Vehicular display device
11209285 · 2021-12-28
Assignee
Inventors
- Kenji Maruyama (Kanagawa, JP)
- Hiroshi Watanabe (Kanagawa, JP)
- Masayuki Shishido (Kanagawa, JP)
- Norio Kosaka (Kanagawa, JP)
Cpc classification
G09G2340/12
PHYSICS
G01C21/365
PHYSICS
G09G2340/14
PHYSICS
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
G09G5/36
PHYSICS
Abstract
A vehicular display device configured to display a guide route to a destination of a host vehicle includes a navigation device configured to calculate the guide route, a display controller configured to draw an arrow having a shaft with an arrowhead at one end of the shaft, as a guide figure for guidance along the guide route calculated by the navigation device, such that the arrow is shaped as a three-dimensional object in which one surface of the arrow is a continuous flat surface from the shaft to the arrowhead and the other surface of the arrow includes a first portion with a first width having a first height, and a second portion with a second width smaller than the first width and having a second height smaller than the first height, and a display configured to display an image drawn by the display controller in a display area.
Claims
1. A vehicular display device configured to display a guide route to a destination of a host vehicle, the vehicular display device comprising: a navigation device configured to calculate the guide route; a display controller configured to acquire the guide route from the navigation device and draw an arrow based on the guide route, wherein the guide route includes a start position, a direction, and a length of the arrow, wherein the arrow has a shaft with an arrowhead at one end of the shaft and a three-dimensional shape with one or more dimensions calculated based on the guide route, wherein one surface of the arrow is a continuous flat surface from the shaft to the arrowhead and an other surface of the arrow includes a larger width portion having a larger height and a smaller width portion having a smaller height; and a display configured to display an image drawn by the display controller in a display area provided to overlap a position of a windshield, wherein the display controller is configured to calculate, based on the guide route, an arrangement of the arrow drawn by lines superimposed on the guide route, convert the arrangement to draw the arrow in the three-dimensional shape, and display the arrow such that the one surface appears to be superimposed on a ground.
2. The vehicular display device according to claim 1, wherein the display controller is configured to draw the arrow in a three-dimensional arch shape where, within both the shaft and the arrowhead, a height of the arrow decreases in a curved line from a center of the arrow in the width direction towards both edges of the arrow.
3. A vehicular display device configured to display a guide route to a destination of a host vehicle, the vehicular display device comprising: a navigation device configured to calculate the guide route; a display controller configured to acquire the guide route from the navigation device and draw an arrow based on the guide route, wherein the guide route includes a start position, a direction, and a length of the arrow, wherein the arrow has a shaft with an arrowhead at one end of the shaft and a three-dimensional shape with one or more dimensions calculated based on the guide route, wherein one surface of the arrow is a continuous flat surface from the shaft to the arrowhead and an other surface of the arrow includes a larger width portion having a larger height and a smaller width portion having a smaller height; and a display configured to display an image drawn by the display controller in a display area provided to overlap a position of a windshield, wherein the display controller is configured to calculate, based on the guide route, an arrangement of the arrow drawn by lines superimposed on the guide route and convert the arrangement to draw the arrow in a three-dimensional ridge shape where, within both the shaft and the arrowhead, a height of the arrow decreases linearly from a center of the arrow in the width direction towards both edges of the arrow in the width direction.
4. A vehicular display device configured to display a guide route to a destination of a host vehicle, the vehicular display device comprising: a navigation device configured to calculate the guide route; a display controller configured to acquire the guide route from the navigation device and draw an arrow based on the guide route, wherein the guide route includes a start position, a direction, and a length of the arrow, wherein the arrow has a shaft with an arrowhead at one end of the shaft and a three-dimensional shape with one or more dimensions calculated based on the guide route, wherein one surface of the arrow is a continuous flat surface from the shaft to the arrowhead and an other surface of the arrow includes a larger width portion having a larger height and a smaller width portion having a smaller height; and a display configured to display an image drawn by the display controller in a display area provided to overlap a position of a windshield, wherein the display controller is configured to calculate, based on the guide route, an arrangement of the arrow drawn by lines superimposed on the guide route and convert the arrangement to draw the arrow in a three-dimensional cockscomb shape, where, within both the shaft and the arrowhead, a line along a center of the arrow in the width direction is protruded to a height of the arrow while, away from the center of the arrow in the width direction, the height is constant.
5. The vehicular display device according to claim 1, wherein the width of the shaft is constant in the continuous flat surface.
6. The vehicular display device according to claim 3, wherein the width of the shaft is constant in the continuous flat surface.
7. The vehicular display device according to claim 4, wherein the width of the shaft is constant in the continuous flat surface.
8. The vehicular display device according to claim 1, wherein, when viewed orthogonally to the continuous flat surface, the arrowhead is triangular and the shaft is rectangular.
9. The vehicular display device according to claim 1, wherein, in the continuous flat surface, the arrowhead is triangular and the shaft is rectangular.
10. The vehicular display device according to claim 3, wherein, when viewed orthogonally to the continuous flat surface, the arrowhead is triangular and the shaft is rectangular.
11. The vehicular display device according to claim 3, wherein, in the continuous flat surface, the arrowhead is triangular and the shaft is rectangular.
12. The vehicular display device according to claim 4, wherein, when viewed orthogonally to the continuous flat surface, the arrowhead is triangular and the shaft is rectangular.
13. The vehicular display device according to claim 4, wherein, in the continuous flat surface, the arrowhead is triangular and the shaft is rectangular.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
(12) A vehicular display device according to embodiments of the present invention is described below in detail with reference to the drawings. In embodiments of the invention, numerous specific details are set forth in order to provide a more thorough understanding of the invention. However, it will be apparent to one of ordinary skill in the art that the invention may be practiced without these specific details. In other instances, well-known features have not been described in detail to avoid obscuring the invention.
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(14) The GPS antenna 11 receives GPS signals from not-illustrated GPS satellites and outputs the received GPS signals to the navigation device 13 as GPS information. The geomagnetic sensor 12 detects azimuth of the direction in which the vehicle is facing (azimuth of the traveling direction of the vehicle) and outputs the detected azimuth to the navigation device 13 as azimuth information.
(15) The navigation device 13 calculates the guide route by using the GPS information from the GPS antenna 11, the azimuth information from the geomagnetic sensor 12, and information acquired in itself. The navigation device 13 generates guidance route information for performing guidance along the calculated route and outputs the guide route information to the display controller 16. Details of the navigation device 13 are described later.
(16) The viewpoint detection camera 14 captures an image including the positions of the eyes of a driver and outputs the captured image to the viewpoint position determiner 15 as viewpoint image information.
(17) The viewpoint position determiner 15 determines a viewpoint position of the driver based on the viewpoint image information sent from the viewpoint detection camera 14 and outputs the determination result to the display controller 16 as viewpoint position information.
(18) The display controller 16 generates an image to be displayed on the display 17 based on the guide route information and the like sent from the navigation device 13 and the viewpoint position information sent from the viewpoint position determiner 15. The display controller 16 draws arrows each having a shaft with an arrowhead at one end of the shaft, as guide figures for guidance along the guide route calculated by the navigation device 13, such that each arrow looks like a three-dimensional object in which a portion of the arrow with a large width has a large height and a portion of the arrow with a small width has a small height.
(19) The display 17 includes a projection unit which projects a video, a screen and a Fresnel mirror which reflect the video, and the like, and displays an image in a display area provided to overlap the position of a windshield included in the vehicle. Particularly, the display 17 is a head-up display which can display the image in a manner superimposed on a forward view ahead of the vehicle by displaying the image reflected by a mirror, on a near side of the windshield as a virtual image. However, the display 17 is not limited to this type of head-up display. For example, the display 17 may be a combiner type head-up display using a transparent panel instead of displaying the image on the windshield or may employ a method of directly displaying the image on the windshield. In other words, the head-up display in one or more embodiments of the present invention may be any type as long as the driver can see the information, displayed by the head-up display in a manner superimposed on a view seen by the driver from the windshield, without looking down. The image based on the display image information generated by the display controller 16 is thereby displayed within the field of view of a person.
(20) Next, the details of the aforementioned navigation device 13 are described. The navigation device 13 includes intersection data 21, map data 22, an acceleration sensor 23, a gyroscope sensor 24, and a calculator 25.
(21) The intersection data 21 is data indicating characteristics and the like of each intersection and is acquired from, for example, a disc device or a center via a communication line and a communication device (both are not illustrated). The intersection data is read by the calculator 25.
(22) The map data 22 is data acquired from, for example, the disc device or the center via the communication line and the communication device like the intersection data 21, and is used for drawing of a map, calculation of the guide route, generation of the guide route information to be outputted to the display controller 16, and the like. The map data 22 is read by the calculator 25.
(23) The acceleration sensor 23 detects the acceleration of the host vehicle and outputs the detected acceleration to the calculator 25 as acceleration information.
(24) The gyroscope sensor 24 detects the angular velocity of the host vehicle and outputs the detected angular velocity to the calculator 25 as angular velocity information.
(25) The calculator 25 calculates the current position of the host vehicle by using the map data 22 and the GPS information sent from the GPS antenna 11. In the calculation, the vehicle sometimes cannot receive the GPS signals when traveling, for example, in a tunnel, under an elevated road, or between tall buildings. Accordingly, the calculator 25 calculates the current position by autonomous navigation based on the map data 22, the azimuth information from the geomagnetic sensor 12, the acceleration information from the acceleration sensor 23, and the angular velocity information from the gyroscope sensor 24. The calculator 25 creates the guide route information based on the calculated current position and outputs the created guide route information to the display controller 16.
(26) Next, an operation of the vehicular display device according to one or more embodiments of the present invention configured as described above is described with reference to the flowchart illustrated in
(27) When the operation is started, a guidance flag is first acquired (step S11). Specifically, the display controller 16 acquires the guidance flag from the navigation device 13. Here, the guidance flag is a flag instructing whether to perform the guidance along the guide route or not. The guidance along the guide route using the arrows is performed only when the guidance flag is set to on.
(28) Next, whether the guidance flag is on or not is checked (step S12). Specifically, the display controller 16 checks whether the guidance flag acquired in step S11 is on or not. When the guidance flag is determined not to be on in step S12, the display controller 16 determines that the guidance is unnecessary, and the processing is terminated.
(29) Meanwhile, when the guidance flag is determined to be on in step S12, next, the guide route information is acquired (step S13). Specifically, the display controller 16 acquires the start position, the direction, and the length of each arrow from the navigation device 13 as the guide route information. The guide route information is calculated in advance depending on a route search operation performed by the driver and is stored in the navigation device 13.
(30) Next, the viewpoint position is acquired (step S14). Specifically, the display controller 16 acquires the viewpoint position information from the viewpoint position determiner 15.
(31) Then, arrangement of arrows drawn by lines in the display area is calculated (step S15). Specifically, the display controller 16 arranges arrows drawn by lines in a manner superimposed on the guide route as viewed from the driver, by using the guide route information acquired in step S13 and the viewpoint position acquired in step S14.
(32) Next, three-dimensional looking arrows are drawn (step S16). Specifically, the display controller 16 draws arrows to be displayed in the display area by converting the arrows drawn by lines and arranged in the display area in step S15 to arrows looking three-dimensional as viewed from the viewpoint of the driver indicated by the viewpoint position information acquired in step S14. Steps of drawing the three-dimensional looking arrows are described in detail later.
(33) Next, a display image is outputted to the display 17 (step S17). Specifically, the display controller 16 outputs the image drawn in step S16 to the display 17 as display image information. The display 17 thereby generates an image based on the display image information from the display controller 16, displays the generated image on a liquid crystal display or the like, and causes the image to be reflected on a mirror or the windshield to display the image directly within the field of view of a person. Thereafter, the sequence returns to step S12 and the aforementioned processes are repeated.
(34) Specifically, as illustrated in
(35) Next, the steps of drawing each of the three-dimensional looking arrows are described.
(36) (1) First, as illustrated in
(37) (2) Then, as illustrated in part
(38) (3) Next, as illustrated in of
(39) (4) Then, as illustrated in
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(41) One may try to improve this by using arrows M22 each with an increased width as illustrated in
(42) Meanwhile, in the vehicular display device according to one or more embodiments of the present invention, as illustrated in
(43) Although the arrows are drawn in the three-dimensional arch shape which is raised in the center portion in the width direction as in the example illustrated in
(44) A configuration of a vehicular display device according to one or more embodiments of the present invention described below is similar to the configuration of the vehicular display device illustrated in
(45) In some cases, the navigation device 13 sends the display controller 16 a line configured by a straight line and a curved line as one mode of the guide route information.
(46) Next, an operation of the vehicular display device according to one or more embodiments of the present invention is described with reference to the flowchart illustrated in
(47) Since processes in step S11 to S12 are the same as those in the flowchart illustrated in
(48) In step S13, assume that the guide route indicated by the guide route information acquired from the navigation device 13 indicates “left turn” at the next intersection. In this case, the display controller 16 acquires a guide route curved to the left from the navigation device 13.
(49) Next, the viewpoint position is acquired (step S14). Specifically, the display controller 16 acquires the viewpoint position information from the viewpoint position determiner 15.
(50) Then, arrangement of an arrow drawn by lines in the display area is calculated (step S15). Specifically, the display controller 16 arranges a curved arrow drawn by lines in a manner superimposed on the guide route as viewed from the driver, by using the information on the guide route curved to the left which is acquired in step S13 and the viewpoint position which is acquired in step S14.
(51) Next, the arrow is drawn to look three-dimensional (step S16). Then, the display image is outputted to the display (step S17). The display 17 thereby generates an image based on the display image information from the display controller 16, displays the generated image on the liquid crystal display or the like, and causes the image to be reflected on the mirror or the windshield to display the image directly within the field of view of a person. Thereafter, the sequence returns to step S12 and the aforementioned processes are repeated.
(52) By the aforementioned operation, the display 17 displays an arrow instructing a left turn at the next intersection, for example, an arrow M33A having a shaft curved to the left as illustrated in
(53) In the vehicular display device according to one or more embodiments of the present invention, since the arrow used for guidance in an intersection is displayed as an arrow looking like a three-dimensional arch-shaped object in which a portion of the arrow with a large width has a large height and a portion of the arrow with a small width has a small height, the direction in which the arrow is pointing is easy to read. Moreover, since the shape of the arrowhead in the distant horizontal arrow is easy to read, the direction in which the arrow is pointing is easy to read.
(54) Note that, in the example illustrated in
(55) While the invention has been described with respect to a limited number of embodiments, those skilled in the art, having benefit of this disclosure, will appreciate that other embodiments can be devised which do not depart from the scope of the invention as disclosed herein. Accordingly, the scope of the invention should be limited only by the attached claims.
REFERENCE SIGNS LIST
(56) 11 GPS antenna 12 geomagnetic sensor 13 navigation device 14 viewpoint detection camera 15 viewpoint position determiner 16 display controller 17 display 21 intersection data 22 map data 23 acceleration sensor 24 gyroscope sensor 25 calculator