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CAMERA AND RADAR FUSION FOR DETERMINING POSITION OF PROJECTILE IN MOTION

发明专利审中
22权利要求 · 2 独立
§ Ⅰ

卷宗概要

申请人

Rapsodo Pte. Ltd.

发明人

Evgeny Lipunov; Osman Murat Teket; Ali Erol; Batuhan Okur

IPC 分类

G6T 7/80G6T 7/292G6T 7/70H4N 17/H4N 23/60

CPC 分类

G6T7/80G6T7/292G6T7/70H4N17/2H4N23/60G6T2207/30241

Disclosed are embodiments for determining the position and speed of a projectile in three-dimensional world coordinates using a single camera and radar. In some embodiments, a method comprises: determining a zero radial speed time of the projectile based on radar measurements of the projectile; determining a radial speed of the projectile at a particular time based on the radar measurements; determining a radial speed slope at the particular time based on the radial speed measurements; determining a two-dimensional image point of the projectile at the particular time; determining a depth scale coefficient at the particular time based on the zero radial speed time, the radial speed, the radial speed slope, the image point, and a homographic transformation; and determining a position of the projectile in space at the particular time based on a three-dimensional position of the camera, the depth scale coefficient, the image point and the homographic transformation.

原文(中文)

Disclosed are embodiments for determining the position and speed of a projectile in three-dimensional world coordinates using a single camera and radar. In some embodiments, a method comprises: determining a zero radial speed time of the projectile based on radar measurements of the projectile; determining a radial speed of the projectile at a particular time based on the radar measurements; determining a radial speed slope at the particular time based on the radial speed measurements; determining a two-dimensional image point of the projectile at the particular time; determining a depth scale coefficient at the particular time based on the zero radial speed time, the radial speed, the radial speed slope, the image point, and a homographic transformation; and determining a position of the projectile in space at the particular time based on a three-dimensional position of the camera, the depth scale coefficient, the image point and the homographic transformation.