Head-up display device

The head-up display device addresses the challenge of limited vertical space by projecting information with a horizontal emphasis, using larger and thicker objects to intuitively guide drivers through the vehicle's travel route, improving recognition and safety.

JP7767738B2Active Publication Date: 2025-11-12MAZDA MOTOR CORP
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Patent Information

Application Number
JP2021092142
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-06-01
Publication Date
2025-11-12
Estimated Expiration
2041-06-01

AI Technical Summary

Technical Problem

Conventional head-up display devices project information onto an image forming surface that is vertically low, making it difficult for drivers to intuitively recognize multiple objects in the order of the vehicle's travel route, such as navigation and road signs, due to the limited vertical space.

Method used

A head-up display device that projects driving-related information onto an image forming surface with a horizontal elongation, using a controller and light processing unit to generate and emit images with distinct line segments and objects, where the most recent information is displayed larger and thicker to provide perspective and visibility, allowing intuitive recognition of the travel route.

Benefits of technology

The device enables drivers to intuitively recognize multiple objects in the order of the vehicle's travel route by providing a sense of perspective and higher visibility to critical information, enhancing safety and usability.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Patent Text Reader

Abstract

To provide a head-up display device which can make a driver intuitively recognize a plurality of objects in order of travel route of a vehicle while projecting an image on an image formation face where height in a vertical direction is low in comparison with width in a lateral direction.SOLUTION: An optical treatment part of a head-up display device acquires from a controller a first image signal based on the latest road sign information in order of travel route, and a second image signal based on the subsequent road sign information. The optical treatment part displays a line segment objects OBJ51, OBJ52 and information objects OBJ57, OBJ58 respectively generated from the first image signal and the second image signal on an image formation face 5. The objects OBJ57, OBJ58 are arranged at the right outside position along the right line segment object OBJ52. The object OBJ58 is arranged at the left obliquely upward position of the object OBJ57 on the image formation face 5.SELECTED DRAWING: Figure 7
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Description

[Technical Field]

[0001] The present invention relates to a head-up display device. [Background technology]

[0002] A head-up display device projects various driving-related information onto an image forming surface in front of the driver's seat. In a vehicle equipped with a head-up display device, the driver can recognize various driving-related information without lowering their eyes.

[0003] Patent document 1 discloses a head-up display device that projects objects related to information about factors external to the vehicle, such as road signs and route guidance, on the upper part of the image forming surface, and objects related to information about the vehicle itself, such as vehicle speed and cruise control ON / OFF, on the lower part. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] Patent No. 6354633 Summary of the Invention [Problem to be solved by the invention]

[0005] However, the image forming surface on which a head-up display device projects various information objects must be vertically low so as not to obstruct the driver's gaze ahead of the vehicle. This makes it difficult for a head-up display device to vertically arrange multiple objects related to sign guidance, route guidance, etc., in the order of the vehicle's travel route, as in a navigation device. Therefore, with conventional head-up display devices, it has been difficult for the driver to intuitively recognize the most recent information and the subsequent information in the order of the vehicle's travel route.

[0006] The present invention has been made to solve the above-mentioned problems, and aims to provide a head-up display device that can project an image onto an image forming surface that is shorter in height in the vertical direction than in the horizontal direction, and allows the driver to intuitively recognize multiple objects in the order of the vehicle's travel route. [Means for solving the problem]

[0007] A head-up display device according to one aspect of the present invention projects driving-related information onto an image forming surface provided in front of a driver's seat, and includes a controller and a light processing unit. The controller receives the driving-related information and generates an image signal from the received driving-related information. The light processing unit acquires the image signal from the controller and emits light onto the image forming surface.

[0008] The controller includes a first information receiving unit, a second information receiving unit, and an image signal generating unit. The first information receiving unit receives first information, which is the current or most recent driving-related information in the vehicle's travel route order. The second information receiving unit receives second information, which is the driving-related information subsequent to the first information. The image signal generating unit generates a first image signal based on the first information and a second image signal based on the second information.

[0009] The light processing unit emits light onto the image formation surface when viewed from the driver's seat in a plan view so as to display a left line segment object, a right line segment object, a first information object, and a second information object. The left line segment object is an object that extends diagonally from the center in the left-right direction to the left as it goes from top to bottom. The right line segment object is an object that is arranged to the right of the left line segment object and that extends diagonally from the center to the right as it goes from top to bottom. The first information object is an object generated from the first image signal, At least one of straight and curved line segments is included,The left and right line segment objects are located outside the left and right line segment objects. of The second information object is an object that is generated from the second image signal and is arranged at a position along the one line segment object in the part of the image signal. At least one of straight and curved line segments is included, The object is arranged along the one line segment object in a portion outside the one line segment object in the left-right direction, and at a position diagonally above the first information object. The image signal generation unit generates the first image signal and the second image signal so that the line segments of the first information object are displayed on the image forming surface with a thicker line width than the line segments of the second information object, and so that the first information object has higher visibility to the driver of the vehicle than the second information object.

[0010] In the head-up display device according to the above aspect, a left line segment object and a right line segment object are displayed on the image forming surface, and the left line segment object and the right line segment object are displayed so that the distance between them increases as they move from top to bottom, so that these line segment objects can give the driver a sense of perspective as they represent the driving lane on the image forming surface.

[0011] In addition, in the head-up display device according to the above aspect, a first information object for the first information that precedes in the driving route order and a second object for the second information that follows in the driving route order are each arranged along one of the line segment objects, and the first information object is displayed below the second information object.

[0012] Therefore, in the head-up display device according to the above embodiment, in combination with the left line segment object and the right line segment object that remind the driver of the driving lane, the driver can intuitively recognize that the first information represented by the first information object is preceding information and the second information represented by the second information object is succeeding information. Furthermore, in the head-up display device according to the above aspect, the first information object includes a line segment with a thicker line width on the image forming surface than the second information object, so that the driver's attention can be drawn to the first information object, which has higher visibility than the second information object on the image forming surface.

[0013] Therefore, in the head-up display device according to the above aspect, an image is projected onto an image forming surface that is shorter in height vertically than horizontally, allowing the driver to intuitively recognize multiple information objects (first information object, second information object) in the order of the vehicle's travel route.

[0016] In the head-up display device according to the above aspect, the image signal generation unit may generate the first image signal and the second image signal so that the first information object is displayed on the image forming surface at a larger object size than the second information object on the image forming surface.

[0017] In the head-up display device according to the above aspect, the first information object is displayed in a larger size than the second information object on the image forming surface, so that the driver's attention is drawn to the larger first information object. Furthermore, by making the first information object larger than the second information object, the driver can feel an even greater sense of perspective.

[0020] In the head-up display device according to the above aspect, the controller further includes a third information receiving unit that receives third information, which is the current or most recent driving-related information in a driving route order of the vehicle and is different from the first information, and a fourth information receiving unit that receives fourth information, which is the driving-related information subsequent to the third information, and the image signal generating unit generates a third image signal based on the third information and also generates a fourth image signal based on the fourth information, and the light processing unit generates an image signal based on the third image signal, the image signal being generated from the third image signal, with respect to the image formation surface when viewed in a plan view from the driver's seat, the image signal being generated outside in the left-right direction of one of the line segment objects, the left line segment object, and the right line segment object, which is different from the other line segment object. ofand a fourth information object generated from the fourth image signal, the fourth information object being arranged in a portion outside the other line segment object in the left-right direction along the other line segment object and at a position diagonally above the third information object.

[0021] In the head-up display device according to the above embodiment, in addition to the first information object and the second information object, the third information object and the fourth information object are also displayed on the image forming surface, so that the driver can recognize more information through the image forming surface.

[0022] In addition, in the head-up display device according to the above aspect, the third information object for the third information that precedes in the order of the driving route and the fourth object for the fourth information that follows in the order of the driving route are each arranged along the other line segment object, and the third information object is displayed below the fourth information object.

[0023] Therefore, in the head-up display device according to the above aspect, similar to the relationship between the first information object and the second information object, the driver can intuitively recognize that the third information represented by the third information object is preceding information, and the fourth information represented by the fourth information object is succeeding information.

[0024] In the head-up display device according to the above aspect, the first information and the second information may be the same type of driving-related information, and the third information and the fourth information may be the same type of driving-related information.

[0025] In the head-up display device according to the above aspect, since the first information and the second information are the same type of information, a driver who looks at the first information object and the second information object can intuitively recognize the progression of the same type of information in the order of the driving route. Similarly, since the third information and the fourth information are the same type of information, a driver who looks at the third information object and the fourth information object can intuitively recognize the progression of the same type of information in the order of the driving route.

[0026] In the head-up display device according to the above aspect, the first information and the second information may be road sign information, the third information and the fourth information may be route guidance information, and if the vehicle is a right-hand drive vehicle, the one line segment object may be the right line segment object and the other line segment object may be the left line segment object, and if the vehicle is a left-hand drive vehicle, the one line segment object may be the left line segment object and the other line segment object may be the right line segment object.

[0027] In the head-up display device according to the above aspect, when the vehicle is a right-hand drive vehicle, the first information object and the second information object representing road sign information are displayed in a right-hand portion of the image forming screen, and therefore, by matching the installation direction of the actual road sign with the display positions of the first information object and the second information object on the image forming screen, the driver can intuitively recognize the road sign information. Also, when the vehicle is a left-hand drive vehicle, the first information object and the second information object representing road sign information are displayed in a left-hand portion of the image forming screen, and therefore, by matching the installation direction of the actual road sign with the display positions of the first information object and the second information object on the image forming screen, the driver can intuitively recognize the road sign information.

[0028] In the head-up display device according to the above aspect, the controller may further have a fifth information receiving unit that receives fifth information regarding the presence or absence of a preceding vehicle and, if there is a preceding vehicle, the distance to the preceding vehicle, and the image signal generating unit may also generate a fifth image signal based on the fifth information, and the light processing unit may emit light onto the image forming surface when viewed in a plane from the driver's seat so as to display a fifth information object, which is an object generated from the fifth image signal and is positioned between the left line segment object and the right line segment object.

[0029] In the head-up display device according to the above aspect, the fifth information object representing information about the preceding vehicle is also displayed, so that the driver looking at the image forming screen can also recognize information about the preceding vehicle. Furthermore, in the head-up display device according to the above aspect, the fifth information object is displayed at a position between the left line segment object and the right line segment object, so that the driver can intuitively recognize information about the preceding vehicle in the driving lane in which the host vehicle is traveling. [Effects of the Invention]

[0030] In the head-up display device according to each of the above aspects, an image is projected onto an image forming surface that is shorter in height in the vertical direction than in the horizontal direction, allowing the driver to intuitively recognize multiple objects in the order of the vehicle's travel route. [Brief explanation of the drawings]

[0031] [Figure 1] 1 is a diagram showing a configuration of a vehicle interior to which a head-up display device according to an embodiment of the present invention is applied; [Figure 2] FIG. 2 is a schematic diagram showing a head-up display device and an image forming surface. [Figure 3] FIG. 1 is a block diagram showing a configuration of a head-up display device. [Figure 4] 3 is a block diagram showing the detailed configuration of a guide route receiving unit and a road information receiving unit. FIG. [Figure 5] 3A and 3B are schematic diagrams showing the layout of areas on an image forming surface where various objects are displayed; [Figure 6] FIG. 2 is a schematic diagram showing a route along which a vehicle travels; [Figure 7] 3A and 3B are schematic diagrams showing various objects displayed on an image forming surface. DETAILED DESCRIPTION OF THE INVENTION

[0032] Hereinafter, an embodiment of the present invention will be described with reference to the drawings. Note that the embodiment described below is an example of the present invention, and the present invention is not limited to the following embodiment except for its essential configuration.

[0033] 1. Configuration of the interior of the vehicle compartment 100a of the vehicle 100 The configuration inside a vehicle compartment 100a of a vehicle 100 to which a head-up display device according to the embodiment is applied will be described with reference to FIGS. 1 and 2. FIG.

[0034] As shown in Fig. 1, the vehicle 100 is a right-hand drive vehicle with a steering wheel 101 disposed on the right side in the vehicle width direction. A dashboard 103 is disposed in front of the steering wheel 101, and a front windshield 102 is disposed in a state of standing upright from the front end portion of the dashboard 103.

[0035] A driver's seat 104 is disposed behind the steering wheel 101, and a passenger seat 105 is disposed to the left of the driver's seat 104.

[0036] As shown in FIG. 1, an image forming surface 5 is disposed on the front windshield 102 in a portion in front of a driver's seat 104, at the bottom in the vertical direction. As shown in FIG. 2, the image forming surface 5 is provided on the inner surface 102a side of the front windshield 102. Light is emitted to the image forming surface 5 from a head-up display device (hereinafter referred to as "HUD device") 1 provided in a dashboard 103. An image showing driving-related information is displayed on the image forming surface 5, and the driver can obtain the driving-related information by looking at the image displayed on the image forming surface 5.

[0037] 2. Configuration of HUD device 1 The configuration of the HUD device 1 according to this embodiment will be described with reference to FIGS.

[0038] 3, the HUD device 1 includes a controller 11 and a light processing unit 12. The controller 11 includes a microprocessor including an MPU / CPU, an ASIC, a ROM, a RAM, etc., and a memory. The controller 11 executes firmware, etc., stored in advance in the memory, to generate an image signal for driving-related information and output it to the light processing unit 12.

[0039] The controller 11 has a navigation information receiving unit 111, a vehicle speed information receiving unit 112, a preceding vehicle information receiving unit 113, and an image signal generating unit 116. The navigation information receiving unit 111 receives input of information related to the guide route and road information from the navigation system 2. The navigation information receiving unit 111 has a guide route receiving unit 114 that receives information related to the guide route from the navigation system 2, and a road information receiving unit 115 that receives road information from the navigation system 2.

[0040] 4, the navigation system 2 has a guide route setting unit 21 and a road information detection unit 22. The guide route setting unit 21 is a component that sets a guide route for guiding the vehicle 100 to an input destination, and outputs immediate route information INF11 and subsequent route information INF12 to the guide route reception unit 114. The guide route reception unit 114 has an immediate route information reception unit 1141 that receives the immediate route information INF11, and a subsequent route information reception unit 1142 that receives the subsequent route information INF12.

[0041] Here, the immediate route information INF11 is information (route guidance information) about the current or most recent guide route in the travel route order of the vehicle 100, and corresponds to "third information." The subsequent route information INF12 is information (route guidance information) about the guide route that follows the immediate route information INF11 in the travel route order of the vehicle 100, and corresponds to "fourth information."

[0042] 4, the road information detection unit 22 is a component that detects information (route guidance information) related to road signs along a route along which the vehicle 100 is scheduled to travel, and outputs immediate road information INF21 and subsequent road information INF22. The road information reception unit 115 has a immediate road information reception unit 1151 that receives the immediate road information INF21, and a subsequent road information reception unit 1152 that receives the subsequent road information INF22.

[0043] The nearest road information INF21 is information about the current or nearest road sign in the travel route of the vehicle 100, and corresponds to "first information." The following road information INF22 is information about the road sign that follows the nearest road information INF21 in the travel route of the vehicle 100, and corresponds to "second information."

[0044] 3, the vehicle speed information receiving unit 112 receives input of information relating to the vehicle speed of the vehicle 100 from the vehicle speed detection unit 3 provided in the vehicle 100. Note that the information relating to the vehicle speed from the vehicle speed detection unit 3 may also be input to the vehicle speed information receiving unit 112 via an ECU (Electronic Control Unit) of the vehicle 100.

[0045] The preceding vehicle information receiving unit 113 receives input from the preceding vehicle detection unit 4, which is composed of a device (e.g., radar, laser, camera, etc.) for detecting a preceding vehicle installed in the vehicle 100, regarding the presence or absence of a preceding vehicle, and, if a preceding vehicle is present, information regarding the distance between the vehicle 100 and the preceding vehicle.

[0046] The information output from the leading vehicle detection unit 4 corresponds to the "fifth information."

[0047] The image signal generation unit 116 generates an image signal based on the information received by the guide route reception unit 114, the road information reception unit 115, the vehicle speed information reception unit 112, and the preceding vehicle information reception unit 113. Specifically, the image signal generation unit 116 generates a near route guidance image signal (third image signal) based on the near route information INF11, and generates a following route guidance image signal (fourth image signal) based on the following route information INF12. The image signal generation unit 116 also generates a near road sign image signal (first image signal) based on the near road information INF21, and generates a following road sign image signal (second image signal) based on the following road information INF22. Furthermore, the image signal generation unit 116 generates a vehicle speed image signal based on the vehicle speed information, and generates a preceding vehicle image signal (fifth image signal) based on the preceding vehicle information.

[0048] The light processing unit 12 has a modulation unit 121, a light source unit 122, and an emission unit 123. The modulation unit 121 modulates the light emitted from the light source unit 122 in accordance with each image signal sent from the image signal generation unit 116 to generate image light.

[0049] The light source unit 122 includes an LED (Light Emitting Diode) or a semiconductor laser element, and emits light toward the modulation unit 121. The emission unit 123 emits the image signal generated by modulation in the modulation unit 121 toward the image forming surface 5. The image light emitted from the emission unit 123 defines a display area on the image forming surface 5 for each image signal input to the light processing unit 12.

[0050] 3. Arrangement of areas on the image forming surface 5 where various objects are displayed The layout of the areas where various objects are displayed on the image forming screen 5 will be described with reference to Fig. 5. Fig. 5 is a schematic diagram of the image forming screen 5 as viewed from the driver's side in plan view.

[0051] 5, the image forming surface 5 has a horizontally elongated rectangular shape with a width W longer than a height H. Two line segment objects OBJ51 and OBJ52 are displayed in the approximate center of the image forming surface 5 in the horizontal direction (vehicle width direction) by the emission of image light from the light processing unit 12. The two line segment objects OBJ51 and OBJ52 are displayed on the image forming surface 5 while the HUD device 1 is operating.

[0052] The line segment object OBJ51 is disposed to the left of the line segment object OBJ52, and extends diagonally from the center in the vehicle width direction (left-right direction) to the left as it moves from top to bottom. Hereinafter, the line segment object OBJ51 will be referred to as the "left line segment object OBJ51."

[0053] The line segment object OBJ52 is disposed to the right of the left line segment object OBJ51 with a gap therebetween, and extends diagonally from the center in the vehicle width direction (left-right direction) to the right as it moves from top to bottom. Hereinafter, the line segment object OBJ52 will be referred to as the "right line segment object OBJ52."

[0054] The left line segment object OBJ51 and the right line segment object OBJ52 are displayed so that the distance between them in the left-right direction increases from top to bottom.

[0055] In the area between the left line segment object OBJ51 and the right line segment object OBJ52, an upper middle display area 53 is set at the top, and a lower middle display area 54 is set at the bottom. When a leading vehicle is detected by the leading vehicle detection unit 4, a leading vehicle object generated from a leading vehicle image signal is displayed in the upper middle display area 53. An object related to setting information for cruise control is displayed in the lower middle display area 54.

[0056] A left-side central display area 55 and a left-side upper display area 56 are set along the left line segment object OBJ51 on the left side of the left line segment object OBJ51. The left-side central display area 55 is set lower than the left-side upper display area 56. The left-side central display area 55 displays a nearest route information object generated from a nearest route guidance image signal based on the nearest route information INF11. The left-side upper display area 56 displays a following route information object generated from a following route image signal based on the following route information INF12.

[0057] Here, the size of the left-side central display area 55 is set larger than the size of the left-side upper display area 56 .

[0058] A right-side central display area 57 and a right-side upper display area 58 are set to the right of the right line segment object OBJ52 so as to align with the right line segment object OBJ52. The right-side central display area 57 is set lower than the right-side upper display area 58. A nearest road sign information object generated from a nearest road sign image signal based on nearest road information INF21 is displayed in the right-side central display area 57. A following road sign information object generated from a following road sign image signal based on following road information INF22 is displayed in the right-side upper display area 58.

[0059] Here, the size of the right-side central display area 57 is set to be larger than the size of the right-side upper display area 58 .

[0060] A lower right display area 59 is set below the central right display area 57. A vehicle speed information object generated from a vehicle speed image signal based on vehicle speed information from the vehicle speed detection unit 3 is displayed in the lower right display area 59. The driver can check the vehicle speed of the vehicle 100 by looking at the lower right display area 59.

[0061] Below the left central display area 55, a first lower left display area 60 and a second lower left display area 61 are set. The first lower left display area 60 is set lower than the second lower left display area 61. The first lower left display area 60 displays an object related to the estimated time when the vehicle 100 will arrive at the destination, which is generated from an image signal based on information from the navigation system 2 and the vehicle speed detection unit 3. The second lower left display area 61 displays an information object related to the direction of travel at an intersection related to the immediate route information INF11.

[0062] 4. Example of displaying various objects OBJ51 to OBJ61 on the image forming surface 5 6 and 7, examples of displaying various objects OBJ51 to OBJ61 on the image forming screen 5 will be described. Fig. 6 is a schematic diagram showing the travel route and surrounding conditions of the vehicle 100, and Fig. 7 is a schematic diagram showing various objects OBJ51 to OBJ61 displayed on the image forming screen 5 at the current location shown in Fig. 6.

[0063] As shown in FIG. 6, vehicle 100 is traveling straight on road STR1, which has two lanes on each side (arrow A1). Ahead of vehicle 100, leading vehicle 200 is traveling in the same direction. A road sign indicating that the speed limit of road STR1 is 60 km / h is posted on the shoulder of road STR1. Information that the speed limit of road STR1 is 60 km / h is sent from navigation system 2 to HUD device 1 of vehicle 100. Furthermore, leading vehicle detection unit 4 provided in vehicle 100 sends information to HUD device 1 that there is leading vehicle 200 and information regarding the inter-vehicle distance between vehicle 100 and leading vehicle 200. Furthermore, information regarding the vehicle speed of vehicle 100 is also sent from vehicle speed detection unit 3 to HUD device 1.

[0064] The vehicle 100 is scheduled to turn left at intersection JNC1, approximately 450 m ahead, onto road STR2 (arrow A2), and then turn left at intersection JNC2 on road STR2 to enter road STR3 (arrow A3). Information relating to these route guidance routes is sent from the navigation system 2 to the HUD device 1.

[0065] The HUD device 1 receives information from the navigation system 2 that the speed limit on the road STR2 is 40 km / h.

[0066] In the example shown in FIG. 6, information indicating a left turn indicated by arrow A2 corresponds to "nearby route information INF11," and information indicating a left turn indicated by arrow A3 corresponds to "following route information INF12." Furthermore, information indicating that the speed limit of road STR1 is 60 km / h corresponds to "nearby road information INF21," and information indicating that the speed limit of road STR2 is 40 km / h corresponds to "following road information INF22." Furthermore, information indicating the presence of a preceding vehicle 200 detected by preceding vehicle detection unit 4 and information regarding the inter-vehicle distance between the vehicle 100 and preceding vehicle 200 correspond to "preceding vehicle information."

[0067] Under the above-described circumstances, various objects OBJ51 to OBJ61 as shown in Fig. 7 are displayed on the image forming screen 5 of the vehicle 100 traveling straight on the road STR1 as indicated by the arrow A1. Specifically, as described above, a left line segment object OBJ51 and a right line segment object OBJ52 are displayed in the center in the horizontal direction on the image forming screen 5. These line segment objects OBJ51 and OBJ52 remind the driver of the dividing lines on both sides of the lane in which the vehicle is traveling.

[0068] A preceding vehicle information object OBJ53 is displayed in the middle upper display area 53 between the left line segment object OBJ51 and the right line segment object OBJ52. The preceding vehicle information object OBJ53 is an object that indicates information that the preceding vehicle 200 is present and information regarding the distance between the vehicle 100 and the preceding vehicle 200, and corresponds to the "fifth information object."

[0069] A set vehicle speed information object OBJ54 is displayed in the middle lower display area 54 below the middle upper display area 53 in which the preceding vehicle information object OBJ53 is displayed. The set vehicle speed information object OBJ54 is an object that indicates various setting conditions such as the set speed of cruise control.

[0070] A route guidance information object OBJ55 is displayed in the left-side center display area 55 to the left of the left line segment object OBJ51. The route guidance information object OBJ55 is an object generated from an image signal based on the immediate route information INF11, and corresponds to the "third information object."

[0071] A route guidance information object OBJ56 is displayed to the left of the left line segment object OBJ51, in an upper left display area 56 above the left central display area 55. The route guidance information object OBJ56 is an object generated from an image signal based on the following route information INF12, and corresponds to the "fourth information object."

[0072] The route guidance information object OBJ55 is set to be larger in height and left and right than the route guidance information object OBJ56. Both the route guidance information object OBJ55 and the route guidance information object OBJ56 include straight lines and curves, and the line segments included in the route guidance information object OBJ55 are configured with a thicker line width than those included in the route guidance information object OBJ56.

[0073] A road sign information object OBJ57 is displayed in the right-side central display area 57 to the right of the right line segment object OBJ52. The road sign information object OBJ57 is an object generated from an image signal based on the nearest road information INF21, and corresponds to the "first information object."

[0074] A road sign information object OBJ58 is displayed in an upper right display area 58, which is located to the right of the right line segment object OBJ52 and above the right central display area 57. The road sign information object OBJ58 is an object generated from an image signal based on the following road information INF22, and corresponds to the "second information object."

[0075] The road sign information object OBJ57 is set to be larger in height and left and right than the road sign information object OBJ58. Both the road sign information object OBJ57 and the road sign information object OBJ58 include curved lines, and the line segments included in the road sign information object OBJ57 are configured with thicker line widths than those included in the road sign information object OBJ58.

[0076] A vehicle speed information object OBJ59 is displayed in a right lower display area 59 below the right central display area 57. The vehicle speed information object OBJ59 is an object generated from an image signal based on vehicle speed information from the vehicle speed detection unit 3. The vehicle speed information object OBJ59 is set to be larger in size in the height direction and left and right direction than the set vehicle speed information object OBJ54 so that it is easily visible to the driver, and is composed of thick line segments.

[0077] An estimated arrival time information object OBJ60 is displayed in the left first lower display area 60 below the left central display area 55. The estimated arrival time information object OBJ60 is an object that indicates the estimated time at which the vehicle 100 will arrive at the destination based on information from the navigation system 2 and the vehicle speed detection unit 3.

[0078] A lane information object OBJ61 is displayed in the left second lower display area 61 between the left central display area 55 and the left first lower display area 60. The lane information object OBJ61 is an object that indicates information about the traveling direction of the intersection JNC1 where the vehicle 100 is scheduled to turn left in the near future.

[0079] 5.Effects In the HUD device 1 according to this embodiment, a left line segment object OBJ51 and a right line segment object OBJ52 are displayed on the image forming screen 5, and the left line segment object OBJ51 and the right line segment object OBJ52 are displayed so that the distance between them increases from top to bottom, so that these line segment objects OBJ51 and OBJ52 can give the driver a sense of perspective as they represent the driving lane on the image forming screen 5.

[0080] Furthermore, in the HUD device 1, the road sign information object OBJ57, which is preceding in the travel route order, and the road sign information object OBJ58, which is following in the travel route order, are each arranged along the right line segment object OBJ52, with the road sign information object OBJ57 being displayed below the road sign information object OBJ58. Therefore, in combination with the left line segment object OBJ51 and the right line segment object OBJ52, which remind the driver of the travel lanes, the HUD device 1 allows the driver to intuitively recognize that the road information represented by the road sign information object OBJ57 is preceding information and the road information represented by the road sign information object OBJ58 is following information.

[0081] Therefore, the HUD device 1 according to this embodiment projects an image onto the image forming surface 5, which has a lower vertical height than horizontal height, and allows the driver to intuitively recognize the two information objects (road sign information object OBJ57, road sign information object OBJ58) in the order of the travel route of the vehicle 100.

[0082] In the HUD device 1 according to this embodiment, the road sign information object OBJ57 is displayed on the image forming surface 5 in a manner that makes it more visible than the road sign information object OBJ58, so that the driver can be directed to the road sign information object OBJ57, which has relatively high visibility.

[0083] Specifically, in the HUD device 1 according to this embodiment, the road sign information object OBJ57 is displayed in a larger size in the height direction and width direction than the road sign information object OBJ58 on the image forming screen 5, which can draw the driver's attention to the larger sized road sign information object OBJ57. Furthermore, by making the road sign information object OBJ57 larger in size than the road sign information object OBJ58, the driver can feel an even greater sense of perspective.

[0084] Furthermore, in the HUD device 1 according to this embodiment, the road sign information object OBJ57 includes line segments with thicker line widths than the road sign information object OBJ58 on the image forming surface 5, so that the driver can be directed to the road sign information object OBJ57 that includes line segments with thicker line widths.

[0085] In addition, in the HUD device 1 according to this embodiment, the route guidance information object OBJ55 and the route guidance information object OBJ56 are also displayed on the image forming screen 5, so that the driver can recognize more information through the image forming screen 5.

[0086] Furthermore, in the HUD device 1, a route guidance information object OBJ55 for the route guidance information that precedes in the order of the driving route and a route guidance information object OBJ56 for the route guidance information that follows in the order of the driving route are respectively arranged along the left line segment object OBJ51, and the route guidance information object OBJ55 is displayed below the route guidance information object OBJ56. Therefore, the HUD device 1 allows the driver to intuitively recognize that the route guidance information represented by the route guidance information object OBJ55 is the preceding information and the route guidance information represented by the route guidance information object OBJ56 is the following information.

[0087] Furthermore, in the HUD device 1 according to this embodiment, the information represented by the road sign information object OBJ57 and the information represented by the road sign information object OBJ58 are information relating to the same type of road sign, so a driver looking at the road sign information object OBJ57 and the road sign information object OBJ58 can intuitively recognize the transition of the same type of road sign information in the order of the driving route. Similarly, the information represented by the route guidance information object OBJ55 and the information represented by the route guidance information object OBJ56 are information relating to the same type of route guidance, so a driver looking at the route guidance information object OBJ55 and the route guidance information object OBJ56 can intuitively recognize the transition of the same type of route guidance information in the order of the driving route.

[0088] Furthermore, in the HUD device 1 according to this embodiment, the vehicle 100 is a right-hand drive vehicle, and the road sign information object OBJ57 and the road sign information object OBJ58 are displayed on the right side of the image forming screen 5. Therefore, by matching the installation direction of the actual road signs with the display positions of the road sign information object OBJ57 and the road sign information object OBJ58 on the image forming screen 5, the driver can intuitively recognize the road sign information.

[0089] If the vehicle is a left-hand drive vehicle, the road sign information object OBJ57 and the road sign information object OBJ58 can be displayed on the left side of the image forming screen 5, thereby matching the installation direction of the actual road signs with the display positions of the road sign information object OBJ57 and the road sign information object OBJ58 on the image forming screen 5, thereby allowing the driver to intuitively recognize the road sign information.

[0090] Furthermore, the HUD device 1 according to this embodiment also displays a preceding vehicle information object OBJ53 that indicates information about the preceding vehicle 200, allowing the driver looking at the image forming screen 5 to recognize information about the preceding vehicle 200. Furthermore, the HUD device 1 displays the preceding vehicle information object OBJ53 at a position between the left line segment object OBJ51 and the right line segment object OBJ52, allowing the driver to intuitively recognize information about the preceding vehicle 200 in the driving lane in which the driver's vehicle 100 is traveling.

[0091] As described above, the HUD device 1 according to this embodiment projects an image onto the image forming surface 5, which has a shorter vertical height than horizontal height, and allows the driver to intuitively recognize multiple objects OBJ55 to OBJ58 in the order of the travel route of the vehicle 100.

[0092] [Variations] In the above embodiment, two road sign information objects OBJ57, OBJ58 and two route guidance information objects OBJ55, OBJ56 are displayed on the image forming screen 5, but the present invention is not limited to this. For example, it is possible to display only two objects on the image forming screen: an object related to the nearest road sign information and an object related to the following road sign information. Conversely, it is possible to display only two objects on the image forming screen: an object related to the nearest route guidance information and an object related to the following route guidance information. Even in these cases, it is necessary to display a left line segment object and a right line segment object, and to arrange the objects in the same manner as in the above embodiment, so that the driver can recognize the information with a sense of perspective.

[0093] In the above embodiment, the objects OBJ55 and OBJ56 displayed to the left of the left line segment object OBJ51 are objects relating to the same type of information, and the objects OBJ57 and OBJ58 displayed to the right of the right line segment object OBJ52 are objects relating to the same type of information, but the present invention is not limited to this. For example, an object relating to the most recent driving-related information may be displayed laterally outside one of the left and right line segment objects, and an object relating to subsequent driving-related information (information of a different type from the most recent driving-related information) may be displayed diagonally above the object.

[0094] In the above embodiment, the preceding vehicle information object OBJ53 is displayed between the left line segment object OBJ51 and the right line segment object OBJ52, but the present invention does not require the preceding vehicle information object to be displayed.Similarly, the display of the objects OBJ59, OBJ60, and OBJ61 is not required.

[0095] In the above embodiment, a windshield projection type in which the image forming surface 5 is provided on the windshield 102 is used as an example, but the present invention can also use a combiner type. That is, a type in which a projection surface for projecting an image is provided between the windshield and the driver can also be used.

[0096] In the above embodiment, the most recent information and subsequent information for each of the road sign information and the route guidance information are acquired and the objects OBJ55 to OBJ58 are displayed on the image forming screen 5. However, the present invention is not limited to this in terms of the types of the most recent driving-related information and subsequent driving-related information. For example, the most recent information and subsequent information for information relating to the availability of hands-free driving can be acquired and displayed side by side in the vertical direction along the line segment object.

[0097] In the above embodiment, the road sign information object OBJ57 and the road sign information object OBJ58 are prevented from overlapping, and similarly, the route guidance information object OBJ55 and the route guidance information object OBJ56 are prevented from overlapping, but the present invention is not limited to this, and the nearest information object and the subsequent information object may be displayed so that they partially overlap. In this case, it is desirable that the nearest information object be positioned above the subsequent information object in the overlapping state.

[0098] Although the above description does not mention changing the color of the information object representing the most recent driving-related information and the information object representing the subsequent driving-related information, the present invention may change the color of the information object representing the most recent driving-related information and the information object representing the subsequent driving-related information. For example, the object relating to the most recent driving-related information may be displayed in color, and the object relating to the subsequent driving-related information may be displayed in monochrome.

[0099] In the above embodiment, the left line segment object OBJ51 and the right line segment object OBJ52 are each represented by a straight line, but in the present invention, these line segment objects may be represented by curved lines. In this case, in order to allow the driver to perceive a sense of perspective, it is desirable to place the center of curvature of the left line segment object on the left side of the left line segment object and the center of curvature of the right line segment object on the right side of the right line segment object. [Explanation of symbols]

[0100] 1 Head-up display device 5 Image forming surface 11 Controller 111 Navigation Information Reception Department 112 Vehicle speed information reception unit 114 Route Information Desk 115 Road Information Reception Department 1141 Nearest Route Information Reception Unit 1142 Subsequent route information reception unit 1151 Nearby Road Information Reception Department 1152 Subsequent Road Information Reception Unit OBJ51 Left line object (the other line object) OBJ52 Right Line Object (One of the Line Objects) OBJ53~OBJ61 Information objects

Claims

1. A head-up display device that projects driving-related information onto an image forming surface provided in front of a driver's seat, a controller that receives the driving-related information and generates an image signal from the received driving-related information; a light processing unit that receives an image signal from the controller and emits light onto the image forming surface, The controller a first information receiving unit that receives first information, which is the current or most recent driving-related information in the order of a vehicle's travel route; a second information receiving unit that receives second information, which is the driving-related information subsequent to the first information; an image signal generating unit that generates a first image signal based on the first information and generates a second image signal based on the second information; and The light processing unit has a configuration in which, with respect to the image forming surface when viewed from the driver's seat, a left line segment object that is a line segment that extends diagonally from the center to the left side as it goes from the top to the bottom; a right line segment object disposed on the right side of the left line segment object and extending obliquely from the center to the right as it goes from top to bottom; a first information object that is an object generated from the first image signal, the first information object including at least one of straight and curved line segments, and that is arranged along one of the left and right line segment objects at a position outside the one of the left and right line segment objects in the left-right direction; a second information object generated from the second image signal, the second information object including at least one of a straight line and a curved line, the second information object being located along the one line segment object in a portion outside the one line segment object in the left-right direction and diagonally above the first information object; The light is emitted to display the image signal generation unit generates the first image signal and the second image signal so that the line segment of the first information object is displayed on the image forming surface with a line width thicker than the line segment of the second information object, and so that the first information object has higher visibility to the driver of the vehicle than the second information object. Head-up display device.

2. In the head-up display device according to claim 1, the image signal generation unit generates the first image signal and the second image signal so that the first information object is displayed on the image forming surface in a larger object size than the second information object. Head-up display device.

3. The head-up display device according to claim 1 or 2, The controller a third information receiving unit that receives third information, which is the current or most recent driving-related information in the order of a vehicle's travel route and is different from the first information; a fourth information receiving unit that receives fourth information, which is the driving-related information subsequent to the third information; and the image signal generation unit generates a third image signal based on the third information and also generates a fourth image signal based on the fourth information; The light processing unit has a configuration in which, with respect to the image forming surface when viewed from the driver's seat, a third information object that is generated from the third image signal and is arranged at a position along one of the left line segment object and the right line segment object, the third information object being located outside the other line segment object that is different from the one of the left line segment object and the right line segment object in the left-right direction; a fourth information object generated from the fourth image signal, the fourth information object being arranged along the other line segment object in a portion outside the other line segment object in the left-right direction and diagonally above the third information object; and emitting light to display Head-up display device.

4. In the head-up display device according to claim 3, the first information and the second information are the same type of driving-related information, The third information and the fourth information are the same type of driving-related information. Head-up display device.

5. In the head-up display device according to claim 3 or claim 4, the first information and the second information are road sign information, the third information and the fourth information are route guidance information, When the vehicle is a right-hand drive vehicle, the one line segment object is the right line segment object and the other line segment object is the left line segment object, If the vehicle is a left-hand drive vehicle, the one line segment object is the left line segment object and the other line segment object is the right line segment object. Head-up display device.

6. The head-up display device according to any one of claims 1 to 5, The controller a fifth information receiving unit configured to receive fifth information regarding the presence or absence of a preceding vehicle and, if there is a preceding vehicle, the distance between the preceding vehicle and the preceding vehicle; the image signal generation unit also generates a fifth image signal based on the fifth information; The light processing unit has a configuration in which, with respect to the image forming surface when viewed from the driver's seat, emits light so as to display a fifth information object that is an object generated from the fifth image signal and is located between the left line segment object and the right line segment object; Head-up display device.

Citation Information

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