working mode is the working mode determined by matching target monitoring data and mode switching conditions.

[0046] As an example, in step S204, if the server determines that the target monitoring data meets the mode switching conditions corresponding to any working mode to be switched, then the working mode to be switched corresponding to the mode switching conditions is determined as the target working mode. In this example, under the current working mode, if the server determines that the target monitoring data meets the mode switching conditions corresponding to any working mode to be switched, then the working mode to be switched is determined as the target working mode corresponding to the current working mode.

[0047] In this example, if the current working mode is active mode, the server determines that the target monitoring data meets the mode switching conditions corresponding to the energy-saving mode based on the collected target monitoring data, and then uses the energy-saving mode as the target working mode; if the target monitoring data does not meet the mode switching conditions corresponding to the energy-saving mode, then no mode switching is required, and active mode is still used as the target working mode.

[0048] In this example, if the current working mode is the preheating mode, the server determines that the target monitoring data meets the mode switching conditions corresponding to the energy-saving mode based on the collected target monitoring data, and then uses the energy-saving mode as the target working mode; if the target monitoring data meets the mode switching conditions corresponding to the activity mode, then the activity mode is used as the target working mode.

[0049] In this example, if the current working mode is energy-saving mode, the server determines that the target monitoring data meets the mode switching conditions corresponding to the active mode based on the collected target monitoring data, and then uses the active mode as the target working mode; if the target monitoring data does not meet the mode switching conditions corresponding to the active mode, then no mode switching is required, and the energy-saving mode will still be used as the target working mode.

[0050] As an example, in step S205, the server controls the elevator to switch to the target working mode and adjusts the working state of the elevator auxiliary device to match the target working mode, so as to reduce the additional energy consumption of the elevator auxiliary device.

[0051] In this example, if the current working mode is active mode and the target working mode is energy-saving mode, then it is necessary to control the elevator to switch from active mode to energy-saving mode and adjust the working state of the elevator auxiliary device. Specifically, after a preset time T, the camera is set to sleep mode, the lighting is set to off mode, the advertising is set to dimmed mode, and the floor display is set to off mode.

[0052] In this example, if the current operating mode is preheating mode and the target operating mode is energy-saving mode, the elevator needs to be switched from preheating mode to energy-saving mode. This involves adjusting the operating state of the elevator auxiliary device. Specifically, after a preset time T, the camera is set to sleep mode, the lighting is turned off, the advertising is dimmed, and the floor display is turned off. If the current operating mode is preheating mode and the target operating mode is active mode, the elevator needs to be switched from preheating mode to active mode. This involves adjusting the operating state of the elevator auxiliary device. Specifically, after a preset time T, the camera is set to normal mode, the lighting is set to normal mode, the advertising is set to normal mode, and the floor display is set to normal mode.

[0053] In this example, if the current working mode is energy-saving mode and the target working mode is preheating mode, then it is necessary to control the elevator to switch from energy-saving mode to preheating mode and adjust the working state of the elevator auxiliary device. Specifically, after a preset time T, the camera state is adjusted to normal state, the lighting state is kept off, the advertising state is dimmed, and the floor display state is off.

[0054] In this example, the server controls the elevator to enter the corresponding target working mode in order to adjust the working status of the elevator's auxiliary devices, so that the elevator is in the optimal energy consumption state, thereby reducing the elevator's additional energy consumption.

[0055] In the elevator working mode switching method provided in this embodiment, the server switches the current working mode of the elevator to the target working mode in real time according to the target monitoring data, and adjusts the state of the elevator auxiliary devices according to the target working mode, so as to achieve the purpose of reducing the additional energy consumption of the elevator in real time.

[0056] In one embodiment, such as Figure 3 As shown, step S201, which determines the current operating mode of the elevator based on the additional energy consumption status of the elevator auxiliary device, includes:

[0057] S301: Obtain the additional energy consumption status of the elevator auxiliary device, the additional energy consumption status including camera status, lighting status, advertising status and floor display status;

[0058] S302: If the camera status is normal, the lighting status is normal, the advertising status is normal, and the floor display status is normal, then the elevator's current working mode is active mode.

[0059] S303: If the camera is in normal condition, the lighting is off, the advertisement is dimmed, and the floor display is off, then the elevator's current operating mode is preheating mode.

[0060] S304: If the camera is in sleep mode, the lighting is off, the advertisement is dimmed, and the floor display is off, then the elevator's current operating mode is energy-saving mode.

[0061] The camera status can be normal or sleep; the lighting status and floor display status can be normal or off; and the advertising status can be normal or dimmed.

[0062] As an example, in step S301, the server obtains the additional energy consumption status of the elevator auxiliary device, which includes the camera status, lighting status, advertising status, and floor display status. In this example, the elevator auxiliary device includes a camera, a lighting device, an advertising device, and a floor display device, and the corresponding additional energy consumption statuses are camera status, lighting status, advertising status, and floor display status.

[0063] As an example, in step S302, if the server obtains that the additional energy consumption status is normal for the camera, lighting, and advertising, and that the floor display status is normal, then it determines that the current working mode of the elevator is active mode.

[0064] As an example, in step S303, if the server obtains that the additional energy consumption status is that the camera status is normal, the lighting status is off, the advertising status is dimmed, and the floor display status is off, then it determines that the current working mode of the elevator is the preheating mode.

[0065] As an example, in step S304, if the server obtains that the additional energy consumption status is that the camera is in sleep mode, the lighting is off, the advertisement is dimmed, and the floor display is off, then it determines that the current working mode of the elevator is energy-saving mode.

[0066] In the elevator working mode switching method provided in this embodiment, the server obtains additional energy consumption status such as elevator camera status, lighting status, advertising status, and floor display status, and determines the current working mode of the elevator based on the currently obtained additional energy consumption status such as camera status, lighting status, advertising status, and floor display status, providing feasibility for subsequently determining the corresponding mode switching conditions based on the current working mode of the elevator.

[0067] In one embodiment, step S202, namely collecting target monitoring data corresponding to the current working mode, includes:

[0068] Collect camera monitoring data and / or elevator control monitoring data corresponding to the activity mode.

[0069] like Figure 4 As shown, step S204, that is, if the target monitoring data meets the mode switching condition corresponding to any working mode to be switched, then the working mode to be switched corresponding to the mode switching condition is determined as the target working mode, includes:

[0070] S401: Determine the camera monitoring result based on the camera monitoring data and the first camera switching condition corresponding to the energy-saving mode;

[0071] S402: Determine the elevator control monitoring result based on the elevator control monitoring data and the first elevator control switching condition corresponding to the energy-saving mode;

[0072] S403: If both the camera monitoring result and the elevator control monitoring result are positive, then the mode switching conditions corresponding to the energy-saving mode are met, and the energy-saving mode is determined as the target working mode.

[0073] The first camera switching condition corresponding to the energy-saving mode is used to determine the camera monitoring result based on different car states and different elevator door states corresponding to the camera monitoring data in the active mode. This camera monitoring result is one of the mode switching conditions for determining whether the camera monitoring data corresponding to the active mode meets the requirements for switching to the energy-saving mode. The camera monitoring result includes monitoring passed and monitoring failed.

[0074] As an example, in step S401, the server determines the camera monitoring result based on the camera monitoring data corresponding to the active mode and the first camera switching condition corresponding to the energy-saving mode. In this example, when the current working mode is active, the server determines whether the camera monitoring data corresponding to the active mode meets the first camera switching condition corresponding to the energy-saving mode, and determines the camera monitoring result as either monitoring passed or failed. For example, in this example, if the camera monitoring data corresponding to the active mode meets the first camera switching condition, the camera monitoring result is determined to be monitoring passed; if the camera monitoring data corresponding to the active mode does not meet the first camera switching condition, the camera monitoring result is determined to be monitoring failed. In this example, when the current working mode is active, the server determines the camera monitoring result based on the camera monitoring data and the first camera switching condition, providing feasibility for subsequently determining the target working mode.

[0075] The first elevator control switching condition is used to determine the elevator control monitoring result based on the different car states, different elevator door states, and different elevator activity states corresponding to the elevator control monitoring data in the active mode. This elevator control monitoring result is one of the mode switching conditions for determining whether the elevator control monitoring data corresponding to the active mode meets the switching criteria for switching to the energy-saving mode. The elevator control monitoring result includes monitoring pass and monitoring fail.

[0076] As an example, in step S402, the server determines the elevator control monitoring result based on the elevator control monitoring data and the first elevator control switching condition corresponding to the energy-saving mode. In this example, the current working mode is active mode. The server determines the elevator control monitoring result as either monitoring passed or failed based on the elevator control monitoring data corresponding to active mode and the first elevator control switching condition corresponding to energy-saving mode. For example, in this example, if the elevator control monitoring data corresponding to active mode meets the first elevator control switching condition corresponding to energy-saving mode, the elevator control monitoring result is determined to be monitoring passed; if the elevator control monitoring data corresponding to active mode does not meet the first elevator control switching condition corresponding to energy-saving mode, the elevator control monitoring result is determined to be monitoring failed. In this example, in active mode, the server determines the elevator control monitoring result based on the elevator control monitoring data and the first elevator control switching condition, providing feasibility for subsequently determining the target working mode.

[0077] As an example, in step S403, if the server determines that both the camera monitoring result and the elevator control monitoring result are successful, thus meeting the mode switching conditions corresponding to the energy-saving mode, then the energy-saving mode is determined as the target working mode. In this example, when the current working mode is active mode, if both the camera monitoring result and the elevator control monitoring result are successful, the mode switching conditions corresponding to the energy-saving mode are met, meaning the mode to be switched to is energy-saving mode, and the energy-saving mode is determined as the target working mode. Conversely, if the server determines that at least one of the camera monitoring result and the elevator control monitoring result is unsuccessful, then the mode switching conditions corresponding to the energy-saving mode are not met, and no mode switching is required. For example, when the current working mode is active mode, if the camera monitoring result is unsuccessful, or the elevator control monitoring result is unsuccessful, or both the camera monitoring result and the elevator control monitoring result are unsuccessful, then the mode switching conditions corresponding to the energy-saving mode are not met, and no mode switching is required.

[0078] In the elevator working mode switching method provided in this embodiment, when the current working mode is active mode, the server determines whether the monitoring results meet the mode switching conditions corresponding to the working mode to be switched based on the camera monitoring results and the elevator control monitoring results. The working mode to be switched that meets the mode switching conditions is determined as the target working mode, which facilitates the subsequent switching of the elevator's current working mode to the target working mode. The elevator's auxiliary devices are adjusted according to the target working mode to achieve the purpose of reducing the elevator's additional energy consumption.

[0079] In one embodiment, step S401, namely determining the camera monitoring result based on camera monitoring data and the first camera switching condition corresponding to the energy-saving mode, includes:

[0080] S4011: If the first elevator car is unoccupied and the first elevator door is closed, then obtain the monitoring results from the cameras that have been monitored.

[0081] S4012: If the first elevator car is occupied or the first elevator door is open, then obtain the monitoring results of the cameras that failed the monitoring.

[0082] The camera monitoring data includes the status of the first elevator car and the status of the first elevator door. The status of the first elevator car includes two states: the car is occupied and the car is unoccupied. The status of the first elevator door includes the closed state and the open state.

[0083] As an example, in step S4011, if the server determines that the first car status in the camera monitoring data is "unoccupied" and the first elevator door status is "closed," then the camera monitoring result is "monitoring passed." Understandably, in the camera monitoring data, only when the first car status is "unoccupied" and the first elevator door status is "closed" is the first camera switching condition corresponding to the energy-saving mode met, and the server obtains the camera monitoring result indicating "monitoring passed."

[0084] As an example, in step S4012, if the server determines that the first car status in the camera monitoring data is "occupied" or the first elevator door status is "open," then the camera monitoring result is "monitoring failed." Understandably, as long as the first car status is "occupied" or the first elevator door status is "open," the first camera switching condition corresponding to the energy-saving mode is not met, and the server obtains the camera monitoring result indicating "monitoring failed."

[0085] In the elevator working mode switching method provided in this embodiment, the server determines the status of the first car and the status of the first elevator door based on the camera monitoring data and the first camera switching conditions corresponding to the energy-saving mode, thereby determining the camera monitoring results and providing feasibility for subsequently determining the target working mode based on the camera monitoring results.

[0086] In one embodiment, step S402, namely determining the elevator control monitoring result based on the elevator control monitoring data and the first elevator control switching condition corresponding to the energy-saving mode, includes:

[0087] S4021: If the second car is unoccupied, the second elevator door is closed, and the elevator is stationary, then obtain the elevator control monitoring results that have been monitored.

[0088] S4022: If the second car status is "occupied", or the second elevator door status is "open", or the elevator activity status is "active", then obtain the elevator control monitoring result that fails the monitoring.

[0089] The elevator control monitoring data includes the status of the second elevator car, the status of the second elevator door, and the elevator's activity status. The second elevator car status includes two states: the car is occupied and the car is unoccupied. The second elevator door status includes the closed and open states. The elevator's activity status includes the stationary and moving states.

[0090] As an example, in step S4021, if the server determines that the second car status in the elevator control monitoring data is "unoccupied," the second elevator door status is "closed," and the elevator activity status is "stationary," then the elevator control monitoring result is "monitoring passed." Understandably, in the elevator control monitoring data, only when the second car status is "unoccupied," the second elevator door status is "closed," and the elevator activity status is "stationary," are the first elevator control switching conditions corresponding to the energy-saving mode met, and the server obtains the elevator control monitoring result indicating "monitoring passed."

[0091] As an example, in step S4022, if the server determines that the second car status in the elevator control monitoring data is "occupied," or the second elevator door status is "open," or the elevator activity status is "active," then the elevator control monitoring result is "monitoring failed." Understandably, as long as the second car status is "occupied," or the second elevator door status is "open," or the elevator activity status is "active," the first elevator control switching condition corresponding to the energy-saving mode is not met, and the server obtains the elevator control monitoring result of "monitoring failed."

[0092] In the elevator operating mode switching method provided in this embodiment, the server determines the status of the second car and the second elevator door based on the elevator control monitoring data and the first elevator control switching conditions corresponding to the energy-saving mode, thereby determining the elevator control monitoring result and providing feasibility for subsequently determining the target operating mode based on the elevator control monitoring result.

[0093] In another embodiment, step S202, namely collecting the target monitoring data corresponding to the current working mode, further includes:

[0094] Collect camera monitoring data and / or elevator control monitoring data corresponding to the preheating mode.

[0095] like Figure 5 As shown, step S204, which is to determine the working mode to be switched as the target working mode if the target monitoring data meets the mode switching condition corresponding to any working mode to be switched, further includes:

[0096] S501: Determine the camera monitoring result based on camera monitoring data and the second camera switching conditions corresponding to the energy-saving mode;

[0097] S502: Determine the elevator control monitoring result based on the elevator control monitoring data and the second elevator control switching condition corresponding to the energy-saving mode;

[0098] S503: If both the camera monitoring result and the elevator control monitoring result are positive, then the mode switching conditions corresponding to the energy-saving mode are met, and the energy-saving mode is determined as the target working mode.

[0099] The second camera switching condition is used to determine the camera monitoring result based on the different car states corresponding to the camera monitoring data in the preheating mode. This camera monitoring result is one of the mode switching conditions for determining whether the camera monitoring data corresponding to the preheating mode meets the requirements for switching to the energy-saving mode. The camera monitoring result includes "monitoring passed" and "monitoring failed".

[0100] As an example, in step S501, the server determines the camera monitoring result based on the camera monitoring data and the second camera switching conditions corresponding to the energy-saving mode. In this example, when the current working mode is preheating mode, the server determines whether the camera monitoring data corresponding to the preheating mode meets the second camera switching conditions, and determines the camera monitoring result as either monitoring passed or failed. For example, in this example, if the camera monitoring data corresponding to the preheating mode meets the second camera switching conditions, the camera monitoring result is determined to be monitoring passed; if the camera monitoring data corresponding to the preheating mode does not meet the second camera switching conditions, the camera monitoring result is determined to be monitoring failed. In this example, in preheating mode, the server determines the camera monitoring result based on the camera monitoring data and the second camera switching conditions, providing feasibility for subsequently determining the target working mode.

[0101] The second elevator control switching condition is used to determine the elevator control monitoring result based on the different car states, elevator door states, and elevator activity states corresponding to the elevator control monitoring data in the preheating mode. This elevator control monitoring result is one of the conditions for switching from the preheating mode to the energy-saving mode. The elevator control monitoring result includes monitoring pass and monitoring fail.

[0102] As an example, in step S502, the server determines the elevator control monitoring result based on the elevator control monitoring data and the second elevator control switching conditions corresponding to the energy-saving mode. In this example, the current working mode is the preheating mode. The server determines the elevator control monitoring result as either monitoring passed or failed based on the elevator control monitoring data corresponding to the preheating mode and the second elevator control switching conditions corresponding to the energy-saving mode. For example, in this example, if the elevator control monitoring data corresponding to the preheating mode meets the second elevator control switching conditions corresponding to the energy-saving mode, the elevator control monitoring result is determined to be monitoring passed; if the elevator control monitoring data corresponding to the preheating mode does not meet the second elevator control switching conditions, the elevator control monitoring result is determined to be monitoring failed. In this example, in the preheating mode, the server determines the elevator control monitoring result based on the elevator control monitoring data and the second elevator control switching conditions, providing feasibility for subsequently determining the target working mode.

[0103] As an example, in step S503, if the server determines that both the camera monitoring result and the elevator control monitoring result are successful, thus meeting the mode switching conditions corresponding to the energy-saving mode, then the energy-saving mode is determined as the target working mode. In this example, when the current working mode is preheating mode, if both the camera monitoring result and the elevator control monitoring result are successful, the mode switching conditions corresponding to the energy-saving mode are met, meaning the mode to be switched to is energy-saving mode, and the energy-saving mode is determined as the target working mode. Conversely, if the server determines that either the camera monitoring result or the elevator control monitoring result is unsuccessful, then the mode switching conditions corresponding to the energy-saving mode are not met, and the preheating mode is still determined as the target working mode. In this example, when the current working mode is preheating mode, if either the camera monitoring result or the elevator control monitoring result is unsuccessful, then the mode switching conditions corresponding to the energy-saving mode are not met, and no mode switching is required.

[0104] In the elevator working mode switching method provided in this embodiment, when the current working mode is the preheating mode, the server determines whether the monitoring results meet the mode switching conditions corresponding to the working mode to be switched based on the camera monitoring results and the elevator control monitoring results. The working mode to be switched that meets the mode switching conditions is determined as the target working mode, which facilitates the subsequent switching of the elevator's current working mode to the target working mode. The state of the elevator's auxiliary devices is adjusted according to the target working mode to achieve the purpose of reducing the elevator's additional energy consumption.

[0105] In one embodiment, step S501, namely determining the camera monitoring result based on camera monitoring data and the second camera switching conditions corresponding to the energy-saving mode, includes:

[0106] S5011: If the third car is unoccupied, obtain the monitoring results from the cameras that have passed the monitoring.

[0107] S5012: If the third car is occupied, obtain the monitoring results of the cameras that failed the monitoring.

[0108] The camera monitoring data includes the status of the third car; the status of the third car includes two states: the car is occupied and the car is unoccupied.

[0109] As an example, in step S5011, if the server determines that the third car status in the camera monitoring data is "unoccupied," then the camera monitoring result is "monitoring passed." Understandably, in the camera monitoring data, only when the third car status is "unoccupied" is the second camera switching condition corresponding to the energy-saving mode met, and the server obtains the camera monitoring result indicating "monitoring passed."

[0110] As an example, in step S5012, if the server determines that the third car status in the camera monitoring data is "occupied," then the camera monitoring result is "monitoring failed." Understandably, as long as the first car status is "occupied," the second camera switching condition corresponding to the energy-saving mode is not met, and the server obtains the camera monitoring result indicating "monitoring failed."

[0111] In the elevator working mode switching method provided in this embodiment, the server determines the state of the third car based on the camera monitoring data and the third camera switching conditions corresponding to the energy-saving mode, thereby determining the camera monitoring results and providing feasibility for subsequently determining the target working mode based on the camera monitoring results.

[0112] In one embodiment, step S502, namely determining the elevator control monitoring result based on the elevator control monitoring data and the second elevator control switching condition corresponding to the energy-saving mode, includes:

[0113] S5021: If the elevator is stationary, the fourth car is unoccupied, and the fourth elevator door is closed, then obtain the elevator control monitoring results that have been monitored.

[0114] S5022: If the elevator is in an active state, or the fourth car is occupied, or the fourth elevator door is open, then obtain the elevator control monitoring result that fails the monitoring.

[0115] The elevator control monitoring data includes the elevator's activity status, the status of the fourth car, and the status of the fourth elevator door. The elevator's activity status includes a stationary state and an active state; the fourth car status includes two states: the car is occupied and the car is unoccupied; and the fourth elevator door status includes a closed state and an open state.

[0116] As an example, in step S5021, if the server determines that the elevator activity status in the elevator control monitoring data is stationary, the fourth car status is unoccupied, and the fourth elevator door status is closed, then the elevator control monitoring result is "monitoring passed." Understandably, in the elevator control monitoring data, only when the elevator activity status is stationary, the fourth car status is unoccupied, and the fourth elevator door status is closed, is the second elevator control switching condition corresponding to the energy-saving mode met, and the server obtains the elevator control monitoring result indicating "monitoring passed."

[0117] As an example, in step S5022, if the server determines that the elevator activity status in the elevator control monitoring data is active, or the fourth car status is occupied, or the fourth elevator door status is open, then the elevator control monitoring result is "monitoring failed". Understandably, as long as the elevator activity status is active, or the fourth car status is occupied, or the fourth elevator door status is open in the elevator control monitoring data, the second elevator control switching condition corresponding to the energy-saving mode is not met, and the server obtains the elevator control monitoring result of "monitoring failed".

[0118] In the elevator operating mode switching method provided in this embodiment, the server determines the elevator activity status, the fourth car status, and the fourth elevator door status based on the elevator control monitoring data and the second elevator control switching conditions corresponding to the energy-saving mode, thereby determining the elevator control monitoring results and providing feasibility for subsequently determining the target operating mode based on the elevator control monitoring results.

[0119] In another embodiment, step S202, namely collecting the target monitoring data corresponding to the current working mode, further includes:

[0120] Collect elevator control monitoring data corresponding to the preheating mode.

[0121] like Figure 6 As shown, step S204, which is to determine the working mode to be switched as the target working mode if the target monitoring data meets the mode switching condition corresponding to any working mode to be switched, further includes:

[0122] S601: Determine the elevator control monitoring result based on the elevator control monitoring data and the third elevator control switching conditions corresponding to the activity mode;

[0123] S602: If the elevator control monitoring result is that the monitoring is passed, then the mode switching conditions corresponding to the activity mode are met, and the activity mode is determined as the target working mode.

[0124] The third elevator control switching condition corresponding to the active mode is used to determine the elevator control monitoring result based on the different car states, different elevator door states, and different elevator activity states corresponding to the elevator control monitoring data in the preheating mode. This elevator control monitoring result is one of the conditions for switching from the preheating mode to the active mode. The elevator control monitoring result includes monitoring passed and monitoring failed.

[0125] As an example, in step S601, the server determines the elevator control monitoring result based on the elevator control monitoring data and the third elevator control switching conditions corresponding to the active mode. In this example, the current working mode is the preheating mode. The server determines the elevator control monitoring result as either monitoring passed or failed based on the elevator control monitoring data corresponding to the preheating mode and the third elevator control switching conditions corresponding to the active mode. For example, in this example, if the elevator control monitoring data corresponding to the preheating mode meets the third elevator control switching conditions corresponding to the active mode, the elevator control monitoring result is determined to be monitoring passed; if the elevator control monitoring data corresponding to the preheating mode does not meet the third elevator control switching conditions corresponding to the active mode, the elevator control monitoring result is determined to be monitoring failed. In this example, in the preheating mode, the server determines the elevator control monitoring result based on the elevator control monitoring data and the third elevator control switching conditions, providing feasibility for subsequently determining the target working mode.

[0126] As an example, in step S602, if the server determines that the elevator control monitoring result is "monitoring passed," then the mode switching condition corresponding to the active mode is met, and the active mode is set as the target working mode. In this example, when the current working mode is warm-up mode, if the elevator control monitoring result is "monitoring passed," then the mode switching condition corresponding to the active mode is met, i.e., the mode to be switched to is the active mode, and the active mode is set as the target working mode. Conversely, if the server determines that the elevator control monitoring result is "monitoring failed," then the mode switching condition corresponding to the active mode is not met, and the warm-up mode is still set as the target working mode. In this example, if the elevator control monitoring result is "monitoring failed" when the current working mode is warm-up mode, then the mode switching condition corresponding to the active mode is not met, and no mode switching is required.

[0127] In the elevator working mode switching method provided in this embodiment, when the current working mode is the preheating mode, the server determines whether the monitoring results meet the mode switching conditions corresponding to the working mode to be switched based on the elevator control monitoring results. The working mode to be switched that meets the mode switching conditions is determined as the target working mode, which facilitates the subsequent switching of the elevator's current working mode to the target working mode. The state of the elevator's auxiliary devices is adjusted according to the target working mode to achieve the purpose of reducing the elevator's additional energy consumption.

[0128] In one embodiment, step S601, namely determining the elevator control monitoring result based on the elevator control monitoring data and the third elevator control switching condition corresponding to the activity mode, includes:

[0129] S6011: If the elevator is stationary and the fifth elevator door is open, obtain the elevator control monitoring result that has been monitored; or if the fifth car is occupied, obtain the elevator control monitoring result that has been monitored.

[0130] S6012: If the elevator is in an active state, or the fifth car is unoccupied, or the fifth elevator door is closed, then obtain the elevator control monitoring result that fails the monitoring.

[0131] The elevator control monitoring data includes the elevator's activity status, the status of the fifth car, and the status of the fifth elevator door. The elevator's activity status includes a stationary state and an active state; the fifth car status includes two states: the car is occupied and the car is unoccupied; and the fifth elevator door status includes a closed state and an open state.

[0132] As an example, in step S6011, if the server determines that the elevator activity state in the elevator control monitoring data is stationary and the fifth elevator door is open, then it obtains the elevator control monitoring result that has passed monitoring; or if the server determines that the fifth car is occupied, it also obtains the elevator control monitoring result that has passed monitoring. Understandably, in the elevator control monitoring data, if the elevator activity state is stationary and the fifth elevator door is open, then the third elevator control switching condition corresponding to the activity mode is met; and if the fifth car is occupied, the third elevator control switching condition corresponding to the activity mode is also met; at this time, the server obtains the elevator control monitoring result that has passed monitoring.

[0133] As an example, in step S6012, if the server determines that the elevator activity status in the elevator control monitoring data is active, or the fifth car status is unoccupied, or the fifth elevator door status is closed, then the elevator control monitoring result is monitoring failure. Understandably, as long as the elevator activity status in the elevator control monitoring data is active, or the fifth car status is unoccupied, or the fifth elevator door status is closed, the third elevator control switching condition corresponding to the active mode is not met, and the server obtains the elevator control monitoring result of monitoring failure.

[0134] In the elevator working mode switching method provided in this embodiment, the server determines the elevator activity status, the fifth car status, and the fifth elevator door status based on the elevator control monitoring data and the third elevator control switching conditions corresponding to the activity mode, thereby determining the elevator control monitoring results and providing feasibility for subsequently determining the target working mode based on the elevator control monitoring results.

[0135] In another embodiment, step S202, which is to collect the target monitoring data corresponding to the current working mode, further includes: collecting the elevator control monitoring data corresponding to the energy-saving mode.

[0136] like Figure 7 As shown, step S204, which is to determine the working mode to be switched as the target working mode if the target monitoring data meets the mode switching condition corresponding to any working mode to be switched, further includes:

[0137] S701: Determine the elevator control monitoring result based on the elevator control monitoring data and the fourth elevator control switching condition corresponding to the preheating mode;

[0138] S702: If the elevator control monitoring result is that the monitoring is passed, then the mode switching conditions corresponding to the preheating mode are met, and the preheating mode is determined as the target working mode.

[0139] The fourth elevator control switching condition is used to determine the elevator control monitoring result based on the different call command acquisition statuses corresponding to the elevator control monitoring data in energy-saving mode. This elevator control monitoring result determines whether the elevator control monitoring data corresponding to the energy-saving mode meets the mode switching conditions for switching to the preheating mode. This elevator control monitoring result includes two monitoring results: monitoring passed and monitoring failed.

[0140] As an example, in step S701, the server determines the elevator control monitoring result based on the elevator control monitoring data and the fourth elevator control switching condition corresponding to the energy-saving mode. In this example, the current working mode is energy-saving mode. The server determines the elevator control monitoring result as either monitoring passed or failed based on the elevator control monitoring data corresponding to the energy-saving mode and the fourth elevator control switching condition corresponding to the preheating mode. For example, in this example, if the elevator control monitoring data corresponding to the energy-saving mode meets the fourth elevator control switching condition corresponding to the preheating mode, the elevator control monitoring result is determined to be monitoring passed; if the elevator control monitoring data corresponding to the energy-saving mode does not meet the fourth elevator control switching condition corresponding to the preheating mode, the elevator control monitoring result is determined to be monitoring failed. In this example, under energy-saving mode, the server determines the elevator control monitoring result based on the elevator control monitoring data and the fourth elevator control switching condition, providing feasibility for subsequently determining the target working mode.

[0141] As an example, in step S702, if the server determines that the elevator control monitoring result is "monitoring passed," then the mode switching condition corresponding to the preheating mode is met, and the preheating mode is determined as the target working mode. In this example, when the current working mode is energy-saving mode, if the elevator control monitoring result is "monitoring passed," the mode switching condition corresponding to the preheating mode is met, that is, the mode to be switched to is the preheating mode, and the preheating mode is determined as the target working mode. Conversely, if the server determines that the elevator control monitoring result is "monitoring failed," then the mode switching condition corresponding to the preheating mode is not met, and no mode switching is required; the energy-saving mode is still determined as the target working mode. Understandably, when the current working mode is energy-saving mode, if the elevator control monitoring result is "monitoring failed," then the mode switching condition corresponding to the preheating mode is not met, and no mode switching is required.

[0142] In the elevator working mode switching method provided in this embodiment, when the current working mode is energy-saving mode, the server determines whether the monitoring results meet the mode switching conditions corresponding to the working mode to be switched based on the elevator control monitoring results. The working mode to be switched that meets the mode switching conditions is determined as the target working mode, which facilitates the subsequent switching of the elevator's current working mode to the target working mode. The state of the elevator's auxiliary devices is adjusted according to the target working mode to achieve the purpose of reducing the elevator's additional energy consumption.

[0143] In one embodiment, step S701, namely determining the elevator control monitoring result based on the elevator control monitoring data and the fourth elevator control switching condition corresponding to the energy-saving mode, includes:

[0144] S7011: If the elevator call command acquisition status is "Elevator call command received", then acquire the monitoring results of the car that has been monitored.

[0145] S7012: If the elevator call command acquisition status is "no elevator call command received", then acquire the monitoring results of the car that failed the monitoring.

[0146] The elevator control monitoring data includes the status of elevator call command acquisition; the status of elevator call command acquisition includes two states: elevator call command received and elevator call command not received.

[0147] As an example, in step S7011, if the server determines that the elevator call command acquisition status in the elevator control monitoring data is "elevator call command received," then the elevator control monitoring result is "monitoring passed." Understandably, in the elevator control monitoring data, only when the elevator call command acquisition status is "elevator call command received" is the fourth elevator control switching condition corresponding to the energy-saving mode met, and the server obtains the elevator control monitoring result indicating "monitoring passed."

[0148] As an example, in step S7012, if the server determines that the elevator call command acquisition status in the elevator control monitoring data is "no elevator call command received," then the elevator control monitoring result is "monitoring failed." Understandably, in the elevator control monitoring data, when the elevator call command acquisition status is "no elevator call command received," the fourth elevator control switching condition corresponding to the energy-saving mode is not met, and the server obtains the elevator control monitoring result of "monitoring failed."

[0149] In the elevator working mode switching method provided in this embodiment, the server determines the elevator call command acquisition status based on the elevator control monitoring data and the fourth elevator control switching condition, thereby determining the elevator control monitoring result and providing feasibility for subsequently determining the target working mode based on the elevator control monitoring result.

[0150] It should be understood that the sequence number of each step in the above embodiments does not imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of the present invention.

[0151] In one embodiment, an elevator operating mode switching device is provided, which corresponds one-to-one with the elevator operating mode switching method in the above embodiments. For example... Figure 8 As shown, the elevator operating mode switching device includes a current operating mode determination module 801, a target monitoring data acquisition module 802, a mode switching condition determination module 803, a target operating mode determination module 804, and a target operating mode switching module 805. Detailed descriptions of each functional module are as follows:

[0152] The current working mode determination module 801 is used to determine the current working mode of the elevator based on the additional energy consumption status of the elevator auxiliary device.

[0153] The target monitoring data acquisition module 802 is used to acquire target monitoring data corresponding to the current working mode.

[0154] The mode switching condition determination module 803 is used to obtain the mode switching conditions of at least one working mode to be switched corresponding to the current working mode;

[0155] The target working mode determination module 804 is used to determine the working mode to be switched corresponding to any working mode to be switched as the target working mode if the target monitoring data meets the mode switching conditions corresponding to any working mode to be switched.

[0156] The target working mode switching module 805 is used to control the elevator to switch to the target working mode and adjust the working status of the elevator auxiliary devices.

[0157] In one embodiment, the current operating mode determination module 801 includes:

[0158] An additional energy consumption status acquisition submodule is included to acquire camera status, lighting status, advertising status, and floor display status.

[0159] The first current working mode determination submodule is used to determine the elevator's current working mode as active mode if the camera status is normal, the lighting status is normal, the advertising status is normal, and the floor display status is normal.

[0160] The second current working mode determination submodule is used to determine the elevator's current working mode as preheating mode if the camera is in normal state, the lighting is off, the advertisement is dimmed, and the floor display is off.

[0161] The third current working mode determination submodule is used to determine the elevator's current working mode as energy-saving mode if the camera is in sleep mode, the lighting is off, the advertisement is dimmed, and the floor display is off.

[0162] In one embodiment, the target monitoring data acquisition module 802 includes:

[0163] The first target monitoring data acquisition submodule is used to collect camera monitoring data and / or elevator control monitoring data corresponding to the activity mode.

[0164] In one embodiment, the target operating mode determination module 804 includes:

[0165] The first camera monitoring result determination submodule determines the camera monitoring result based on the camera monitoring data and the first camera switching conditions corresponding to the energy-saving mode.

[0166] The first elevator control monitoring result determination submodule determines the elevator control monitoring result based on the elevator control monitoring data and the first elevator control switching conditions corresponding to the energy-saving mode;

[0167] The first target working mode determination submodule is used to determine the energy-saving mode as the target working mode if both the camera monitoring result and the elevator control monitoring result are both monitoring passed and the mode switching conditions corresponding to the energy-saving mode are met.

[0168] The camera monitoring data includes the status of the first elevator car and the status of the first elevator door; the elevator control monitoring data includes the status of the second elevator car, the status of the second elevator door, and the elevator activity status.

[0169] In one embodiment, the first camera monitoring result determination submodule includes:

[0170] The first camera monitoring result acquisition unit is used to acquire the monitoring results of the cameras that have been monitored if the first car is unoccupied and the first elevator door is closed.

[0171] The second camera monitoring result acquisition unit is used to acquire the camera monitoring results of the failed monitoring if the first car is occupied or the first elevator door is open.

[0172] In one embodiment, the first elevator control monitoring result determination submodule includes:

[0173] The first elevator control monitoring result determination unit is used to obtain the elevator control monitoring result that has been monitored if the second car status is that the car is unoccupied, the second elevator door status is that it is closed, and the elevator activity status is that it is stationary.

[0174] The second elevator control monitoring result determination unit is used to obtain the elevator control monitoring result if the second car status is "occupied", the second elevator door status is "open", or the elevator activity status is "active".

[0175] In another embodiment, the target monitoring data acquisition module 802 further includes:

[0176] The second target monitoring data acquisition submodule is used to acquire camera monitoring data and / or elevator control monitoring data corresponding to the preheating mode.

[0177] In another embodiment, the target operating mode determination module 804 further includes:

[0178] The second camera monitoring result determination submodule determines the camera monitoring result based on the camera monitoring data and the second camera switching conditions corresponding to the energy-saving mode.

[0179] The second elevator control monitoring result determination submodule determines the elevator control monitoring result based on the elevator control monitoring data and the second elevator control switching conditions corresponding to the energy-saving mode;

[0180] The second target working mode determination submodule is used to determine the energy-saving mode as the target working mode if both the camera monitoring result and the elevator control monitoring result are both passed and the mode switching conditions corresponding to the energy-saving mode are met.

[0181] The camera monitoring data includes the status of the third car; the elevator control monitoring data includes the elevator activity status, the status of the fourth car, and the status of the fourth elevator door.

[0182] In one embodiment, the second camera monitoring result determination submodule includes:

[0183] The third camera monitoring result acquisition unit is used to acquire the monitoring results of the cameras that have passed through the monitoring if the third car is in an unoccupied state.

[0184] The fourth camera monitoring result acquisition unit is used to acquire the monitoring results of cameras that failed to pass monitoring if the third car status is that there are people in the car.

[0185] In one embodiment, the second elevator control monitoring result determination submodule includes:

[0186] The third elevator control monitoring result determination unit is used to obtain the elevator control monitoring result if the elevator activity status is stationary, the fourth car status is unoccupied, and the fourth elevator door status is closed.

[0187] The fourth elevator control monitoring result determination unit is used to obtain the elevator control monitoring result if the elevator activity status is active, or the fourth car status is occupied, or the fourth elevator door status is open.

[0188] In another embodiment, the target monitoring data acquisition module 802 includes:

[0189] The third target monitoring data acquisition submodule is used to collect elevator control monitoring data corresponding to the preheating mode.

[0190] In another embodiment, the target operating mode determination module 804 further includes:

[0191] The third elevator control monitoring result determination submodule determines the elevator control monitoring result based on the elevator control monitoring data and the third elevator control switching conditions corresponding to the activity mode;

[0192] The third target working mode determination submodule is used to determine the active mode as the target working mode if the elevator control monitoring result is that the monitoring is passed and the mode switching conditions corresponding to the active mode are met.

[0193] The elevator control monitoring data includes the elevator's activity status, the status of the fifth elevator car, and the status of the fifth elevator door.

[0194] In another embodiment, the third elevator control monitoring result determination submodule includes:

[0195] The fifth elevator control monitoring result determination unit is used to obtain the elevator control monitoring result if the elevator is stationary and the fifth elevator door is open; or if the fifth car is occupied.

[0196] The sixth elevator control monitoring result determination unit is used to obtain the elevator control monitoring result if the elevator activity status is active, or the fifth car status is unoccupied, or the fifth elevator door status is closed.

[0197] In another embodiment, the target monitoring data acquisition module 802 further includes:

[0198] The fourth target monitoring data acquisition submodule is used to collect elevator control monitoring data corresponding to the energy-saving mode.

[0199] In another embodiment, the target operating mode determination module 804 further includes:

[0200] The fourth elevator control monitoring result determination submodule determines the elevator control monitoring result based on the elevator control monitoring data and the fourth elevator control switching conditions corresponding to the preheating mode;

[0201] The fourth target working mode determination submodule is used to determine the preheating mode as the target working mode if the elevator control monitoring result is that the monitoring is passed and the mode switching conditions corresponding to the preheating mode are met.

[0202] The elevator control monitoring data includes the status of elevator call command acquisition.

[0203] In one embodiment, the fourth ladder control monitoring result determination submodule includes:

[0204] The seventh elevator control monitoring result determination unit is used to obtain the monitoring results of the car if the elevator call command acquisition status is "elevator call command received";

[0205] The eighth elevator control monitoring result determination unit is used to obtain the monitoring result of the car if the elevator call command acquisition status is "no elevator call command received".

[0206] Specific limitations regarding the elevator operating mode switching device can be found in the above description of the elevator operating mode switching method, and will not be repeated here. Each module in the aforementioned elevator operating mode switching device can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in or independent of the processor in a computer device, or stored in the memory of a computer device as software, so that the processor can call and execute the corresponding operations of each module.

[0207] In one embodiment, a computer device is provided, which may be a server, and its internal structure diagram may be as follows: Figure 9 As shown, the computer device includes a processor, memory, network interface, and database connected via a system bus. The processor provides computational and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system, computer programs, and database. The internal memory provides an environment for the operation of the operating system and computer programs in the non-volatile storage media. The database stores data used or generated during the execution of the elevator operating mode switching method. The network interface communicates with external terminals via a network connection. When the computer program is executed by the processor, it implements an elevator operating mode switching method.

[0208] In one embodiment, a computer device is provided, including a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, it implements the elevator operating mode switching method described in the above embodiment, for example... Figure 2 As shown in S201-S205, or Figures 3 to 7 As shown, to avoid repetition, it will not be described again here. Alternatively, when the processor executes the computer program, it implements the functions of each module / unit in this embodiment of the elevator operating mode switching device, for example... Figure 8 The functions of the current working mode determination module 801, target monitoring data acquisition module 802, mode switching condition determination module 803, target working mode determination module 804, and target working mode switching module 805 shown are not described here to avoid repetition.

[0209] In one embodiment, a computer-readable storage medium is provided, on which a computer program is stored. When executed by a processor, the computer program implements the elevator operating mode switching method described in the above embodiment, for example... Figure 2 As shown in S201-S205, or Figures 3 to 7 As shown in the diagram, to avoid repetition, the details will not be repeated here. Alternatively, when the computer program is executed by the processor, it implements the functions of each module / unit in this embodiment of the elevator operating mode switching device, such as the functions of the current operating mode determination module 801, the target monitoring data acquisition module 802, the mode switching condition determination module 803, the target operating mode determination module 804, and the target operating mode switching module 805 shown in diagram 8. To avoid repetition, these details will not be repeated here. The computer-readable storage medium can be non-volatile or volatile.

[0210] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. This computer program can be stored in a non-volatile computer-readable storage medium. When executed, the computer program can include the processes of the embodiments of the above methods. Any references to memory, storage, databases, or other media used in the embodiments provided in this application can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), dual data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), RAMbus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and RAMbus dynamic RAM (RDRAM), etc.

[0211] Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the above-described division of functional units and modules is used as an example. In practical applications, the above functions can be assigned to different functional units and modules as needed, that is, the internal structure of the device can be divided into different functional units or modules to complete all or part of the functions described above.

[0212] The above-described embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention, and should all be included within the protection scope of the present invention.

Claims

1. A method for switching elevator operating modes, characterized in that, include: The current operating mode of the elevator is determined based on the energy consumption status of the elevator's auxiliary devices. The energy consumption status refers to the energy consumption status of the elevator's auxiliary devices, which include a camera, lighting, advertising, and floor display devices. The energy consumption status includes the camera status, lighting status, advertising status, and floor display status. The camera status includes normal and sleep status; the lighting status includes normal and off status; the advertising status includes normal and dimmed status; and the floor display status includes normal and off status. Determining the current operating mode based on the energy consumption status of the elevator's auxiliary devices includes: if the camera status is normal, the lighting status is off, the advertising status is dimmed, and the floor display status is off, then the current operating mode of the elevator is a preheating mode. Collect target monitoring data corresponding to the current working mode; the target monitoring data includes camera monitoring data and / or elevator control monitoring data, the camera monitoring data is the real-time monitoring data of the elevator by the intelligent camera device deployed in the elevator area to be monitored, and the elevator control monitoring data is the real-time monitoring data of the elevator by the elevator control system; Obtain the mode switching conditions for at least one working mode to be switched corresponding to the current working mode; wherein, if the current working mode is an active mode, then the working mode to be switched is an energy-saving mode; if the current working mode is a preheating mode, then the working mode to be switched is both an energy-saving mode and an active mode; if the current working mode is an energy-saving mode, then the working mode to be switched is a preheating mode. If the target monitoring data satisfies the mode switching condition corresponding to any of the working modes to be switched, then the working mode to be switched corresponding to the mode switching condition is determined as the target working mode. If the target monitoring data satisfies the mode switching condition corresponding to any of the proposed switching modes, then the proposed switching mode corresponding to the mode switching condition is determined as the target working mode, including: When the current working mode is the active mode, the camera monitoring result is determined based on the camera monitoring data and the first camera switching condition corresponding to the energy-saving mode; the elevator control monitoring result is determined based on the elevator control monitoring data and the first elevator control switching condition corresponding to the energy-saving mode; if both the camera monitoring result and the elevator control monitoring result are monitoring passed, then the mode switching condition corresponding to the energy-saving mode is met, and the energy-saving mode is determined as the target working mode. When the current operating mode is the preheating mode, the camera monitoring result is determined based on the camera monitoring data and the second camera switching condition corresponding to the energy-saving mode; the elevator control monitoring result is determined based on the elevator control monitoring data and the second elevator control switching condition corresponding to the energy-saving mode; if both the camera monitoring result and the elevator control monitoring result are monitoring passed, then the mode switching condition corresponding to the energy-saving mode is met, and the energy-saving mode is determined as the target operating mode; wherein, determining the camera monitoring result based on the camera monitoring data and the second camera switching condition corresponding to the energy-saving mode includes: if the third car status is... If the elevator car is empty, the monitoring results from the cameras that have passed the monitoring are obtained; if the third car is occupied, the monitoring results from the cameras that have failed the monitoring are obtained; the determination of the elevator control monitoring results based on the elevator control monitoring data and the second elevator control switching conditions corresponding to the energy-saving mode includes: if the elevator is stationary, the fourth car is empty, and the fourth elevator door is closed, the monitoring results from the elevator control monitoring that have passed the monitoring are obtained; if the elevator is active, or the fourth car is occupied, or the fourth elevator door is open, the monitoring results from the elevator control monitoring that have failed the monitoring are obtained; When the current working mode is the preheating mode, the elevator control monitoring result is determined based on the elevator control monitoring data and the third elevator control switching condition corresponding to the activity mode. If the elevator control monitoring result is that the monitoring is passed, then the mode switching condition corresponding to the activity mode is met, and the activity mode is determined as the target working mode. The determination of the elevator control monitoring result based on the elevator control monitoring data and the third elevator control switching condition corresponding to the activity mode includes: if the elevator activity state is stationary and the fifth elevator door is open, then a passed elevator control monitoring result is obtained; or if the fifth car is occupied, then a passed elevator control monitoring result is obtained; if the elevator activity state is active, or the fifth car is unoccupied, or the fifth elevator door is closed, then a failed elevator control monitoring result is obtained. Control the elevator to switch to the target working mode and adjust the working status of the elevator auxiliary device.

2. The elevator operating mode switching method as described in claim 1, characterized in that, Determining the current operating mode of the elevator based on the additional energy consumption status of the elevator auxiliary device includes: The additional energy consumption status of elevator auxiliary devices is obtained, including camera status, lighting status, advertising status, and floor display status. If the camera is in normal condition, the lighting is in normal condition, the advertising is in normal condition, and the floor display is in normal condition, then the elevator's current working mode is active mode. If the camera is in sleep mode, the lighting is off, the advertisement is dimmed, and the floor display is off, then the elevator's current operating mode is energy-saving mode.

3. The elevator operating mode switching method as described in claim 1, characterized in that, The collection of target monitoring data corresponding to the current working mode includes: Collect camera monitoring data and / or elevator control monitoring data corresponding to the activity mode.

4. The elevator operating mode switching method as described in claim 3, characterized in that, The camera monitoring data includes the status of the first elevator car and the status of the first elevator door; the elevator control monitoring data includes the status of the second elevator car, the status of the second elevator door, and the elevator activity status. The step of determining the camera monitoring result based on the camera monitoring data and the first camera switching condition corresponding to the energy-saving mode includes: If the first elevator car is unoccupied and the first elevator door is closed, then the monitoring results from the cameras that have been monitored are obtained. If the first elevator car is occupied or the first elevator door is open, then obtain the monitoring results of the camera that failed the monitoring. The step of determining the elevator control monitoring result based on the elevator control monitoring data and the first elevator control switching condition corresponding to the energy-saving mode includes: If the second car is unoccupied, the second elevator door is closed, and the elevator is stationary, then the elevator control monitoring result that has been monitored is obtained. If the second car status is "occupied", or the second elevator door status is "open", or the elevator activity status is "active", then obtain the elevator control monitoring result indicating that the monitoring has failed.

5. The elevator operating mode switching method as described in claim 1, characterized in that, The collection of target monitoring data corresponding to the current working mode includes: Collect camera monitoring data and / or elevator control monitoring data corresponding to the preheating mode.

6. The elevator operating mode switching method as described in claim 1, characterized in that, The collection of target monitoring data corresponding to the current working mode includes: Collect elevator control monitoring data corresponding to the preheating mode.

7. The elevator operating mode switching method as described in claim 1, characterized in that, The collection of target monitoring data corresponding to the current working mode includes: Collect elevator control monitoring data corresponding to the energy-saving mode; If the target monitoring data satisfies the mode switching condition corresponding to any of the proposed switching modes, then the proposed switching mode corresponding to the mode switching condition is determined as the target working mode, including: Based on the elevator control monitoring data and the fourth elevator control switching conditions corresponding to the preheating mode, the elevator control monitoring result is determined; If the elevator control monitoring result is "monitoring passed", then the mode switching conditions corresponding to the preheating mode are met, and the preheating mode is determined as the target working mode.

8. An elevator operating mode switching device, characterized in that, include: The current operating mode determination module is used to determine the current operating mode of the elevator based on the additional energy consumption status of the elevator auxiliary device. The additional energy consumption status refers to the energy consumption status of elevator auxiliary devices, which include cameras, lighting devices, advertising devices, and floor display devices. The additional energy consumption status includes camera status, lighting status, advertising status, and floor display status. The camera status includes normal status and sleep status; the lighting status includes normal status and off status; the advertising status includes normal status and dimmed status; and the floor display status includes normal status and off status. Determining the elevator's current operating mode based on the additional energy consumption status of the elevator auxiliary devices includes: if the camera status is normal, the lighting status is off, the advertising status is dimmed, and the floor display status is off, then the elevator's current operating mode is a preheating mode. The target monitoring data acquisition module is used to acquire target monitoring data corresponding to the current working mode; the target monitoring data includes camera monitoring data and / or elevator control monitoring data, wherein the camera monitoring data is real-time monitoring data of the elevator by the intelligent camera devices deployed in the elevator area to be monitored, and the elevator control monitoring data is real-time monitoring data of the elevator by the elevator control system. The mode switching condition determination module is used to obtain the mode switching conditions of at least one working mode to be switched to corresponding to the current working mode; wherein, if the current working mode is an active mode, then the working mode to be switched to is an energy-saving mode; if the current working mode is a preheating mode, then the working mode to be switched to is both an energy-saving mode and an active mode; if the current working mode is an energy-saving mode, then the working mode to be switched to is a preheating mode. The target working mode determination module is used to determine the working mode to be switched corresponding to any of the working modes to be switched as the target working mode if the target monitoring data meets the mode switching condition corresponding to any of the working modes to be switched. The target working mode switching module is used to control the elevator to switch to the target working mode and adjust the working status of the elevator auxiliary device; The target working mode determination module includes: when the current working mode is the active mode, determining the camera monitoring result based on the camera monitoring data and the first camera switching condition corresponding to the energy-saving mode; determining the elevator control monitoring result based on the elevator control monitoring data and the first elevator control switching condition corresponding to the energy-saving mode; if both the camera monitoring result and the elevator control monitoring result are monitoring passed, then the mode switching condition corresponding to the energy-saving mode is met, and the energy-saving mode is determined as the target working mode. When the current operating mode is the preheating mode, the camera monitoring result is determined based on the camera monitoring data and the second camera switching condition corresponding to the energy-saving mode; the elevator control monitoring result is determined based on the elevator control monitoring data and the second elevator control switching condition corresponding to the energy-saving mode; if both the camera monitoring result and the elevator control monitoring result are monitoring passed, then the mode switching condition corresponding to the energy-saving mode is met, and the energy-saving mode is determined as the target operating mode; wherein, determining the camera monitoring result based on the camera monitoring data and the second camera switching condition corresponding to the energy-saving mode includes: if the third car status is... If the elevator car is empty, the monitoring results from the cameras that have passed the monitoring are obtained; if the third car is occupied, the monitoring results from the cameras that have failed the monitoring are obtained; the determination of the elevator control monitoring results based on the elevator control monitoring data and the second elevator control switching conditions corresponding to the energy-saving mode includes: if the elevator is stationary, the fourth car is empty, and the fourth elevator door is closed, the monitoring results from the elevator control monitoring that have passed the monitoring are obtained; if the elevator is active, or the fourth car is occupied, or the fourth elevator door is open, the monitoring results from the elevator control monitoring that have failed the monitoring are obtained; When the current working mode is the preheating mode, the elevator control monitoring result is determined based on the elevator control monitoring data and the third elevator control switching condition corresponding to the activity mode. If the elevator control monitoring result is that the monitoring is passed, then the mode switching condition corresponding to the activity mode is met, and the activity mode is determined as the target working mode. The step of determining the elevator control monitoring result based on the elevator control monitoring data and the third elevator control switching condition corresponding to the activity mode includes: if the elevator activity state is stationary and the fifth elevator door is open, then the elevator control monitoring result of passing the monitoring is obtained; or if the fifth car is occupied, then the elevator control monitoring result of passing the monitoring is obtained; if the elevator activity state is active, or the fifth car is unoccupied, or the fifth elevator door is closed, then the elevator control monitoring result of failing the monitoring is obtained.

9. A computer device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the elevator operating mode switching method as described in any one of claims 1 to 7.

10. A computer-readable storage medium storing a computer program, characterized in that, When the computer program is executed by the processor, it implements the elevator operating mode switching method as described in any one of claims 1 to 7.

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