Parking assist system

Information

  • Patent Grant
  • 10569804
  • Patent Number
    10,569,804
  • Date Filed
    Monday, January 15, 2018
    6 years ago
  • Date Issued
    Tuesday, February 25, 2020
    4 years ago
Abstract
A parking assist system for a vehicle includes a rearward viewing camera, a display and a controller. When operating in a first mode, the controller generates a first overlay at the displayed images that includes a representation of a target parking position. When the vehicle is in a reverse gear, the controller operates in a second mode and generates second and third overlays at the displayed images. The second overlay includes a representation of a projected rearward path of the vehicle that is based on a current steering angle of the vehicle. When operating in the second mode and after the representation of the target parking position is positioned at a displayed target parking space for the vehicle, the controller determines a target path for the vehicle to guide the driver to the target parking space, with the third overlay including a representation of the determined target path.
Description
FIELD OF THE INVENTION

The present invention relates to a parking assist system for use in vehicles.


BACKGROUND OF THE INVENTION

Parking assist systems are currently available only on certain luxury vehicles, and are typically relatively complex systems that are either entirely or semi-autonomous, capable of steering and/or driving the vehicle into a parking spot. Such systems typically require significant processing power in order to determine a suitable path to follow during the parking maneuver. Such systems can be relatively expensive.


It would be advantageous if a parking assist system were available that required relatively less processing power, that was relatively simpler, and was relatively less expensive than some systems of the prior art.


SUMMARY OF THE INVENTION

In a first aspect, the invention is directed to a parking assist system for a vehicle, wherein a target parking position overlay is added to a rearview scene displayed to the vehicle driver.


In a particular embodiment of the first aspect, the parking assist system includes a camera mounted to the vehicle so as to receive a rearward scene, a display in the vehicle connected to the camera and configured to display an image of the rearward scene, and a controller configured to add an overlay to the image of the rearward scene. The overlay includes a representation of a target parking position.


In a second aspect, the invention is directed to a parking assist system for a vehicle, that is configured to select a target path for the vehicle driver to follow while parking the vehicle, to inform the driver of the vehicle's projected path based on the vehicle's steering angle, and to inform the driver of whether the projected path matches the target path.


In a particular embodiment of the second aspect, the parking assist system includes a camera mounted to the vehicle so as to receive a rearward scene, a display in the vehicle connected to the camera and configured to display an image of the rearward scene, and a controller configured to add an overlay to the image of the rearward scene. The overlay includes a representation of a projected path for the vehicle based on a current vehicle steering angle, and a representation of a target path for the vehicle.


In a third aspect, the invention is directed to a parking assist system for a vehicle, wherein the parking assist system has two modes of operation. In a first mode a first overlay is added to a rearview scene displayed to the vehicle driver. The first overlay includes a representation of a target parking position. In a second mode a second overlay is added to the rearview scene displayed to the vehicle driver. The second overlay includes a representation of a projected path for the vehicle based on a current vehicle steering angle, and a representation of a target path segment for the vehicle.


In a particular embodiment of the third aspect, the parking assist system includes a camera mounted to the vehicle so as to receive a rearward scene, a display in the vehicle connected to the camera and configured to display an image of the rearward scene, and a controller configured to operate the parking assist system in two operating modes. In a first operating mode the controller is configured to add a first overlay to the image of the rearward scene, wherein the first overlay includes a representation of a target parking position. In a second operating mode the controller is configured to add a second overlay to the image of the rearward scene, wherein the second overlay includes a representation of a projected path for the vehicle based on a current vehicle steering angle, and a representation of a target path segment for the vehicle.


In a fourth aspect, the invention is directed to a parking assist system for a vehicle, wherein the parking assist system selects a plurality of target path segments for the vehicle to follow to park in a target parking spot, wherein each target path segment involves the vehicle having steering wheels pointed straight or at full lock.


In a particular embodiment of the fourth aspect, the parking assist system includes a camera mounted to the vehicle so as to receive a rearward scene, a display in the vehicle connected to the camera and configured to display an image of the rearward scene, and a controller configured to select a plurality of target path segments for the vehicle to follow to park in a target parking spot. Each target path segment involves the vehicle having the steering wheels pointed straight or at full lock.





BRIEF DESCRIPTION OF THE DRAWINGS

The present invention will now be described by way of example only with reference to the attached drawings, in which:



FIG. 1 is a schematic illustration of a parking assist system in accordance with an embodiment of the present invention;



FIG. 2 is a view of a rearward scene on a display that is part of the parking assist system shown in FIG. 1;



FIG. 3 is a view of a rearward scene on the display shown in FIG. 3, with the parking assist system in a parking spot locator mode;



FIG. 4 is a view of a rearward scene on the display shown in FIG. 3, with the parking assist system in the parking spot locator mode, after the vehicle has traveled past a target parking spot;



FIG. 5 is a view of a rearward scene on the display shown in FIG. 3, with the parking assist system in the parking spot locator mode, after the vehicle has backed up to a suitable position to park in the target parking spot;



FIG. 6 is a view of a rearward scene on the display shown in FIG. 3, with the parking assist system in a parking guidance mode, showing the alignment between the projected path of the vehicle with a first target path segment for the vehicle;



FIGS. 7a-7d are views of a rearward scene on the display shown in FIG. 3, with the parking assist system in the parking guidance mode, illustrating the progression of the vehicle along the first target path segment;



FIGS. 8a-8c are views of a rearward scene on the display shown in FIG. 3, with the parking assist system in the parking guidance mode, showing the progression towards alignment between the projected path of the vehicle with a second target path segment for the vehicle;



FIGS. 9a and 9b are views of a rearward scene on the display shown in FIG. 3, with the parking assist system in the parking guidance mode, illustrating the progression of the vehicle along the second target path segment;



FIGS. 10a-10d are views of a rearward scene on the display shown in FIG. 3, with the parking assist system in the parking guidance mode, showing the progression towards alignment between the projected path of the vehicle with a third target path segment for the vehicle;



FIG. 11 is a view of a rearward scene on the display shown in FIG. 3, with the parking assist system in the parking guidance mode, showing the vehicle having nearly completed the third target path segment for the vehicle; and



FIG. 12 is a view of a rearward scene on the display shown in FIG. 3, with the parking system in the parking guidance mode, wherein the vehicle is parking in a perpendicular parking spot.





DETAILED DESCRIPTION OF THE INVENTION

Reference is made to FIG. 1, which shows a parking assist system 10 for use in a vehicle 11, in accordance with an embodiment of the present invention. The parking assist system includes a camera 12, a controller 14 and a display 16. The camera 12 is positioned on the vehicle 11 for rearward viewing and receives a rearward scene shown at 18. The controller 14 communicates with the camera 12 and sends an image 20 of the rearward scene 18 (FIG. 2) to the display 16, which is positioned in the vehicle cabin. The display 16 is positioned to display the image 20 of the rearward scene 18 to the vehicle driver.


When the vehicle driver wants to use the parking assist system 10 (FIG. 1), he or she presses a button in the interior of the vehicle 11, which activates the parking assist system 10 in a first mode, which is a parking spot locator mode. When in the parking spot locator mode, the controller 14 adds an overlay 22 (FIG. 3) to the image 20, which assists the driver in finding a suitable parking spot for the vehicle 11 (FIG. 1). The overlay 22 (FIG. 3) includes a rectangle 24 which is a representation of a target parked position which is offset a selected distance behind and a selected distance laterally from the vehicle 11 (FIG. 1). The size of the rectangle 24 (FIG. 3) preferably represents substantially the length and further preferably represents substantially the width of the vehicle 11 (FIG. 1).


The overlay 22 (FIG. 3) also includes a line 26 extending along the outside edge (shown at 28) of the rectangle 24 (i.e., the side edge of the rectangle 24 that faces outwardly from the parking spot).


The line 26 extends a selected distance forward of the rectangle 24 and a selected distance rearward of the rectangle 24 and assists the driver of the vehicle 11 in lining up the vehicle 11 to be parallel to the parking lane.


With the overlay 22 shown on the image 20, the driver drives along the road until he or she finds a potential parking spot, shown at 30 in FIG. 4. In the exemplary embodiment shown in the figures, the driver drove forward to find the potential parking spot 30. As shown in FIG. 4, the vehicle 11 has overshot the potential parking spot 30 and so the forward edge of the rectangle 24 is too far forward, overlapping with the vehicle (shown at 32) that is forward of the potential parking spot 30. Having driven too far forward, the driver may put vehicle 11 (FIG. 1) into reverse gear in order to back up to superimpose the rectangle 24 on the potential parking spot 30.


When the vehicle is in reverse, a representation 34 of the projected path of the vehicle is added to the included in the overlay 22 that is provided with the image 20 shown on the display 16. The representation 34 is based on the steering angle of the vehicle and is updated as the steering angle changes.


The representation 34 includes several features such as lateral edge lines 36 and distance markers 38. The lateral edge lines 36 correspond to the lateral edges of the vehicle. The distance markers 38 each correspond to a selected distance behind the vehicle, preferably in uniform increments.


As shown in FIG. 5, the vehicle 11 (FIG. 1) has backed up sufficiently to superimpose the rectangle 24 on the potential parking spot 30. Once in this position, the driver can see that the vehicle 11 (FIG. 1) has sufficient room to fit in the parking spot 30. It is optionally possible for the length of the rectangle 24 to be the length required by the vehicle to fit in the parking spot instead of simply representing the length of the vehicle 11 (FIG. 1) itself. As will be understood by one skilled in the art, the length required by the vehicle (FIG. 1) to park in a spot is some amount longer than the length of the vehicle (FIG. 1) itself.


Once the driver has decided that the parking spot 30 (FIG. 5) is suitable, he or she may press another button on the dashboard to activate the parking assist system 10 (FIG. 1) in a parking guidance mode, as shown in FIG. 6.


In the parking guidance mode, the parking assist system 10 (FIG. 1) determines a target path for the vehicle 11 to follow in order to park in the spot delineated by the rectangle 24 (FIG. 6) at the time that the parking guidance mode was initiated.


When in the parking guidance mode, two representations are shown on the display 16. One is the aforementioned representation 34 of the vehicle's projected path at the current steering angle. The other is a representation shown at 40a of a segment of the target path to reach the parking spot delineated by the rectangle 24 (FIG. 5).


Initially, the driver turns the vehicle's steering wheel until the projected path representation 34 of the vehicle substantially aligns with the target path segment representation 40a. When they are suitably aligned, the parking assist system 10 may notify the driver that he/she can proceed to back the vehicle up along the target path. Alternatively, the alignment of the representations 34 and 40a visually on the display 16 may itself be considered notification to the driver that the projected path suitably matches the target path.


Referring to FIGS. 7a, 7b, 7c and 7d, as the driver backs the vehicle up progressively along the target path segment, a distal portion 42 of the target path representation 40a change from one color to another, shortening the length of the proximal portion 44 of the representation 40a that remains in the first color. This gives the driver an indication of how much of the target path segment remains to be driven before another phase of the parking maneuver is to be made.


Once the vehicle has driven the entire target path segment, the parking assist system 10 selects the next segment of the target path for the vehicle to follow, and represents it on the display 16 as the representation 40b shown in FIG. 8a. The second target path segment representation 40b guides the driver in the turn-in phase of the parking maneuver. At the point in time shown in FIG. 8a, the vehicle's steering wheels are still pointed straight since the first target path segment which was just completed was a straight segment. Thus, at the point in time shown in FIG. 8a, the driver's projected path represented at 34 is misaligned with the second target path segment represented at 40b.


As the driver turns the steering wheel to align the vehicle's projected path with the target path segment, the projected path representation 34 becomes progressively aligned with and superimposed with the target path segment representation 40b, as shown in FIG. 8b. After the driver turns the steering wheel sufficiently, the vehicle's projected path is aligned with the vehicle's target path segment, as shown by the representations 34 and 40b in FIG. 8c. The target path segment illustrated in FIGS. 8a, 8b and 8c may be the path at full wheel lock (i.e., at the maximum steering angle the vehicle is capable of).



FIGS. 9a and 9b show the progress of the vehicle along the second target path segment. Once the vehicle has moved along the entire second target path segment, the parking assist system 10 selects the next (i.e., third) target path segment for the vehicle to follow, which is represented in FIG. 10a at 40c. The third target path segment is the tuck-in phase of the parking maneuver and requires that the driver turn the steering wheel to the opposite limit. FIGS. 10a-10d illustrate the driver turning the wheel to bring the projected path into alignment with the third target path segment.


Once the projected path and third target path segment are aligned, the driver backs the vehicle up along the third target path segment. FIG. 11 illustrates the vehicle having completed almost all of the third target path segment. After the third target path segment is completed, the driver has completed the entire parking maneuver. Optionally he/she can drive forward if desired to adjust the spacing between the driver's vehicle and the vehicles in front and behind.


It will be noted that the parking maneuver includes three phases, a backup phase wherein the vehicle is backed up in a straight line (with the wheels pointing straight), a turn-in phase wherein the vehicle is backed up at full wheel lock in one direction, and a tuck-in phase wherein the vehicle is backed up at full wheel lock in the other direction. Providing target path segments wherein the wheels are pointed straight or are at full lock simplifies the process of aligning the projected path with the target path segment, and simplifies keeping the vehicle along the target path segment.


While backing the vehicle up along a target path segment, if the driver for some reason veers off the target path by more than a selected amount, the parking assist system 10 notifies the driver, and optionally aborts the parking maneuver.


Optionally, the parking assist system 10 can permit the driver to select whether the parking spot is to the left of the vehicle (as shown in the figures) or to the right of the vehicle. For a parking spot on the right of the vehicle, the turn-in and tuck-in phases would be mirror images of the turn-in and tuck-in phases illustrated in FIGS. 8a-11.


It will be understood that the three target path segments need not all be the same length.


It will be noted that the rectangle 24 (FIG. 5) is at a fixed position behind and to the side of the vehicle. The target path for the parking maneuver is thus the same each time the vehicle is to be parked although it may be mirrored in the optional embodiment wherein the parking assist system 10 permits selecting a parking spot on the other side (i.e., the right side) of the vehicle. As a result of the consistency in the parking maneuver, the parking maneuver need not be recalculated each time the vehicle uses the parking assist system 10. This permits the parking assist system 10 to operate using relatively inexpensive control hardware and software.


In the above description, the in-cabin display 16 was used as the human/machine interface and provided the driver with instructions visually/graphically for driving the vehicle into a parking spot. It is possible to provide instructions to the driver by other means in addition to or instead of using the in-cabin display 16. For example, the human/machine interface could include a speaker (e.g., from the vehicle's sound system) and could emit audible messages to the driver via the speaker. Such messages could be instructions in any language, such as English. For example, an instruction could be given audibly to turn the vehicle steering wheel to a selected position (e.g., full lock to the left). It will be noted that such an instruction would in effect inform the driver of the target path for the vehicle. In addition to the audible messages, or instead of them, a chime or a beep could be emitted at points in the parking process where the driver is supposed to carry out a new maneuver, to let the driver know that he/she is off course, to let the driver know that he/she is on course (i.e., that the projected vehicle path matches the target path), or for any other suitable purpose.


In the above description a method and system were described for parallel parking into a parking spot. It is also possible for an embodiment of the invention to be provided for parking into a perpendicular parking spot 30 (see FIG. 12). A perpendicular parking spot 30 is a parking spot that is perpendicular to the direction of travel of the vehicle when driving by. Perpendicular parking spots are typically used in parking lots for malls, office buildings and the like. In the position shown in FIG. 12, the vehicle has already completed some portion of the parking process and is backing into the parking spot 30.


While the above description constitutes a plurality of embodiments of the present invention, it will be appreciated that the present invention is susceptible to further modification and change without departing from the fair meaning of the accompanying claims.

Claims
  • 1. A parking assist system for a vehicle, the parking assist system comprising: a camera mounted to the vehicle so as to have a field of view rearward of the vehicle, wherein the camera captures images of a rearward scene rearward of the vehicle;a display in the vehicle that displays images captured by the camera;a controller, wherein the controller is activated in a first mode in response to actuation of a first user input in the vehicle and is activated in a second mode in response to actuation of a second user input in the vehicle;wherein, when operating in the first mode, the controller generates a first overlay at the displayed images of the rearward scene, and wherein the first overlay includes a representation of a target parking position, and wherein the representation of the target parking position is displayed so as to appear offset a selected distance behind the vehicle and a selected distance laterally from the vehicle;wherein the representation of the target parking position has a length that represents the length of the vehicle and wherein the representation of the target parking position has a width that represents the width of the vehicle;wherein the controller is operable in the first mode while the vehicle is being driven;wherein, when operating in the first mode, the vehicle is driven to position the representation of the target parking position at a displayed target parking space for the vehicle;wherein, when the vehicle is in a reverse gear, and responsive to actuation of the second user input, the controller operates in the second mode, and wherein, when operating in the second mode, the controller generates a second overlay and a third overlay at the displayed images of the rearward scene;wherein the second overlay includes a representation of a projected rearward path of the vehicle that is based on a current steering angle of the vehicle; andwherein, when operating in the second mode and after the representation of the target parking position is positioned at the displayed target parking space for the vehicle, the controller determines a target path for the vehicle to guide the driver to the target parking space, and wherein the third overlay includes a representation of the determined target path.
  • 2. The parking assist system of claim 1, wherein the representation of the target parking position comprises a rectangle.
  • 3. The parking assist system of claim 2, wherein the first overlay includes a line extending along an outside edge of the rectangle that extends a selected distance forward and rearward of the rectangle to assist the driver of the vehicle in lining up the vehicle to be parallel to the target parking space.
  • 4. The parking assist system of claim 1, wherein the target parking space is parallel to a direction of travel of the vehicle.
  • 5. The parking assist system of claim 1, wherein the target parking space is perpendicular to a direction of travel of the vehicle.
  • 6. The parking assist system of claim 1, wherein the controller informs the driver of the projected rearward path for the vehicle based on the current steering angle of the vehicle, and informs the driver of whether the projected path matches the determined target path.
  • 7. The parking assist system of claim 6, wherein the controller is operable in the first mode while the vehicle is being driven in a forward direction along the road.
  • 8. The parking assist system of claim 6, wherein, when the vehicle is moving along the determined target path, the controller adds a representation of the progress of the vehicle on the determined target path.
  • 9. The parking assist system of claim 6, wherein the representation of the projected rearward path of the vehicle has a width that represents the entire width of the vehicle.
  • 10. The parking assist system of claim 6, wherein the controller is configured to select a plurality of target path segments for the vehicle to follow.
  • 11. The parking assist system of claim 10, wherein the controller informs the driver of the target path segments via at least one of the display and a speaker.
  • 12. The parking assist system of claim 11, wherein the controller informs the driver of the target path segments by instructing the driver to turn the steering wheel of the vehicle to a selected position.
  • 13. The parking assist system of claim 10, wherein the controller informs the driver of whether or not the projected rearward path matches the determined target path via a speaker.
  • 14. The parking assist system of claim 10, wherein each target path segment involves the vehicle having steering wheels pointed straight or at full lock, and wherein the plurality of target path segments comprises three target path segments, including a first target path segment in which the vehicle is driven straight rearwardly, a second target path segment in which the vehicle is driven rearwardly with the steering wheels at full lock in one direction, and a third target path segment in which the vehicle is driven rearwardly with the steering wheels at full lock in the opposite direction.
  • 15. The parking assist system of claim 14, wherein the length of each target path segment remains constant from one parking maneuver to another.
  • 16. A parking assist system for a vehicle, the parking assist system comprising: a camera mounted to the vehicle so as to have a field of view rearward of the vehicle, wherein the camera captures images of a rearward scene rearward of the vehicle;a display in the vehicle that displays images captured by the camera;a controller, wherein the controller is activated in a first mode in response to actuation of a first user input in the vehicle and is activated in a second mode in response to actuation of a second user input in the vehicle;wherein, when operating in the first mode, the controller generates a first overlay at the displayed images of the rearward scene, and wherein the first overlay includes a representation of a target parking position, and wherein the representation of the target parking position is displayed so as to appear offset a selected distance behind the vehicle and a selected distance laterally from the vehicle;wherein the representation of the target parking position has a length that represents the length of the vehicle and wherein the representation of the target parking position has a width that represents the width of the vehicle;wherein the controller is operable in the first mode while the vehicle is being driven;wherein, when operating in the first mode, the vehicle is driven to position the representation of the target parking position at a displayed target parking space for the vehicle;wherein the first overlay includes a line extending along an outside edge of the representation of the target parking position that extends a selected distance forward and rearward of the representation of the target parking position to assist the driver of the vehicle in lining up the vehicle with the target parking space;wherein, when the vehicle is in a reverse gear, and responsive to actuation of the second user input, the controller operates in the second mode, and wherein, when operating in the second mode, the controller generates a second overlay and a third overlay at the displayed images of the rearward scene;wherein the second overlay includes a representation of a projected rearward path of the vehicle that is based on a current steering angle of the vehicle;wherein, when operating in the second mode and after the representation of the target parking position is positioned at the displayed target parking space for the vehicle, the controller determines a target path for the vehicle to guide the driver to the target parking space, and wherein the third overlay includes a representation of the determined target path; andwherein the controller informs the driver of the projected rearward path for the vehicle based on the current steering angle of the vehicle, and informs the driver of whether or not the projected path matches the determined target path.
  • 17. The parking assist system of claim 16, wherein the controller is operable in the first mode while the vehicle is being driven in a forward direction along the road.
  • 18. The parking assist system of claim 16, wherein, when the vehicle is moving along the determined target path, the controller adds a representation of the progress of the vehicle on the determined target path.
  • 19. A parking assist system for a vehicle, the parking assist system comprising: a camera mounted to the vehicle so as to have a field of view rearward of the vehicle, wherein the camera captures images of a rearward scene rearward of the vehicle;a display in the vehicle that displays images captured by the camera;a controller, wherein the controller is activated in a first mode in response to actuation of a first user input in the vehicle and is activated in a second mode in response to actuation of a second user input in the vehicle;wherein, when operating in the first mode, the controller generates a first overlay at the displayed images of the rearward scene, and wherein the first overlay includes a representation of a target parking position, and wherein the representation of the target parking position is displayed so as to appear offset a selected distance behind the vehicle and a selected distance laterally from the vehicle;wherein the representation of the target parking position has a length that represents the length of the vehicle and wherein the representation of the target parking position has a width that represents the width of the vehicle;wherein the controller is operable in the first mode while the vehicle is being driven forwardly or rearwardly along a road;wherein, when operating in the first mode, the vehicle is driven to position the representation of the target parking position at a displayed target parking space for the vehicle;wherein, when the vehicle is in a reverse gear, and responsive to actuation of the second user input, the controller operates in the second mode, and wherein, when operating in the second mode, the controller generates a second overlay and a third overlay at the displayed images of the rearward scene;wherein the second overlay includes a representation of a projected rearward path of the vehicle that is based on a current steering angle of the vehicle;wherein, when operating in the second mode and after the representation of the target parking position is positioned at the displayed target parking space for the vehicle, the controller determines a target path for the vehicle to guide the driver to the target parking space, and wherein the third overlay includes a representation of the determined target path;wherein the representation of the determined target path comprises a plurality of target path segments for the vehicle to follow toward the target parking space; andwherein, when the vehicle is moving along the determined target path, the controller adds a representation of the progress of the vehicle on the determined target path.
  • 20. The parking assist system of claim 19, wherein the representation of the target parking position comprises a rectangle, and wherein the first overlay includes a line extending along an outside edge of the rectangle that extends a selected distance forward and rearward of the rectangle to assist the driver of the vehicle in lining up the vehicle to be parallel to the target parking space.
CROSS REFERENCE TO RELATED APPLICATIONS

The present application is a continuation of U.S. patent application Ser. No. 15/278,110, filed Sep. 28, 2016, now U.S. Pat. No. 9,868,463, which is a continuation of U.S. patent application Ser. No. 14/524,203, filed Oct. 27, 2014, now U.S. Pat. No. 9,457,717, which is a continuation of U.S. patent application Ser. No. 13/384,672, filed Jan. 18, 2012, now U.S. Pat. No. 8,874,317, which is a 371 national phase filing of PCT Application No. PCT/US2010/043330, filed Jul. 27, 2010, which claims the filing benefit of U.S. provisional application Ser. No. 61/228,655, filed Jul. 27, 2009, which are hereby incorporated herein by reference in their entireties.

US Referenced Citations (471)
Number Name Date Kind
2632040 Rabinow Mar 1953 A
2827594 Rabinow Mar 1958 A
3141393 Platt Jul 1964 A
3349394 Carver Oct 1967 A
3601614 Platzer Aug 1971 A
3612666 Rabinow Oct 1971 A
3665224 Kelsey May 1972 A
3680951 Jordan Aug 1972 A
3689695 Rosenfield et al. Sep 1972 A
3708231 Walters Jan 1973 A
3746430 Brean Jul 1973 A
3807832 Castellion Apr 1974 A
3811046 Levick May 1974 A
3813540 Albrecht May 1974 A
3862798 Hopkins Jan 1975 A
3947095 Moultrie Mar 1976 A
3962600 Pittman Jun 1976 A
3985424 Steinacher Oct 1976 A
3986022 Hyatt Oct 1976 A
4037134 Löper Jul 1977 A
4052712 Ohama et al. Oct 1977 A
4093364 Miller Jun 1978 A
4111720 Michel et al. Sep 1978 A
4161653 Bedini Jul 1979 A
4200361 Malvano Apr 1980 A
4214266 Myers Jul 1980 A
4218698 Bart et al. Aug 1980 A
4236099 Rosenblum Nov 1980 A
4247870 Gabel et al. Jan 1981 A
4249160 Chilvers Feb 1981 A
4266856 Wainwright May 1981 A
4277804 Robison Jul 1981 A
4281898 Ochiai Aug 1981 A
4288814 Talley et al. Sep 1981 A
4355271 Noack Oct 1982 A
4357558 Massoni et al. Nov 1982 A
4381888 Momiyama May 1983 A
4420238 Felix Dec 1983 A
4431896 Lodetti Feb 1984 A
4443057 Bauer Apr 1984 A
4460831 Oettinger et al. Jul 1984 A
4481450 Watanabe et al. Nov 1984 A
4491390 Tong-Shen Jan 1985 A
4512637 Ballmer Apr 1985 A
4529275 Ballmer Jul 1985 A
4529873 Ballmer Jul 1985 A
4546551 Franks Oct 1985 A
4549208 Kamejima et al. Oct 1985 A
4571082 Downs Feb 1986 A
4572619 Reininger Feb 1986 A
4580875 Bechtel Apr 1986 A
4600913 Caine Jul 1986 A
4603946 Kato Aug 1986 A
4614415 Hyatt Sep 1986 A
4620141 McCumber et al. Oct 1986 A
4623222 Itoh Nov 1986 A
4626850 Chey Dec 1986 A
4629941 Ellis Dec 1986 A
4630109 Barton Dec 1986 A
4632509 Ohmi Dec 1986 A
4638287 Umebayashi et al. Jan 1987 A
4647161 Müller Mar 1987 A
4669825 Itoh Jun 1987 A
4669826 Itoh Jun 1987 A
4671615 Fukada Jun 1987 A
4672457 Hyatt Jun 1987 A
4676601 Itoh Jun 1987 A
4690508 Jacob Sep 1987 A
4692798 Seko et al. Sep 1987 A
4697883 Suzuki Oct 1987 A
4701022 Jacob Oct 1987 A
4713685 Nishimura et al. Dec 1987 A
4717830 Botts Jan 1988 A
4727290 Smith Feb 1988 A
4731669 Hayashi et al. Mar 1988 A
4741603 Miyagi May 1988 A
4768135 Kretschmer et al. Aug 1988 A
4789904 Peterson Dec 1988 A
4793690 Gahan Dec 1988 A
4817948 Simonelli Apr 1989 A
4820933 Hong Apr 1989 A
4825232 Howdle Apr 1989 A
4838650 Stewart Jun 1989 A
4847772 Michalopoulos et al. Jul 1989 A
4862037 Farber et al. Aug 1989 A
4867561 Fujii et al. Sep 1989 A
4871917 O'Farrell et al. Oct 1989 A
4872051 Dye Oct 1989 A
4881019 Shiraishi et al. Nov 1989 A
4882565 Gallmeyer Nov 1989 A
4886960 Molyneux Dec 1989 A
4891559 Matsumoto et al. Jan 1990 A
4892345 Rachael, III Jan 1990 A
4895790 Swanson et al. Jan 1990 A
4896030 Miyaji Jan 1990 A
4907870 Brucker Mar 1990 A
4910591 Petrossian et al. Mar 1990 A
4916374 Schierbeek Apr 1990 A
4917477 Bechtel et al. Apr 1990 A
4937796 Tendler Jun 1990 A
4953305 Van Lente et al. Sep 1990 A
4956591 Schierbeek Sep 1990 A
4961625 Wood et al. Oct 1990 A
4967319 Seko Oct 1990 A
4970653 Kenue Nov 1990 A
4971430 Lynas Nov 1990 A
4974078 Tsai Nov 1990 A
4987357 Masaki Jan 1991 A
4991054 Walters Feb 1991 A
5001558 Burley et al. Mar 1991 A
5003288 Wilhelm Mar 1991 A
5012082 Watanabe Apr 1991 A
5016977 Baude et al. May 1991 A
5027001 Torbert Jun 1991 A
5027200 Petrossian et al. Jun 1991 A
5044706 Chen Sep 1991 A
5055668 French Oct 1991 A
5059877 Teder Oct 1991 A
5064274 Alten Nov 1991 A
5072154 Chen Dec 1991 A
5086253 Lawler Feb 1992 A
5096287 Kakinami et al. Mar 1992 A
5097362 Lynas Mar 1992 A
5121200 Choi Jun 1992 A
5124549 Michaels et al. Jun 1992 A
5130709 Toyama et al. Jul 1992 A
5148014 Lynam Sep 1992 A
5168378 Black Dec 1992 A
5170374 Shimohigashi et al. Dec 1992 A
5172235 Wilm et al. Dec 1992 A
5177685 Davis et al. Jan 1993 A
5182502 Slotkowski et al. Jan 1993 A
5184956 Langlais et al. Feb 1993 A
5189561 Hong Feb 1993 A
5193000 Lipton et al. Mar 1993 A
5193029 Schofield Mar 1993 A
5204778 Bechtel Apr 1993 A
5208701 Maeda May 1993 A
5245422 Borcherts et al. Sep 1993 A
5253109 O'Farrell Oct 1993 A
5276389 Levers Jan 1994 A
5285060 Larson et al. Feb 1994 A
5289182 Brillard et al. Feb 1994 A
5289321 Secor Feb 1994 A
5305012 Faris Apr 1994 A
5307136 Saneyoshi Apr 1994 A
5309137 Kajiwara May 1994 A
5313072 Vachss May 1994 A
5325096 Pakett Jun 1994 A
5325386 Jewell et al. Jun 1994 A
5329206 Slotkowski et al. Jul 1994 A
5331312 Kudoh Jul 1994 A
5336980 Levers Aug 1994 A
5341437 Nakayama Aug 1994 A
5351044 Mathur et al. Sep 1994 A
5355118 Fukuhara Oct 1994 A
5359363 Kuban et al. Oct 1994 A
5374852 Parkes Dec 1994 A
5386285 Asayama Jan 1995 A
5394333 Kao Feb 1995 A
5406395 Wilson et al. Apr 1995 A
5410346 Saneyoshi et al. Apr 1995 A
5414257 Stanton May 1995 A
5414461 Kishi et al. May 1995 A
5416313 Larson et al. May 1995 A
5416318 Hegyi May 1995 A
5416478 Morinaga May 1995 A
5424952 Asayama Jun 1995 A
5426294 Kobayashi et al. Jun 1995 A
5430431 Nelson Jul 1995 A
5434407 Bauer et al. Jul 1995 A
5440428 Hegg et al. Aug 1995 A
5444478 Lelong et al. Aug 1995 A
5451822 Bechtel et al. Sep 1995 A
5457493 Leddy et al. Oct 1995 A
5461357 Yoshioka et al. Oct 1995 A
5461361 Moore Oct 1995 A
5469298 Suman et al. Nov 1995 A
5471515 Fossum et al. Nov 1995 A
5475494 Nishida et al. Dec 1995 A
5498866 Bendicks et al. Mar 1996 A
5500766 Stonecypher Mar 1996 A
5510983 Iino Apr 1996 A
5515448 Nishitani May 1996 A
5521633 Nakajima et al. May 1996 A
5528698 Kamei et al. Jun 1996 A
5529138 Shaw et al. Jun 1996 A
5530240 Larson et al. Jun 1996 A
5530420 Tsuchiya et al. Jun 1996 A
5535314 Alves et al. Jul 1996 A
5537003 Bechtel et al. Jul 1996 A
5539397 Asanuma et al. Jul 1996 A
5541590 Nishio Jul 1996 A
5550677 Schofield et al. Aug 1996 A
5568027 Teder Oct 1996 A
5574443 Hsieh Nov 1996 A
5581464 Woll et al. Dec 1996 A
5594222 Caldwell Jan 1997 A
5614788 Mullins Mar 1997 A
5619370 Guinosso Apr 1997 A
5634709 Iwama Jun 1997 A
5642299 Hardin et al. Jun 1997 A
5648835 Uzawa Jul 1997 A
5650944 Kise Jul 1997 A
5660454 Mori et al. Aug 1997 A
5661303 Teder Aug 1997 A
5666028 Bechtel et al. Sep 1997 A
5668663 Varaprasad et al. Sep 1997 A
5670935 Schofield et al. Sep 1997 A
5677851 Kingdon et al. Oct 1997 A
5699044 Van Lente et al. Dec 1997 A
5724187 Varaprasad et al. Mar 1998 A
5724316 Brunts Mar 1998 A
5737226 Olson et al. Apr 1998 A
5760826 Nayer Jun 1998 A
5760828 Cortes Jun 1998 A
5760931 Saburi et al. Jun 1998 A
5760962 Schofield et al. Jun 1998 A
5761094 Olson et al. Jun 1998 A
5765116 Wilson-Jones et al. Jun 1998 A
5781437 Wiemer et al. Jul 1998 A
5786772 Schofield et al. Jul 1998 A
5790403 Nakayama Aug 1998 A
5790973 Blaker et al. Aug 1998 A
5793308 Rosinski et al. Aug 1998 A
5793420 Schmidt Aug 1998 A
5796094 Schofield et al. Aug 1998 A
5798575 O'Farrell et al. Aug 1998 A
5835255 Miles Nov 1998 A
5837994 Stam et al. Nov 1998 A
5844505 Van Ryzin Dec 1998 A
5844682 Kiyomoto et al. Dec 1998 A
5845000 Breed et al. Dec 1998 A
5848802 Breed et al. Dec 1998 A
5850176 Kinoshita et al. Dec 1998 A
5850254 Takano et al. Dec 1998 A
5867591 Onda Feb 1999 A
5877707 Kowalick Mar 1999 A
5877897 Schofield et al. Mar 1999 A
5878370 Olson Mar 1999 A
5883739 Ashihara et al. Mar 1999 A
5884212 Lion Mar 1999 A
5890021 Onoda Mar 1999 A
5896085 Mori et al. Apr 1999 A
5899956 Chan May 1999 A
5914815 Bos Jun 1999 A
5923027 Stam et al. Jul 1999 A
5929786 Schofield et al. Jul 1999 A
5940120 Frankhouse et al. Aug 1999 A
5949331 Schofield et al. Sep 1999 A
5956181 Lin Sep 1999 A
5959367 O'Farrell et al. Sep 1999 A
5959555 Furuta Sep 1999 A
5963247 Banitt Oct 1999 A
5971552 O'Farrell et al. Oct 1999 A
5986796 Miles Nov 1999 A
5990469 Bechtel et al. Nov 1999 A
5990649 Nagao et al. Nov 1999 A
6001486 Varaprasad et al. Dec 1999 A
6020704 Buschur Feb 2000 A
6049171 Stam et al. Apr 2000 A
6066933 Ponziana May 2000 A
6084519 Coulling et al. Jul 2000 A
6087953 DeLine et al. Jul 2000 A
6097023 Schofield et al. Aug 2000 A
6097024 Stam et al. Aug 2000 A
6116743 Hoek Sep 2000 A
6124647 Marcus et al. Sep 2000 A
6124886 DeLine et al. Sep 2000 A
6139172 Bos et al. Oct 2000 A
6144022 Tenenbaum et al. Nov 2000 A
6172613 DeLine et al. Jan 2001 B1
6175164 O'Farrell et al. Jan 2001 B1
6175300 Kendrick Jan 2001 B1
6198409 Schofield et al. Mar 2001 B1
6201642 Bos Mar 2001 B1
6222447 Schofield et al. Apr 2001 B1
6222460 DeLine et al. Apr 2001 B1
6243003 DeLine et al. Jun 2001 B1
6250148 Lynam Jun 2001 B1
6259412 Duroux Jul 2001 B1
6266082 Yonezawa et al. Jul 2001 B1
6266442 Laumeyer et al. Jul 2001 B1
6285393 Shimoura et al. Sep 2001 B1
6291906 Marcus et al. Sep 2001 B1
6294989 Schofield et al. Sep 2001 B1
6297781 Turnbull et al. Oct 2001 B1
6302545 Schofield et al. Oct 2001 B1
6310611 Caldwell Oct 2001 B1
6313454 Bos et al. Nov 2001 B1
6317057 Lee Nov 2001 B1
6320176 Schofield et al. Nov 2001 B1
6320282 Caldwell Nov 2001 B1
6326613 Heslin et al. Dec 2001 B1
6329925 Skiver et al. Dec 2001 B1
6333759 Mazzilli Dec 2001 B1
6341523 Lynam Jan 2002 B2
6353392 Schofield et al. Mar 2002 B1
6366213 DeLine et al. Apr 2002 B2
6370329 Teuchert Apr 2002 B1
6396397 Bos et al. May 2002 B1
6411204 Bloomfield et al. Jun 2002 B1
6411328 Franke et al. Jun 2002 B1
6420975 DeLine et al. Jul 2002 B1
6424273 Gutta et al. Jul 2002 B1
6428172 Hutzel et al. Aug 2002 B1
6430303 Naoi et al. Aug 2002 B1
6433676 DeLine et al. Aug 2002 B2
6442465 Breed et al. Aug 2002 B2
6476730 Kakinami et al. Nov 2002 B2
6477464 McCarthy et al. Nov 2002 B2
6483429 Yasui et al. Nov 2002 B1
6485155 Duroux et al. Nov 2002 B1
6497503 Dassanayake et al. Dec 2002 B1
6498620 Schofield et al. Dec 2002 B2
6513252 Schierbeek et al. Feb 2003 B1
6516664 Lynam Feb 2003 B2
6523964 Schofield et al. Feb 2003 B2
6534884 Marcus et al. Mar 2003 B2
6539306 Turnbull Mar 2003 B2
6547133 DeVries, Jr. et al. Apr 2003 B1
6553130 Lemelson et al. Apr 2003 B1
6559435 Schofield et al. May 2003 B2
6574033 Chui et al. Jun 2003 B1
6589625 Kothari et al. Jul 2003 B1
6593565 Heslin et al. Jul 2003 B2
6594583 Ogura et al. Jul 2003 B2
6611202 Schofield et al. Aug 2003 B2
6611610 Stam et al. Aug 2003 B1
6627918 Getz et al. Sep 2003 B2
6636258 Strumolo Oct 2003 B2
6648477 Hutzel et al. Nov 2003 B2
6650233 DeLine et al. Nov 2003 B2
6650455 Miles Nov 2003 B2
6672731 Schnell et al. Jan 2004 B2
6674562 Miles Jan 2004 B1
6678056 Downs Jan 2004 B2
6678614 McCarthy et al. Jan 2004 B2
6680792 Miles Jan 2004 B2
6690268 Schofield et al. Feb 2004 B2
6700605 Toyoda et al. Mar 2004 B1
6703925 Steffel Mar 2004 B2
6704621 Stein et al. Mar 2004 B1
6710908 Miles et al. Mar 2004 B2
6711474 Treyz et al. Mar 2004 B1
6714331 Lewis et al. Mar 2004 B2
6717610 Bos et al. Apr 2004 B1
6735506 Breed et al. May 2004 B2
6741377 Miles May 2004 B2
6744353 Sjönell Jun 2004 B2
6757109 Bos Jun 2004 B2
6762867 Lippert et al. Jul 2004 B2
6794119 Miles Sep 2004 B2
6795221 Urey Sep 2004 B1
6802617 Schofield et al. Oct 2004 B2
6806452 Bos et al. Oct 2004 B2
6822563 Bos et al. Nov 2004 B2
6823241 Shirato et al. Nov 2004 B2
6824281 Schofield et al. Nov 2004 B2
6825880 Asahi et al. Nov 2004 B2
6831261 Schofield et al. Dec 2004 B2
6847487 Burgner Jan 2005 B2
6882287 Schofield Apr 2005 B2
6889161 Winner et al. May 2005 B2
6891563 Schofield et al. May 2005 B2
6898495 Tanaka et al. May 2005 B2
6909753 Meehan et al. Jun 2005 B2
6940423 Takagi et al. Sep 2005 B2
6946978 Schofield Sep 2005 B2
6947064 Hahn et al. Sep 2005 B1
6953253 Schofield et al. Oct 2005 B2
6968736 Lynam Nov 2005 B2
6975775 Rykowski et al. Dec 2005 B2
7004593 Weller et al. Feb 2006 B2
7004606 Schofield Feb 2006 B2
7005974 McMahon et al. Feb 2006 B2
7038577 Pawlicki et al. May 2006 B2
7062300 Kim Jun 2006 B1
7065432 Moisel et al. Jun 2006 B2
7085637 Breed et al. Aug 2006 B2
7092548 Laumeyer et al. Aug 2006 B2
7116246 Winter et al. Oct 2006 B2
7123168 Schofield Oct 2006 B2
7149613 Stam et al. Dec 2006 B2
7167796 Taylor et al. Jan 2007 B2
7202776 Breed Apr 2007 B2
7227459 Bos et al. Jun 2007 B2
7227611 Hull et al. Jun 2007 B2
7257486 Shimazaki et al. Aug 2007 B2
7295227 Asahi et al. Nov 2007 B1
7311406 Schofield et al. Dec 2007 B2
7325934 Schofield et al. Feb 2008 B2
7325935 Schofield et al. Feb 2008 B2
7339149 Schofield et al. Mar 2008 B1
7344261 Schofield et al. Mar 2008 B2
7366595 Shimizu et al. Apr 2008 B1
7369940 Frank et al. May 2008 B2
7380948 Schofield et al. Jun 2008 B2
7388182 Schofield et al. Jun 2008 B2
7402786 Schofield et al. Jul 2008 B2
7425076 Schofield et al. Sep 2008 B2
7432248 Schofield et al. Sep 2008 B2
7459664 Schofield et al. Dec 2008 B2
7526103 Schofield et al. Apr 2009 B2
7561181 Schofield et al. Jul 2009 B2
7598887 Sato et al. Oct 2009 B2
7616781 Schofield et al. Nov 2009 B2
7619508 Lynam et al. Nov 2009 B2
7639149 Katoh Dec 2009 B2
7680570 Mori Mar 2010 B2
7720580 Higgins-Luthman May 2010 B2
7914187 Higgins-Luthman et al. Mar 2011 B2
8285479 Kawabata et al. Oct 2012 B2
8874317 Marczok et al. Oct 2014 B2
9457717 Marczok et al. Oct 2016 B2
9868463 Marczok et al. Jan 2018 B2
20020015153 Downs Feb 2002 A1
20020044065 Quist et al. Apr 2002 A1
20020113873 Williams Aug 2002 A1
20020159270 Lynam et al. Oct 2002 A1
20030080877 Takagi et al. May 2003 A1
20030137586 Lewellen Jul 2003 A1
20030222982 Hamdan et al. Dec 2003 A1
20030227777 Schofield Dec 2003 A1
20040012488 Schofield Jan 2004 A1
20040016870 Pawlicki et al. Jan 2004 A1
20040032321 McMahon et al. Feb 2004 A1
20040051634 Schofield et al. Mar 2004 A1
20040114381 Salmeen et al. Jun 2004 A1
20040128065 Taylor et al. Jul 2004 A1
20040130464 Schindler et al. Jul 2004 A1
20040153243 Shimazaki et al. Aug 2004 A1
20040200948 Bos et al. Oct 2004 A1
20050078389 Kulas et al. Apr 2005 A1
20050134966 Burgner Jun 2005 A1
20050134983 Lynam Jun 2005 A1
20050146792 Schofield et al. Jul 2005 A1
20050169003 Lindahl et al. Aug 2005 A1
20050195488 McCabe et al. Sep 2005 A1
20050200700 Schofield et al. Sep 2005 A1
20050203704 Frank et al. Sep 2005 A1
20050232469 Schofield et al. Oct 2005 A1
20050264891 Uken et al. Dec 2005 A1
20050285758 Matsukawa et al. Dec 2005 A1
20060018511 Stam et al. Jan 2006 A1
20060018512 Stam et al. Jan 2006 A1
20060028731 Schofield et al. Feb 2006 A1
20060050018 Hutzel et al. Mar 2006 A1
20060091813 Stam et al. May 2006 A1
20060103727 Tseng May 2006 A1
20060164230 DeWind et al. Jul 2006 A1
20060250501 Wildmann et al. Nov 2006 A1
20060287825 Shimizu et al. Dec 2006 A1
20060287826 Shimizu et al. Dec 2006 A1
20070021881 Mori Jan 2007 A1
20070023613 Schofield et al. Feb 2007 A1
20070104476 Yasutomi et al. May 2007 A1
20070109406 Schofield et al. May 2007 A1
20070109651 Schofield et al. May 2007 A1
20070109652 Schofield et al. May 2007 A1
20070109653 Schofield et al. May 2007 A1
20070109654 Schofield et al. May 2007 A1
20070120657 Schofield et al. May 2007 A1
20070176080 Schofield et al. Aug 2007 A1
20080180529 Taylor et al. Jul 2008 A1
20090113509 Tseng et al. Apr 2009 A1
20100013670 Hueppauff et al. Jan 2010 A1
20100045797 Schofield et al. Feb 2010 A1
20100235053 Iwakiri et al. Sep 2010 A1
20100286872 Endo et al. Nov 2010 A1
20130046441 Marczok et al. Feb 2013 A1
Foreign Referenced Citations (48)
Number Date Country
3248511 Jul 1984 DE
10065327 Aug 2001 DE
10109680 Oct 2001 DE
102005034700 Feb 2007 DE
60031011 Apr 2007 DE
102006061597 Jul 2007 DE
102008049113 May 2009 DE
0513476 Nov 1992 EP
1065642 Jan 2001 EP
1510442 Jan 2007 EP
1950097 Jul 2008 EP
1308346 Dec 2008 EP
2055536 May 2009 EP
2585991 Feb 1987 FR
2672857 Aug 1992 FR
2673499 Sep 1992 FR
934037 Aug 1963 GB
2137573 Oct 1984 GB
2244187 Nov 1991 GB
2255539 Nov 1992 GB
55039843 Mar 1980 JP
58110334 Jun 1983 JP
58209635 Dec 1983 JP
59114139 Jul 1984 JP
5913336 Sep 1984 JP
6080953 May 1985 JP
60261275 Nov 1985 JP
6079889 Oct 1986 JP
62122487 Jun 1987 JP
62122844 Jun 1987 JP
6272245 Aug 1987 JP
6414700 Jan 1989 JP
01123587 May 1989 JP
30061192 Mar 1991 JP
4114587 Apr 1992 JP
40245886 Sep 1992 JP
50000638 Jan 1993 JP
0550883 Mar 1993 JP
0577657 Mar 1993 JP
5213113 Aug 1993 JP
06227318 Aug 1994 JP
074170 Jan 1995 JP
07105496 Apr 1995 JP
2630604 Apr 1997 JP
WO199621581 Jul 1996 WO
WO2007012516 Feb 2007 WO
WO2008055567 May 2008 WO
WO2009036176 Mar 2009 WO
Non-Patent Literature Citations (8)
Entry
G. Wang, D. Renshaw, P.B. Denyer and M. Lu, CMOS Video Cameras, article, 1991, 4 pages, University of Edinburgh, UK.
Tokimaru et al., “CMOS Rear-View TV System with CCD Camera”, National Technical Report vol. 34, No. 3, pp. 329-336, Jun. 1988 (Japan).
International Search Report dated Sep. 16, 2010 from corresponding PCT application No. PCT/US2010/04440.
Reexamination Control No. 90/007,519, dated Jun. 9, 2005, Reexamination of U.S. Pat. No. 6,222,447, issued to Schofield et al.
Reexamination Control No. 90/007,520, dated Jun. 9, 2005, Reexamination of U.S. Pat. No. 5,949,331, issued to Schofield et al.
Reexamination Control No. 90/011,478, dated Mar. 28, 2011, Reexamination of U.S. Pat. No. 6,222,447, issued to Schofield et al.
Reexamination Control No. 90/011,477, dated Mar. 14, 2011, Reexamination of U.S. Pat. No. 5,949,331, issued to Schofield et al.
EP Supplementary Search Report for EP Application No. EP10804947, dated Mar. 22, 2013.
Related Publications (1)
Number Date Country
20180134315 A1 May 2018 US
Provisional Applications (1)
Number Date Country
61228655 Jul 2009 US
Continuations (3)
Number Date Country
Parent 15278110 Sep 2016 US
Child 15871172 US
Parent 14524203 Oct 2014 US
Child 15278110 US
Parent 13384672 US
Child 14524203 US