SAFETY SYSTEM TO PREVENT THE ABANDONMENT OF A CHILD IN A MOTOR VEHICLE
20220028238 · 2022-01-27
Inventors
- Giorgio Sadolfo (Roma, IT)
- Davide GUGLIELMO (Roma, IT)
- Gianluca GRANERO (Roma, IT)
- Vincenzo ROSELLI (Roma, IT)
Cpc classification
G08B21/025
PHYSICS
G08B25/005
PHYSICS
International classification
Abstract
A safety system for preventing child abandonment in a motor vehicle is provided. The safety system includes a device installable on a child safety seat, a safety belt, or a seat belt shoulder strap. The device includes a presence sensor configured to detect child safety seat occupancy, and a radio transmitter configured to emit a radio signal within a predefined transmission range and functionally connected to the presence sensor to receive a child safety seat occupancy signal and insert presence information into the radio signal. The safety system includes warning signal receiving devices configured to detect the radio signal within the predefined transmission range and extract presence information from the radio signal, and warning emission means. The presence sensor is a capacitive sensor. Each warning signal receiving device is configured to trigger the warning emission means after initially extracting presence information and subsequently detecting an interruption of the radio signal.
Claims
1. A safety system for preventing child abandonment in a motor vehicle, the safety system comprising: a device installable on a vehicle child safety seat, a seat belt or a seat belt shoulder strap, the device comprising: a presence sensor configured to detect if the vehicle child safety seat is occupied; a radio transmitter: configured to emit a radio signal within a predefined transmission range; functionally connected to the presence sensor to receive from the presence sensor a signal that the vehicle child safety seat is occupied and to insert presence information in said radio signal; and one or more warning signal receiving devices: configured and adapted to detect said radio signal within said predefined transmission range; configured to extract said presence information from said radio signal; and comprising warning emission means; wherein: the presence sensor is a capacitive sensor; each of said one or more warning signal receiving devices is configured to activate said warning emission means after: initially extracting said presence information; and has subsequently detecting an interruption of said radio signal.
2. The safety system according to claim 1, wherein the device is a casing at least partially forming one among a cushion, a mattress, a mat or seat cover, removable from the vehicle child safety seat.
3. The safety system according to claim 1, wherein the presence sensor comprises a capacitive sensor and/or a deformation sensor, the presence information being created when an appropriate detection signal is generated from the capacitive sensor and/or from the deformation sensor, respectively.
4. The safety system according to claim 3, wherein said deformation sensor is obtained by one or more elastically deformable capacitors.
5. The safety system according to claim 4, wherein the presence sensor comprises a first capacitor plate and a second capacitor plate, a soft and/or flexible material being placed between the first capacitor plate and the second capacitor plate, wherein the first and second capacitor plates have a mutual distance equal to d.sub.1>0 when the child safety seat is not occupied, and a distance of d′.sub.1 with 0<d′.sub.1<d.sub.1 when the child safety seat is occupied.
6. The safety system according to claim 5, wherein said second capacitor plate consists of several portions, at least one portion having a normal projection within an area of said first capacitor plate and at least one different portion having a normal projection outside the area of said first capacitor plate.
7. The safety system according to claim 5, further comprising a third capacitor plate arranged frontally with respect to said first capacitor plate, so that, in the absence of a deformation signal, said second capacitor plate is equidistant from said first and third capacitor plates, a soft and/or flexible material being placed between said second and said third capacitor plates.
8. The safety system according to claim 5, wherein said soft and/or flexible material is a sponge-like material.
9. The safety system according to claim 1, wherein said device comprises a hole configured for through passage of a safety element of the child safety seat.
10. The safety system according to claim 9, wherein said one or more warning signal receiving devices are configured and adapted to communicate with a warning management server.
11. The safety system according to claim 10, wherein said one or more warning signal receiving devices are configured and adapted to communicate a respective GPS position to said warning management server.
12. The safety system according to claim 10, wherein said warning management server is configured to send a warning signal to at least a third device in the event that the following two conditions occur: at least one of said one or more warning signal receiving devices has activated said warning emission means; and each of said one or more warning signal receiving devices is outside of said predefined transmission range after a predefined time interval from activation of said warning emission means.
13. The safety system according to claim 10, wherein said warning management server is configured to send a warning signal to at least a third device in the event that the following two conditions occur: the warning management server has received said presence information from one of said one or more warning signal receiving devices; and communication between the warning management server and at least one of said one or more warning signal receiving devices has been cut off within at least one predefined time interval.
14. The safety system according to claim 1, wherein said device is a clip fastenable to the seat belt or to the seat belt shoulder strap.
Description
DETAILED DESCRIPTION OF THE EMBODIMENTS OF THE INVENTION
List of Figures
[0015] The invention will now be described for illustrative but non-restrictive purposes, with particular reference to the drawings of the accompanying figures, wherein:
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024] It is specified here that elements of embodiments may be combined together to provide additional embodiments without restrictions respecting the concepts of the invention, as the person skilled in the art understands without difficulty by that which is described.
[0025] The present description also refers to the prior art for the implementation thereof, with respect to undescribed detailed features, such as elements of minor importance usually used in the prior art in solutions of the same type.
[0026] When an element is introduced it is always intended to mean “at least one” or “one or more”.
[0027] When listing elements or features in this description, it is understood that the invention “comprises” or alternatively “is composed of” such elements.
EMBODIMENTS
[0028] Referring to
[0029] Although
[0030] In the case of a child safety seat 100 with backrest, there will be dedicated straps 110 that descend from above and usually couple to a single safety element 120 blocking the movements of the child's torso 130.
[0031] Referring to
[0032] Although the representation of
[0033] This allows the device according to the invention to be used retrofitted to existing child safety seats, making a device with such a high social impact accessible to all. Moreover, it allows one not to have to change the production process of child safety seats, avoiding excessive investment by companies in the sector, and making the device even more widespread and inexpensive.
[0034] Referring to
[0035] Referring now to
[0036] In effect, the capacitive sensor bases its operation on that of the electric capacitor which describes how the electric charges are arranged on two conductive bodies placed at a certain distance from each other. In this case, when the child approaches (or moves away), even before contact (see
[0037] In addition to the capacitance meter, a deformation sensor may optionally be used in combination. Advantageously, it is still a capacitive sensor (with elastically deformable elements) that is in reality activated by a deformation and therefore in effect is a deformation sensor. This combination is a particularly expedient embodiment as it still uses capacitance for two very different and complementary measurements, greatly increasing the reliability of the overall presence sensor.
[0038] In this case, the arrangement of the detection capacitors, beyond the field of application, contributes to the invention of the system.
[0039] The presence sensor 155 comprises a first capacitor plate 151a and a second capacitor plate 154, between which is placed a soft and/or flexible material 156, wherein the first 151a and the second 154 plate have a mutual distance equal to d.sub.1>0 when the child safety seat 100 is not occupied, while they have a distance of d′.sub.1with 0<d′.sub.1<d.sub.1 when the child safety seat 100 is occupied, or the child 130 is sitting thereon.
[0040] Advantageously, according to the invention, the second capacitor plate 154 consists of several portions, also not connected directly, at least one portion having a normal projection within the area of said first plate 151a and at least one different portion having a normal projection outside of the area of said first plate 151a. With this arrangement, the portions outside the area of the first plate are not significantly concerned by the deformation and may better serve as a capacitive sensor.
[0041] Advantageously, in an embodiment, a third plate 151b is arranged frontally to said first plate 151a, so that, in the absence of a deformation signal, said second plate 154 is equidistant from said first plate 151a and said third plate 151b, a soft and/or flexible material 156 also being placed between said second plate 154 and said third plate 151b.
[0042] Advantageously, the soft and/or flexible material 156 is a sponge-like material.
[0043] The presence sensor 155 will, of course, comprise or be connected to power means, known per se.
[0044]
[0045] The merging of the information coming from the two sensors (deformation and pure capacitive) allows the presence of the child's body to be detected more accurately than in the prior art.
[0046] According to an embodiment of the invention, the sensor 155 may also comprise the first plate 151a and the second plate 154, without the third plate 151b and the foam between the second and the third plates. Optionally, also the second plate 154 may also be absent, because the human body acts as the second plate.
[0047] In general, the presence sensor 155 and the radio transmitter are comprised in a casing that constitutes at least partially a cushion or a mattress or mat or a seat cover that is removable from the vehicle child safety seat 100.
[0048] According to an alternative embodiment of the present invention, and referring to
[0049]
[0050] The presence sensor 155 detects the presence of the child and through a radio transmitter sends this information to the hardware (one or more) 250, 250b, 270, which extract this information and emit a warning when: [0051] They have initially extracted said presence information; and [0052] They have subsequently detected an interruption of said radio signal.
[0053] These two conditions are indicative of a danger of forgetting the child in the car. Different conditions indicative of the danger are also comprised in the present invention.
[0054] All the hardware external to the cushion 150 may be in communication 261, 262, 265 with a central data processing unit 300 containing preferably one or more databases 310, and able to warn third parties 350 of the presence of the child in the vehicle when the parents have left without responding to the direct warning (even one of the parents or guardians, the warning being issued by warning emission means), i.e.: [0055] at least one of said one or more associated warning signal receiving devices 250, 250b, 270 has launched the warning; [0056] each of said one or more associated warning receiving devices 250, 250b, 270 is outside of a predefined transmission range of said presence information after a predefined time interval from said activation of said warning emission means.
[0057] Alternatively, the warning management server 300 is configured to send a warning signal to the third-party device 350 if the following two conditions are met: [0058] The warning management server 300 has received said presence information from one of the one or more associated warning receiving devices 250, 250b, 270; [0059] The communication between the warning management server 300 and at least one of the one or more associated warning receiving devices 250, 250b, 270 has been cut off within a predefined time interval.
[0060] The warning receiving devices 250, 250b, 270 may be configured and used to communicate the respective GPS position to the warning management server 300, for cross-checking or an independent calculation of the distance from the child safety seat. The server 300, on this basis, may autonomously warn third parties 350.
[0061] The warnings may be differentiated to warn of both the unattended presence of the child and of any malfunctioning of the system.
[0062] The warnings may be: a call, a text message, a visual signal, a sound signal, or a combination thereof. It is also possible to view a photo of the child through a camera installed in the vehicle. In general, the warnings will be emitted by warning emission means, such as a buzzer, screen, vibrator, etc.
[0063] Optionally, if the presence sensor detects the child's presence but experiences a lack of connection to a mobile phone, it may emit a sound to warn parents or guardians that their mobile phones are disconnected and that the child is in position. Likewise, it may send a lack-of-connection signal to a server.
Advantages of the Invention
[0064] With the device according to the invention, the use of alarms for the presence of a child in a child safety seat becomes accessible, convenient to use in retrofit and more effective.
[0065] In the case of a deformable capacitive sensor, the double functionality of capacitance and deformation detection through capacitors allows an extension of the normal operations of a capacitive sensor, and a higher reliability (fewer false positives) of the presence sensor and therefore of the device.
[0066] In the foregoing, the preferred embodiments have been described and variants of the present invention have been suggested, but it is intended that the persons skilled in the art will be able to make modifications and changes without departing from the relative scope of protection, as defined by the accompanying claims.