SENSING DEVICE
20230098698 ยท 2023-03-30
Inventors
Cpc classification
B60S1/56
PERFORMING OPERATIONS; TRANSPORTING
B60R11/04
PERFORMING OPERATIONS; TRANSPORTING
G02B27/0006
PHYSICS
H04N23/52
ELECTRICITY
G01S2007/4975
PHYSICS
G01S7/00
PHYSICS
International classification
B60R11/04
PERFORMING OPERATIONS; TRANSPORTING
B60S1/56
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Realization of a sensing device that does not suspend the sensing function. A sensing device having a sensor for sensing the external environment through a window frame portion provided at a predetermined position of a main body of a vehicle or the like, and a plurality of protective members for protecting the sensor are provided. At least one of the protective members is arranged at the window frame portion, and the sensor is arranged inside the protective member at the window frame portion to be protected, and the protective member at the window frame portion, is evacuated from the window frame portion when it becomes dirty or periodically, and instead, another protective member is moved to be arranged at the window frame portion and the evacuated protective member is washed by the washing device so that it can be used again.
Claims
1.-15. (canceled)
16. A sensing device having a sensor that senses the external environment through a window frame portion provided at a predetermined position of a main body of a vehicle or the like, wherein a plurality of protective members are provided to protect the sensor, at least one of the plurality of protective members is arranged at the window frame portion, the sensor is placed inside the protective member at the window frame portion, to be protected, the protective member placed at the window frame portion is evacuated from the window frame portion when it becomes dirty or periodically, and instead of it another new protective member moves to the window frame portion, the protective member that has been evacuated is washed by a washing machine to be available again, the evacuation from the window frame portion and the movement to the window frame portion are realized in such a manner that the plurality of protective members are connected to each other horizontally, vertically, or diagonally, and the entire connected protective member rotates, the evacuation of the protective member arranged at the window frame portion is performed by the rotational operation of the entire protective member, the movement arrangement of the next new protective member to the window frame portion is performed by the rotational operation of the entire protective member, when the protective member is evacuated and moved to be arranged, the rotation center axis in the rotational operation of the entire connected protective member, moves away from the window frame portion fixed to the main body of the vehicle or the like, and returns to the original position with approaching, when sensing, the protective member is in close contact with the window frame portion.
17. The sensing device according to claim 16, wherein the entire connected protective member constitutes a part of a substantially spherical protective device, the sensor is arranged in the spherical protective device, and by the rotation of the spherical protective device, a plurality of the protective members are replaced sequentially.
18. The sensing device according to claim 17, wherein an urging means for urging the spherical protective device toward the window frame portion is provided, a gear is attached to the rotating shaft of the spherical protective device, and by moving the gear with a solenoid rod or a tip of the rotating arm, the rotating shaft is evacuated in a direction away from the window frame portion and approaches to the window frame portion again, while being rotated by a predetermined angle, so that the evacuation and movement to be arranged of the protective member against the window frame portion, is realized.
19. A sensing device having a sensor that senses the external environment through a window frame portion provided at a predetermined position of a main body of a vehicle or the like, wherein a plurality of protective members are provided to protect the sensor, at least one of the plurality of protective members is arranged at the window frame portion, the sensor is placed inside the protective member at the window frame portion, to be protected, the protective member placed at the window frame portion is evacuated from the window frame portion when it becomes dirty or periodically, and instead of it another new protective member moves to the window frame portion, the protective member that has been evacuated is washed by a washing machine to be available again, the evacuation from the window frame portion and the movement to the window frame portion are realized in such a manner that the plurality of protective members are connected to each other horizontally, vertically, or diagonally, and the entire connected protective member rotates,
20. A sensing device having a sensor that senses the external environment through a window frame portion provided at a predetermined position of a main body of a vehicle or the like, wherein a plurality of protective members are provided to protect the sensor, at least one of the plurality of protective members is arranged at the window frame portion, the sensor is placed inside the protective member at the window frame portion, to be protected, the protective member placed at the window frame portion is evacuated from the window frame portion when it becomes dirty or periodically, and instead of it another new protective member moves to the window frame portion, the protective member that has been evacuated is washed by a washing machine to be available again, the evacuation from the window frame portion and the movement to the window frame portion are realized in such a manner that the plurality of protective members are connected to each other horizontally, vertically, or diagonally, and the entire connected protective member rotates, the evacuation of the protective member arranged at the window frame portion is performed by the rotational operation of the entire protective member, the movement arrangement of the next new protective member to the window frame portion is performed by the rotational operation of the entire protective member, when the protective member is evacuated and moved to be arranged and when during the sensing, the rotation center axis in the entire rotational operation of the protective member does not separate or move closer against the window frame portion, and when the protective member is evacuated and moved to be arranged and when during the sensing, the window frame portion does not separate or move closer against the rotation center axis in the entire rotational operation of the protective member, the protective member is a flat plate, and by the flat plate of the protective member, when the sensing is executed, the protective member contacts with the window frame member or the shielding member fixed to the window frame member, but when the protective member rotates to evacuate and move to be arranged, the main surface of the protective member does not contact with the vertical portions of the window frame member or the vertical portions of the shielding member.
21. A sensing device having a sensor that senses the external environment through a window frame portion provided at a predetermined position of a main body of a vehicle or the like, wherein a plurality of protective members are provided to protect the sensor, at least one of the plurality of protective members is arranged at the window frame portion, the sensor is placed inside the protective member at the window frame portion, to be protected, the protective member placed at the window frame portion is evacuated from the window frame portion when it becomes dirty or periodically, and instead of it another new protective member moves to the window frame portion, the protective member that has been evacuated is washed by a washing machine to be available again, the evacuation from the window frame portion and the movement to the window frame portion are realized in such a manner that the plurality of protective members are connected to each other horizontally, vertically, or diagonally, and the entire connected protective member rotates. the evacuation of the protective member arranged at the window frame portion is performed by the rotational operation of the entire protective member, the movement arrangement of the next new protective member to the window frame portion is performed by the rotational operation of the entire protective member, when the protective member is evacuated and moved to be arranged and when during the sensing, the rotation center axis in the entire rotational operation of the protective member does not separate or move closer against the window frame portion, and when the protective member is evacuated and moved to be arranged and when during the sensing, the window frame portion does not separate or move closer against the rotation center axis in the entire rotational operation of the protective member, during the sensing, a gap generated between the vertical portion of the protective member and the vertical portion of the window frame portion is shielded by a shielding member provided on the protective member side.
22. A vehicle provided with the sensing device according to claim 16.
23. A vehicle provided with the sensing device according to claim 17.
24. A vehicle provided with the sensing device according to claim 18.
25. A vehicle provided with the sensing device according to claim 19.
26. A vehicle provided with the sensing device according to claim 20.
27. A vehicle provided with the sensing device according to claim 21.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0042] The invention is best understood from the following detailed description when read in connection with the accompanying drawing. It is emphasized that, according to common practice, the various features of the drawing are not to scale. On the contrary, the dimensions of the various features are arbitrarily expanded or reduced for clarity. Included in the drawing are the following figures:
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS OF THE INVENTION
[0071] Hereinafter, embodiments of the sensing device of the present invention will be described with reference to the drawings.
[0072]
[0073] <a case when the rotation center axis J of the protective member 6 moves>
[0074]
[0075] The sensing device 2 is provided with a substantially spherical protection device 5, and the protection device 5 is a device for arranging and protecting the sensor 4 inside. The protective device 5 includes a protective member 6. That is, six substantially rectangular protective members 6 are connected to each other in a band shape to form an endless ring. In the example of the figure, it is a hexagon, but it may be a dodecagon or a further polygon. Further, it may be circular as described below. Reference numeral 60 indicates the entire connected protective member. Then, in the entire protective member 60, one protective member 6 which is a part thereof is arranged close to the inside of the window frame portion 3. The shape of the protective member 6 is a curved surface or a flat plate in consideration of refraction of light and the like. Further, the shape of the entire connected protective member 60 is circular (planar view).
[0076] Further, a hemisphere upper lid 7 and a hemisphere lower lid 8 are attached to the upper side and the lower side of the entire connected protective member 60. The entire connected protective member 60, the upper lid 7 and the lower lid 8 form a substantially spherical shape. The sensor 4 is built-in and arranged in the substantially spherical shape.
[0077] Further, the upper cylindrical rotation shaft 9 is fixed to the apex of the upper lid 7, and the lower cylindrical rotation shaft 10 is fixed to the bottom of the lower lid 8.
[0078] The upper end of the upper cylindrical rotation shaft 9 is held rotatably and slidably in a direction perpendicular to the window frame portion 3 by the main body side support wall 11 which is a part of the main body 1 of the car. That is, it is rotatably inserted into the elongated hole opening 12 formed in the main body side support wall 11, and the direction of the elongated hole opening 12 is substantially perpendicular to the window frame portion 3.
[0079] On the other hand, the lower end of the lower cylindrical rotating shaft 10 is rotatably supported by the main body side support base 13 which is a part of the main body 1 of the car. That is, it is rotatably and slidably inserted in the elongated hole opening 14 formed in the main body side support base 13, in a direction perpendicular to the window frame portion 3. The direction of the elongated hole opening 14 is also substantially perpendicular to the window frame portion 3 as in the direction of the elongated hole opening 12.
[0080] The upper end of the lower cylindrical rotating shaft 10 is fixed to the bottom of the lower lid 8 as described above, but the inside of the cylindrical rotating shaft 10 and the inside of the spherical shape communicate with each other, and a support shaft 15 that supports the sensor 4, and the power cable and communication cable 41 of the sensor 4, pass through the inside of the cylindrical rotating shaft, The lower end of the support shaft 15 is fixedly supported by the main body side support base 13. The thickness of the support shaft 15 is considerably thinner than the inner diameter of the cylindrical rotating shaft, as will be described later.
[0081] Further, a leaf spring 18 is provided on the main body 1, the provide position of which is opposite to the window frame portion 3 with respect to the lower cylindrical rotating shaft 10, and the tip of the leaf spring 18 is configured to constantly urge the lower cylindrical rotating shaft 10 to the window frame portion 3.
[0082] A gear 16 is fixed to the lower cylindrical rotating shaft 10. A rotary arm 17 is rotatably provided on the main body 1. The tip of the rotary arm 17 is rotatable and is arranged at a position where it is caught by the uneven portion of the gear 16. As a result, the tip is caught by the gear 16 in the state as shown in the figure, and it can rotate the gear 16 clockwise. The detailed situation will be explained below.
[0083] In
[0084] In response to such movement of the gear 16, the lower cylindrical rotating shaft 10 to which the gear 16 is fixed, and the entire connected protective member 60 fixed to the lower cylindrical rotating shaft 10, rotate clockwise while they move toward the back and move back again.
[0085] Note that
[0086] In response to the above-mentioned rotational operation of the rotating arm 17, the entire 60 of the connected protective member 6 rotates and goes back while being separated from the window frame portion 3, and further rotates while approaching the window frame portion 3 with keeping a distance and finally abuts on it. According to the series of the operations, the entire 60 of the protective member 6 rotates a certain distance, and the dirty protective member 6 which has been in contact with the window frame portion 3 until then, moves away from the window frame portion 3, and at the same time, a new next protective member 6 approaches the window frame portion 3 and comes into contact with the window frame portion 3, thereby replaced.
[0087] When the protective member 6 rotates so that the protective member 6 is replaced in this way, it is avoided as much as possible that the protective member 6 rotates while being in contact with the window frame portion 3. As a result because at least the newly supplied protective member 6 is not replaced while being rubbed by the window frame portion 3, there is no concern that the new protective member 6 will be soiled by the dirty window frame portion 3.
[0088] The gear 16 is not necessarily limited to a normal gear, and may be a bone-shaped member of an umbrella, for example, as long as it has a shape in which the rotary arm 17 is caught and moved.
[0089] Then, as shown in
[0090] As a result, immediately after the protective member 6 becomes dirty and unusable, a new next protective member 6 can be supplied, so that sensing is not interrupted due to washing or drying. This contributes to the safety of automobile automation.
[0091] Further, since the sensor 4 is arranged inside the spherical protection device 5, there is no concern that the washing liquid or the drying air from the washing (drying) machine 19 will be applied to the sensor 4, so that the electronic parts of the sensor 4 may be not damaged. There is no need to worry, so there is a high degree of selection freedom in its strength and material.
[0092] Further, by designing the support shaft 15 that supports the sensor 4 to be sufficiently thin, even if the lower cylindrical rotation shaft 10 moves back and forth, there is no concern that the cylindrical rotating shaft will collide with the support shaft 15. This eliminates the need to move the support shafts 15 at the same time and simplifies the structure.
[0093] Next, the uneven shape of the peripheral edge of the gear 16 and the shape of the rotary arm 17 will be described. As shown in
[0094]
[0095] That is, the tension spring 30 constantly urges the lower cylindrical rotating shaft 10 in the direction of the window frame portion 3. Further, the solenoid rod 31 is such means for pushing the unevenness of the gear 16 by a reciprocating motion at the tip thereof, to rotate and push by a predetermined distance the gear 16 to the side opposite to the window frame portion 3.
[0096] As shown in
[0097] After that, when the solenoid rod 1 evacuated, the rotation of the gear 16 is stopped at the same position, and the gear 16 moves to the window frame portion 3 side by the force of the tension spring 30. In this way, due to the reciprocating operation of the solenoid rod 31, the protective member 6 rotates while being separated from the window frame portion 3, and comes into contact with the window frame portion 3 again while reducing the distance.
[0098] As shown in
[0099] Further, as shown in
[0100] Of course, the separation/approach and rotation of the protective member 6 with respect to the window frame portion 3 can be realized by different means of one means for the separation/approach and another means for rotation.
[0101] In this case, the protective member 6 or the window frame portion 3 may be provided with a shielding member as a cushioning means or as a means for closing the gap (not shown).
<when the window frame portion 3 side, moves>
[0102] Next, a case where the window frame portion 3 moves against to the rotation center axis J in the rotational operation of the entire 60 of the protective member 6, will be described. In this case, the protective member 6 only rotates with respect to the main body 1, and the window frame portion 3 moves against the main body 1.
[0103] In the embodiment shown in
[0104] As shown in
[0105]
[0106] In such a structure, in the case shown in
[0107] In this case, since the vertical bar L at the rotation source side opens to the outside, there is no concern that the next piece (b) will be rubbed by the presence of the vertical bar L, and it will not get dirty. The vertical bar L side, may have a hinge structure (not shown).
[0108] In this case, the protective member 6 or the window frame portion 3 may be provided with a shielding member as a cushioning means or as a means for closing the gap (not shown).
[0109] <When neither the window frame portion 3 side, nor the rotation center axis J side in the rotation operation of the entire 60 of the protective member 6, moves>
[0110] Next, such cases are described that when the protective member 6 is evacuated (goes back) and moved, and even during the sensing, the rotation center axis J in the rotational operation of the entire 60 of the protective member 6 is not separated from and does not approach the window frame portion 3, and when the protective member 6 is evacuated (goes back) and moved, and even during the sensing, the window frame portion 3 is not separated from and does not approach the rotation center axis J in the rotational operation of the entire 60 of the protective member 6. That is, the entire 60 of the protective member 6 is only rotated with respect to the main body 1, and the window frame portion 3 is not moved with respect to the main body 1.
[0111] 1. As one embodiment, it is such case where sensing is performed while leaving a gap between the protective member 6 and the window frame portion 3. In such a case, dust and muddy water may enter, so there is a concern that the surface of the new next protective member 6 will become dirty. Therefore, it is desirable to design the gap as narrow as possible.
[0112]
[0113] 2. As another embodiment, it is possible to provide a shielding member 50 that closes the gap generated between the protective member 6 and the window frame portion 3 during sensing.
[0114] 2-1 As an example thereof, a case where the shielding member 50 is attached to the window frame portion 3 side, will be described with reference to
[0115]
[0116] Here, the meaning of the case when the protective member 6 is a curved plate, it has an arcuate cylindrical shape in a plan view, and the meaning of the case when the window frame portion 3 is a curved frame, the bar members at the upper and lower positions thereof are curved in a plan view. The vertical bar is straight. A flat frame is a straight line in a plan view.
[0117] In the sense of closing the gap, it is important whether the shape of the shielding member 50 at the protective member 6 side, is a curved surface or a flat surface, regardless of the shape of the window frame portion 3. Whatever the shape of the window frame portion 3 (for example, wavy) it is, it is enough that the shape of the shielding member 50 at the window frame portion 3 side, may be suitable (wavy).
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[0122] That is, in this embodiment, the protective member 6 is a flat plate, but arc-shaped eaves 62 are provided above and below the protective member 6. It may be the same material as the protective member 6, or it may be a different material.
[0123] On the other hand, the upper and lower bars (M, N) of the window frame portion 3 are curved frames. Then, the shielding member 50 is fixed to the window frame portion 3. The upper and lower portions 50a of the shielding member 50 are also curved. This curved surface has an arc shape corresponding to the rotation of the eaves 62. Therefore, there is no concern that the eaves 62 collides with the shielding member 50. As described above, the shape of the window frame portion 3 at the shielding member 50 side, is not essential, and the shape of the shielding member 50 at the protection member 6 side is important. That is, the window frame portion 3 itself can be a flat frame, and the portions 50a at the upper and lower positions of the shielding member 50 may have a curved surface shape.
[0124] Further, the left and right bars (R, L) of the window frame portion 3 are straight, and further, the vertical portions 50b at the left and right positions of the rectangular shielding member 50 project toward the protective member 6 side, respectively.
[0125] During sensing, the gap between the protective member 6 and the window frame portion 3 is closed by the eaves 62 and the upper and lower portions 50a of the shielding member 50 as to the upper and lower positions. And the gap is closed by the left and right of the protective member 6 and the left and right portions 50b of the shielding member 50 as to the left and right positions. Therefore, there is no concern that dust and muddy water will invade the inside and contaminate the new next protective member 6.
[0126] Further, at the time of replacement of the protective member 6, since the protective member 6 is a flat plate, there is no need to worry about continuing rubbing against the left and right portions 50b of the shielding member 50.
[0127] The eaves 62 can also be used as a part of the shielding member 50. As will be described later, this is an example in which a part of the shielding member 50 is provided on the protective member 6 side and the remaining part is provided on the window frame portion 3 side.
[0128] In the examples of
[0129] 2-2 The case where the shielding member is attached to the protective member 6 side will be described with reference to
[0130]
[0131] In this case, since the shielding member 50 is attached to the protective member 6 side, there is no concern that the new protective member 6 will be contaminated by the shielding member 50 when the protective member 6 is replaced, and the rotation of the protective member 6 will be interfered.
[0132]
[0133] In this case as well, there is no concern that the new protective member 6 will be contaminated by the shielding member 50 when the protective member 6 is replaced, and there is no concern that the rotation of the protective member 6 will be hindered.
[0134] As shown in
[0135] The examples shown in
[0136] The sensing position state is a stationary state during sensing, in which the main surface of the protective member 6 faces the window frame portion 3 and the gap between the protective member 6 and the window frame portion 3 is shielded by the shielding member 50 and sealed so that dust and the like do not enter the inside from the outside.
[0137]
[0138]
[0139] 2-3 It is also possible to provide a part of the shielding member 50 to the protective member 6 side, and the remaining part to the window frame portion 3 side.
[0140] For example, as shown in
[0141] In this case, since the vertical shielding member 50d is provided at the left and right positions on the protective member 6 side, there is no need to worry about rubbing the protective member 6. Further, since the protective member 6 is a curved plate and the portions 50c at the upper and lower positions of the shielding member 50 also have an arcuate shape corresponding to the shape, there is no concern that dust or the like will invade during sensing. There is no concern that the protective member 6 will collide with the upper and lower portions 50c of the shielding member 50 and cannot rotate.
[0142] Generally, the material of the shielding member 50 is freedom of choice, but it is desirable to have some elastic force. Further, the shielding member 60 may be formed by preparing an independent member and joining it to another member, but it can also be integrally molded with the other member.
[0143] Further, when the protective member 6 is a curved plate, it is desirable to arrange the element of the sensor 4 at the center of the entire 60 of the protective member 6 in order to avoid the influence of refraction and the like.
[0144] Further, it is desirable that the frame for holding the sensing device 2 is fixed to the portion of the vehicle body 1 on which the window frame portion 3 is formed. Since automobiles and the like vibrate violently, it is desirable that fluctuations of the relative distance between the sensing device 2, that is, the protective member 6 and the window frame portion 3 can be suppressed as much as possible while the vibration.
[0145] In order to detect the dirt on the protective member 6 and determine the replacement, two cameras are prepared and three-dimensional images are taken in the case of capturing an optical image, and for example, It is desirable to determine whether it is a black object inside the scenery or a stain on the protective member 6.
[0146] In addition, when light, radio waves, or ultrasonic waves are transmitted and their reflection is taken and sensed, the time interval between the transmission and reflection is used to identify whether the protective member 6 is dirty or there is reflection from the environment.
[0147] The window frame portion of the present invention is preferably a window frame member prepared as a separate member and installed by being fitted into the main body, but the edge itself of the opening formed in the main body is used as the window frame portion. May be good.
[0148] The shape of the window frame is not limited to a rectangle, but may be circular. In that case, the shape of the protective member shall be the corresponding shape.
[0149] In the above embodiment, the protective member was replaced when it became dirty, but it may be replaced periodically.
[0150] Further, although the plurality of protective members connected endlessly are in the horizontal direction in the above embodiment, they may be connected in the vertical direction or the diagonal direction depending on in some cases.
[0151] Also, the replacement of the protective member may be a linear movement instead of a rotational movement. The replacement may be performed by linearly moving the long protective members connected in a straight line.
[0152] Further, the film winder may be arranged on the left and right, and the connected film-like protective members may be replaced one after another by the winding action of the winder.
[0153] Further, the protective member is such a member that may be contaminated by wind and rain, and is not necessarily such a member located immediately in front of the sensor. Other members such as a transparent plate may be placed immediately in front of the sensor.
INDUSTRIAL APPLICABILITY
[0154] According to the sensing device of the present invention, there is an effect that the sensing function is not interrupted even if the protective member becomes dirty, and it is useful as a semi-automatic or fully automatic vehicle sensing device.
DRAWING REFERENCE NUMBERS
[0155] 1 Main body (vehicle)
2 Sensing device
3 Window frame portion
4 Sensor
[0156] 5 Protection device
6 Protective material
60 entire connected protective member
7 Upper lid
8 Lower lid
[0157] 9 Upper cylindrical rotation shaft
10 Lower cylindrical rotating shaft
11 Main body side support wall
12 Opening
[0158] 13 Main body side support base
14 Opening
[0159] 15 Support shaft
16 gears
17 Rotary arm
[0160] 18 Leaf spring
19 Washing (drying) machine
20 Left side wall
21 Right side wall
30 Tension spring
31 Solenoid rod
[0161] 50, 50a, 50b, 50c, 50d Shielding member
61 corner
62 Eaves
[0162] J Rotation center axis
R, L, M, N frame bar
W window