Interior ventilation system for a motor vehicle
11230162 ยท 2022-01-25
Assignee
Inventors
Cpc classification
G01N33/0063
PHYSICS
B60H1/00821
PERFORMING OPERATIONS; TRANSPORTING
B60H1/26
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60H1/00
PERFORMING OPERATIONS; TRANSPORTING
G01N33/00
PHYSICS
Abstract
An interior ventilation system for a motor vehicle includes an air measurement chamber, into which outdoor air of the motor vehicle can be fed via an outside air supply line and vehicle interior air of the motor vehicle can be fed via an inside air supply line, air quality sensors for measuring a harmful-substance content in air located in the air measurement chamber, and a measurement air control unit, which is designed to selectively supply outdoor air and/or vehicle interior air to the air measurement chamber. A motor vehicle includes such an interior ventilation system.
Claims
1. An interior ventilation system for a motor vehicle, comprising: an air guidance device for a vehicle internal space for passengers that, depending on a setting, takes air for ventilation of the internal space at least predominantly from the surroundings of the motor vehicle or from the internal space, or stops the ventilation of the internal space; an air measurement chamber, separate from the air guidance device, into which ambient air from surroundings of the motor vehicle is deliverable via an external air feed line and internal air of the motor vehicle is deliverable via an internal air feed line, the external air feed line and the internal air feed line being separate from feed lines of the air guidance device; air quality sensors for measuring a harmful substance content in air disposed in a common volume in the air measurement chamber; a measurement air control unit that is adapted to automatically selectively supply all of the air quality sensors in the common volume in the air measurement chamber with ambient air or internal air received from the external air feed line and the internal air feed line, respectively; and a control device that controls the air guidance device depending on measurement results of the air quality sensors and a comparison of a relative quality of the internal air and the ambient air, wherein the measurement air control device only switches a first portion of the air quality sensors that are provided for measuring the ambient air to be active if the air measurement chamber is supplied with ambient air, and only switches a second portion of the air quality sensors that are provided for measuring the internal air to be active if the air measurement chamber if supplied with internal air, and at least one of the air quality sensors in at least one of the first and second portions of the air quality sensors is only in the at least one of the first and second portions of the air quality sensors.
2. The interior ventilation system according to claim 1, wherein the air quality sensors comprise a PM sensor for measuring a fine dust content in the ambient air, a NOx sensor for measuring a NOx content in the ambient air, and a CO sensor for measuring a CO content in the ambient air.
3. The interior ventilation system according to claim 2, wherein the air quality sensors comprise a CO.sub.2 sensor for measuring a CO.sub.2 content in the internal air, and the control device is adapted, on exceeding a limit value for the CO.sub.2 content, to control the air guidance device so that the air for the ventilation of the internal space is at least predominantly taken from the surroundings of the vehicle.
4. The interior ventilation system according to claim 3, wherein the control device is adapted, on exceeding at least one limit value for fine dust content, NOx content or CO content, to control the air guidance device so that the air for the ventilation of the internal space is at least predominantly taken from the interior of the vehicle or an air feed is inhibited if the limit value for the CO.sub.2 content is not exceeded or a screen detector signals a fogged windshield.
5. The interior ventilation system according to claim 1, wherein the air measurement chamber is embodied in a housing to which the air quality sensors are attached, and the housing comprises a single interface for connecting to a vehicle bus.
6. The interior ventilation system according to claim 1, wherein the measurement air control device is adapted for controlling air flow control elements, which selectively deliver air via the external air feed line or the internal air feed line, wherein the air flow control elements comprise a fan, a pump and/or a vacuum generator.
7. The interior ventilation system according to claim 1, wherein the air quality sensors comprise a VOC sensor for measuring a content of volatile hydrocarbons in the internal air, and the control device is adapted, on exceeding a limit value for the VOC content, to control the air guidance device so that the air for the ventilation of the internal space is at least predominantly taken from the surroundings of the vehicle.
8. The interior ventilation system according to claim 3, wherein the air quality sensors comprise a VOC sensor for measuring a content of volatile hydrocarbons in the internal air, and the control device is adapted, on exceeding a limit value for the VOC content, to control the air guidance device so that the air for the ventilation of the internal space is at least predominantly taken from the surroundings of the vehicle.
9. The interior ventilation system according to claim 4, wherein the air quality sensors comprise a VOC sensor for measuring a content of volatile hydrocarbons in the internal air, and the control device is adapted, on exceeding a limit value for the VOC content, to control the air guidance device so that the air for the ventilation of the internal space is at least predominantly taken from the surroundings of the vehicle.
10. A motor vehicle comprising an interior ventilation system according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
DETAILED DESCRIPTION OF THE DRAWINGS
(3) An air quality sensor module 1 is represented schematically in
(4) Ambient air of a motor vehicle 17 in which the air quality sensor module 1 is mounted can be introduced into the air measurement chamber 3 via the external air feed line 9. Interior air of the motor vehicle 17 can be introduced into the air measurement chamber 3 via the internal air feed line 10. The air measurement chamber 3 thus bounds a related spatial volume, within which every point is accessible to both the ambient air introduced via the external air feed line 9 and to the internal air introduced via the internal air feed line 10, as can be seen from
(5) Moreover, a measurement air control unit 11 is provided that can include electrical circuits and software. The measurement air control unit 11 is adapted to control air flow control elements 12, 13 that are shown simplified in the form of valves. These elements 12, 13 should however generally include means that are adapted to pass the air flows through the external air feed line 9 and the internal air feed line 10 and/or to inhibit the air flows. Thus, the air flow control elements 12, 13 can, for example, be pumps, fans, valves, flaps, vacuum devices and pressure devices. The function of the air flow control elements 12, 13 is such that the same transport ambient (outside) air into the air measurement chamber 3 or fill the air measurement chamber 3 with ambient air if harmful substances are measured in the ambient air and transport internal air into the air measurement chamber 3 or fill the air measurement chamber 3 with internal air if harmful substances are measured in the internal air. The air that was previously present in the air measurement chamber 3 can either be discharged via an optional outlet or discharged or forced out via the respective feed line 9, 10 that is not used to introduce air. The changeover between measuring ambient air and measuring internal air is actuated by the measurement air control unit and can be carried out alternately or selected by the measurement air control unit 11.
(6) The air quality sensors 4 through 8 are preferably a PM sensor 4 for measuring a fine dust content in the ambient air, a NO.sub.x sensor 5 for measuring a NO.sub.x content in the ambient air, a CO sensor 6 for measuring a CO content in the ambient air, a CO.sub.2 sensor 7 for measuring a CO.sub.2 content in the internal air, and a VOC sensor 8 for measuring a content of volatile hydrocarbons in the internal air. The PM sensor 4 is preferably adapted to measure a fine dust content of the particle size PM2.5, but it can also be adapted for any other particle size. The PM sensor 4 is preferably an optical sensor. The other air quality sensors 5 through 8 are preferably each provided with a measurement chip to which pastes that are matched to the measuring medium are applied. The operation of the individual air quality sensors 4 through 8 is known from the prior art and therefore is not described further.
(7) Furthermore, the air sensor module 1 has a ground connection 14 and a current connection 15, which for example has a potential of +12V or +5V. Further, an interface 16 for connecting the air sensor module 1 to a vehicle bus is provided. The advantage is that by combining the air quality sensors only a single interface 16 is required for connecting all the air quality sensors 4 through 8. This saves on interfaces, cabling and installation costs.
(8)
(9) The air sensor module 1 can be mounted in the end wall 19 or in the surroundings thereof. By means of the interface 16, the air sensor module 1 is electrically connected to a vehicle bus 22 (for example CAN, LIN, PWM), which, as is well known, is a data line with parallel lines, wherein the interface 16 is or can be electrically connected to all or at least several of the parallel lines. For communications by the air sensor module 1 with other control elements via the vehicle bus 1, a unique identifier is assigned to the air sensor module 1 that is transmitted via the vehicle bus 22. The interface 16 can also be embodied as a wireless interface and data can be exchanged by way of electromagnetic waves, for example via Bluetooth, WLAN, NFC, etc.
(10) For the ventilation of the interior of the vehicle 18, an air guidance device 23 is provided that is represented in a highly schematic form. It is the function of the air guidance device 23, depending on the setting, to take air for the ventilation of the internal space of the motor vehicle 17 at least predominantly (preferably essentially fully) from the surroundings of the motor vehicle 17 or the vehicle interior 18 of the motor vehicle 17, or to stop the ventilation of the internal space. The air guidance device 23 is actuated by a control device 24 that can include electrical circuits and software, depending on the measurement results of the air quality sensors 4-8 that it obtains from said sensors directly or via the measurement air control unit 11. The control device 24 can contain the measurement air control unit 11; the measurement air control unit 11 can be embodied in the air sensor module 1 or the measurement air control unit 11 can be provided separately. The control device 24 is likewise connected to the vehicle bus 22.
(11) During the operation of the interior ventilation system, besides the wishes of the passenger, who can manually select an air feed for ventilation of the internal space between ambient air feed and internal air circulation, an automatic mode is provided that controls the air guidance device 23 depending on the measurement results of the air quality sensors so that in the event of selection between ambient air and internal air the air is taken from the location where it is less harmful to the human organism. For the purposes of this air guidance, for example an air recirculation flap 25 is provided within the air guidance device 23. For this purpose, the control device 24 is adapted to control the air guidance device so that on exceeding a predetermined limit value for a limit value relating to the ambient air, in particular of the NO.sub.x content, of the CO content and/or of the fine dust content, the air for the ventilation of the internal space of the motor vehicle is at least predominantly (preferably essentially fully) taken from the vehicle interior 18 of the motor vehicle 17 or the ventilation of the internal space is stopped. Further, the control device 24 is adapted to control the air guidance device so that, on exceeding a predetermined limit value for a limit value relating to the internal air, in particular of the VOC content and/or of the CO.sub.2 content, the air for the ventilation of the internal space of the motor vehicle is at least predominantly (preferably essentially fully) taken from the surroundings of the motor vehicle 17. If predetermined limit values are exceeded both in the ambient air and in the internal air, then the control device 24 performs a weighting regarding which harmful substances are more harmful or absolutely require a certain air supply. If for example a defined limit value for the CO.sub.2 content of the internal air is exceeded, then the air for the ventilation of the internal space of the motor vehicle must be taken from the surroundings of the motor vehicle 17. Likewise, in the event of fogging of the windshield, which for example can be detected by a screen detector, the air for the ventilation of the internal space of the motor vehicle must be taken from the surroundings of the motor vehicle 17.
(12) For the information of the occupants of the vehicle, visual or audible information and/or a warning message can be output that provides information about the determined air quality. For example, exceeding defined air quality limit values can be indicated, and the occupants of the vehicle can be informed about measures that the vehicle is carrying out and/or that the occupants of the vehicle must carry out.
(13) Moreover, the interior ventilation system according to the invention can have an active air purification mechanism that cleans the air by filtering and/or ionization. For this purpose, the air to be fed into the interior of the vehicle is passed through the air purification mechanism.
(14) Whereas the invention has been illustrated and described in detail in the drawings and the preceding description, said illustration and description are to be considered as illustrative or by way of example and not as limiting and are not intended to limit the invention to the disclosed exemplary embodiments. The mere fact that certain features are named in various dependent claims shall not indicate that that a combination of said features could not also be used advantageously.
REFERENCE CHARACTER LIST
(15) 1 air quality sensor module 2 housing 3 air measurement chamber 4 PM sensor (air quality sensor) 5 NO.sub.x sensor (air quality sensor) 6 CO sensor (air quality sensor) 7 CO.sub.2 sensor (air quality sensor) 8 VOC sensor (air quality sensor) 9 external air feed line 10 internal air feed line 11 measurement air control unit 12 air flow control element 13 air flow control element 14 ground connection 15 current connection 16 interface 17 motor vehicle 18 interior of the vehicle 19 end wall 20 separating wall 21 engine compartment 22 vehicle bus 23 air guidance device 24 control device 25 air recirculation flap
(16) The foregoing disclosure has been set forth merely to illustrate the invention and is not intended to be limiting. Since modifications of the disclosed embodiments incorporating the spirit and substance of the invention may occur to persons skilled in the art, the invention should be construed to include everything within the scope of the appended claims and equivalents thereof.