IP Library Granted Patent US 11,841,441
Granted Patent B2
US 11,841,441 · App. 17/584,169 · Granted Dec 12, 2023

LIDAR system

Inventors: Zeb William Barber (Bozeman, MT); Stephen C. Crouch (Bozeman, MT); Ryan Moore Galloway (Bozeman, MT); Edward Joseph Angus (Bozeman, MT); Emil Kadlec (Bozeman, MT)
Assignee: AURORA OPERATIONS, INC.
G01S17/931G01S7/4804G01S7/4817G01S7/4865G01S17/32G02B26/105
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Quick Facts
Patent No.
US 11,841,441
App. No.
17/584,169
Granted
Dec 12, 2023
Kind
B2
Abstract

A LIDAR system includes a laser source, a first scanner, and a second scanner. The first scanner receives a first beam from the laser source and applies a first angle modulation to the first beam to output a second beam at a first angle. The second scanner receives the second beam and applies a second angle modulation to the second beam to output a third beam at a second angle.

Claims (31)

1. A light detection and ranging (LIDAR) system, comprising:

a laser source configured to generate a beam; and

a plurality of scanners comprising a first scanner configured to modulate an azimuth angle of the beam during one or more first portions of a scan and a second scanner configured to modulate the azimuth angle of the beam during the one or more first portions of the scan and the beam is outputted from second scanner such that the azimuth angle of the beam is level relative to a baseline angle during the one or more first portions of the scan and increases during one or more second portions of the scan, wherein at least one of the first scanner or the second scanner is configured to discretely modulate the azimuth angle of the beam.

2. The LIDAR system of claim 1 , wherein the first scanner is configured to receive the beam from the laser source and in response to receiving the beam, output the beam for the second scanner to receive.

3. The LIDAR system of claim 1 , further comprising a telescope between the first scanner and the second scanner.

4. The LIDAR system of claim 1 , wherein the plurality of scanners comprise at least one of an optical phased array, a micro-electromechanical system (MEMS) phased array, a MEMS mirror, or an electro-optical (EO) crystal.

5. The LIDAR system of claim 1 , further comprising a modulator configured to modulate at least one of a phase or a frequency of the beam.

6. An autonomous vehicle control system, comprising:

a laser source configured to output a beam;

a plurality of scanners comprising a first scanner configured to modulate an azimuth angle of the beam during one or more first portions of a scan and a second scanner configured to modulate the azimuth angle of the beam during the one or more first portions of the scan and the beam is outputted from second scanner such that the azimuth angle of the beam is level relative to a baseline angle during the one or more first portions of the scan and increases during one or more second portions of the scan, wherein at least one of the first scanner or the second scanner is configured to discretely modulate the azimuth angle of the beam;

one or more detectors, each detector of the one or more detectors configured to receive a return beam from at least one of reflection or scattering of the beam by an object and output a signal based on the return beam; and

one or more processors configured to:

determine at least one of a range to or a velocity of the object based on the signal; and

control operation of an autonomous vehicle based on the at least one of the range or the velocity.

7. The autonomous vehicle control system of claim 6 , wherein the first scanner is configured to receive the beam from the laser source, and the second scanner configured to receive the beam from the first scanner.

8. The autonomous vehicle control system of claim 6 , further comprising a telescope between the first scanner and the second scanner.

9. The autonomous vehicle control system of claim 6 , wherein the plurality of scanners comprise at least one of an optical phased array, a micro-electromechanical system (MEMS) phased array, a MEMS mirror, or an electro-optical (EO) crystal.

10. The autonomous vehicle control system of claim 6 , further comprising a modulator configured to modulate at least one of a phase or a frequency of the beam.

11. An autonomous vehicle, comprising:

a laser source configured to output a beam;

a plurality of scanners comprising a first scanner configured to modulate an azimuth angle of the beam during one or more first portions of a scan and a second scanner configured to modulate the azimuth angle of the beam during the one or more first portions of the scan and the beam is outputted from second scanner such that the azimuth angle of the beam is level relative to a baseline angle during the one or more first portions of the scan and increases during one or more second portions of the scan, wherein at least one of the first scanner or the second scanner is configured to discretely modulate the azimuth angle of the beam;

one or more detectors, each detector of the one or more detectors configured to receive a return beam from at least one of reflection or scattering of the beam by an object and output a signal based on the return beam;

a steering system;

a braking system; and

a vehicle controller configured to:

determine at least one of a range to or a velocity of the object based on the signal; and

control operation of at least one of the steering system or the braking system based on the at least one of the range or the velocity.

12. The autonomous vehicle of claim 11 , wherein the first scanner is configured to receive the beam from the laser source and in response to receiving the beam, output the beam for the second scanner to receive.

13. The autonomous vehicle of claim 11 , wherein the plurality of scanners comprise at least one of an optical phased array, a micro-electromechanical system (MEMS) phased array, a MEMS mirror, or an electro-optical (EO) crystal.

14. The autonomous vehicle of claim 11 , further comprising a modulator configured to modulate at least one of a phase or a frequency of the beam.

15. The LIDAR system of claim 1 , wherein the second scanner is a polygon scanner.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2022
From: BARBER, ZEB WILLIAM; CROUCH, STEPHEN C.; GALLOWAY, RYAN MOORE; ANGUS, EDWARD JOSEPH; KADLEC, EMIL
To: AURORA INNOVATION, INC.
Reel/Frame 058782/0246 →
MERGER AND CHANGE OF NAME Recorded Jan 26, 2022
From: AVIAN U MERGER SUB CORP.; AURORA INNOVATION, INC.
To: AURORA INNOVATION OPCO, INC.
Reel/Frame 058782/0849 →
CHANGE OF NAME Recorded Jan 26, 2022
From: AURORA INNOVATION OPCO, INC.
To: AURORA OPERATIONS, INC.
Reel/Frame 058869/0562 →
Continuity (3)
Continuation 17319709 · May 13, 2021
Continuation 16915045 · Jun 29, 2020
Related Publication 20220146643A1 · May 12, 2022