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US20160291154A1 - Apparatus for acquiring 3-dimensional maps of a scene - Google Patents

Apparatus for acquiring 3-dimensional maps of a scene
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Publication number
US20160291154A1
US20160291154A1US15/087,186US201615087186AUS2016291154A1US 20160291154 A1US20160291154 A1US 20160291154A1US 201615087186 AUS201615087186 AUS 201615087186AUS 2016291154 A1US2016291154 A1US 2016291154A1
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United States
Prior art keywords
sensor
active sensor
active
transmitter
target object
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Abandoned
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US15/087,186
Inventor
Youval Nehmadi
Shmuel Ur
Ronny Cohen
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Vayavision Sensing Ltd
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Vayavision Ltd
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Priority to US15/087,186priorityCriticalpatent/US20160291154A1/en
Assigned to VAYAVISION, LTD.reassignmentVAYAVISION, LTD.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: COHEN, RONNY, NEHMADI, YOUVAL, UR, SHMUEL
Priority to US15/153,302prioritypatent/US10444357B2/en
Publication of US20160291154A1publicationCriticalpatent/US20160291154A1/en
Priority to US17/107,284prioritypatent/US11226413B2/en
Priority to US17/334,292prioritypatent/US11604277B2/en
Priority to US17/579,023prioritypatent/US11725956B2/en
Priority to US17/717,327prioritypatent/US20220236411A1/en
Priority to US18/240,753prioritypatent/US12352591B2/en
Abandonedlegal-statusCriticalCurrent

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Abstract

An active sensor for performing active measurements of a scene is presented. The active sensor includes at least one transmitter configured to emit light pulses toward at least one target object in the scene, wherein the at least one target object is recognized in an image acquired by a passive sensor; at least one receiver configured to detect light pulses reflected from the at least one target object; a controller configured to control an energy level, a direction, and a timing of each light pulse emitted by the transmitter, wherein the controller is further configured to control at least the direction for detecting each of the reflected light pulses; and a distance measurement circuit configured to measure a distance to each of the at least one target object based on the emitted light pulses and the detected light pulses.

Description

Claims (26)

What is claimed is:
1. An active sensor for performing active measurements of a scene, comprising:
at least one transmitter configured to emit light pulses toward at least one target object in the scene, wherein the at least one target object is recognized in an image acquired by a passive sensor;
at least one receiver configured to detect light pulses reflected from the at least one target object;
a controller configured to control an energy level, a direction, and a timing of each light pulse emitted by the transmitter, wherein the controller is further configured to control at least the direction for detecting each of the reflected light pulses; and
a distance measurement circuit configured to measure a distance to each of the at least one target object based on the emitted light pulses and the detected light pulses.
2. The active sensor ofclaim 1, wherein each transmitter further comprises:
a light source configured to emit electromagnetic radiation in at least one wavelength;
a transmitter static light directing circuit (LDC) configured to direct the light pulses emitted by the transmitter in a first plurality of directions; and
at least one transmitter lens.
3. The active sensor ofclaim 2, wherein the transmitter static LDC includes at least one microelectromechanical system (MEMS) mirror.
4. The active sensor ofclaim 2, wherein the transmitter static LDC is any of: an acousto-optic modulator (AOM), and an electro-optic modulator (EOM).
5. The active sensor ofclaim 2, wherein the controller is further configured to cause the transmitter static LDC to change between the first plurality of directions.
6. The active sensor ofclaim 2, wherein the controller is further configured to control the direction of each light pulse by timing the transmitter to transmit a light pulse when the transmitter static LDC is set to a direction of transmissions.
7. The active controller ofclaim 2, wherein the light source is any one of: a laser, a light emitting diode (LED), and an array of LEDs.
8. The active sensor ofclaim 2, wherein the at least one transmitter lens is polarized at a first predefined angle.
9. The active sensor ofclaim 8, wherein the receiver further comprises:
a detector configured to detect light signals from at least one direction of the first plurality of directions;
a receiver static light directing circuit (LDC) configured to direct the light pulses emitted by the transmitter in a second plurality of directions; and
at least one receiver lens.
10. The active sensor ofclaim 9, wherein the receiver static LDC includes at least one microelectromechanical system (MEMS) mirror.
11. The active sensor ofclaim 9, wherein the receiver static LDC is any of: an acousto-optic modulator (AOM), and an electro-optic modulator (EOM).
12. The active sensor ofclaim 9, wherein the controller is further configured to cause the receiver static LDC to change between the second plurality of directions to match each of the respective first plurality of directions.
13. The active sensor ofclaim 9, wherein the detector is any one of: a photodiode, an array of photodiodes, a charge coupled device (CCD), and a complementary metal oxide semiconductor (CMOS) light sensor.
14. The active sensor ofclaim 9, wherein the at least one receiver lens is polarized at a second predefined angle, wherein the second predefined angle is the same as the first predefined angle.
15. The active sensor ofclaim 1, wherein the active measurements are performed when at least one of the active sensor, the passive sensor, and the target object is in motion.
16. The active sensor ofclaim 15, wherein the controller is configured to determine at least the direction of a transmitted light pulse respective of a new location of the at least one of the active sensor, the passive sensor, and the target object.
17. The active sensor ofclaim 15, wherein the controller is configured to determine the new location based on information from at least one motion sensor and based on a time elapsed between when the image was acquired by the passive sensor and until the transmission of the light pulse.
18. The active sensor ofclaim 1, wherein each target object is classified as any of: a non-stationary object, and a suspicious object.
19. The active sensor ofclaim 1, wherein the active sensor is coupled to the passive sensor.
21. The active sensor ofclaim 1, wherein the at least one transmitter and the at least one receiver are integrated in a single device.
22. The active sensor ofclaim 1, wherein the at least one transmitter and the at least one receiver are distributed.
23. A method for controlling an active sensor to perform active measurements of a scene, comprising:
receiving an identification of at least one target object recognized in an image acquired by a passive sensor;
receiving a current location of the at least one target object;
determining an energy level, a direction, and a timing of a light pulse to be transmitted to each of the at least one target object;
setting a transmitter with the determined energy level, direction, and timing for emitting each light pulse;
setting a receiver to receive each light pulse reflected from the at least one target object at the determined at least one direction; and
measuring a distance to each of the at least one target object based on the corresponding emitted light pulse and the corresponding detected light pulse.
24. The method ofclaim 23, further comprising:
setting, for each determined direction, each transmitter static LDC and each receiver static LDC to the determined direction.
25. The method ofclaim 23, further comprising:
setting each transmitter to transmit a light pulse when the transmitter static LDC is set to the corresponding determined direction.
26. The active sensor ofclaim 23, wherein the active measurements are performed when at least one of the active sensor and the target objection is in motion.
27. The active sensor ofclaim 24, further comprising:
determining at least the direction of a transmitted light pulse based on a new location of at least one of the active sensor and the target object, wherein the new location is determined based on information from at least one motion sensor and based on a time elapsed from when the image was acquired by the passive sensor and until the transmission of the light pulse.
US15/087,1862015-04-012016-03-31Apparatus for acquiring 3-dimensional maps of a sceneAbandonedUS20160291154A1 (en)

Priority Applications (7)

Application NumberPriority DateFiling DateTitle
US15/087,186US20160291154A1 (en)2015-04-012016-03-31Apparatus for acquiring 3-dimensional maps of a scene
US15/153,302US10444357B2 (en)2015-04-012016-05-12System and method for optimizing active measurements in 3-dimensional map generation
US17/107,284US11226413B2 (en)2015-04-012020-11-30Apparatus for acquiring 3-dimensional maps of a scene
US17/334,292US11604277B2 (en)2015-04-012021-05-28Apparatus for acquiring 3-dimensional maps of a scene
US17/579,023US11725956B2 (en)2015-04-012022-01-19Apparatus for acquiring 3-dimensional maps of a scene
US17/717,327US20220236411A1 (en)2015-04-012022-04-11Apparatus for acquiring 3-dimensional maps of a scene
US18/240,753US12352591B2 (en)2015-04-012023-08-31Apparatus for acquiring 3-dimensional maps of a scene

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
US201562141296P2015-04-012015-04-01
US201562160988P2015-05-132015-05-13
US15/087,186US20160291154A1 (en)2015-04-012016-03-31Apparatus for acquiring 3-dimensional maps of a scene

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US15/087,222Continuation-In-PartUS10024965B2 (en)2015-04-012016-03-31Generating 3-dimensional maps of a scene using passive and active measurements

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US15/087,222Continuation-In-PartUS10024965B2 (en)2015-04-012016-03-31Generating 3-dimensional maps of a scene using passive and active measurements
US15/153,302Continuation-In-PartUS10444357B2 (en)2015-04-012016-05-12System and method for optimizing active measurements in 3-dimensional map generation
US17/107,284ContinuationUS11226413B2 (en)2015-04-012020-11-30Apparatus for acquiring 3-dimensional maps of a scene
US17/334,292ContinuationUS11604277B2 (en)2015-04-012021-05-28Apparatus for acquiring 3-dimensional maps of a scene

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US20160291154A1true US20160291154A1 (en)2016-10-06

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US15/087,222Active2036-07-19US10024965B2 (en)2015-04-012016-03-31Generating 3-dimensional maps of a scene using passive and active measurements
US15/087,186AbandonedUS20160291154A1 (en)2015-04-012016-03-31Apparatus for acquiring 3-dimensional maps of a scene
US15/153,302Active2037-01-26US10444357B2 (en)2015-04-012016-05-12System and method for optimizing active measurements in 3-dimensional map generation
US17/107,284ActiveUS11226413B2 (en)2015-04-012020-11-30Apparatus for acquiring 3-dimensional maps of a scene
US17/334,292ActiveUS11604277B2 (en)2015-04-012021-05-28Apparatus for acquiring 3-dimensional maps of a scene
US17/579,023ActiveUS11725956B2 (en)2015-04-012022-01-19Apparatus for acquiring 3-dimensional maps of a scene
US17/717,327AbandonedUS20220236411A1 (en)2015-04-012022-04-11Apparatus for acquiring 3-dimensional maps of a scene
US18/240,753ActiveUS12352591B2 (en)2015-04-012023-08-31Apparatus for acquiring 3-dimensional maps of a scene

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US15/153,302Active2037-01-26US10444357B2 (en)2015-04-012016-05-12System and method for optimizing active measurements in 3-dimensional map generation
US17/107,284ActiveUS11226413B2 (en)2015-04-012020-11-30Apparatus for acquiring 3-dimensional maps of a scene
US17/334,292ActiveUS11604277B2 (en)2015-04-012021-05-28Apparatus for acquiring 3-dimensional maps of a scene
US17/579,023ActiveUS11725956B2 (en)2015-04-012022-01-19Apparatus for acquiring 3-dimensional maps of a scene
US17/717,327AbandonedUS20220236411A1 (en)2015-04-012022-04-11Apparatus for acquiring 3-dimensional maps of a scene
US18/240,753ActiveUS12352591B2 (en)2015-04-012023-08-31Apparatus for acquiring 3-dimensional maps of a scene

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EP (2)EP4296721A3 (en)
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