DISINFECTION SYSTEM FOR A MOTORIZED VEHICLE
20220401600 ยท 2022-12-22
Inventors
Cpc classification
B60R16/0234
PERFORMING OPERATIONS; TRANSPORTING
A61L2202/14
HUMAN NECESSITIES
A61L2/24
HUMAN NECESSITIES
A61L2202/16
HUMAN NECESSITIES
H05B47/115
ELECTRICITY
A61L2202/11
HUMAN NECESSITIES
International classification
Abstract
The invention relates to a disinfection system for a motorized vehicle comprising at least one disinfectant light emitting device mounted in a vehicle cabin and arranged to emit disinfectant light rays towards internal surfaces of the vehicle cabin so as to sanitize them, first sensor means adapted to sense the presence of a human or an animal inside the vehicle cabin and providing a first sensing signal indicating no presence, and a controller operatively connected to the at least one disinfectant light emitting device and the first sensor means, the controller receiving the first sensing signal, wherein the controller is adapted to operate the at least one disinfectant light emitting device in response to the first sensing signal.
Claims
1. A disinfection system for a motorized vehicle comprising: at least one disinfectant light emitting device mounted in a vehicle cabin and arranged to emit disinfectant light rays towards internal surfaces of the vehicle cabin so as to sanitize them, first sensor means adapted to sense the presence of a human or an animal inside the vehicle cabin and provide a first sensing signal indicating no presence, and a controller operatively connected to the at least one disinfectant light emitting device and the first sensor means, the controller receiving the first sensing signal, wherein the controller is adapted to operate the at least one disinfectant light emitting device in response to the first sensing signal.
2. The system of claim 1, wherein the at least one disinfectant light emitting device is configured to emit ultraviolet-C electromagnetic radiation.
3. The system of claim 2, wherein the at least one disinfectant light emitting device is configured to emit radiation within a wavelength range from 100 nm to 280 nm.
4. The system of claim 3, wherein the at least one disinfectant light emitting device is configured to emit radiation having a peak intensity at 265 nm.
5. The system of claim 1, wherein the at least one disinfectant light emitting device comprises at least one light emitting diode (LED).
6. The system of claim 1, wherein the at least one disinfectant light emitting device is fixedly connected to a top wall of the vehicle cabin.
7. The system of claim 1, wherein the first sensor means comprise at least one of a camera, a seat belt sensor adapted to sense if a seat belt is buckled, a seat sensor adapted to sense if a pressure is applied on a seat, and an ignition key sensor adapted to sense if an ignition key is positioned near or inside the vehicle cabin.
8. The system of claim 1, further comprising: second sensor means adapted to sense if the power of the vehicle is on or off and providing a second sensing signal indicating when the power is off and wherein the controller is operatively connected to the second sensor means, wherein the controller receives the second sensing signal and is adapted to operate the at least one disinfectant light emitting device in response to the second sensing signal.
9. The system of claim 1, further comprising warning means operatively connected to the controller and adapted to provide a visible or audible alert when the at least one disinfectant light emitting device is operating.
10. The system of claim 9, wherein the warning means comprise at least one of: blinking hazard or parking lamps of the vehicle and an illuminated parking brake symbol on the dashboard of the vehicle.
11. The system of claim 9, wherein the controller is adapted to stop the operation of the warning means when the sanitizing of the vehicle cabin is completed.
12. The system of claim 1, further comprising a human machine interface remotely connected to the controller and adapted to send an activation signal to the controller, the controller operating the at least one disinfectant light emitting device in response to the activation signal.
13. The system of claim 12, wherein the human machine interface is an ignition key provided with a specific switch, a pressure, or a contact on the specific switch generating the activation signal.
14. The system of claim 12, wherein the controller is adapted to lock the vehicle doors in a closed position in response to the activation signal and to unlock the vehicle doors from the closed position when the sanitizing is completed.
15. A vehicle comprising the disinfection system of claim 1, the vehicle comprising a truck.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0030] With reference to the appended drawings, below follows a more detailed description of embodiments of the invention cited as examples.
[0031] In the drawings:
[0032]
[0033]
[0034]
[0035]
DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS OF THE INVENTION
[0036]
[0037] The system 100 comprises an upper disinfectant light emitting device 106, which is fixedly connected to an upper wall of the cabin 2, and a lower disinfectant emitting device 108, which is fixedly connected to a lower wall of the cabin 2. The disinfectant emitting devices 106, 108 are constructed and arranged to shine light on and sanitize any of a number of vehicle surfaces, vehicle components or objects in the cabin 2 including, but not limited to, the dashboard, the steering wheel, the park brake, seat surfaces, door surfaces, and the pedals.
[0038] In alternative embodiments of the present invention, the system 100 may comprise only one disinfectant light emitting device or further disinfectant light emitting devices in addition to the devices 106, 108. Furthermore, the disinfectant light emitting devices may be positioned in other areas of the cabin 2 and oriented differently to sanitize other parts of the cabin 2.
[0039] In a preferred embodiment of the present invention, the disinfectant light emitting devices 106, 108 are configured to emit an ultraviolet-C (UV-C) electromagnetic radiation. Indeed, a treatment by an UV-C electromagnetic radiation minimizes microbial growth and contamination, and sanitizes vehicle surfaces. In particular, an electromagnetic radiation in the UV-C spectrum (100 nm to 280 nm), and especially within the wavelength range from 250 nm to 280 nm, is very efficient for killing germs and microorganisms, 265 nm being the peak germicidal wavelength. The intense UV-C photon energy attacks the DNA of a living cell, penetrating the cell membrane, breaking the DNA structure of the microorganism and rendering it harmless by robbing it of the ability to reproduce. An UV-C electromagnetic radiation kills bacteria, viruses and the like, even if the organisms have developed immunity to other disinfection methods.
[0040] In a preferred embodiment of the present invention, the disinfectant light emitting devices 106, 108 may comprise one or a plurality of light emitting diodes (LED) that are adapted to emit direct disinfectant light rays on the internal surfaces of the cabin 2. Such LED emitting devices are for example disclosed in the U.S. Pat. Nos. 9,855,363, 9,861,721, 10,029,026, 10,500,295 and 10,814,024.
[0041] The system 100 further comprises a plurality of sensors 102a-102d located inside and/or outside of the truck 1, and adapted to sense specific operational parameters relative to specific parts of the truck 1. In particular, specific sensors 102a are adapted to sense if the doors of the truck are opened or closed. Specific sensors 102b are adapted to sense the pressure applied on the seats of the truck 1. A specific sensor 102c is adapted to sense if the park brake is applied or not. Specific sensors 102d are adapted to sense if the seat belts are buckled or not. A camera 102e is also provided to view the interior of the cabin 2. Other sensor(s) may be adapted to sense if an ignition key is positioned near or inside the vehicle cabin and also to ensure any living being is present inside the cabin (for example thermal sensor).
[0042] Furthermore, a specific sensor 105 is adapted to sense if the power is on.
[0043] The system 100 further comprises a controller 104 that is in communication with the plurality of sensors 102a-102e and 105, the controller 104 receiving sensing signals transmitted by the plurality of sensors 102a-102e and 105. The sensing signals can be analysed by the controller 104 to determine if a human or an animal is present inside the truck 1 and/or if the power is off. In particular, when the driver or a passenger leaves the truck 1, the seat belt at the driver's side, respectively the passenger's side, is not buckled, the pressure on the driver seat, respectively the passenger seat, is null, the park brake is applied and the door at the driver's side, respectively the passenger's side, is closed. Furthermore, the controller 104 may be adapted to analyse the data provided by the camera 102e to detect any motion inside the cabin 2, such a motion indicating the occupancy of the cabin 2 by a human or an animal.
[0044] The system 100 further comprises a human machine interface 103 remotely connected to the controller 104 and adapted to send an activation signal to the controller 104. In response to the activation signal, the controller 104 may operate the disinfectant light emitting devices 106, 108 depending on the other signals received from the sensors 102a-102e and 105, as explained in detail in the below paragraphs.
[0045] In a preferred embodiment of the present invention, the human machine interface 103 may be, for example, one or several buttons of a phone keypad, of a computer keypad or of a key used by the user to open the doors of the vehicle. As illustrated in
[0046] In response to the sensing signals transmitted by the sensors 102a-102e, 105 and the activation signal transmitted by the human machine interface 103, the controller 104 is adapted to control the disinfectant light emitting devices 106, 108 to switch the system 100 between a first mode, called deactivated mode, in which no disinfectant light is emitted by the disinfectant light emitting devices 106, 108, and a second mode, called activated mode, in which the sanitizing treatment of the cabin 2 is carried out.
[0047]
[0048] It is to be understood that the present invention is not limited to the embodiments described above and illustrated in the drawings; rather, the skilled person will recognize that many changes and modifications may be made within the scope of the appended claims.