The present invention relates to an illumination apparatus for vehicle, and relates to an illumination apparatus for vehicle constructed so that visibility of a driver can be improved by detecting an object of traffic environment in the periphery of a vehicle and irradiating the object with light toned according to a color of the object of the traffic environment.
A vehicle conventionally includes an illumination apparatus for vehicle such as a headlight in order to improve visibility of the front of a driver at night etc. As the conventional illumination apparatus for vehicle, there are devices described in, for example, Patent Reference 1 and Patent Reference 2.
A headlamp optical axis direction automatic adjusting apparatus for vehicle described in Patent Reference 1 is an apparatus for maintaining, expanding and changing an irradiation range of a headlamp by a state as to whether an object present on a road of the front of a vehicle is stationary or moving.
Also, an apparatus for changing an irradiation range, an irradiation direction and a color of light in an illumination apparatus for vehicle according to a retroreflection ratio of a road surface is described in Patent Reference 2.
Patent Reference 1: JP-A-2003-72461
Patent Reference 2: JP-A-7-144577
However, visibility of a driver is also influenced by a color of an object of traffic environment of the periphery of a vehicle. For example, in the case of visually recognizing a yellow color, a yellow color of a road sign differs from a yellow color of road indication in a kind of color, so that the visibility of the driver varies. Therefore, light control according to a retroreflection ratio of a road surface and expansion of an irradiation range is insufficient in order to ensure the visibility of the driver.
An object of the invention has been implemented in view of the conventional circumstances described above, and is to provide an illumination apparatus for vehicle capable of improving visibility of a driver with respect to an object of traffic environment of the periphery of a vehicle.
The invention provides an illumination apparatus for vehicle, comprising a vehicle periphery detection section that detects an object of traffic environment in a periphery of its own vehicle, a color estimation section that estimates a color of the object of the traffic environment detected by the vehicle periphery detection section, a light toning section that tones light based on the color of the object estimated by the color estimation section, and an illumination section that irradiates with the light toned by the light toning section.
According to the illumination apparatus for vehicle according to the invention, the color of the object of the traffic environment detected is estimated and the object is irradiated with the light toned based on the color of the object estimated and thereby, the object can be irradiated with the light so as to emphasize the object of the traffic environment, so that visibility of a driver can be improved.
Embodiments of the invention will hereinafter be described with reference to the drawings.
(Configuration of Illumination Apparatus for Vehicle)
The vehicle periphery detection section 2 detects a pedestrian, a bicycle, an oncoming car, a forward running car, a sign, an indication, a traffic signal, etc. which are an object of traffic environment in the periphery of a vehicle. For example, the vehicle periphery detection section 2 is constructed by an image sensor, and acquires an image. Also, the vehicle periphery detection section 2 may be implemented by a radar, a laser, etc. as long as an image similar to the image sensor can be acquired.
The vehicle operation detection section 3 acquires a speed of its own vehicle, a steering angle of a steering and information about inclination (angular speed sensor) of the vehicle. The illumination section 4 irradiates the periphery of its own vehicle and the front of its own vehicle with light. A light source may be implemented by halogen, an LED (Light Emitting Diode), organic EL (Electro Luminescence), etc. and as long as a particular place and only the particular place can be irradiated with toned light, any implementation device may be used. A concrete configuration example of the illumination section 4 will be described below.
The illumination control section 10 performs control so as to be irradiated with light toned based on a shape of the object of the traffic environment, and includes a color estimation section 15, a light toning section 13 and a light irradiation range control section 14.
The color estimation section 15 estimates a color of the object of the traffic environment detected by the vehicle periphery detection section 2. Concretely, the color estimation section 15 estimates the color of each object every position of the object of traffic environment from an image outputted from the vehicle periphery detection section 2. The light toning section 13 changes all or any of illuminance, luminance and color temperature K (kelvin) of light according to the color of the object of the traffic environment estimated by the color estimation section 15. The light irradiation range control section 14 controls an irradiation range of the light toned based on a position to the object of the traffic environment, the inclination, the steering angle and the vehicle speed acquired by the vehicle operation detection section 3.
(Operation Outline of Illumination Apparatus for Vehicle)
According to the illumination apparatus 1 for vehicle of the embodiment thus, when the object 21 of traffic environment is detected, the light is toned according to the color of the object 21, and the object 21 of traffic environment is irradiated with the toned light, so that the object 21 can be irradiated so that the object 21 is most noticeable.
(Concrete Configuration Example and Irradiation Example of Illumination Section)
Also, the right headlamp is similarly divided into (7) a middle and upper region, (8) a right and upper region, (9) a middle and central region, (10) a right and central region, (11) a middle and road surface region and (12) a right and road surface region and is controlled and irradiates the regions of (7) to (12) of the front of the vehicle.
According to the illumination apparatus 1 for vehicle of the embodiment thus, a color of an object of traffic environment detected is estimated and light is toned based on the color of the object estimated and an irradiation range of the light toned is controlled and the object of traffic environment is irradiated with the toned light from its own vehicle, so that visibility of a driver with respect to the object of traffic environment of the periphery of the vehicle can be improved at night etc. and an obstacle can be found early.
The object shape extraction section 11 extracts a shape of an object from an image acquired by an image sensor of the vehicle periphery detection section 2. The object color determination section 12 determines a color of an object based on the shape of the object acquired. Concretely, the object color determination section 12 determines the object color based on, for example, a table for storing correspondence between a color and the time and date and a place for a pedestrian and correspondence between a color and a shape for a sign according to a kind of the object detected by the object shape extraction section 11. In addition, there is the case where a blue sign (for example, “pedestrianization”) and a red sign (for example, “do not enter”) are present even for the same shape (for example, a circle), and in this case, any color is determined from a pattern of the object.
The light toning section 13 changes all or any of illuminance, luminance and color temperature K (kelvin) of light according to a color of an object of traffic environment. The light irradiation range control section 14 controls an irradiation range of light toned based on a position to an object of traffic environment, inclination, a steering angle and a vehicle speed acquired by a vehicle operation detection section 3.
(Operation Flowchart of Vehicle Illumination Control Section)
The road sign includes a regulatory sign, a warning sign and an indication sign, and the shapes are respectively different. Also, its color is different by a kind of sign. The object color determination section 12 determines that the color of the object with the regulatory sign is red when a shape of the sign is a circle or a downward triangular shape (S303), and determines that the color of the object with the warning sign is yellow when a shape of the sign is a rhombic shape (S304), and determines that the color of s the object with the indication sign is blue when a shape of the sign is a quadrangular shape (S305). Thus, the object color determination section 12 can determine the object color based on, for example, a table for storing correspondence between a color and the time and date and a place for a pedestrian and correspondence between a color and a shape for a sign. Also, the object color determination section 12 may, for example, associate a color with a shape of a vehicle and determine that the color is red when the vehicle is a sports car.
Next, when the object is red, the light toning section 13 and an illumination section 4 irradiate the object with a high-intensity light source having good color rendering properties with color temperature slightly lower than that of light at the time of normal irradiation, that is, light with which the periphery of the object is irradiated and thereby, a red color of the object is vividly visible and visibility of a driver improves (S306). Also, when the object is yellow, the object is irradiated with a high-intensity light source having good color rendering properties with color temperature slightly lower than that of the periphery of the object and thereby, a yellow color of the object is vividly visible and visibility of a driver improves (S307). When the object is blue, the object is irradiated with a high-intensity light source having good color rendering properties with color temperature slightly higher than that of the periphery and thereby, a blue color of the object is vividly visible and visibility of a driver improves (S308). This is because the red color and yellow color of the object color are vividly visible when the object is irradiated with the high-intensity light source having good color rendering properties with color temperature slightly lower than that of the periphery.
Then, the light irradiation range control section 14 controls an irradiation range of light based on an object position of traffic environment, inclination, a steering angle and a vehicle speed of its own vehicle (S309). When a speed of its own vehicle is quick, the irradiation range of light is moved quickly with respect to an object of traffic environment. On the other hand, when the speed of its own vehicle is slow, the irradiation range of light is moved slowly with respect to the object of traffic environment.
According to the illumination apparatus 1 for vehicle of the embodiment thus, a shape of an object is extracted based on the object detected and a color of the object is determined based on the shape of the object extracted, so that the object can be irradiated with light toned according to the color of the object of traffic environment even in the case of being difficult to directly detect the color of the object, for example, at the time of a rainfall at night.
The case where an object of traffic environment is a road traffic sign has been described above as the example, but a pedestrian, a bicycle, a two-wheel vehicle, a vehicle, road indication or a traffic signal are also targeted as the object of traffic environment for the invention. In the case of the pedestrian, the whole pedestrian and a pedestrian partially hiding by a guardrail etc. are targeted. In the case of the bicycle and the two-wheel vehicle, the whole pedestrian driving the bicycle or the two-wheel vehicle, a bicycle partially hiding by a guardrail etc. and a pedestrian driving the two-wheel vehicle are also targeted. In the case of the vehicle, a four-wheel vehicle such as a big car, a wagon, a sports car and a normal passenger car are targeted. In the case of the road indication, a vehicular lane, a passing lane, a crosswalk, etc. are targeted.
In addition, a color of an object can be determined from the time and date and a place. For example, when a color of an object cannot be acquired from an image acquired by the vehicle periphery detection section 2 and a shape of the object, it may be determined that a pedestrian often wears black clothes for winter, and a color of clothes of a pedestrian may be determined based on the fact that a favorite color of clothes varies depending on countries and regions.
The invention has been described in detail with reference to the specific embodiments, but it is apparent to those skilled in the art that various changes or modifications can be made without departing from the spirit and scope of the invention.
The present application is based on Japanese patent application (patent application No. 2007-283824) filed on Oct. 31, 2007, and the contents of which are hereby incorporated by reference.
The invention has an effect capable of improving visibility of a driver with respect to an object of traffic environment of the periphery of a vehicle, and can be used as an illumination apparatus for vehicle.
Number | Date | Country | Kind |
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P2007-283824 | Oct 2007 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2008/002772 | 10/2/2008 | WO | 00 | 4/27/2010 |