Elevator system
By installing floor cameras in the elevator system to detect people with fever and generate a call for a direct elevator to a specific floor, the problem of the spread of infectious viruses through the control panel was solved, and the infectious disease was effectively suppressed and infected people were transported quickly.
Patent Information
- Application Number
- CN202280099093.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-18
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2042-08-18
AI Technical Summary
In existing elevator systems, infectious bacteria or viruses can spread from infected individuals to non-feverish individuals through the control panel touched by an infected person, leading to an expansion of the infection.
The elevator system is equipped with floor cameras to capture temperature distribution images. The control device detects individuals with fever and generates a dedicated call for a specific floor, preventing them from operating the floor and car control panels. A transmitter is used to notify relevant personnel, ensuring that individuals with fever are taken directly to the designated floor.
Effectively suppress the spread of infectious diseases, reduce the frequency of disinfection of operating panels, reduce maintenance costs, ensure that non-feverish people do not ride with feverish people, and quickly transport infected people to medical institutions.
Smart Images

Figure CN119677682B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to an elevator system. BACKGROUND
[0002] Patent Literature 1 discloses an elevator system. In the elevator system, it is detected that a feverish person who is an infected person of an infectious disease and a non-feverish person exist in a landing. In this case, a first car for boarding by the feverish person and a second car for boarding by the non-feverish person are dispatched. Therefore, it is possible to suppress the feverish person and the non-feverish person from boarding in one car.
[0003] PRIOR ART DOCUMENTS
[0004] PATENT LITERATURE
[0005] Patent Literature 1: International Publication No. 2021 / 014572 SUMMARY
[0006] PROBLEMS TO BE SOLVED BY THE INVENTION
[0007] However, in the elevator system described in Patent Literature 1, the detection of the feverish person is performed after the feverish person operates a panel of the landing. Therefore, the bacteria or virus of the infectious disease taken in by the non-feverish person via the panel touched by the infected person, and thus it is possible that the infection of the infectious disease spreads.
[0008] The present disclosure has been achieved in order to solve the above problem. An object of the present disclosure is to provide an elevator system capable of suppressing the spread of the infection of the infectious disease.
[0009] MEANS FOR SOLVING THE PROBLEM
[0010] The elevator system of the present disclosure is provided in a building in which a specific floor among a plurality of floors is set, and has a car, a control device that generates a call for the car, and a landing camera that is provided at a landing of a floor that is not the specific floor among the plurality of floors, captures an image that contains information of a temperature distribution, the control device has a temperature detection section that detects a case where a feverish person whose body temperature is equal to or higher than a body temperature threshold value exists in the landing, based on an image of the landing obtained by the landing camera capturing, and a call generation section that generates a specific call that departs from the landing and is direct to the specific floor, in a case where it is detected that the feverish person exists in the landing.
[0011] EFFECT OF THE INVENTION
[0012] According to the present disclosure, in a case where the feverish person is detected, the specific call to the specific floor is generated without the feverish person operating the panel of the landing. Therefore, it is possible to suppress the spread of the infection of the infectious disease. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1is a diagram showing an outline of a building provided with the elevator system in Embodiment 1.
[0014] Figure 2 is a block diagram of the elevator system in Embodiment 1.
[0015] Figure 3 is a flowchart for explaining the action of the elevator system in Embodiment 1.
[0016] Figure 4 is a hardware configuration diagram of the control panel of the elevator system in Embodiment 1. DETAILED DESCRIPTION
[0017] A mode for carrying out the present disclosure is explained in accordance with the drawings. Also, in each drawing, the same reference numerals are attached to the same or equivalent parts. Repeated explanation of the parts is appropriately simplified or omitted.
[0018] EMBODIMENT
[0019] Figure 1 is a diagram showing an outline of a building provided with the elevator system in Embodiment 1.
[0020] Figure 1 The elevator system 1 is provided in a building 2. A plurality of floors are provided in the building 2. A specific floor 3a is set in the elevator system 1 among the plurality of floors. One or more general floors 3b are floors among the plurality of floors other than the specific floor 3a. For example, in a case where the building 2 is a complex building in which a medical institution 2a is installed, the specific floor 3a is a floor among the plurality of floors in which the medical institution 2a is installed. For example, in a case where the entire building 2 is a hospital, the specific floor 3a is a floor on which a specific treatment room or a specific treatment department such as a fever clinic is located.
[0021] In the elevator system 1, a hoistway 4 penetrates the plurality of floors of the building 2. A machine room 5 is provided directly above the hoistway 4. A plurality of landings 6 are provided in the plurality of floors, respectively. The plurality of landings 6 are opposed to the hoistway 4, respectively. A traction machine 7 is provided in the machine room 5. A main rope 8 is wound around the traction machine 7. A car 9 is suspended inside the hoistway 4 on one side of the main rope 8. A counterweight 10 is suspended inside the hoistway 4 on the other side of the main rope 8. A control panel 11 is provided in the machine room 5 as a control device. The control panel 11 is capable of performing overall control of the elevator system 1.
[0022] The elevator system 1 further has a plurality of landing cameras 12, a plurality of landing annunciators 13, a car camera 14, a car annunciator 15, and a transmitter 16.
[0023] A plurality of landing cameras 12 are respectively provided in the plurality of landings 6. The plurality of landing cameras 12 respectively have the same structure. The landing cameras 12 are provided so as to be able to take an image of a user present in the corresponding landing 6. The landing cameras 12 are, for example, thermographic cameras. The landing cameras 12 take a landing temperature image containing information on the temperature distribution of the inside of the image. The landing cameras 12 can also take a moving image by taking successive landing temperature images.
[0024] A plurality of landing annunciators 13 are respectively provided in the plurality of landings 6. The plurality of landing annunciators 13 respectively have the same structure. The landing annunciators 13 notify a user present in the corresponding landing 6 of information using voice, images, and the like. The landing annunciators 13 are, for example, speakers that emit voice. The landing annunciators 13 can also be displays that display images.
[0025] A car camera 14 is provided so as to be able to take an image of a user present in the inside of the car 9. The car camera 14 is, for example, a thermographic camera. The car camera 14 takes a car temperature image containing information on the temperature distribution of the inside of the image. The car camera 14 can also take a moving image by taking successive car temperature images.
[0026] A car annunciator 15 is provided in the car 9. The car annunciator 15 notifies a user present in the inside of the car 9 of information using voice, images, and the like. The car annunciator 15 is, for example, a speaker that emits voice. The car annunciator 15 can also be a display that displays images.
[0027] The communicator 16 is a device that reports information to a person by at least one of sound, light, characters, and the like. Specifically, the communicator 16 has at least one of a buzzer, a lamp, a display, and the like. The communicator 16 can also be a device to which a non-voltage contact is applied. The communicator 16 is provided in the specific floor 3a. Specifically, the communicator 16 is provided in the medical facility 2a.
[0028] For example, in the case where the building 2 is a complex building that contains the medical facility 2a as a tenant, a feverish person F who is an infected person of an infectious disease sometimes visits the medical facility 2a. The infectious disease is, for example, an infectious disease caused by a virus such as an influenza virus or a novel coronavirus. In this case, in the elevator system 1, a non-feverish person N who is a user can have a risk of infection such as contact infection via an object touched by the feverish person F, droplet infection via droplets emitted by the feverish person F, and the like.
[0029] The control panel 11 detects a case where the heat generator F exists in the landing 6 where the landing camera 12 is provided, based on an image obtained by the landing camera 12. In this case, the control panel 11 generates a specific call for the outpatient response operation, and registers the specific call in the car 9. The control panel 11 causes the landing annunciator 13 and the car annunciator 15 of the landing 6 to notify information corresponding to the outpatient response operation. The control panel 11 causes the car 9 to make a direct call from the landing 6 to the specific floor 3a based on the specific call. The control panel 11 causes the intercom 16 to report information corresponding to the outpatient response operation. In this case, the medical practitioner of the medical facility 2a prepares a system for receiving the heat generator F.
[0030] Next, the use of the elevator system according to Embodiment 1 will be described. Figure 2 The control panel 11 will be described.
[0031] Figure 2 is a block diagram of the elevator system according to Embodiment 1. In addition, in Figure 2 , the floors of the building 2 and the cars 9 are not illustrated.
[0032] As shown in Figure 2 , the control panel 11 has a temperature detection section 20, a call generation section 21, an operation control section 22, a notification section 23, and a communication section 24. The control panel 11 is provided with the specific floor 3a in advance.
[0033] The temperature detection section 20 acquires information of a landing temperature image and information of a car temperature image from the landing camera 12 and the car camera 14, respectively. In addition, hereinafter, the landing temperature image and the car temperature image will be collectively referred to as a temperature image. The temperature detection section 20 detects the users reflected in the temperature image. The temperature detection section 20 detects the body temperatures of the users reflected in the temperature image.
[0034] The temperature detection section 20 determines whether the body temperature of the detected user is lower than a body temperature threshold. The temperature detection section 20 regards the user whose body temperature is lower than the body temperature threshold as a non-heat generator. The temperature detection section 20 regards the user whose body temperature is equal to or higher than the body temperature threshold as a heat generator. The temperature detection section 20 detects in which of the plurality of landings 6 and cars 9 a place where the heat generator or the non-heat generator is located, depending on a setting place of the device that has captured the temperature image used. The temperature detection section 20 detects that the heat generator has boarded the car 9 in a case where the heat generator is detected to exist in the car 9 after the specific call is generated, based on the car temperature image.
[0035] The call generation unit 21 generates a call registered in the car 9, such as a landing call, a car call, and the like. In a case where it is detected by the temperature detection unit 20 that a heat generator is present in any of the plurality of landings 6, the call generation unit 21 generates a specific call. The specific call is a call in which the landing 6 in which the presence of the heat generator is detected is set as a departure floor, and a specific floor 3a is set as a destination floor. The specific call is a call for which exclusive operation is performed without stopping at a floor between the departure floor and the destination floor.
[0036] The operation control unit 22 controls the operation of the car 9. In a case where the specific call is generated, the operation control unit 22 registers the specific call in the car 9. The operation control unit 22 performs exclusive operation of the car 9 in accordance with the specific call. In performing exclusive operation based on the specific call, the operation control unit 22 does not register other calls, such as a landing call, a car call, and the like, in the car 9.
[0037] In a case where it is detected by the temperature detection unit 20 that a non-heat generator is present inside the car 9 when the car 9 is stopped at the departure floor in accordance with the specific call, the operation control unit 22 does not cause the car 9 to depart from the departure floor. In this case, the operation control unit 22 causes the car 9 to continue to be stopped at the departure floor in a state in which the door of the car 9 is open. Then, in a case where the non-heat generator is no longer detected inside the car 9, or a prescribed cancel operation is performed, the operation control unit 22 causes the car 9 to depart from the departure floor toward the destination floor.
[0038] The prescribed cancel operation is arbitrarily set. For example, the cancel operation is a specific button operation performed on an operation panel inside the car 9. For example, the cancel operation is an operation in which a reader inside the car 9 reads specific ID data. For example, the specific ID data is data held by a medical practitioner of the medical institution 2a.
[0039] The notification unit 23 notifies the user of information via at least one of the plurality of landing annunciators 13 and the car annunciator 15.
[0040] In a case where the specific call is generated by the call generation unit 21, the communication unit 24 causes the communicator 16 to report information. For example, the communication unit 24 causes the communicator 16 to report information by operating the opening and closing state of the contact of the communicator 16.
[0041] In addition, it is also possible to make the staff of the medical institution 2a aware of the fact that the heat generator will come to the specific floor 3a by boarding the car 9 by the communicator 16. In this case, the communication unit 24 emits a beep sound as information corresponding to the outpatient handling operation from the communicator 16, thereby communicating the fact to the staff of the medical institution 2a.
[0042] Further, in a case where the communicator 16 is a speaker capable of reporting a voice, the notification section 24 can also cause the communicator 16 to report a voice of the fact that the feverish person will come to the specific floor 3a by riding the car 9 as information corresponding to the outpatient handling operation. In a case where the communicator 16 is a screen capable of displaying information, the notification section 24 can also cause the communicator 16 to display the fact that the feverish person will come to the specific floor 3a by riding the car 9 as information corresponding to the outpatient handling operation.
[0043] Next, using Figure 3 The outpatient handling operation performed by the control panel 11 will be described.
[0044] Figure 3 is a flowchart for explaining the action of the elevator system in Embodiment 1.
[0045] Figure 3 The action of the flowchart shown in FIG. 10 starts at an arbitrary timing.
[0046] In step S01, the temperature detection section 20 detects whether or not there is a feverish person at any of the landings 6.
[0047] When it is detected in step S01 that there is no feverish person at any of the landings 6, the control panel 11 repeats the action of step S01.
[0048] When it is detected in step S01 that there is a feverish person at any of the landings 6, the action of step S02 is performed. In step S02, as the outpatient handling operation, the call generation section 21 generates a specific call in which the landing 6 at which the presence of the feverish person is detected is set as the departure floor and the specific floor 3a is set as the destination floor. The operation control section 22 registers the specific call with the car 9.
[0049] Then, in step S03, the notification section 23 causes the car annunciator 15 to notify the first broadcast. The first broadcast is a broadcast to the user inside the car 9, and is a broadcast of the fact that the outpatient handling operation is performed and the intention to get off at the landing 6 at which the presence of the feverish person is detected is requested. Further, the notification section 23 causes the landing annunciator 13 provided at the landing 6 at which the presence of the feverish person is detected to notify the second broadcast. The second broadcast is a broadcast of the fact that the outpatient handling operation is performed and the feverish person who is the intention to perform the specific call does not need to operate the landing operation panel and the car operation panel. Further, the notification section 24 causes the communicator 16 to report information that the outpatient handling operation is performed.
[0050] Then, in step S04, the operation control section 22 determines whether or not the car 9 has arrived at the landing 6 at which the presence of the feverish person is detected.
[0051] When it is determined in step S04 that the car 9 has not arrived, the action after step S03 is repeated.
[0052] When it is determined in step S04 that the car 9 has arrived, the operation of step S05 is performed. In step S05, the notification section 23 causes the hall annunciator 13 and the car annunciator 15 of the landing 6 to notify the third broadcast. The third broadcast is a broadcast that urges only the feverish person to get on the car 9. In addition, in the third broadcast, a broadcast that requests the intention of the person other than the feverish person to wait for the elevator can also be included.
[0053] Then, in step S06, the operation control section 22 determines whether the inside of the car 9 is only the feverish person. In addition, at this time, the temperature detection section 20 detects that the feverish person has gotten on the car 9. Specifically, in a case where it is detected from the detection result of the temperature detection section 20 that the feverish person exists in the inside of the car 9 and it is detected that the non-feverish person does not exist in the inside of the car 9, the operation control section 22 determines that the inside of the car 9 is only the feverish person. In a case where it is detected that the feverish person does not exist in the inside of the car 9 or it is detected that the non-feverish person exists in the inside of the car 9, the operation control section 22 determines that the inside of the car 9 is not only the feverish person.
[0054] When it is determined in step S06 that the inside of the car 9 is only the feverish person, the operation of step S07 is performed. In step S07, the operation control section 22 causes the car 9 to depart from the departure floor.
[0055] Then, in step S08, the operation control section 22 causes the car 9 to go straight to the destination floor. Specifically, the operation control section 22 does not register in the car 9 a call that sets a floor other than the specific floor 3a as the departure floor or the destination floor. The operation control section 22 causes the car 9 to stop at the destination floor. The operation control section 22 ends the outpatient handling operation.
[0056] Then, the control panel 11 ends the operation of the flowchart.
[0057] When it is determined in step S06 that the inside of the car 9 is not only the feverish person, the operation of step S09 is performed. In step S09, the operation control section 22 determines whether to perform a cancel operation.
[0058] When it is determined in step S09 that the cancel operation is not performed, the operation after step S05 is performed.
[0059] When it is determined in step S09 that the cancel operation is performed, the operation after step S07 is performed.
[0060] According to the above-described embodiment 1, the elevator system 1 has the car 9, the control panel 11 as the control device, and the landing camera 12. The control panel 11 has the temperature detection section 20 and the call generation section 21. The control panel 11 generates the specific call to the specific floor 3a in a case where it is detected that the feverish person is present at the landing 6. Therefore, the feverish person who has the infectious disease does not need to operate the operation panel of the landing 6 and the operation panel of the car 9 by himself or herself in order to go to the specific floor 3a. Therefore, for example, it is possible to suppress the infection of the bacteria or the virus which is the cause of the infectious disease to other users via the operation panel of the landing 6 and the operation panel of the car 9. Further, the car 9 goes directly to the specific floor 3a. Therefore, it is possible to suppress the users from the floors other than the specific floor 3a from getting on the car 9. It is possible to suppress the users other than the feverish person from being infected by the droplet infection by the droplets containing the bacteria or the virus which float in the inside of the car 9. As a result, the elevator system 1 can suppress the spread of the infection of the infectious disease.
[0061] Further, in the building 2 in which the elevator system 1 is installed, it is possible to estimate that the operation panel of the landing 6 and the operation panel of the car 9 will not be touched by the feverish person who has the infectious disease. In this case, it is possible to reduce the frequency of the infection spread prevention countermeasures such as the disinfection work for these operation panels, the antibacterial treatment for these operation panels, and the like. Therefore, it is possible to suppress the maintenance cost of the elevator system 1.
[0062] Further, the elevator system 1 further has the car camera 14. The control panel 11 further has the operation control section 22. The control panel 11 does not make the car 9 depart in a case where it is detected that the non-feverish person is present in the inside of the car 9 after making the car 9 stop at the landing 6 at which the feverish person is detected, on the basis of the temperature image obtained by the photographing by the car camera 14. Therefore, the elevator system 1 can suppress the non-feverish person from riding in the car 9 with the feverish person. As a result, it is possible to suppress the droplet infection of the non-feverish person in the inside of the car 9.
[0063] Further, the control panel 11 does not make the car 9 depart after detecting that the release operation is performed. That is, the control panel 11 makes the car 9 depart in a case where it is detected that the release operation is performed. For example, the release operation is performed by the medical practitioner who accompanies the feverish person at the landing 6. Therefore, the feverish person and the medical practitioner can ride in the car 9 in the inside of the car 9.
[0064] Further, the control panel 11 detects the case where the feverish person has gotten on the car 9. Therefore, the control panel 11 can more reliably detect the case where the feverish person is present in the inside of the car 9 at the departure floor of the specific call.
[0065] Further, the elevator system 1 has a notifier 16. The control panel 11 has a notification section 24. The control panel 11 causes the notifier 16 to report in a case where a specific call is generated. Therefore, a medical practitioner present at the specific floor 3a can accurately anticipate the reception system of the feverish person in advance, guide the route, ensure the reception of the feverish person, and the like.
[0066] Further, the control panel 11 has a notification section 23. The control panel 11 notifies the feverish person in the landing 6 of the feverish person of the situation in a case where a specific call is generated. Therefore, it is possible to more reliably suppress the feverish person from touching the operation panel and the like.
[0067] Further, the control panel 11 notifies the inside of the car 9 of the intention to get off in a case where a specific call is generated. Therefore, the elevator system 1 can cause the user inside the car 9 to quickly get off the car 9. As a result, it is possible to suppress the spread of infection of the infectious disease.
[0068] Further, the specific floor 3a is a floor on which the medical institution 2a is located. Therefore, the elevator system 1 can quickly transport the infectious person of the infectious disease to the medical institution 2a.
[0069] In addition, the elevator system 1 can also be an elevator system without the machine room 5.
[0070] In addition, the temperature detection section 20 and the call generation section 21 can also not be provided to the control panel 11, but can be provided to a group management device as a control device. In this case, the elevator system 1 is provided with a plurality of cars. The group management device can also generate a specific call by the same function as the temperature detection section 20 and the call generation section 21. Then, the group management device can also determine an appropriate car among the plurality of cars and allocate the specific call to the car. At this time, for example, the group management device can determine a car in which the number of users riding is the smallest among the plurality of cars as the appropriate car.
[0071] Next, the use of the elevator system 1 will be described. Figure 4 An example of the hardware constituting the control panel 11 will be described.
[0072] Figure 4 is a hardware configuration diagram of the control panel of the elevator system in Embodiment 1.
[0073] Each function of the control panel 11 can be implemented by a processing circuit. For example, the processing circuit has at least one processor 100a and at least one memory 100b. For example, the processing circuit has at least one dedicated hardware 200.
[0074] In a case where the processing circuitry has at least one processor 100a and at least one memory 100b, each function of the control panel 11 is implemented by software, firmware, or a combination of software and firmware. At least one of the software and the firmware is described as a program. At least one of the software and the firmware is stored in the at least one memory 100b. The at least one processor 100a reads out and executes the program stored in the at least one memory 100b, thereby implementing each function of the control panel 11. The at least one processor 100a is also called a central processing device, a processing device, a computing device, a microprocessor, a microcomputer, a DSP. The at least one memory 100b is, for example, a non-volatile or volatile semiconductor memory such as a RAM, a ROM, a flash memory, an EPROM, an EEPROM, and the like, a magnetic disk, a flexible disk, an optical disk, a high-density disk, a mini disk, a DVD, and the like.
[0075] In a case where the processing circuitry has at least one dedicated hardware 200, the processing circuitry is implemented by, for example, a single circuit, a composite circuit, a programmed processor, a parallel programmed processor, an ASIC, an FPGA, or a combination thereof. For example, each function of the control panel 11 is implemented by the processing circuitry, respectively. For example, each function of the control panel 11 is implemented by the processing circuitry collectively.
[0076] As for each function of the control panel 11, a part can be implemented by the dedicated hardware 200 and the other part can be implemented by software or firmware. For example, as for a function of detecting a body temperature of a user from a temperature image, the function can be implemented by the processing circuitry as the dedicated hardware 200, and as for a function other than the function of detecting a body temperature of a user from a temperature image, the function can be implemented by the at least one processor 100a reading out and executing a program stored in the at least one memory 100b.
[0077] In this way, the processing circuitry implements each function of detecting a body temperature of a user from a temperature image by the hardware 200, software, firmware, or a combination thereof.
[0078] Industrial Applicability
[0079] As described above, the elevator system of the present disclosure can be used for an elevator of a building in which a medical institution is installed.
[0080] Explanation of Reference Signs
[0081] 1: Elevator system; 2: Building; 2a: Medical facility; 3a: Specific floor; 3b: General floor; 4: Shaft; 5: Machine room; 6: Landing; 7: Hoisting machine; 8: Main rope; 9: Car; 10: Counterweight; 11: Control panel; 12: Landing camera; 13: Landing annunciator; 14: Car camera; 15: Car annunciator; 16: Conveyer; 20: Temperature detection section; 21: Call generation section; 22: Operation control section; 23: Announcing section; 24: Conveying section; 100a: Processor; 100b: Memory; 200: Hardware.
Claims
1. An elevator system provided in a building in which a certain floor among a plurality of floors is set, wherein, The elevator system has: a car; a control device that generates a call for the car; a landing camera that is provided at a landing of a floor that is not the specific floor among the plurality of floors, and that captures an image that contains information on a temperature distribution; and a car camera that is provided at the car, and that captures an image that contains information on a temperature distribution, the control device has: a temperature detection section that detects a case where a feverish person whose body temperature is equal to or higher than a body temperature threshold value is present at the landing, based on an image of the landing that is captured by the landing camera; a call generation section that generates a specific call that departs from the landing and that is direct to the specific floor, in a case where the feverish person is detected as being present at the landing; and a travel control section that controls travel of the car, the temperature detection section detects a case where a non-feverish person whose body temperature is lower than the body temperature threshold value is present inside the car, based on an image of the inside of the car that is captured by the car camera, in a case where the non-feverish person is detected as being present inside the car while the car is stopped at the landing, the travel control section does not cause the car to depart.
2. The elevator system according to claim 1, wherein after the non-feverish person is detected as being present inside the car while the car is stopped at the landing, the travel control section does not cause the car to depart until a cancel operation is detected.
3. The elevator system according to claim 1, wherein the temperature detection section detects a case where the feverish person has boarded the car after the specific call is generated, based on the image of the inside of the car that is captured by the car camera.
4. The elevator system according to any one of claims 1 to 3, wherein the elevator system further has a transmitter that is provided at the specific floor, and that reports a case where the feverish person arrives at the specific floor by using the car, the control device further has a transmission section that causes the transmitter to report when the specific call is generated.
5. The elevator system according to claim 1, wherein the control device further has an informing section that informs the feverish person at the landing that the specific call to the specific floor is generated, in a case where the specific call is generated.
6. The elevator system according to claim 5, wherein the informing section informs an intention to get off at the landing toward the inside of the car, in a case where the specific call is generated.
7. The elevator system according to claim 1, wherein the specific floor is a floor on which a medical institution is located. The elevator system has:
8. An elevator system provided in a building in which a certain floor among a plurality of floors is set, wherein a car; a control device that generates a call for the car; a landing camera that is provided at a landing of a floor that is not the specific floor among the plurality of floors, and that captures an image that contains information on a temperature distribution; and a transmitter that is provided at the specific floor, and that reports a case where a feverish person whose body temperature is equal to or higher than a body temperature threshold value arrives at the specific floor by using the car, the control device has: a temperature detection section that detects a presence of the heat generator in the lobby based on an image of the lobby obtained by the lobby camera capturing the lobby; a call generation section that generates a specific call from the lobby that goes directly to the specific floor when the presence of the heat generator in the lobby is detected; a notification section that notifies the heat generator in the lobby of the generation of the specific call to the specific floor when the specific call is generated, the notification section notifies an intention to get off at the lobby toward an inside of the car when the specific call is generated.
9. The elevator system according to claim 8, wherein the control device further has a notification section that notifies the heat generator in the lobby of the generation of the specific call to the specific floor when the specific call is generated.
10. The elevator system according to claim 9, wherein the notification section notifies an intention to get off at the lobby toward an inside of the car when the specific call is generated.
11. The elevator system according to claim 8, wherein the specific floor is a floor on which a medical institution is located.
12. An elevator system provided in a building in which a certain floor among a plurality of floors is set, wherein the elevator system has: a car; a control device that generates a call for the car; and a lobby camera that is provided in a lobby of a floor that is not the specific floor among the plurality of floors, captures an image that includes information of a temperature distribution, the control device has: a temperature detection section that detects a presence of a heat generator whose body temperature is equal to or higher than a body temperature threshold in the lobby based on an image of the lobby obtained by the lobby camera capturing the lobby; a call generation section that generates a specific call from the lobby that goes directly to the specific floor when the presence of the heat generator in the lobby is detected; a notification section that notifies the heat generator in the lobby of the generation of the specific call to the specific floor when the specific call is generated, the notification section notifies an intention to get off at the lobby toward an inside of the car when the specific call is generated.
13. The elevator system according to claim 12, wherein the specific floor is a floor on which a medical institution is located.
Citation Information
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