Elevator system, elevator system control method and device
By installing infrared detection and processing modules in the elevator system, the air conditioning and fresh air can be intelligently controlled according to the number of people, solving the problems of low comfort and energy efficiency in the elevator and realizing intelligent environmental control and care for special groups.
Patent Information
- Application Number
- CN202310421820.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-19
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2043-04-19
AI Technical Summary
Existing elevator systems are difficult to automatically and conveniently improve user comfort and have low energy efficiency.
By installing infrared detection modules in the elevator system to detect the number of people, the processing module controls the operation mode of the air conditioning module based on the number of people, including temperature adjustment and the opening and closing of the fresh air module, as well as odor and air quality monitoring, thus achieving intelligent environmental control.
It improves the comfort and energy efficiency of users in elevators, reduces energy consumption, ensures that the needs of special groups are met, and provides reminders and purification when air quality is substandard.
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Figure CN116608562B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of computer, in particular to an elevator system, an elevator system control method and device. BACKGROUND
[0002] With the development of society, there are more and more office buildings, and with the development of economy, the height of the building is getting higher and higher, and the user's dependence on the elevator is also getting stronger. Users often use elevators to commute. Users stay in the elevator for a long time.
[0003] Currently, finding a kind of can automatically, conveniently improve the comfort of users in the elevator becomes a research hotspot. SUMMARY
[0004] The present application provides an elevator system, an elevator system control method and device, which can automatically and conveniently improve the comfort of users in the elevator and improve the energy efficiency.
[0005] The present application provides an elevator system, which comprises: an elevator module, an infrared detection module is installed, the infrared detection module is used to detect the number of users entering the elevator car in the elevator module; a processing module is in communication connection with the elevator module, used to receive the number of users sent by the elevator module, and control the operation mode of the air conditioning module based on the number of users; an air conditioning module is installed in the elevator car and is in communication connection with the processing module.
[0006] According to the elevator system provided by the present application, the operation mode at least includes operating temperature; the processing module controls the operation mode of the air conditioning module based on the number of users in the following way: based on the number of users, the adjustment temperature corresponding to the number of users is determined; based on the adjustment temperature, the operating temperature of the air conditioning module is determined.
[0007] According to the elevator system provided by the present application, the processing module controls the operation mode of the air conditioning module based on the adjustment temperature in the following way: in the case that the ambient temperature is higher than the preset temperature, the preset initial refrigeration temperature of the air conditioning module is determined; based on the adjustment temperature and the preset initial refrigeration temperature, the refrigeration operating temperature of the air conditioning module is determined.
[0008] According to the elevator system provided by the present application, the processing module controls the operation mode of the air conditioning module based on the adjustment temperature in the following way: in the case that the ambient temperature is lower than the preset temperature, the preset initial heating temperature of the air conditioning module is determined; based on the adjustment temperature and the preset initial heating temperature, the heating operating temperature of the air conditioning module is determined.
[0009] According to the elevator system provided by the application, the processing module determines the adjustment temperature corresponding to the number of users in the following manner: determining an initial adjustment temperature corresponding to the number of users; determining a target number of users from the number of users, wherein the target number of users is the number of users with preset characteristics; determining a re-adjustment temperature corresponding to the target number of users according to the target number of users; and determining the adjustment temperature based on the initial adjustment temperature and the re-adjustment temperature.
[0010] According to the elevator system provided by the application, the elevator system further comprises a fresh air module installed on the elevator car body and in communication connection with the processing module; and the processing module is further configured to control whether the fresh air module is turned on based on the number of users.
[0011] According to the elevator system provided by the application, the elevator system further comprises an odor sensor installed on the elevator car body and in communication connection with the processing module, configured to collect air odor information in the elevator car body; and the processing module is further configured to receive the air odor information sent by the odor sensor, and control the air conditioner module to issue an alarm reminder if the air odor information is preset odor information.
[0012] According to the elevator system provided by the application, the elevator system further comprises an air quality sensor installed on the elevator car body, configured to monitor air quality in the elevator car body during operation of the elevator module to obtain an air quality detection result; and the processing module is further configured to receive the air quality detection result sent by the air quality sensor, and control the air conditioner module to start a purification mode if the air quality detection result does not meet a quality standard.
[0013] According to the elevator system provided by the application, the processing module is further configured to obtain an operation parameter of the elevator module, determine whether the elevator module operation is abnormal based on the operation parameter, and initiate an alarm reminder if the elevator module operation is abnormal.
[0014] The application further provides an elevator system control method applied to an elevator system, comprising: obtaining a number of users entering an elevator car body in the elevator module based on an infrared detection module in the elevator module; and controlling an operation mode of an air conditioner module based on the number of users.
[0015] The elevator system control method provided by the application comprises at least one operating mode, and the operating mode comprises at least an operating temperature; and the operating mode of the air conditioning module is controlled based on the number of users, specifically comprising: determining an adjusted temperature corresponding to the number of users based on the number of users; and determining the operating temperature of the air conditioning module based on the adjusted temperature.
[0016] The elevator system control method provided by the application comprises at least one operating mode, and the operating mode comprises at least an operating temperature; and the operating mode of the air conditioning module is controlled based on the number of users, specifically comprising: determining an adjusted temperature corresponding to the number of users based on the number of users; and determining the operating temperature of the air conditioning module based on the adjusted temperature.
[0017] The elevator system control method provided by the application comprises at least one operating mode, and the operating mode comprises at least an operating temperature; and the operating mode of the air conditioning module is controlled based on the number of users, specifically comprising: determining an adjusted temperature corresponding to the number of users based on the number of users; and determining the operating temperature of the air conditioning module based on the adjusted temperature.
[0018] The elevator system control method provided by the application comprises at least one operating mode, and the operating mode comprises at least an operating temperature; and the operating mode of the air conditioning module is controlled based on the number of users, specifically comprising: determining an adjusted temperature corresponding to the number of users based on the number of users; and determining the operating temperature of the air conditioning module based on the adjusted temperature.
[0019] The elevator system control method provided by the application further comprises: controlling whether a fresh air module is turned on based on the number of users.
[0020] The elevator system control method provided by the application comprises at least one operating mode, and the operating mode comprises at least an operating temperature; and the operating mode of the air conditioning module is controlled based on the number of users, specifically comprising: determining an adjusted temperature corresponding to the number of users based on the number of users; and determining the operating temperature of the air conditioning module based on the adjusted temperature.
[0021] The elevator system control method provided by the application further comprises: collecting air smell information in the elevator car body based on an odor sensor; and controlling the air conditioning module to issue an alarm reminder in a case where the air smell information is preset smell information.
[0022] The elevator system control method provided by the application further comprises: monitoring the air quality in the elevator compartment based on the air quality sensor during the operation of the elevator module to obtain an air quality detection result; and controlling the air conditioner module to start the purification mode when the air quality detection result does not meet the quality standard.
[0023] The elevator system control method provided by the application further comprises: obtaining an operation parameter of the elevator module; determining whether the operation of the elevator module is abnormal based on the operation parameter; and initiating an alarm prompt when it is determined that the operation of the elevator module is abnormal.
[0024] The application further provides an elevator system control device applied to an elevator system, which comprises: a first module configured to obtain the number of users entering an elevator compartment in the elevator module based on an infrared detection module in the elevator module; and a second module configured to control the operation mode of an air conditioner module based on the number of users.
[0025] The application further provides an electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the elevator system control method according to any one of the above embodiments when executing the program.
[0026] The application further provides a non-transitory computer-readable storage medium having a computer program stored thereon, wherein the computer program is executable on a processor to implement the elevator system control method according to any one of the above embodiments.
[0027] The application further provides a computer program product comprising a computer program, wherein the computer program is executable on a processor to implement the elevator system control method according to any one of the above embodiments.
[0028] The elevator system, the elevator system control method and the device provided by the application, wherein the elevator system comprises an elevator module, a processing module and an air conditioner module. BRIEF DESCRIPTION OF DRAWINGS
[0029] In order to more clearly illustrate the technical solutions in the application or the prior art, the following will briefly introduce the drawings needed in the embodiments or the prior art description. Obviously, the drawings in the following description are some embodiments of the application, and those skilled in the art can also obtain other drawings according to these drawings without creative effort.
[0030] Figure 1 is a structural schematic diagram of an elevator system provided by the present application;
[0031] Figure 2 is one of the flow schematic diagrams of the elevator system control method provided by the present application;
[0032] Figure 3 is a flow schematic diagram of controlling the operation mode of an air conditioning module based on the number of users provided by the present application;
[0033] Figure 4 is another flow schematic diagram of the elevator system control method provided by the present application;
[0034] Figure 5 is a third flow schematic diagram of the elevator system control method provided by the present application;
[0035] Figure 6 is a fourth flow schematic diagram of the elevator system control method provided by the present application;
[0036] Figure 7 is a structural schematic diagram of an elevator system control device provided by the present application;
[0037] Figure 8 is a structural schematic diagram of an electronic device provided by the present application.
[0038] Reference signs:
[0039] 100: elevator system; 110: elevator module;
[0040] 120: infrared detection module; 130: processing module;
[0041] 140: air conditioning module. DETAILED DESCRIPTION
[0042] In order to make the objectives, technical solutions and advantages of the present application clearer, the technical solutions of the present application will be described clearly and completely below in conjunction with the drawings in the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.
[0043] Figure 1 is a structural schematic diagram of an elevator system provided by the present application.
[0044] The structure of the elevator system provided by the present application will be described below in conjunction with Figure 1 The structure of the elevator system provided by the present application will be described below in conjunction with
[0045] In an exemplary embodiment of the present application, the structure of the elevator system provided by the present application will be described below in conjunction withFigure 1 It can be known that the elevator system 100 can include an elevator module 110, an infrared detection module 120, a processing module 130 and an air conditioning module 140, and the association between the modules will be introduced respectively below.
[0046] In an embodiment, the elevator module 110 can be installed with the infrared detection module 120. The infrared detection module 120 can be used to detect the number of users entering the elevator car of the elevator module 110.
[0047] In another embodiment, the infrared detection module 120 can also detect whether there is a person standing at the elevator door before the elevator door of the elevator module 110 is opened. If a person is detected, a message can be sent to the processing module 130 to control the elevator module 110 to automatically open the elevator door.
[0048] In another embodiment, the processing module 130 can be in communication connection with the elevator module 110, for receiving the number of users sent by the elevator module 110, and controlling the operation mode of the air conditioning module 140 based on the number of users. The air conditioning module 140 is installed in the elevator car and is in communication connection with the processing module 130.
[0049] In this embodiment, the processing module 130 will control the operation mode of the air conditioning module 140 according to the number of users, so as to improve the energy utilization rate on the premise of automatically and conveniently improving the use comfort of users in the elevator, and reduce energy consumption on the premise of ensuring comfort when the number of users is small.
[0050] The elevator system provided by the present application includes an elevator module, a processing module and an air conditioning module. The elevator module is installed with an infrared detection module, the infrared detection module is used to detect the number of users entering the elevator car of the elevator module, so that the processing module can control the operation mode of the air conditioning module based on the number of users, thereby automatically and conveniently improving the use comfort of users in the elevator, and improving the energy utilization rate.
[0051] In an exemplary embodiment of the present application, the operation mode can include at least the operation temperature; the processing module 130 can control the operation mode of the air conditioning module based on the number of users in the following manner:
[0052] Based on the number of users, the adjustment temperature corresponding to the number of users is determined;
[0053] Based on the adjustment temperature, the operation temperature of the air conditioning module is determined.
[0054] It should be noted that the number of users of the passenger elevator system 100 will affect the operating temperature of the air conditioning module, so that the operating temperature of the air conditioning module can be controlled according to the actual number of users of the passenger elevator system 100, thereby better improving the user experience and satisfaction.
[0055] The process of determining the operating temperature of the air conditioning module based on the adjustment temperature will be described below in combination with the following embodiments. In an exemplary embodiment of the present application, the processing module 130 can determine the operating temperature of the air conditioning module based on the adjustment temperature in the following manner:
[0056] In the case where the ambient temperature is higher than the preset temperature, a preset initial cooling temperature of the air conditioning module is determined;
[0057] Based on the adjustment temperature and the preset initial cooling temperature, the cooling operation mode of the air conditioning module is controlled.
[0058] In an embodiment, the preset temperature can be adjusted according to actual conditions, for example, it can be 26 degrees, which is not limited in this embodiment. In the application process, when it is monitored that the ambient temperature in the elevator car body is higher than the preset temperature, it indicates that the ambient temperature is high, and the cooling mode needs to be started. In this scenario, a preset initial cooling temperature can be determined. Further, based on the preset initial cooling temperature and the adjustment temperature, the cooling operating temperature of the air conditioning module is determined.
[0059] It can be understood that when the number of users is small, the heat generated by the users is small, and at this time, the cooling temperature does not need to be adjusted to meet the needs of the users. When the number of users is large, the heat generated by the users is large, and at this time, the cooling temperature needs to be adjusted to meet the needs of the users. In the application process, the adjustment temperature corresponding to the number of users can be determined based on the number of users, and the cooling operating temperature of the air conditioning module is controlled based on the adjustment temperature and the preset initial cooling temperature.
[0060] In an embodiment, when the number of users is less than the preset number of users, the preset temperature (corresponding to the adjustment temperature, for example, 3 degrees) can be increased based on the preset initial cooling temperature, so that the energy consumption can be saved on the premise of meeting the needs of the users.
[0061] In yet another embodiment, when the number of users is greater than the preset number of users, the preset temperature (corresponding to the adjustment temperature) can be reduced based on the preset initial cooling temperature, so that the needs of the users can be effectively met.
[0062] In an exemplary embodiment of the present application, the processing module 130 can determine the operating temperature of the air conditioning module based on the adjustment temperature in the following manner:
[0063] In the case where the ambient temperature is lower than the preset temperature, a preset initial heating temperature of the air conditioning module is determined;
[0064] The heating operation temperature of the air conditioning module is determined based on the adjustment temperature and the preset initial heating temperature.
[0065] In an embodiment, in the heating scenario, if the number of users is small, the heat generated is also small. Therefore, when the number of users is less than the preset number of users, the preset temperature can be increased (corresponding to the adjustment temperature, for example, 3 degrees) based on the preset initial heating temperature, so as to effectively meet the user demand.
[0066] In another embodiment, in the heating scenario, if the number of users is large, the heat generated is also large. Therefore, when the number of users is greater than the preset number of users, the preset temperature can be decreased (corresponding to the adjustment temperature) based on the preset initial heating temperature, so as to save energy consumption on the premise of meeting the user demand.
[0067] In another exemplary embodiment of the present application, the processing module 130 can be implemented in the following manner to determine the adjustment temperature corresponding to the number of users based on the number of users:
[0068] An initial adjustment temperature corresponding to the number of users is determined;
[0069] A target number of users is determined from the number of users, wherein the target number of users is the number of users with a preset characteristic;
[0070] A re-adjustment temperature corresponding to the target number of users is determined according to the target number of users;
[0071] The adjustment temperature is determined based on the initial adjustment temperature and the re-adjustment temperature.
[0072] It can be understood that, taking the cooling scenario as an example, the more the number of users, the better the user demand can be met by further decreasing the preset temperature from the initial adjustment temperature. However, when there are special groups of users in the elevator system, for example, users with a preset characteristic, the preset temperature to be decreased will also refer to the number of users with the preset characteristic, i.e., the target number of users. The users with the preset characteristic can be the elderly, children, pregnant women, etc.
[0073] In the application process, the re-adjustment temperature corresponding to the target number of users can be determined according to the target number of users. The re-adjustment temperature corresponding to the target number of users can be determined according to the actual situation, or can be determined in advance. Further, the adjustment temperature is determined based on the initial adjustment temperature and the re-adjustment temperature. For the cooling scenario, if the target number of users (for example, the number of the elderly, children and pregnant women) exceeds a threshold value, the re-adjustment temperature can be set to a negative value, so that the adjustment temperature determined based on the initial adjustment temperature and the re-adjustment temperature can better care for the elderly, children or pregnant women, etc.
[0074] Based on the same reason, for the heating scene, if the target number of users (for example, the number of old people, children and pregnant women) exceeds the number threshold, the re-adjustment temperature can be set to a positive value, so that the adjustment temperature determined based on the initial adjustment temperature and the re-adjustment temperature can better take care of the old people, children or pregnant women, etc.
[0075] In yet another exemplary embodiment of the present application, the elevator system 100 can further include a fresh air module. The fresh air module can be installed in the elevator car body and in communication connection with the processing module 130. The processing module 130 can be further configured to control whether the fresh air module is turned on or not based on the number of users.
[0076] In an example, when it is monitored that the number of users exceeds the number threshold, in order to ensure good user experience, the fresh air module can be turned on. When it is monitored that the number of users is less than the number threshold, in order to save energy consumption, the fresh air module can be turned off.
[0077] In yet another exemplary embodiment of the present application, the elevator system 100 can further include an odor sensor. The odor sensor can be installed in the elevator car body and in communication connection with the processing module 130, and configured to collect air odor information in the elevator car body. The processing module 130 can be further configured to receive the air odor information sent by the odor sensor, and control the air conditioning module 140 to issue an alarm reminder in the case that the air odor information is preset odor information.
[0078] It should be noted that the preset odor information can be adjusted according to actual conditions, which is not specifically limited in the present embodiment. In the following, the preset odor information will be taken as nicotine odor information as an example for illustration.
[0079] In the application process, if the odor sensor finds nicotine odor information in the elevator car body, the air conditioning module 140 can be controlled to turn on the voice function to remind the user not to smoke in the elevator.
[0080] In yet another exemplary embodiment of the present application, the elevator system 100 can further include an air quality sensor. The air quality sensor can be installed in the elevator car body, and configured to monitor the air quality in the elevator car body during the operation of the elevator module 110 to obtain an air quality detection result. The processing module 130 can be further configured to receive the air quality detection result sent by the air quality sensor, and control the air conditioning module 140 to turn on the purification mode in the case that the air quality detection result does not meet the quality standard.
[0081] In an embodiment, the air quality in the elevator car can be monitored during the operation of the elevator module to obtain an air quality detection result; when the air quality detection result does not meet the quality standard, the air conditioning module can be controlled to start the purification mode, so that the experience and comfort of the user in the elevator car can be improved.
[0082] In another example embodiment of the application, the processing module 130 can also be configured to obtain an operation parameter of the elevator module 110, determine whether the elevator module 110 is abnormal based on the operation parameter, and initiate an alarm prompt when the elevator module 110 is abnormal.
[0083] The operation parameter can include acceleration, speed, and the like when the elevator module 110 is running. When the operation parameter is detected to be abnormal, an alarm prompt can be initiated in time, so that the operation safety of the elevator system 100 can be improved.
[0084] In another example embodiment of the application, the elevator system 100 can further include an iris recognition module. The iris recognition module can be installed in the elevator car and used to identify the line-of-sight positioning direction of the user when viewing the floor button before the elevator module 110 starts. The processing module 130 can also be configured to receive the line-of-sight positioning direction sent by the iris recognition module, determine the target floor reached by the user based on the line-of-sight positioning direction, control the air conditioning module 140 to send a prompt message to the user whether the target floor is reached, and control the elevator module 110 to run to the target floor when a positive reply from the user is received.
[0085] In an embodiment, the elevator module 110 can also be installed with an iris recognition module. Based on the iris recognition module, the line-of-sight positioning direction of the user when viewing the floor button can be identified. Further, the target floor reached by the user can be determined based on the line-of-sight positioning direction, and a prompt message of "whether the user wants to go to the target floor" can be sent to the user. When a positive reply from the user is received, the elevator module 110 is automatically controlled to run to the target floor. Through this embodiment, the corresponding floor can be automatically reached without contact.
[0086] As described above, the elevator system provided by the application includes an elevator module, a processing module, and an air conditioning module. The elevator module is installed with an infrared detection module, which is used to detect the number of users entering the elevator car of the elevator module, so that the processing module can control the operation mode of the air conditioning module based on the number of users, thereby automatically and conveniently improving the use comfort of the user in the elevator and improving the energy utilization rate.
[0087] Based on the same concept, the application also provides an elevator system control method.
[0088] Figure 2 is one of the flowcharts of the elevator system control method provided by the present application.
[0089] The elevator system control method will be described below in combination with Figure 2 The process of the elevator system control method will be described.
[0090] In an exemplary embodiment of the present application, the elevator system control method can be applied to the elevator system described in any one of the preceding embodiments. The elevator system control method will be described below in combination with Figure 2 It can be seen that the elevator system control method can include steps 210 and 220, which will be described below respectively.
[0091] In step 210, the number of users entering the elevator car of the elevator module is obtained based on the infrared detection module in the elevator module.
[0092] In step 220, the operation mode of the air conditioning module is controlled based on the number of users.
[0093] In an embodiment, the number of users entering the elevator car of the elevator module can be obtained based on the infrared detection module in the elevator module; further, the operation mode of the air conditioning module is controlled according to the number of users, so as to improve the energy utilization rate under the premise of automatically and conveniently improving the user comfort in the elevator, and reduce energy consumption under the premise of ensuring comfort when the number of users is small.
[0094] In another exemplary embodiment of the present application, the operation mode can include at least the operating temperature; the operation mode of the air conditioning module based on the number of users can be realized in the following manner:
[0095] Based on the number of users, the adjustment temperature corresponding to the number of users is determined.
[0096] Based on the adjustment temperature, the operating temperature of the air conditioning module is determined.
[0097] It should be noted that the number of users of the passenger elevator system will affect the operating temperature of the air conditioning module, so that the operating temperature of the air conditioning module can be controlled according to the actual number of users of the passenger elevator system, so as to better improve the user experience and satisfaction.
[0098] The process of determining the operating temperature of the air conditioning module based on the adjustment temperature will be described below in combination with the following embodiments.
[0099] Figure 3 is a flowchart of determining the operating temperature of the air conditioning module based on the adjustment temperature provided by the present application.
[0100] The process of determining the operating temperature of the air conditioning module based on the adjustment temperature will be described below in combination with the following embodiments. Figure 3The process of determining the operation temperature of the air conditioning module based on the adjustment temperature is described.
[0101] In another exemplary embodiment of the present application, the process of determining the operation temperature of the air conditioning module based on the adjustment temperature can include steps 310 to 340, which are described below.
[0102] In step 310, the preset initial cooling temperature of the air conditioning module is determined when the ambient temperature is higher than the preset temperature.
[0103] In step 320, the cooling operation temperature of the air conditioning module is determined based on the adjustment temperature and the preset initial cooling temperature.
[0104] In an embodiment, the preset temperature can be adjusted according to actual conditions, for example, it can be 26 degrees, which is not specifically limited in this embodiment. In the application process, when it is monitored that the ambient temperature in the elevator car body is higher than the preset temperature, it indicates that the ambient temperature is high, and the cooling mode needs to be started. In this scenario, a preset initial cooling temperature can be determined. Further, the cooling operation temperature of the air conditioning module is determined based on the preset initial cooling temperature and the adjustment temperature.
[0105] It can be understood that when the number of users is small, the heat generated by the users is small, and at this time, the cooling temperature does not need to be adjusted to meet the needs of the users. When the number of users is large, the heat generated by the users is large, and at this time, the cooling temperature needs to be adjusted to meet the needs of the users. In the application process, the adjustment temperature corresponding to the number of users can be determined based on the number of users, and the cooling operation temperature of the air conditioning module is controlled based on the adjustment temperature and the preset initial cooling temperature.
[0106] In an embodiment, when the number of users is less than the preset number of users, the preset temperature (corresponding to the adjustment temperature, for example, 3 degrees) can be increased based on the preset initial cooling temperature, so that the energy consumption can be saved on the premise of meeting the needs of the users.
[0107] In another embodiment, when the number of users is greater than the preset number of users, the preset temperature (corresponding to the adjustment temperature) can be decreased based on the preset initial cooling temperature, so that the needs of the users can be effectively met.
[0108] In step 330, the preset initial heating temperature of the air conditioning module is determined when the ambient temperature is lower than the preset temperature.
[0109] In step 340, the heating operation temperature of the air conditioning module is determined based on the adjustment temperature and the preset initial heating temperature.
[0110] In an embodiment, in the heating scenario, if the number of users is small, the heat generated is also small. Therefore, when the number of users is less than the preset number of users, the preset temperature can be increased (corresponding to the adjustment temperature, for example, 3 degrees) based on the preset initial heating temperature, so as to effectively meet the user demand.
[0111] In another embodiment, in the heating scenario, if the number of users is large, the heat generated is also large. Therefore, when the number of users is greater than the preset number of users, the preset temperature can be decreased (corresponding to the adjustment temperature) based on the preset initial heating temperature, so as to save energy consumption on the premise of meeting the user demand.
[0112] In another exemplary embodiment of the present application, based on the number of users, the adjustment temperature corresponding to the number of users is determined, which can be realized in the following way:
[0113] An initial adjustment temperature corresponding to the number of users is determined;
[0114] A target number of users is determined from the number of users, wherein the target number of users is the number of users with a preset characteristic;
[0115] A re-adjustment temperature corresponding to the target number of users is determined according to the target number of users;
[0116] The adjustment temperature is determined based on the initial adjustment temperature and the re-adjustment temperature.
[0117] It can be understood that, taking the cooling scenario as an example, the more the number of users, the better the user demand can be met by further decreasing the preset temperature from the initial adjustment temperature. However, when there are special groups of users in the elevator system, for example, users with a preset characteristic, the preset temperature to be decreased will also refer to the number of users with the preset characteristic, i.e., the target number of users. The users with the preset characteristic can be the elderly, children, pregnant women, etc.
[0118] In the application process, the re-adjustment temperature corresponding to the target number of users can be determined according to the actual situation, or can be determined in advance. Further, the adjustment temperature is determined based on the initial adjustment temperature and the re-adjustment temperature. For the cooling scenario, if the target number of users (for example, the number of the elderly, children and pregnant women) exceeds a threshold value, the re-adjustment temperature can be set to a negative value, so that the adjustment temperature determined based on the initial adjustment temperature and the re-adjustment temperature can better care for the elderly, children or pregnant women, etc.
[0119] Based on the same reason, for the heating scene, if the target number of users (for example, the number of old people, children and pregnant women) exceeds the number threshold, the re-adjustment temperature can be set to a positive value, so that the adjustment temperature determined based on the initial adjustment temperature and the re-adjustment temperature can better take care of the old people, children or pregnant women, etc.
[0120] Figure 4 is a flowchart of a second embodiment of the elevator system control method provided by the present application.
[0121] The following will be described in combination with Figure 4 The process of another elevator system control method will be described.
[0122] In an exemplary embodiment of the present application, the process of the elevator system control method is as follows: Figure 4 It can be known that the elevator system control method can include steps 410 to 430, wherein steps 410 to 420 are the same as or similar to steps 210 to 220 respectively, and the specific implementation and beneficial effects thereof are described in the foregoing, which will not be described herein again, and the following will introduce step 430.
[0123] In step 430, whether to open the fresh air module is controlled based on the number of users.
[0124] In another exemplary embodiment of the present application, whether to open the fresh air module based on the number of users can be realized in the following way:
[0125] In the case that the number of users is higher than the number threshold, the fresh air module is controlled to be opened;
[0126] In the case that the number of users is lower than the number threshold, the fresh air module is controlled to be closed.
[0127] In an example, when it is monitored that the number of users exceeds the number threshold, in order to ensure the good experience of users, the fresh air module can be opened. When it is monitored that the number of users is less than the number threshold, in order to save energy consumption, the fresh air module can be closed.
[0128] Figure 5 is a flowchart of a third embodiment of the elevator system control method provided by the present application.
[0129] The following will be described in combination with Figure 5 The process of another elevator system control method will be described.
[0130] In an exemplary embodiment of the present application, the process of the elevator system control method is as follows: Figure 5It can be known that the elevator system control method can include steps 510 to 540, wherein steps 510 to 520 are the same as or similar to steps 210 to 220 respectively, and the specific implementation and beneficial effects thereof are described above, and will not be described here again. Steps 530 and 540 will be introduced below.
[0131] In step 530, the air smell information in the elevator car body is collected based on the smell sensor.
[0132] In step 540, the air conditioning module is controlled to issue an alarm reminder in the case that the air smell information is the preset smell information.
[0133] It should be noted that the preset smell information can be adjusted according to actual conditions, and is not specifically limited in the embodiment. The preset smell information will be taken as nicotine smell information as an example for description.
[0134] In the application process, if the smell sensor finds nicotine smell information in the elevator car body, the air conditioning module can be controlled to start the voice function to remind the user not to smoke in the elevator.
[0135] Figure 6 FIG. 4 is a flowchart of a fourth elevator system control method provided by the present application.
[0136] The process of another elevator system control method will be described below. Figure 6 The process of another elevator system control method will be described below.
[0137] In an exemplary embodiment of the present application, the process of another elevator system control method will be described below. Figure 6 It can be known that the elevator system control method can include steps 610 to 640, wherein steps 610 to 620 are the same as or similar to steps 210 to 220 respectively, and the specific implementation and beneficial effects thereof are described above, and will not be described here again. Steps 630 and 640 will be introduced below.
[0138] In step 630, the air quality in the elevator car body is monitored based on the air quality sensor during the operation of the elevator module to obtain an air quality detection result.
[0139] In step 640, the air conditioning module is controlled to start the purification mode in the case that the air quality detection result does not meet the quality standard.
[0140] In an embodiment, the air quality in the elevator car body can be monitored during the operation of the elevator module to obtain an air quality detection result. When the air quality detection result does not meet the quality standard, the air conditioning module can be controlled to start the purification mode, so that the user experience and comfort in the elevator car body can be improved.
[0141] In another exemplary embodiment of the present application, the above-mentioned embodiment is taken as an example, and the elevator system control method can further include the following steps: Figure 2 In another exemplary embodiment of the present application, the above-mentioned embodiment is taken as an example, and the elevator system control method can further include the following steps:
[0142] Obtaining an operation parameter of the elevator module;
[0143] Judging whether the elevator module operation is abnormal based on the operation parameter;
[0144] In the case where it is judged that the elevator module operation is abnormal, initiating an alarm prompt.
[0145] In an embodiment, the operation parameter can include acceleration, speed and the like when the elevator module is running. When it is monitored that the operation parameter is abnormal, the alarm prompt can be initiated in time, so that the running safety of the elevator system can be improved.
[0146] In another exemplary embodiment of the present application, the above-mentioned embodiment is taken as an example, and the elevator system control method can further include the following steps: Figure 2 In another exemplary embodiment of the present application, the above-mentioned embodiment is taken as an example, and the elevator system control method can further include the following steps:
[0147] Before the elevator module is started, the line-of-sight positioning direction of the user when checking the floor button is identified based on the iris recognition module;
[0148] The target floor reached by the user is determined based on the line-of-sight positioning direction, and the air conditioning module is controlled to send a prompt information to the user whether the target floor is reached;
[0149] In the case where the positive reply of the user is received, the elevator module is controlled to run to the target floor.
[0150] In an embodiment, the elevator module can be further provided with an iris recognition module, the line-of-sight positioning direction of the user when checking the floor button can be identified based on the iris recognition module, further, the target floor reached by the user can be determined based on the line-of-sight positioning direction, and the prompt information of “whether the user wants to go to the target floor” is sent to the user, in the case where the positive reply of the user is received, the elevator module is automatically controlled to run to the target floor. Through the embodiment, the corresponding floor can be automatically reached without contact.
[0151] Based on the same concept, the present application further provides an elevator system control device.
[0152] The elevator system control device provided by the present application is described below, and the elevator system control device described below can be mutually corresponding with the elevator system control method described above.
[0153] Figure 7 FIG. 1 is a structural schematic diagram of an elevator system control device provided by the present application.
[0154] In an example embodiment of the present application, the elevator system control device can be applied to an elevator system, wherein the elevator system control device can include a first module 710 and a second module 720, which will be introduced respectively.
[0155] The first module 710 can be configured to obtain the number of users entering the elevator car based on an infrared detection module in the elevator module.
[0156] The second module 720 can be configured to control the operating mode of the air conditioning module based on the number of users.
[0157] In an example embodiment of the present application, the operating mode at least includes an operating temperature.
[0158] The second module 720 can control the operating mode of the air conditioning module based on the number of users in the following manner:
[0159] Determine an adjustment temperature corresponding to the number of users based on the number of users.
[0160] Determine the operating temperature of the air conditioning module based on the adjustment temperature.
[0161] In an example embodiment of the present application, the second module 720 can determine the operating temperature of the air conditioning module based on the adjustment temperature in the following manner:
[0162] Determine a preset initial cooling temperature of the air conditioning module when the ambient temperature is higher than a preset temperature.
[0163] Determine the cooling operating temperature of the air conditioning module based on the adjustment temperature and the preset initial cooling temperature.
[0164] In an example embodiment of the present application, the second module 720 can determine the operating temperature of the air conditioning module based on the adjustment temperature in the following manner:
[0165] Determine a preset initial heating temperature of the air conditioning module when the ambient temperature is lower than a preset temperature.
[0166] Determine the heating operating temperature of the air conditioning module based on the adjustment temperature and the preset initial heating temperature.
[0167] In an example embodiment of the present application, the second module 720 can determine the adjustment temperature corresponding to the number of users based on the number of users in the following manner:
[0168] Determine an initial adjustment temperature corresponding to the number of users.
[0169] Determine a target number of users from the number of users, wherein the target number of users is the number of users with a preset characteristic.
[0170] determining a re-adjusted temperature corresponding to the target number of users according to the target number of users;
[0171] determining the adjustment temperature based on the initial adjustment temperature and the re-adjusted temperature.
[0172] In an example embodiment of the present application, the second module 720 can be further configured to:
[0173] controlling whether to start the fresh air module based on the number of users.
[0174] In an example embodiment of the present application, the second module 720 can be implemented in the following manner to control whether to start the fresh air module based on the number of users:
[0175] starting the fresh air module when the number of users is higher than the threshold number of users;
[0176] stopping the fresh air module when the number of users is lower than the threshold number of users.
[0177] In an example embodiment of the present application, the second module 720 can be further configured to:
[0178] collecting air smell information in the elevator car based on the smell sensor;
[0179] controlling the air conditioning module to issue an alarm reminder when the air smell information is preset smell information.
[0180] In an example embodiment of the present application, the second module 720 can be further configured to:
[0181] monitoring air quality in the elevator car based on the air quality sensor to obtain an air quality detection result during operation of the elevator module;
[0182] controlling the air conditioning module to start the purification mode when the air quality detection result does not meet the quality standard.
[0183] In an example embodiment of the present application, the second module 720 can be further configured to:
[0184] obtaining an operation parameter of the elevator module;
[0185] judging whether the elevator module operation is abnormal based on the operation parameter;
[0186] issuing an alarm reminder when it is judged that the elevator module operation is abnormal.
[0187] In an example embodiment of the present application, the second module 720 can be further configured to:
[0188] Before the elevator module starts, the line-of-sight positioning direction of the user when checking the floor button based on the iris recognition module is recognized;
[0189] The target floor reached by the user is determined based on the line-of-sight positioning direction, and the air conditioning module is controlled to send a prompt information to the user whether the target floor is reached or not;
[0190] In the case of receiving the positive reply of the user, the elevator module is controlled to run to the target floor.
[0191] Figure 8 An example of an entity structure diagram of an electronic device is shown in Figure 8 As shown, the electronic device can include a processor 810, a communications interface 820, a memory 830, and a communications bus 840, wherein the processor 810, the communications interface 820, and the memory 830 complete mutual communication through the communications bus 840. The processor 810 can invoke the logical instructions in the memory 830 to execute an elevator system control method, which is applied to an elevator system, and the method includes: based on an infrared detection module in an elevator module, obtaining the number of users entering an elevator car in the elevator module; and based on the number of users, controlling the operation mode of an air conditioning module.
[0192] In addition, the logical instructions in the memory 830 described above can be implemented in the form of a software function unit and sold or used as an independent product, which can be stored in a computer-readable storage medium. Based on such understanding, the technical solutions of the present application essentially or the part that contributes to the prior art or part of the technical solutions can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a plurality of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the methods described in various embodiments of the present application. The foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, and various program code storage media.
[0193] In another aspect, the present application also provides a computer program product comprising a computer program, which can be stored on a non-transitory computer readable storage medium, and the computer program, when executed by a processor, enables a computer to perform the elevator system control method provided by the above-mentioned methods, which is applied to an elevator system, and the method comprises: obtaining the number of users entering an elevator car in an elevator module based on an infrared detection module in the elevator module; and controlling the operation mode of an air conditioning module based on the number of users.
[0194] In another aspect, the present application also provides a non-transitory computer readable storage medium, which stores a computer program, and the computer program, when executed by a processor, enables a computer to perform the elevator system control method provided by the above-mentioned methods, which is applied to an elevator system, and the method comprises: obtaining the number of users entering an elevator car in an elevator module based on an infrared detection module in the elevator module; and controlling the operation mode of an air conditioning module based on the number of users.
[0195] The device embodiments described above are merely illustrative, wherein the units described as separate components can or can not be physically separated, and the components displayed as units can or can not be physical units, i.e., they can be located in one place or distributed on multiple network units. Part or all of the modules can be selected to achieve the purpose of the embodiment scheme according to actual needs. Those skilled in the art can understand and implement without creative labor.
[0196] From the above description of the embodiments, those skilled in the art can clearly understand that the embodiments can be realized by means of software plus necessary universal hardware platforms, and of course, can also be realized by hardware. Based on such understanding, the above technical solutions, essentially or in other words, the part that contributes to the prior art, can be embodied in the form of a software product, which can be stored in a computer readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes a number of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute the methods described in each embodiment or some parts of the embodiments.
[0197] It can be further understood that, although the operations are described in a particular order in the drawings, they should not be construed as requiring the operations to be performed in the particular order or in a serial order, or requiring all of the operations to be performed to obtain a desired result. In certain circumstances, multitasking and parallel processing can be advantageous.
[0198] It should be pointed out finally that the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit the same; and although the present application has been described in detail with reference to the foregoing embodiments, it should be appreciated by those skilled in the art that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features thereof can be replaced equivalently; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. An elevator system, characterized in that, The elevator system includes: An elevator module is equipped with an infrared detection module, which is used to detect the number of users entering the elevator car within the elevator module. The processing module is communicatively connected to the elevator module and is used to receive the number of users sent by the elevator module and control the operating mode of the air conditioning module based on the number of users. The number of users of the elevator system will affect the operating temperature of the air conditioning module, so the operating temperature of the air conditioning module is controlled according to the actual number of users of the elevator system. An air conditioning module is installed in the elevator car and is communicatively connected to the processing module, wherein the operating mode includes at least the operating temperature; the processing module controls the operating mode of the air conditioning module based on the number of users in the following manner: Based on the number of users, determine the adjustment temperature corresponding to the number of users; Based on the adjusted temperature, the operating temperature of the air conditioning module is determined. The processing module uses the following method to determine the adjusted temperature corresponding to the number of users: Determine the initial set temperature corresponding to the number of users; A target number of users is determined from the number of users, wherein the target number of users is the number of users with preset characteristics; Determine the readjustment temperature corresponding to the target number of users; The adjustment temperature is determined based on the initial adjustment temperature and the readjustment temperature.
2. The elevator system according to claim 1, characterized in that, The processing module determines the operating temperature of the air conditioning module based on the adjusted temperature using the following method: When the ambient temperature is higher than the preset temperature, the preset initial cooling temperature of the air conditioning module is determined; Based on the adjusted temperature and the preset initial cooling temperature, the cooling operation temperature of the air conditioning module is determined.
3. The elevator system according to claim 1, characterized in that, The processing module determines the operating temperature of the air conditioning module based on the adjusted temperature using the following method: When the ambient temperature is lower than the preset temperature, the preset initial heating temperature of the air conditioning module is determined; Based on the adjusted temperature and the preset initial heating temperature, the heating operating temperature of the air conditioning module is determined.
4. The elevator system according to claim 1, characterized in that, The elevator system also includes: A fresh air module is installed in the elevator car and is communicatively connected to the processing module. The processing module is also used for: The activation or deactivation of the fresh air module is controlled based on the number of users.
5. The elevator system according to claim 1, characterized in that, The elevator system also includes: An odor sensor, installed in the elevator car and communicatively connected to the processing module, is used to collect air odor information inside the elevator car. The processing module is also used for: The system receives air odor information sent by the odor sensor and controls the air conditioning module to issue an alarm reminder if the air odor information matches the preset odor information.
6. The elevator system according to claim 1, characterized in that, The elevator system also includes: An air quality sensor is installed in the elevator car to monitor the air quality inside the elevator car during the operation of the elevator module, so as to obtain the air quality detection results. The processing module is also used for: The system receives the air quality detection result sent by the air quality sensor and controls the air conditioning module to activate the purification mode when the air quality detection result does not meet the quality standard.
7. A method for controlling an elevator system, characterized in that, The elevator system control method, applied to any one of claims 1 to 6, comprises: The number of users entering the elevator car is obtained based on the infrared detection module in the elevator module. The operating mode of the air conditioning module is controlled based on the number of users.
8. The elevator system control method according to claim 7, characterized in that, The operating mode includes at least the operating temperature; the operating mode based on the number of users controlling the air conditioning module specifically includes: Based on the number of users, determine the adjustment temperature corresponding to the number of users; Based on the adjusted temperature, the operating temperature of the air conditioning module is determined.
9. The elevator system control method according to claim 8, characterized in that, Determining the operating temperature of the air conditioning module based on the adjusted temperature specifically includes: When the ambient temperature is higher than the preset temperature, the preset initial cooling temperature of the air conditioning module is determined; Based on the adjusted temperature and the preset initial cooling temperature, the cooling operation temperature of the air conditioning module is determined.
10. The elevator system control method according to claim 8, characterized in that, Determining the operating temperature of the air conditioning module based on the adjusted temperature specifically includes: When the ambient temperature is lower than the preset temperature, the preset initial heating temperature of the air conditioning module is determined; Based on the adjusted temperature and the preset initial heating temperature, the heating operating temperature of the air conditioning module is determined.
11. The elevator system control method according to any one of claims 8 to 10, characterized in that, The step of determining the adjustable temperature corresponding to the number of users specifically includes: Determine the initial set temperature corresponding to the number of users; A target number of users is determined from the number of users, wherein the target number of users is the number of users with preset characteristics; Determine the readjustment temperature corresponding to the target number of users; The adjustment temperature is determined based on the initial adjustment temperature and the readjustment temperature.
12. The elevator system control method according to claim 7, characterized in that, The method further includes: During the operation of the elevator module, the air quality inside the elevator car is monitored based on an air quality sensor to obtain air quality detection results; If the air quality test results do not meet the quality standards, the air conditioning module is controlled to activate the purification mode.
13. An elevator system control device, characterized in that, The elevator system control device, applicable to any one of claims 1 to 6, comprises: The first module is used to obtain the number of users entering the elevator car in the elevator module based on the infrared detection module in the elevator module. The second module is used to control the operating mode of the air conditioning module based on the number of users.
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