Certain preferred embodiments of the present invention will be described in detail below, by way of example only, with reference to the accompanying drawings, in which:
In
When a single-eye camera configuration or a beam-type sensor configuration is used, one camera and the signal processing part associated with the camera are omitted.
A CMOS element or other light-receiving element is used for both the right camera 11R and the left camera 11L.
The signal processing part 12 comprises characteristic position extracting parts 13, 14 that correspond to the right camera 11R and left camera 11L, respectively; a position calculating part 15 for calculating positional data of the object to be detected on the basis of an image signal according to a characteristic position output from the two characteristic position extracting parts 13, 14; and a vehicle occupant determining part 16. The characteristic position extracting parts 13, 14 function to extract, as positional data, characteristics of the object to be detected (vehicle occupant) from the image signal obtained using the images of the right camera 11R and left camera 11L. Examples of characteristics of the object to be detected include a head part of the vehicle occupant and a body frame of the vehicle occupant. The position calculating part 15 calculates the characteristic position of the object to be detected (vehicle occupant) from the image signal from the right and left cameras 11R, 11L. The vehicle occupant determining part 16 has a vehicle occupant presence determining part 16A, a vehicle occupant head part position determining part 16B, and a vehicle occupant body frame determining part 16C. The presence of the vehicle occupant, the position of the head part of the vehicle occupant, and the body frame of the vehicle occupant are determined in the vehicle occupant determining part 16 by the vehicle occupant presence determining part 16A, the vehicle occupant head part position determining part 16B, and the vehicle occupant body frame determining part 16C, respectively, on the basis of the characteristics signal that is output from the position calculating part 15 and relates to the object to be detected.
The determining signal output from the signal processing part 12 is provided to a main control device (not shown) via an in-vehicle network (CAN) 17. An, e.g., airbag ECU 18 and seat belt ECU 19 are connected to the in-vehicle network 17 as other connected elements.
The abovementioned camera unit shall be described next with reference to
The camera unit 30 comprises the above-described right camera 11R and left camera 11L. In
Six light-generating elements (LEDs) 37, e.g., are provided to the camera unit 30 in addition to the left and right cameras 11R, 11L. The six LEDs 37 are arranged so that there are two LEDs on a front surface for emitting light in the vertical direction, two LEDs on a right side surface for emitting light in the vertical direction, and two LEDs on a right side surface for emitting light in the vertical direction. Ranges 38 indicated by a broken lines in
Descriptions shall next be given of filtering characteristics of the filter 35 disposed on the front surface position of the CMOS element 33 that is the light-receiving element, and of the wavelength region of light emitted from the LEDs 37 that are the light-generating elements.
The filter 35 according to the present embodiment is a band-pass filter. The transmission band 52 of the filter is selected or set to match the frequency range that includes the third wavelength 63. The wavelength region 53 of light generated by the LEDs 37 according to the present embodiment is selected or set to match the frequency range that includes the third wavelength 63.
The wavelength region 53 of light emitted from the LEDs 37 is matched to the frequency range that includes the third wavelength 63, whereby the light from the LEDs 37 is not obscured by sunlight, and light of a higher intensity than sunlight can be detected. The transmission band 52 of the filter 35 is matched to the frequency range that includes the third wavelength 63, whereby light of a wavelength not obscured by sunlight can be transmitted and received by the CMOS element 33.
The frequency range that includes the third wavelength 63 is a wavelength band near 937 nm that corresponds to the H2O absorption spectrum and is a near infrared wavelength band. The wavelength band of light received by the CMOS element 33 is set by the filter 35 to the frequency range 52 that includes the third wavelength 63, and the wavelength band of light output by the six LEDs 37 is set to the frequency range 53 that includes the third wavelength 63, whereby the vehicle occupant detection device 10 can detect a vehicle occupant without being affected by sunlight. The vehicle occupant detection device 10 can obtain an image signal from the CMOS element 33 during daytime without being affected by sunlight, and a uniform image can be obtained. Similarly, during night time, illumination necessary to capture an image can be maintained using the light-emitting action of the LEDs 37, and a uniform image can be obtained.
According the above-described vehicle occupant detection device 10 of the present embodiment, the LEDs 37 are made to generate light in a wavelength band that forms valleys (absorption bands) in the spectrum characteristics 51 of sunlight, and an image is captured. The effects of sunlight on the detection of the light can thereby dramatically be reduced. According to a stereo camera configuration, errors in distance calculations resulting from differences in the way in which reflected sunlight strikes the left and right cameras 11R, 11L can be reduced.
In the above-described embodiment, the filtering characteristics of the filter 35 and the light-generating characteristics of the LEDs 37 were set to a frequency range that includes the third wavelength 63. However, a frequency range can also be selected and set that includes, e.g., the first wavelength 61 or the second wavelength 62.
Obviously, various minor changes and modifications of the present invention are possible in light of the above teaching. It is therefore to be understood that within the scope of the appended claims the invention may be practiced otherwise than as specifically described.
Number | Date | Country | Kind |
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P2006-148887 | May 2006 | JP | national |