Selective Deactivation of Light Emitters for Interference Mitigation in Light Detection and Ranging (Lidar) Devices

    公开(公告)号:US20230120380A1

    公开(公告)日:2023-04-20

    申请号:US18068665

    申请日:2022-12-20

    Applicant: Waymo LLC

    Abstract: Example embodiments relate to selective deactivation of light emitters for interference mitigation in light detection and ranging (lidar) devices. An example method includes deactivating one or more light emitters within a lidar device during a firing cycle. The method also includes identifying whether interference is influencing measurements made by the lidar device. Identifying whether interference is influencing measurements made by the lidar device includes determining, for each light detector of the lidar device that is associated with the one or more light emitters deactivated during the firing cycle, whether a light signal was detected during the firing cycle.

    Use of Extended Detection Periods for Range Aliasing Detection and Mitigation in a Light Detection and Ranging (LIDAR) System

    公开(公告)号:US20220308191A1

    公开(公告)日:2022-09-29

    申请号:US17839676

    申请日:2022-06-14

    Applicant: Waymo LLC

    Abstract: A computing system may operate a LIDAR device to emit and detect light pulses in accordance with a time sequence including standard detection period(s) that establish a nominal detection range for the LIDAR device and extended detection period(s) having durations longer than those of the standard detection period(s). The system may then make a determination that the LIDAR detected return light pulse(s) during extended detection period(s) that correspond to particular emitted light pulse(s). Responsively, the computing system may determine that the detected return light pulse(s) have detection times relative to corresponding emission times of particular emitted light pulse(s) that are indicative of one or more ranges. Given this, the computing system may make a further determination of whether or not the one or more ranges indicate that an object is positioned outside of the nominal detection range, and may then engage in object detection in accordance with the further determination.

    Systems and Methods for Adaptive Range Coverage using LIDAR

    公开(公告)号:US20220236377A1

    公开(公告)日:2022-07-28

    申请号:US17659674

    申请日:2022-04-19

    Applicant: Waymo LLC

    Abstract: The present disclosure relates to systems and methods that facilitate light detection and ranging operations. An example method includes determining, for at least one light-emitter device of a plurality of light-emitter devices, a light pulse schedule. The plurality of light-emitter devices is operable to emit light along a plurality of emission vectors. The light pulse schedule is based on a respective emission vector of the at least one light-emitter device and a three-dimensional map of an external environment. The light pulse schedule includes at least one light pulse parameter and a listening window duration. The method also includes causing the at least one light-emitter device of the plurality of light-emitter devices to emit a light pulse according to the light pulse schedule. The light pulse interacts with an external environment.

    Vehicle Sensor Verification and Calibration

    公开(公告)号:US20210389763A1

    公开(公告)日:2021-12-16

    申请号:US17412599

    申请日:2021-08-26

    Applicant: Waymo LLC

    Abstract: An example method involves detecting a sensor-testing trigger. Detecting the sensor-testing trigger may comprise determining that a vehicle is within a threshold distance to a target in an environment of the vehicle. The method also involves obtaining sensor data collected by a sensor of the vehicle after the detection of the sensor-testing trigger. The sensor data is indicative of a scan of a region of the environment that includes the target. The method also involves comparing the sensor data with previously-collected sensor data indicating detection of the target by one or more sensors during one or more previous scans of the environment. The method also involves generating performance metrics related to the sensor of the vehicle based on the comparison.

    LIDAR BASED COMMUNICATION
    25.
    发明申请

    公开(公告)号:US20210006332A1

    公开(公告)日:2021-01-07

    申请号:US16502008

    申请日:2019-07-02

    Applicant: Waymo LLC

    Abstract: Systems and methods for performing operations based on LIDAR communications are described. An example device may include one or more processors and a memory coupled to the one or more processors. The memory includes instructions that, when executed by the one or more processors, cause the device to receive data associated with a modulated optical signal emitted by a transmitter of a first LIDAR device and received by a receiver of a second LIDAR device coupled to a vehicle and the device, generate a rendering of an environment of the vehicle based on information from one or more LIDAR devices coupled to the vehicle, and update the rendering based on the received data. Updating the rendering includes updating an object rendering of an object in the environment of the vehicle. The instructions further cause the device to provide the updated rendering for display on a display coupled to the vehicle.

    Light Detection and Ranging (LIDAR) Device Range Aliasing Resilience by Multiple Hypotheses

    公开(公告)号:US20190004177A1

    公开(公告)日:2019-01-03

    申请号:US15638607

    申请日:2017-06-30

    Applicant: Waymo LLC

    Abstract: A computing system may operate a LIDAR device to emit light pulses in accordance with a time sequence including a time-varying dither. The system may then determine that the LIDAR detected return light pulses during corresponding detection periods for each of two or more emitted light pulses. Responsively, the system may determine that the detected return light pulses have (i) detection times relative to corresponding emission times of a plurality of first emitted light pulses that are indicative of a first set of ranges and (ii) detection times relative to corresponding emission times of a plurality of second emitted light pulses that are indicative of a second set of ranges. Given this, the system may select between using the first set of ranges as a basis for object detection and using the second set of ranges as a basis for object detection, and may then engage in object detection accordingly.

    Lidar based communication
    28.
    发明授权

    公开(公告)号:US11616573B2

    公开(公告)日:2023-03-28

    申请号:US17485960

    申请日:2021-09-27

    Applicant: Waymo LLC

    Abstract: Systems and methods for performing operations based on LIDAR communications are described. An example device may include one or more processors and a memory coupled to the one or more processors. The memory includes instructions that, when executed by the one or more processors, cause the device to receive data associated with a modulated optical signal emitted by a transmitter of a first LIDAR device and received by a receiver of a second LIDAR device coupled to a vehicle and the device, generate a rendering of an environment of the vehicle based on information from one or more LIDAR devices coupled to the vehicle, and update the rendering based on the received data. Updating the rendering includes updating an object rendering of an object in the environment of the vehicle. The instructions further cause the device to provide the updated rendering for display on a display coupled to the vehicle.

    Selective deactivation of light emitters for interference mitigation in light detection and ranging (lidar) devices

    公开(公告)号:US11561281B2

    公开(公告)日:2023-01-24

    申请号:US16916031

    申请日:2020-06-29

    Applicant: Waymo LLC

    Abstract: Example embodiments relate to selective deactivation of light emitters for interference mitigation in light detection and ranging (lidar) devices. An example method includes deactivating one or more light emitters within a lidar device during a firing cycle. The method also includes identifying whether interference is influencing measurements made by the lidar device. Identifying whether interference is influencing measurements made by the lidar device includes determining, for each light detector of the lidar device that is associated with the one or more light emitters deactivated during the firing cycle, whether a light signal was detected during the firing cycle.

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