US20190193625A1 - Vehicle spotlight with tracking feature - Google Patents
Vehicle spotlight with tracking feature Download PDFInfo
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- US20190193625A1 US20190193625A1 US16/285,725 US201916285725A US2019193625A1 US 20190193625 A1 US20190193625 A1 US 20190193625A1 US 201916285725 A US201916285725 A US 201916285725A US 2019193625 A1 US2019193625 A1 US 2019193625A1
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- Prior art keywords
- spotlight
- vehicle
- lighting system
- light
- vehicle lighting
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Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60Q—ARRANGEMENT OF SIGNALLING OR LIGHTING DEVICES, THE MOUNTING OR SUPPORTING THEREOF OR CIRCUITS THEREFOR, FOR VEHICLES IN GENERAL
- B60Q1/00—Arrangement of optical signalling or lighting devices, the mounting or supporting thereof or circuits therefor
- B60Q1/02—Arrangement of optical signalling or lighting devices, the mounting or supporting thereof or circuits therefor the devices being primarily intended to illuminate the way ahead or to illuminate other areas of way or environments
- B60Q1/24—Arrangement of optical signalling or lighting devices, the mounting or supporting thereof or circuits therefor the devices being primarily intended to illuminate the way ahead or to illuminate other areas of way or environments for lighting other areas than only the way ahead
- B60Q1/245—Searchlights, e.g. adjustable from within the vehicle
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V23/00—Arrangement of electric circuit elements in or on lighting devices
- F21V23/003—Arrangement of electric circuit elements in or on lighting devices the elements being electronics drivers or controllers for operating the light source, e.g. for a LED array
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60Q—ARRANGEMENT OF SIGNALLING OR LIGHTING DEVICES, THE MOUNTING OR SUPPORTING THEREOF OR CIRCUITS THEREFOR, FOR VEHICLES IN GENERAL
- B60Q1/00—Arrangement of optical signalling or lighting devices, the mounting or supporting thereof or circuits therefor
- B60Q1/0017—Devices integrating an element dedicated to another function
- B60Q1/0023—Devices integrating an element dedicated to another function the element being a sensor, e.g. distance sensor, camera
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60Q—ARRANGEMENT OF SIGNALLING OR LIGHTING DEVICES, THE MOUNTING OR SUPPORTING THEREOF OR CIRCUITS THEREFOR, FOR VEHICLES IN GENERAL
- B60Q1/00—Arrangement of optical signalling or lighting devices, the mounting or supporting thereof or circuits therefor
- B60Q1/0076—Switches therefor
- B60Q1/0082—Switches therefor mounted on the steering wheel
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B62—LAND VEHICLES FOR TRAVELLING OTHERWISE THAN ON RAILS
- B62D—MOTOR VEHICLES; TRAILERS
- B62D1/00—Steering controls, i.e. means for initiating a change of direction of the vehicle
- B62D1/02—Steering controls, i.e. means for initiating a change of direction of the vehicle vehicle-mounted
- B62D1/04—Hand wheels
- B62D1/046—Adaptations on rotatable parts of the steering wheel for accommodation of switches
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21S—NON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
- F21S43/00—Signalling devices specially adapted for vehicle exteriors, e.g. brake lamps, direction indicator lights or reversing lights
- F21S43/20—Signalling devices specially adapted for vehicle exteriors, e.g. brake lamps, direction indicator lights or reversing lights characterised by refractors, transparent cover plates, light guides or filters
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V15/00—Protecting lighting devices from damage
- F21V15/01—Housings, e.g. material or assembling of housing parts
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V21/00—Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
- F21V21/14—Adjustable mountings
- F21V21/15—Adjustable mountings specially adapted for power operation, e.g. by remote control
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V21/00—Supporting, suspending, or attaching arrangements for lighting devices; Hand grips
- F21V21/14—Adjustable mountings
- F21V21/30—Pivoted housings or frames
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V23/00—Arrangement of electric circuit elements in or on lighting devices
- F21V23/04—Arrangement of electric circuit elements in or on lighting devices the elements being switches
- F21V23/0442—Arrangement of electric circuit elements in or on lighting devices the elements being switches activated by means of a sensor, e.g. motion or photodetectors
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21V—FUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
- F21V5/00—Refractors for light sources
- F21V5/04—Refractors for light sources of lens shape
-
- H—ELECTRICITY
- H05—ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
- H05B—ELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
- H05B47/00—Circuit arrangements for operating light sources in general, i.e. where the type of light source is not relevant
- H05B47/10—Controlling the light source
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60Q—ARRANGEMENT OF SIGNALLING OR LIGHTING DEVICES, THE MOUNTING OR SUPPORTING THEREOF OR CIRCUITS THEREFOR, FOR VEHICLES IN GENERAL
- B60Q2400/00—Special features or arrangements of exterior signal lamps for vehicles
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60Q—ARRANGEMENT OF SIGNALLING OR LIGHTING DEVICES, THE MOUNTING OR SUPPORTING THEREOF OR CIRCUITS THEREFOR, FOR VEHICLES IN GENERAL
- B60Q2900/00—Features of lamps not covered by other groups in B60Q
- B60Q2900/30—Lamps commanded by wireless transmissions
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F21—LIGHTING
- F21W—INDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO USES OR APPLICATIONS OF LIGHTING DEVICES OR SYSTEMS
- F21W2107/00—Use or application of lighting devices on or in particular types of vehicles
- F21W2107/10—Use or application of lighting devices on or in particular types of vehicles for land vehicles
Definitions
- the present invention generally relates to lighting systems of a vehicle, and more particularly, to vehicle lighting systems having a spotlight.
- Vehicle spotlights such as those employed by law enforcement are typically mounted to an A-pillar of a vehicle.
- a user-operated handle is connected thereto and is fed into a passenger compartment of the vehicle by drilling a hole into the A-pillar.
- the operator in situations where the operator is driving the vehicle and needs to aim the spotlight, the operator must take his or her hand off the steering wheel in order to manipulate the handle.
- a vehicle lighting system that is capable of automatically controlling a spotlight while also offering manual control without requiring a user to give up control of the steering wheel.
- the present disclosure is intended to satisfy this need.
- a vehicle lighting system is provided.
- a spotlight is coupled to a vehicle and is configured to selectively project a light beam, a search beam, and a laser beam in a target direction.
- a plurality of wireless communication transceivers are configured to communicate with one or more remote devices external to the vehicle.
- a controller is configured to wirelessly send command signals to the spotlight based on input from the wireless communication transceivers.
- a vehicle lighting system is provided.
- a spotlight is coupled to a vehicle and is configured to project an invisible search beam in a target direction.
- a plurality of wireless communication transceivers are configured to communicate with one or more remote devices external to the vehicle.
- a controller is in communication with the wireless communication transceivers and is configured to wirelessly control the spotlight to track one of the remote devices.
- a vehicle lighting system is provided.
- a spotlight is coupled to a vehicle and is configured to project light in a target direction.
- a controller is configured to wirelessly send command signals to the spotlight.
- a user-input device is in communication with the controller and is provided on a steering wheel of the vehicle. The command signals are based on user-input and control at least one of an aim direction and a light activation of the spotlight.
- FIG. 1 illustrates a vehicle lighting system having a spotlight provided on a vehicle shown as a police vehicle;
- FIG. 2 illustrates an embodiment of the spotlight shown in FIG. 1 ;
- FIG. 3 is a block diagram of the vehicle lighting system
- FIG. 4 illustrates one embodiment of a user-input device for controlling the spotlight.
- the term “and/or,” when used in a list of two or more items, means that any one of the listed items can be employed by itself, or any combination of two or more of the listed items can be employed.
- the composition can contain A alone; B alone; C alone; A and B in combination; A and C in combination; B and C in combination; or A, B, and C in combination.
- the vehicle lighting system 10 includes a spotlight 12 mounted externally to a vehicle 14 exemplarily shown as a police vehicle. With respect to the depicted embodiment, the spotlight 12 is mounted to a driver side A-pillar 16 of the vehicle 14 .
- the spotlight 12 is configured to project a light beam 18 in a target direction generally pointing away from the vehicle 14 .
- the target direction may be forward, to the side, or rearward of the vehicle 14 .
- the light beam 18 is visible and has a variable beam angle ⁇ 1 corresponding to the angle between beam extents 22 and 24 .
- Beam extents 22 and 24 are opposite one another with respect to a beam axis 26 corresponding to a centerline of the light beam 18 .
- the light beam 18 typically serves to illuminate one or more objects of interest in the target direction.
- the spotlight 12 is aimed such that the light beam 18 illuminates a person 27 of interest who may be in need of assistance, is suspected of committing a crime, etc.
- the spotlight 12 is also configured to project a search beam 28 in the target direction.
- the search beam 28 is invisible and has a variable beam angle ⁇ 2 corresponding to the angle between beam extents 30 and 32 , which are opposite one another with respect to a beam axis 34 of the search beam 28 .
- the beam axis 34 corresponds to a centerline of the search beam 28 and coincides with the beam axis 26 of the light beam 18 .
- the light beam 18 and the search beam 28 share a common beam axis.
- the spotlight 12 is further configured to project a narrow laser beam 36 that coincides with the beam axis 26 of the light beam 18 and the beam axis 34 of the search beam 28 .
- the laser beam 36 is visible and is intended to highlight a centerpoint 38 of the light beam 18 and the search beam 28 .
- the centerpoint 38 lies on the beam axis 26 , 34 of the light beam 18 and the search beam 28 , respectively. Additionally, the centerpoint 38 is generally equidistant from the beam extents 22 , 24 of the light beam 18 and the beam extents 30 , 32 of the search beam 28 .
- the laser beam 36 and the light beam 18 are expressed in different colors to enable visual differentiation therebetween.
- the provision of the laser beam 36 enables a user to more accurately aim the search beam 28 in a desired direction. While the light beam 18 , search beam 28 , and laser beam 36 are shown to project at different ranges from the spotlight 12 , it will be understood that they may alternatively project at similar ranges.
- an additional spotlight 12 ′ may be mounted to a passenger side A-pillar 16 ′ if desired.
- either of the spotlights 12 , 12 ′ may be mounted to a roof structure 40 or other external structure of the vehicle 14 .
- the spotlight 12 includes a lamp head 41 having a bezel 42 that holds a lens 43 in place.
- the lamp head 41 extends vertically from an arm 44 that is connected to an attachment member 45 that is directly affixed to the driver side A-pillar 16 via one or more mechanical fasteners such as screws 46 .
- the lamp head 41 may be configured to rotate about one or more axes.
- the lamp head 41 is configured for biaxial rotation about an x-axis and a y-axis. Rotation of the lamp head 41 enables light outputted from the spotlight 12 to be aimed in different directions.
- the lamp head When the spotlight 12 is not in use, the lamp head may be rotated (e.g., 180 degrees) so as to shield the lens 43 from oncoming debris.
- operation of the spotlight 12 including the aim direction of the spotlight 12 and the projection of the light beam 18 , the search beam 28 , and/or the laser beam 36 , may be controlled automatically or manually.
- the vehicle lighting system 10 includes one or more wireless communication transceivers 47 configured to communicate with a remote device 48 located on the person 27 of interest.
- the wireless communication transceivers 47 are variously located on the vehicle 14 and may communicate with the remote device 48 over a wireless signal (e.g., radio frequency).
- the wireless communication transceivers 47 may be a Bluetooth® RN4020 module or an RN4020 Bluetooth® low energy PICtail board configured to communicate with the remote device 48 using Bluetooth® low energy (BLE) signals.
- the wireless communication transceivers 47 may include a transmitter and a receiver to transmit and receive wireless signals (e.g., Bluetooth® signals) to and from the remote device 48 . It will be appreciated that the wireless communication transceivers 47 may utilize other forms of wireless communication with the remote device 48 such as, but not limited to, Wi-Fi®.
- the wireless communication transceivers 47 are capable of communicating with the remote device 48 such that the location of the remote device 48 may be determined. For example, the location of the remote device 48 , and by extension, the person 27 of interest, may be triangulated based on signal strength and/or return time of signals between the wireless communication transceivers 47 and the remote device 48 .
- the spotlight 12 may be automatically operated to track the remote device 48 based on ongoing communications between the wireless communication transceivers 47 and the remote device 48 .
- the term “tracking” refers to rotating the lamp head 41 such that any light outputted from the spotlight 12 is projected toward an intended target. It will be understood that in tracking the remote device 48 , the spotlight 12 may be operated to project the search beam 28 , the light beam 18 , the laser beam 36 , or any combination thereof.
- the spotlight 12 may be automatically operated based on signals provided by one or more proximity sensors 50 variously located on the vehicle 14 .
- the proximity sensors 50 may be configured as ultrasonic sensors, radar, LIDAR, or other known sensor and are intended to detect objects (e.g., person 27 of interest) proximate the vehicle 14 .
- the spotlight 12 may be operated to track the detected object and project the light beam 18 , the search beam 28 , and/or the laser beam 36 toward the detected object.
- the vehicle lighting system 10 further includes a controller 52 in communication with the wireless communication transceivers 47 and the proximity sensors 50 .
- the controller 52 may be provided onboard the vehicle 14 and is configured to communicate with the wireless communication transceivers 47 and the proximity sensors 50 over a vehicle network such as a CAN bus or a LIN bus.
- the controller 52 is also configured to wirelessly communicate with the spotlight 12 .
- the controller 52 may wirelessly send command signals 54 to the spotlight 12 .
- the command signals 54 may be in the form of Bluetooth® signals, Bluetooth® low energy signals, Wi-Fi® signals, or other type of wireless signal.
- the spotlight 12 may include control circuitry 56 configured to receive the command signals 54 and operate the spotlight 12 accordingly.
- the control circuitry 56 may be provided on a printed circuit board (PCB) 58 housed inside the lamp head 41 .
- a plurality of light sources 60 may also be provided on the PCB 58 .
- the light sources 60 may include an array of light-emitting diodes (LEDs) or other light types known to a skilled artisan.
- the light sources 60 are optically coupled to the lens 43 and are configured to generate light resulting in the light beam 18 , the search beam 28 , and the laser beam 36 .
- the spotlight 12 additionally includes one or more motors 62 configured to rotate the lamp head 41 and operably coupled to the control circuitry 56 .
- the control circuitry 56 may operate the motors 62 to adjust the position of the lamp head 41 in order to change the target direction of any light outputted by the spotlight 12 .
- the command signals 54 may prompt the control circuitry 56 to operate the light sources 60 to selectively project the light beam 18 , the search beam 28 , and/or the laser beam 36 .
- the command signals 54 may be based on input provided by one or more equipment 66 onboard the vehicle 14 .
- the input may include information relating to a gear position of the vehicle 14 , that is, whether the vehicle 14 is in park, drive, reverse, neutral, etc.
- the spotlight 12 is operated in a traffic stop mode, whereby the spotlight 12 is aimed at a rear window of a stopped vehicle at a relatively high intensity (e.g., triple intensity) for a period of time (e.g., 1 minute) to cause glare onto the passenger(s) of the stopped vehicle.
- the command signals 54 may include positional information provided by the proximity sensors 50 to allow the spotlight 12 to remain aimed at the stopped vehicle despite the vehicle 14 moving in relation to the stopped vehicle.
- the command signals 54 may prompt the spotlight 12 to project light toward an object approaching the vehicle 14 . This feature is helpful in situations where the vehicle 14 is parked and its occupant(s) is not paying attention to the vehicle surroundings. For example, the spotlight 12 may be prompted to project light toward an object detected at a default or predetermined distance from the vehicle 14 .
- the command signals 54 may prompt the spotlight 12 to operate as a cornering lamp based on steering input supplied from a steering angle sensor.
- the command signals 54 may prompt the spotlight 12 to operate as an auxiliary backup lamp based on the gear position indicating that the vehicle 14 is in reverse.
- the vehicle lighting system 10 includes a user-input device 68 located inside the vehicle 14 and operably coupled to the controller 52 such that the command signals 54 sent to the spotlight 12 are based on user-specified input.
- the user-input device 68 may be variously provided inside the vehicle 14 and is typically provided within arm's reach of the driver.
- the user-input device 68 enables a user to aim the spotlight 12 , specify an operational mode of the spotlight 12 , and/or control operational states of the light beam 18 the search beam 28 , and/or the laser beam 36 .
- operational states may include light activation (e.g., ON/OFF status), intensity, beam range, beam spread, and any other light characteristics associated with beams of light.
- the user-input device 68 is shown coupled to a steering wheel 70 of the vehicle 14 .
- the user-input device 68 is provided on a face 72 of the steering wheel 60 and includes one or more user-input mechanisms 74 in the form of buttons.
- the user-input mechanisms may include capacitive switches, dials, sliders, and/or any other known mechanisms for interfacing a human with a machine.
- the user-input device 68 is used to manually aim the search beam 28 in a target direction.
- the laser beam 36 may be activated if desired.
- the user may specify a target lock feature using the user-input device 68 , and in response, the controller 52 detects one or more remote devices within the search beam 28 based on information received from the wireless communication transceivers 47 . Additionally or alternatively, objects in the search beam 28 may be detected based on information received from the proximity sensors 50 .
- the user may relinquish manual control of the spotlight 12 and the controller 52 may automatically operate the spotlight 12 to track a detected object.
- the controller 52 may send command signals 54 to the spotlight 12 to track the remote device detected inside the search beam 28 and located nearest to the vehicle 14 .
- the light beam 18 may be selectively activated through automatic or manual means.
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Abstract
Description
- This application is a divisional of and claims priority to U.S. patent application Ser. No. 15/700,627, filed on Sep. 11, 2017, entitled “VEHICLE SPOTLIGHT WITH TRACKING FEATURE,” the disclosure of which is hereby incorporated herein by reference in its entirety.
- The present invention generally relates to lighting systems of a vehicle, and more particularly, to vehicle lighting systems having a spotlight.
- Vehicle spotlights, such as those employed by law enforcement are typically mounted to an A-pillar of a vehicle. To allow the spotlight to be aimed, a user-operated handle is connected thereto and is fed into a passenger compartment of the vehicle by drilling a hole into the A-pillar. Undesirably, in situations where the operator is driving the vehicle and needs to aim the spotlight, the operator must take his or her hand off the steering wheel in order to manipulate the handle. As such, there is a need for a vehicle lighting system that is capable of automatically controlling a spotlight while also offering manual control without requiring a user to give up control of the steering wheel. The present disclosure is intended to satisfy this need.
- According to a first aspect of the present invention, a vehicle lighting system is provided. A spotlight is coupled to a vehicle and is configured to selectively project a light beam, a search beam, and a laser beam in a target direction. A plurality of wireless communication transceivers are configured to communicate with one or more remote devices external to the vehicle. A controller is configured to wirelessly send command signals to the spotlight based on input from the wireless communication transceivers.
- Embodiments of the first aspect can include any one or a combination of the following features:
-
- the light beam and the laser beam are visible, and the search beam is invisible;
- the laser beam coincides with a beam axis of the search beam and highlights a centerpoint of the search beam;
- the spotlight includes a lens secured to a lamp head and the lamp head is configured to rotate so as to shield a lens of the spotlight from oncoming debris;
- the command signals prompt the spotlight to track one of the remote devices and to project at least one of the light beam, the search beam, and the laser beam toward the one of the remote devices; and
- the command signals prompt the spotlight to track whichever remote device is located inside the search beam and is closest to the vehicle, and to project at least one of the light beam, the search beam, and the laser beam toward the remote device.
- According to a second aspect of the present invention, a vehicle lighting system is provided. A spotlight is coupled to a vehicle and is configured to project an invisible search beam in a target direction. A plurality of wireless communication transceivers are configured to communicate with one or more remote devices external to the vehicle. A controller is in communication with the wireless communication transceivers and is configured to wirelessly control the spotlight to track one of the remote devices.
- Embodiments of the first aspect can include any one or a combination of the following features:
-
- the spotlight is further configured to project a visible laser beam that coincides with a beam axis of the search beam and highlights a centerpoint of the search beam;
- the spotlight is further configured to project a visible light beam, the light beam and the search beam having a common beam axis and a variable beam angle;
- the one of the remote devices corresponds to a remote device located inside the search beam and closest to the vehicle; and
- the spotlight includes a lens secured to a lamp head and the lamp head is configured to rotate so as to shield a lens of the spotlight from oncoming debris.
- According to a third aspect of the present invention, a vehicle lighting system is provided. A spotlight is coupled to a vehicle and is configured to project light in a target direction. A controller is configured to wirelessly send command signals to the spotlight. A user-input device is in communication with the controller and is provided on a steering wheel of the vehicle. The command signals are based on user-input and control at least one of an aim direction and a light activation of the spotlight.
- Embodiments of the first aspect can include any one or a combination of the following features:
-
- the light projected from the spotlight includes at least one of a light beam, a search beam, and a laser beam;
- the light beam and laser beam are visible, and the search beam is invisible;
- the laser beam coincides with a beam axis of the search beam and highlights a centerpoint of the search beam;
- the light beam and the search beam have a common beam axis and a variable beam angle;
- the spotlight includes a lens secured to a lamp head and the lamp head is configured to rotate so as to shield a lens of the spotlight from oncoming debris;
- further comprising a plurality of wireless communication transceivers configured to communicate with one or more remote devices external to the vehicle;
- the command signals are based on input from the wireless communication transceivers and prompt the spotlight to track one of the remote devices and to project light toward the one of the remote devices; and
- the command signals are based on input from the wireless communication transceivers and prompt the spotlight to track whichever remote device is located inside the search beam and is closest to the vehicle, and to project light toward the remote device.
- These and other aspects, objects, and features of the present invention will be understood and appreciated by those skilled in the art upon studying the following specification, claims, and appended drawings.
- In the drawings:
-
FIG. 1 illustrates a vehicle lighting system having a spotlight provided on a vehicle shown as a police vehicle; -
FIG. 2 illustrates an embodiment of the spotlight shown inFIG. 1 ; -
FIG. 3 is a block diagram of the vehicle lighting system; and -
FIG. 4 illustrates one embodiment of a user-input device for controlling the spotlight. - As required, detailed embodiments of the present invention are disclosed herein. However, it is to be understood that the disclosed embodiments are merely exemplary of the invention that may be embodied in various and alternative forms. The figures are not necessarily to a detailed design and some schematics may be exaggerated or minimized to show function overview. Therefore, specific structural and functional details disclosed herein are not to be interpreted as limiting, but merely as a representative basis for teaching one skilled in the art to variously employ the present invention.
- As used herein, the term “and/or,” when used in a list of two or more items, means that any one of the listed items can be employed by itself, or any combination of two or more of the listed items can be employed. For example, if a composition is described as containing components A, B, and/or C, the composition can contain A alone; B alone; C alone; A and B in combination; A and C in combination; B and C in combination; or A, B, and C in combination.
- Referring to
FIG. 1 , avehicle lighting system 10 is shown. Thevehicle lighting system 10 includes aspotlight 12 mounted externally to avehicle 14 exemplarily shown as a police vehicle. With respect to the depicted embodiment, thespotlight 12 is mounted to adriver side A-pillar 16 of thevehicle 14. Thespotlight 12 is configured to project alight beam 18 in a target direction generally pointing away from thevehicle 14. Depending on the placement of thespotlight 12, the target direction may be forward, to the side, or rearward of thevehicle 14. Thelight beam 18 is visible and has a variable beam angle θ1 corresponding to the angle between 22 and 24. Beam extents 22 and 24 are opposite one another with respect to a beam axis 26 corresponding to a centerline of thebeam extents light beam 18. In operation, thelight beam 18 typically serves to illuminate one or more objects of interest in the target direction. For example, in the depicted embodiment, thespotlight 12 is aimed such that thelight beam 18 illuminates aperson 27 of interest who may be in need of assistance, is suspected of committing a crime, etc. - With continued reference to
FIG. 1 , thespotlight 12 is also configured to project asearch beam 28 in the target direction. Thesearch beam 28 is invisible and has a variable beam angle θ2 corresponding to the angle between 30 and 32, which are opposite one another with respect to a beam axis 34 of thebeam extents search beam 28. The beam axis 34 corresponds to a centerline of thesearch beam 28 and coincides with the beam axis 26 of thelight beam 18. Thus, in some embodiments, thelight beam 18 and thesearch beam 28 share a common beam axis. In some embodiments, thespotlight 12 is further configured to project anarrow laser beam 36 that coincides with the beam axis 26 of thelight beam 18 and the beam axis 34 of thesearch beam 28. Thelaser beam 36 is visible and is intended to highlight a centerpoint 38 of thelight beam 18 and thesearch beam 28. As shown, the centerpoint 38 lies on the beam axis 26, 34 of thelight beam 18 and thesearch beam 28, respectively. Additionally, the centerpoint 38 is generally equidistant from the 22, 24 of thebeam extents light beam 18 and the 30, 32 of thebeam extents search beam 28. Typically, thelaser beam 36 and thelight beam 18 are expressed in different colors to enable visual differentiation therebetween. In embodiments where thesearch beam 28 is invisible and/or narrow, the provision of thelaser beam 36 enables a user to more accurately aim thesearch beam 28 in a desired direction. While thelight beam 18,search beam 28, andlaser beam 36 are shown to project at different ranges from thespotlight 12, it will be understood that they may alternatively project at similar ranges. - Optionally, an
additional spotlight 12′ may be mounted to a passenger side A-pillar 16′ if desired. In alternative embodiments, either of the 12, 12′ may be mounted to aspotlights roof structure 40 or other external structure of thevehicle 14. - Referring to
FIG. 2 , thespotlight 12 includes alamp head 41 having abezel 42 that holds alens 43 in place. Thelamp head 41 extends vertically from anarm 44 that is connected to anattachment member 45 that is directly affixed to the driver side A-pillar 16 via one or more mechanical fasteners such as screws 46. Thelamp head 41 may be configured to rotate about one or more axes. For example, in the depicted embodiment thelamp head 41 is configured for biaxial rotation about an x-axis and a y-axis. Rotation of thelamp head 41 enables light outputted from thespotlight 12 to be aimed in different directions. When thespotlight 12 is not in use, the lamp head may be rotated (e.g., 180 degrees) so as to shield thelens 43 from oncoming debris. As will be described in greater detail herein, operation of thespotlight 12, including the aim direction of thespotlight 12 and the projection of thelight beam 18, thesearch beam 28, and/or thelaser beam 36, may be controlled automatically or manually. - Referring back to
FIG. 1 , thevehicle lighting system 10 includes one or morewireless communication transceivers 47 configured to communicate with aremote device 48 located on theperson 27 of interest. Thewireless communication transceivers 47 are variously located on thevehicle 14 and may communicate with theremote device 48 over a wireless signal (e.g., radio frequency). In a specific example, thewireless communication transceivers 47 may be a Bluetooth® RN4020 module or an RN4020 Bluetooth® low energy PICtail board configured to communicate with theremote device 48 using Bluetooth® low energy (BLE) signals. Thewireless communication transceivers 47 may include a transmitter and a receiver to transmit and receive wireless signals (e.g., Bluetooth® signals) to and from theremote device 48. It will be appreciated that thewireless communication transceivers 47 may utilize other forms of wireless communication with theremote device 48 such as, but not limited to, Wi-Fi®. - In operation, the
wireless communication transceivers 47 are capable of communicating with theremote device 48 such that the location of theremote device 48 may be determined. For example, the location of theremote device 48, and by extension, theperson 27 of interest, may be triangulated based on signal strength and/or return time of signals between thewireless communication transceivers 47 and theremote device 48. In response, thespotlight 12 may be automatically operated to track theremote device 48 based on ongoing communications between thewireless communication transceivers 47 and theremote device 48. As defined herein, the term “tracking” refers to rotating thelamp head 41 such that any light outputted from thespotlight 12 is projected toward an intended target. It will be understood that in tracking theremote device 48, thespotlight 12 may be operated to project thesearch beam 28, thelight beam 18, thelaser beam 36, or any combination thereof. - Additionally or alternatively, the
spotlight 12 may be automatically operated based on signals provided by one ormore proximity sensors 50 variously located on thevehicle 14. It will be understood that the location of thewireless communication transceivers 47 and theproximity sensors 50 are exemplary in nature. Theproximity sensors 50 may be configured as ultrasonic sensors, radar, LIDAR, or other known sensor and are intended to detect objects (e.g.,person 27 of interest) proximate thevehicle 14. In response to object detection, thespotlight 12 may be operated to track the detected object and project thelight beam 18, thesearch beam 28, and/or thelaser beam 36 toward the detected object. - Referring to
FIG. 3 , thevehicle lighting system 10 further includes acontroller 52 in communication with thewireless communication transceivers 47 and theproximity sensors 50. For example, thecontroller 52 may be provided onboard thevehicle 14 and is configured to communicate with thewireless communication transceivers 47 and theproximity sensors 50 over a vehicle network such as a CAN bus or a LIN bus. Thecontroller 52 is also configured to wirelessly communicate with thespotlight 12. For example, thecontroller 52 may wirelessly sendcommand signals 54 to thespotlight 12. The command signals 54 may be in the form of Bluetooth® signals, Bluetooth® low energy signals, Wi-Fi® signals, or other type of wireless signal. - The
spotlight 12 may includecontrol circuitry 56 configured to receive the command signals 54 and operate thespotlight 12 accordingly. Thecontrol circuitry 56 may be provided on a printed circuit board (PCB) 58 housed inside thelamp head 41. As a space saving measure, a plurality oflight sources 60 may also be provided on thePCB 58. Thelight sources 60 may include an array of light-emitting diodes (LEDs) or other light types known to a skilled artisan. Thelight sources 60 are optically coupled to thelens 43 and are configured to generate light resulting in thelight beam 18, thesearch beam 28, and thelaser beam 36. To impart rotation to thelamp head 41, thespotlight 12 additionally includes one ormore motors 62 configured to rotate thelamp head 41 and operably coupled to thecontrol circuitry 56. Based on the command signals 54 received from thecontroller 52, thecontrol circuitry 56 may operate themotors 62 to adjust the position of thelamp head 41 in order to change the target direction of any light outputted by thespotlight 12. Additionally or alternatively, the command signals 54 may prompt thecontrol circuitry 56 to operate thelight sources 60 to selectively project thelight beam 18, thesearch beam 28, and/or thelaser beam 36. - Additionally or alternatively, the command signals 54 may be based on input provided by one or
more equipment 66 onboard thevehicle 14. For example, the input may include information relating to a gear position of thevehicle 14, that is, whether thevehicle 14 is in park, drive, reverse, neutral, etc. In one specific embodiment, thespotlight 12 is operated in a traffic stop mode, whereby thespotlight 12 is aimed at a rear window of a stopped vehicle at a relatively high intensity (e.g., triple intensity) for a period of time (e.g., 1 minute) to cause glare onto the passenger(s) of the stopped vehicle. In instances where thevehicle 14 is approaching the stopped vehicle at a predetermined speed (e.g., 20 miles per hour or less), the command signals 54 may include positional information provided by theproximity sensors 50 to allow thespotlight 12 to remain aimed at the stopped vehicle despite thevehicle 14 moving in relation to the stopped vehicle. - In another specific scenario, the command signals 54 may prompt the
spotlight 12 to project light toward an object approaching thevehicle 14. This feature is helpful in situations where thevehicle 14 is parked and its occupant(s) is not paying attention to the vehicle surroundings. For example, thespotlight 12 may be prompted to project light toward an object detected at a default or predetermined distance from thevehicle 14. In another specific scenario, the command signals 54 may prompt thespotlight 12 to operate as a cornering lamp based on steering input supplied from a steering angle sensor. In yet another specific scenario, the command signals 54 may prompt thespotlight 12 to operate as an auxiliary backup lamp based on the gear position indicating that thevehicle 14 is in reverse. - To enable manual intervention, the
vehicle lighting system 10 includes a user-input device 68 located inside thevehicle 14 and operably coupled to thecontroller 52 such that the command signals 54 sent to thespotlight 12 are based on user-specified input. The user-input device 68 may be variously provided inside thevehicle 14 and is typically provided within arm's reach of the driver. In operation, for example, the user-input device 68 enables a user to aim thespotlight 12, specify an operational mode of thespotlight 12, and/or control operational states of thelight beam 18 thesearch beam 28, and/or thelaser beam 36. For example, such operational states may include light activation (e.g., ON/OFF status), intensity, beam range, beam spread, and any other light characteristics associated with beams of light. - Referring to
FIG. 4 , the user-input device 68 is shown coupled to asteering wheel 70 of thevehicle 14. As depicted, the user-input device 68 is provided on aface 72 of thesteering wheel 60 and includes one or more user-input mechanisms 74 in the form of buttons. In alternative embodiments, the user-input mechanisms may include capacitive switches, dials, sliders, and/or any other known mechanisms for interfacing a human with a machine. By providing the spotlight on thesteering wheel 70, a driver of thevehicle 14 may manually control thespotlight 12 without taking his or her hands off thesteering wheel 70. - In one specific scenario, the user-
input device 68 is used to manually aim thesearch beam 28 in a target direction. To assist in the aiming of thesearch beam 28, thelaser beam 36 may be activated if desired. Next, the user may specify a target lock feature using the user-input device 68, and in response, thecontroller 52 detects one or more remote devices within thesearch beam 28 based on information received from thewireless communication transceivers 47. Additionally or alternatively, objects in thesearch beam 28 may be detected based on information received from theproximity sensors 50. In some embodiments, the user may relinquish manual control of thespotlight 12 and thecontroller 52 may automatically operate thespotlight 12 to track a detected object. For example, thecontroller 52 may sendcommand signals 54 to thespotlight 12 to track the remote device detected inside thesearch beam 28 and located nearest to thevehicle 14. As the remote device is tracked by thespotlight 12, thelight beam 18 may be selectively activated through automatic or manual means. - It is to be understood that variations and modifications can be made on the aforementioned structure without departing from the concepts of the present invention, and further it is to be understood that such concepts are intended to be covered by the following claims unless these claims by their language expressly state otherwise.
Claims (16)
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| US16/285,725 US10351051B1 (en) | 2017-09-11 | 2019-02-26 | Vehicle spotlight with tracking feature |
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| CN109489014A (en) | 2019-03-19 |
| US10377299B2 (en) | 2019-08-13 |
| US20190077306A1 (en) | 2019-03-14 |
| US10351051B1 (en) | 2019-07-16 |
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