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A method of providing an output signal of a 3D multi-aperture imaging device, a multi-aperture imaging device, a 3D multi-aperture imaging device, and a method of capturing an entire view
A method of providing an output signal of a 3D multi-aperture imaging device, a multi-aperture imaging device, a 3D multi-aperture imaging device, and a method of capturing an entire view
A 3D multi-aperture imaging device is disclosed that includes an image sensor (12) having a plurality of image sensor areas, each image sensor area (58) comprising a plurality of pixels. The 3D multi-aperture imaging device includes first superimposed first partial views 30 11 , 12 12 , 12 13 , 12 14 of the overall view 72 on the first image sensor areas 12 11 , 12 12 , , 30 12, 30 13, 30 14), a first optical channel (16, 11, 16, 12, 16, 13, 16, 14, a plurality of (14 1) for projecting a); And a first partial field of view on the second image sensor areas (12 21 , 12 22 , 12 23 , 12 24 ) of the image sensor and second partial fields of view (30 21 , 30 22, 30, 23, and includes 30 24) for the optical channels of the second plurality (14, 2) for projecting (16, 21, 16 22, 16 23, 16 24). The first and second plurality of optical channels of the optical channels are offset laterally by a base distance BA. A 3D multi-aperture imaging device is adapted to receive image sensor data from the image sensor, the image sensor data including information about the first and second partial field of view projected onto the first and second plurality of image sensor areas, And a processor configured to provide an output signal comprising payload data, the data header comprising information about the structure of a 3D multi-aperture imaging device, 2 / RTI image sensor areas.
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