Vehicle-mounted display device
10017110 ยท 2018-07-10
Assignee
Inventors
Cpc classification
B60Q9/00
PERFORMING OPERATIONS; TRANSPORTING
B60K2360/339
PERFORMING OPERATIONS; TRANSPORTING
G08G1/166
PHYSICS
B60K35/60
PERFORMING OPERATIONS; TRANSPORTING
G02B2027/0161
PHYSICS
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
B60K35/285
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60Q1/00
PERFORMING OPERATIONS; TRANSPORTING
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
G09G5/00
PHYSICS
B60Q9/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A vehicle-mounted display device is provided with a first attention calling indicator, and a second attention calling indicator. The first attention calling indicator includes first light emitting units which emit light, and is located in one of front left and right sides of a driver's seat, and guides light from the first light emitting units toward a direction of the driver's seat using a reflection from a windshield. The second attention calling indicator includes second light emitting units which emit light, and is located in the other of the front left and right sides of the driver's seat, and guides the light from the second light emitting units toward the direction of the driver's seat using the reflection from the windshield or a reflection from a door window so as to perform display symmetrically along with the first attention calling indicator.
Claims
1. A vehicle-mounted display device comprising: a first attention calling indicator; and a second attention calling indicator, wherein the first attention calling indicator includes first light emitting units which emit light, wherein the first attention calling indicator is located in one of front left and right sides of a driver's seat, wherein, in response to an object approaching from a side of the driver's seat on which the first attention calling indicator is located, the first attention calling indicator guides light from the first light emitting units toward a direction of the driver's seat using a reflection from a windshield to display reflections of the first attention calling indicator that form virtual images, wherein the second attention calling indicator includes second light emitting units which emit light, wherein the second attention calling indicator is located in the other of the front left and right sides of the driver's seat, wherein in response to an object approaching from a side of the driver's seat on which the second attention calling indicator is located, the second attention calling indicator guides the light from the second light emitting units toward the direction of the driver's seat using a reflection from the windshield and a reflection from a door window to display the reflections of the second attention calling indicator that form virtual images, wherein the virtual images of the second attention calling indicator are approximately linearly and approximately symmetrically displayed with respect to the driver's seat at a time of visual recognition by a driver along with the virtual images of the first attention calling indicator at a time of visual recognition by the driver, wherein the virtual images of the second attention calling indicator are displayed in a predefined sequence that provides an indication of the direction from which the object is approaching, and wherein the second light emitting units include a first light emitter that emits light toward the windshield and a second light emitter that emits light toward the door window.
2. The vehicle-mounted display device according to claim 1, wherein the predefined sequence starts with the second light emitting unit having a reflection, from the door window, that forms a virtual image farthest from the driver's seat and continuing to the second light emitting unit having a reflection, from the windshield, that forms a virtual image closest to the driver's seat.
3. A vehicle-mounted display device comprising: a first attention calling indicator; and a second attention calling indicator, wherein the first attention calling indicator includes first light emitting units which emit light, wherein the first attention calling indicator is located in one of front left and right sides of a driver's seat, wherein, in response to an object approaching from a side of the driver's seat on which the first attention calling indicator is located, the first attention calling indicator guides light from the first light emitting units toward a direction of the driver's seat using a reflection from a windshield to display reflections of the first attention calling indicator that form virtual images, wherein the second attention calling indicator includes second light emitting units which emit light, wherein the second attention calling indicator is located in the other of the front left and right sides of the driver's seat, wherein in response to an object approaching from a side of the driver's seat on which the second attention calling indicator is located, the second attention calling indicator guides the light from the second light emitting units toward the direction of the driver's seat using a reflection from the windshield and a reflection from a door window to display the reflections of the second attention calling indicator that form virtual images, wherein the second light emitting units include a first light emitter that emits light toward the windshield and a second light emitter that emits light toward the door window, and wherein the virtual images of the second attention calling indicator are displayed in a predefined sequence that provides an indication of the direction from which the object is approaching, the predefined sequence starting with the second light emitting unit having a reflection, from the door window, that forms a virtual image farthest from the driver's seat and continuing to the second light emitting unit having a reflection, from the windshield, that forms a virtual image closest to the driver's seat.
4. The vehicle-mounted display device according to claim 3, wherein the predefined sequence starting with the second light emitting unit having a reflection, from the door window, that forms a virtual image farthest from the driver's seat and continuing to the second light emitting unit having a reflection, from the windshield, that forms a virtual image closest to the driver's seat.
5. The vehicle-mounted display device according to claim 3, wherein the second attention calling indicator includes an adjustment member that adjusts a virtual distance from the second light emitter that emits light toward the door window to a reflection surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
DETAILED DESCRIPTION
(11) A suitable embodiment of the present invention will be described below referring to the drawings, but the present invention is not limited to the embodiment that will be described below.
(12) As illustrated in
(13) The image processing unit 20 detects a three-dimensional object S from the data on the image that is captured by the camera 10. For example, the image processing unit 20 compares images that are captured at different times, and thus detects the three-dimensional object S. Furthermore, if possible, the image processing unit 20 stores multiple template images of a vehicle, a bicycle, a pedestrian, and the like, and performs matching, and thus these three-dimensional objects may be detected. The three-dimensional objects may be detected using a different technique.
(14) The obstacle detection unit 30 detects an obstacle O that may be in the way of a host vehicle, from the three-dimensional object S that is detected by the image processing unit 20. When it comes to detecting the obstacle O, the obstacle detection unit 30 determines whether or not the three-dimensional object S is a moving object, whether or not the three-dimensional object S is toward the host vehicle, and so forth. Furthermore, although the three-dimensional object S is not toward the host vehicle, in a case where a dog, a cat, an infant, or the like that suddenly changes the moving direction, is detected as the three-dimensional object S, or in a case where a vehicle that stops for a time before a stop line and then is in a state of waiting for restarting, these situations may also be determined as the obstacle O. Furthermore, the obstacle O may be detected using a different technique or a reference.
(15) The first and second attention calling indicators 41 and 42 are configured from multiple (for example, four) light emitters (light emitting units) 41a to 41d and 42a to 42d, respectively. The first attention calling indicator 41 is provided to one of left and right sides of a driver's seat (to the left side in the case of a right-hand drive vehicle), and guides light from the light emitters 41a to 41d toward a direction of the driver's seat, using a reflection from a windshield W.
(16) The second attention calling indicator 42 is provided to the other of the left and right sides of the driver's seat (to the right side in the case of the right-hand drive vehicle), and guides light from the light emitters 42a to 42d in the direction of the driver's seat, using the reflection from the windshield W and a reflection from a door window D. Thus, the second attention calling indicator 42 is able to perform display which displays symmetrically along with the first attention calling indicator 41 at a time of visual recognition by a driver.
(17) Furthermore, as illustrated in
(18) In more detail, the light emitters 41a to 41d of the first attention calling indicator 41 emits light toward the windshield W. For this reason, from the point of view of the driver, attention calling display by the light emitters 41a to 41d is formed as a virtual image FI.
(19)
(20) In this manner, a problem of asymmetry due to a difference in size between left and right sides of the windshield with respect to the driver's seat is solved by using the reflection from the door window D.
(21) Moreover, the first light emitter 42a is installed at a position at which a specular reflection state is attained at a reflection point Pa, and the second light emitter 42b is installed at a position at which the specular reflection state is attained at a reflection point Pb. That is, in a case where light from the first light emitter 42a is specularly reflected at the reflection point Pa, the first light emitter 42a is installed in such a manner that the light reaches the view point position E for the driver. In a case where light from the second light emitter 42b is specularly reflected at the reflection point Pb, the second light emitter 42b is installed in such a manner that the light reaches the view point position E for the driver.
(22) Furthermore, in terms of vehicle construction, in most cases, there is a difference between a distance a from the first light emitter 42a to the door window D and a distance a from the door window D to the virtual image FI (a virtual image surface FIP). In the same manner, in most cases, there is a difference between a distance b from the second light emitter 42b to the door window D and a distance b from the door window D to the virtual image FI (the virtual image surface FIP). In some cases, the distance a (or b) is increased depending on curvature of the door window, and can be set to the distance a (or the distance b). If the distance a (or the distance b) is not available, the second attention calling indicator 42, when necessary, includes a lens, a Fresnel lens, a magnifying mirror (an adjustment member), and the like that adjusts a light beam display distance, at least in the light emitters 42a and 42b that use the reflection from the door window. Accordingly, this is because the virtual image surface FIP is made consistent by adjusting a virtual distance from the light emitter to a reflection surface and thus can be visually recognized by the driver as is the case when the reflection of the light from the windshield W is used. That is, with the lens, the Fresnel lens, the magnifying lens, the like, the distance a from the first light emitter 42a to the door window D is set to virtually be the distance a and the distance b from the second light emitter 42b to the door window D is set to be virtually the distance b. Thus, virtual image surface FIP is made consistent.
(23)
(24) Moreover, the light emitters 41a to 41d and 42a to 42d of the attention calling indicators 41 and 42, respectively, that are illustrated in
(25)
(26) Next, one example of operation of the vehicle-mounted display device 1 according to the present embodiment is described.
(27)
(28)
(29) In this manner, the vehicle-mounted display device 1 according to the present embodiment includes the first attention calling indicator 41 that guides the light from the multiple light emitters 41a to 41d toward the direction of the driver's seat, using the reflection from the windshield W, and the second attention calling indicator 42 that guides the light from the multiple light emitters 42a to 42d toward the direction of the driver's seat, using the reflection from the windshield W and the reflection from a door window D, and that is able to perform the display which displays symmetrically along with the first attention calling indicator 41. For this reason, although the difference in size between the left and right sides of the windshield with respect to the driver's seat is present, the second attention calling indicator 42 is able to perform the display using the reflection from the door window D, and solves the problem of the asymmetry due to the difference in size between the left and right sides of the windshield. Consequently, in a case where the display implementation that is the same on the left and right sides is performed, for example, it is easy for the driver to recognize that two different vehicles, which are the same, appear to approach, and so forth, and thus an improvement in attention calling can be achieved.
(30) Furthermore, because at least each of the first and second light emitters 42a and 42b, which use the reflection from the door window D, when necessary, includes the lens, the Fresnel lens, the magnifying mirror, and the like that adjust the light beam display distance, the recognition by the driver can be made possible by adjusting the virtual distance from the light emitter to the reflection surface, as is the case when the reflection of the light from the windshield W is used.
(31) The present invention is described in detail or referring to the specific embodiment, but it is apparent to a person of ordinary skill in the art that various changes or modifications can be made without departing from the spirit and scope of the present invention. For example, the vehicle-mounted display device 1 according to the present embodiment forms the virtual image FI, using the light emitters 41a to 41d and 42a to 42d, but without being limited to this, anything else that emits light to the windshield W and the door window D may be usable.
(32) Furthermore, the following configuration may be employed according to the present embodiment.
(33) Furthermore, the example in which the vehicle-mounted display device 1 according to the present embodiment is applied to the right-hand drive vehicle is described, but without being limited to this, the vehicle-mounted display device can be applied to a left-hand drive vehicle.
(34) At this point, characteristics of the vehicle-mounted display device according to the embodiment are briefly summarized and listed as the following [1] and [2]. [1] A vehicle-mounted display device (1) comprising:
(35) a first attention calling indicator (41); and
(36) a second attention calling indicator (42),
(37) wherein the first attention calling indicator (41) includes first light emitting units (41a to 41d) which emit light,
(38) wherein the first attention calling indicator (41) is located in one of front left and right sides of a driver's seat,
(39) wherein the first attention calling indicator (41) guides light from the first light emitting units (41a to 41d) toward a direction of the driver's seat using a reflection from a windshield,
(40) wherein the second attention calling indicator (42) includes second light emitting units (42a to 42d) which emit light,
(41) wherein the second attention calling indicator (42) is located in the other of the front left and right sides of the driver's seat, and
(42) wherein the second attention calling indicator (42) guides the light from the second light emitting units (42a to 42d) toward the direction of the driver's seat using the reflection from the windshield or a reflection from a door window so that it is possible to perform display which displays symmetrically along with the first attention calling indicator (41) at a time of visual recognition by a driver. [2] The vehicle-mounted display device (1) according to [1] described above,
(43) wherein the first light emitting units (41a to 41d) and the second light emitting units (42a to 42d) respectively include multiple light emitters, and
(44) wherein the second attention calling indicator (42) includes an adjustment member which adjusts a virtual distance from the light emitter to a reflection surface, at least in the light emitter which uses the reflection of the door window.
INDUSTRIAL APPLICABILITY
(45) According to the present invention, an effect is accomplished in which the improvement in the attention calling property can be achieved. The present invention that accomplishes the effect is useful for a vehicle-mounted display device.
DESCRIPTION OF REFERENCE NUMERALS AND SIGNS
(46) 1 VEHICLE-MOUNTED DISPLAY DEVICE
(47) 10 CAMERA
(48) 20 IMAGE PROCESSING UNIT
(49) 30 OBSTACLE DETECTION UNIT
(50) 41 FIRST ATTENTION CALLING INDICATOR
(51) 41a TO 41d LIGHT EMITTER (FIRST LIGHT EMITTING UNIT)
(52) 42 SECOND ATTENTION CALLING INDICATOR
(53) 42a TO 42d LIGHT EMITTER (SECOND LIGHT EMITTING UNIT)
(54) 44 LENS
(55) 45 CASE
(56) D DOOR WINDOW
(57) E VIEW POINT POSITION
(58) FI VIRTUAL IMAGE
(59) FIP VIRTUAL IMAGE SURFACE
(60) I INSTRUMENT PANEL
(61) O OBSTACLE
(62) Pa, Pb REFLECTION POINT
(63) R EYE RANGE
(64) S THREE-DIMENSIONAL OBJECT
(65) W WINDSHIELD