摘要:
Eine Vorrichtung umfasst einen Bildsensor und ein Array von optischen Kanälen, wobei jeder optische Kanal eine Optik zur Abbildung eines Teilgesichtsfelds eines Gesamtgesichtsfelds auf einem Bildsensorbereich des Bildsensors umfasst. Ein erster optischer Kanal des Arrays ist ausgebildet, um ein erstes Teilgesichtsfeld des Gesamtgesichtsfelds abzubilden. Ein zweiter optischer Kanal des Arrays ist ausgebildet, um ein zweites Teilgesichtsfeld des Gesamtgesichtsfelds abzubilden. Die Vorrichtung umfasst eine Berechnungseinheit, die ausgebildet ist, um Bildinformationen des ersten und zweiten Teilgesichtsfelds basierend auf den abgebildeten Teilgesichtsfeldern zu erhalten, und um eine Bildinformation des Gesamtgesichtsfelds zu erhalten, und um die Bildinformation der Teilgesichtsfelder mit der Bildinformation des Gesamtgesichtsfelds zu kombinieren, um eine kombinierte Bildinformation des Gesamtgesichtsfelds zu erzeugen.
摘要:
Eine Multiaperturabbildungsvorrichtung umfasst einen Bildsensor und ein Array von optischen Kanälen, wobei jeder optische Kanal eine Optik zur Abbildung zumindest eines Teils eines Gesamtgesichtsfeldes auf einen Bildsensorbereich des Bildsensors umfasst. Die Multiaperturabbildungsvorrichtung umfasst eine Strahlumlenkeinrichtung umfassend zumindest ein strahlumlenkendes Element zum Umlenken eines Strahlengangs eines optischen Kanals, wobei jedem optischen Kanal ein strahlumlenkendes Element zugeordnet ist. Das strahlumlenkende Element ist ausgebildet, um basierend auf einer ersten elektrischen Ansteuerung einen transparenten Zustand einer steuerbaren Fläche aufzuweisen und um basierend auf einer zweiten elektrischen Ansteuerung einen reflektierenden Zustand der steuerbaren Fläche aufzuweisen, um den Strahlengang umzulenken.
摘要:
A multi-aperture imaging device described herein comprises at least one image sensor (12) and an array (14; 14') of optical channels (16a-d; 16N) arranged beside one another. Each optical channel has optics (64a-d) for imaging at least one section (74a-d) of an object area (72) onto an image sensor area (58a-d) of the image sensor (12). The array (14; 14') has the following: a housing (1002) comprising a wall structure (1004; 1004a-b) which faces the image sensor (12) or faces away from the latter and through which the optical channels run, and a side wall structure (1006; 1006a-b) arranged on the wall structure (1004; 1004a-b), wherein the wall structure (1004; 1004a-b) or the side wall structure (1006; 1006a-b) is formed comprising glass, ceramic, glass ceramic or a crystalline material, wherein the optics (64a-d) of the optical channels (16a-d; 16N) are arranged in the housing (1002), and wherein the wall structure (1004; 1004a-b) is connected to optics (64a-d) of the optical channels (16a-d; 16N), and the optics (64a-d) are fixed with respect to one another.
摘要:
A multi-aperture imaging device comprises at least one image sensor and an array of optical channels arranged adjacently to each other. Each optical channel comprises an optical system for imaging at least one subregion of an object region onto an image sensor region of the image sensor. A first optical system of a first optical channel is configured to image a first subregion of the object region onto a first image sensor region and a second subregion of the object region onto a second image sensor region. A second optical system of a second optical channel is configured to image at least one third subregion of the object region onto a third image sensor region. The first subregion and the second subregion are disjoint in the object region. The third subregion incompletely overlaps with the first subregion.
摘要:
A multi-aperture imaging apparatus comprises at least one image sensor, an array of optical channels arranged alongside one another, wherein each optical channel has an optical unit for imaging at least one sub-region of an object region onto an image sensor region of the image sensor, and a beam deflection device for deflecting a beam path of the optical channels in beam deflection regions of the beam deflection device. The beam deflection device is formed as an array of facets which are arranged along a row extension direction of the array of optical channels. Each optical channel is assigned a facet. Each facet has a beam deflection region. A structure that suppresses extraneous light is arranged between a first beam deflection region of a first facet and a second beam deflection region of a second facet arranged adjacent, said structure being designed to reduce a transfer of extraneous light between the first beam deflection region and the second beam deflection region.
摘要:
The invention relates to a multi-aperture imaging device comprising an image sensor, a single-row array of optical channels arranged next to one another, wherein each optical channel has an optic for imaging a sub-region of an object region on an image sensor region of the image sensor, and a beam deflection device for deflecting a beam path of the optical channels. The multi-aperture imaging device comprises an actuator device for generating a relative movement between the image sensor, the single-row array and the beam deflection device, wherein the actuator device is arranged in such a way that it is arranged at least partially between two planes, which are spanned via sides of a cuboid, wherein the sides of the cuboid are arranged in parallel to one another, as well as in relation to a row extension direction of the single-row array and a part of the beam path of the optical channels between the image sensor and the beam deflection device. A volume of the cuboid is minimal and nevertheless comprises the image sensor, the single-row array and the beam deflection device.
摘要:
The invention relates to a multi-aperture imaging device having a single-row array of optical channels arranged next to one another. In order to reduce the height of such a device, the lenses of the optical systems of the optical channels are fastened to the main face of a substrate by one or more lens holders and are mechanically interconnected via the substrate, the substrate being positioned such that the optical paths of the plurality of optical channels run through it.
摘要:
The invention relates to a device for positioning a multi-aperture optical unit with multiple optical channels relative to an image sensor, comprising a reference object, a positioning device, and a calculating device. The reference object is arranged such that the reference object is imaged in the optical channels onto an image region per channel by the multi-aperture optical unit. The positioning device can be controlled in order to change a relative position between the multi-aperture optical unit and the image sensor. The calculating device is designed to determine actual positions of the reference object in images of the reference object in at least three image regions and to control the positioning device on the basis of a comparison of the actual positions with positions.