Detector for optically detecting at least one object
Abstract
Described herein is a detector for determining a position of at least one object. The detector includes:at least two optical sensors, each optical sensor having a light-sensitive area, where each light-sensitive area has a geometrical center, where the geometrical centers of the optical sensors are spaced apart from an optical axis of the detector by different spatial offsets, where each optical sensor is configured to generate a sensor signal in response to an illumination of its respective light-sensitive area by a light beam propagating from the object to the detector; andat least one evaluation device being configured for determining at least one longitudinal coordinate z of the object by combining the at least two sensor signals.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A detector for determining a position of at least one object, the detector comprising
at least two optical sensors, each optical sensor comprising a light-sensitive area, wherein each light-sensitive area comprises a geometrical center, wherein the geometrical centers of the optical sensors are spaced apart from an optical axis of the detector by different spatial offsets, and wherein each optical sensor is configured to generate a sensor signal in response to an illumination of its respective light-sensitive area by a light beam propagating from the at least one object to the detector; and at least one evaluation device configured for determining at least one longitudinal coordinate z of the at least one object by combining at least two sensor signals.
2 . The detector of claim 1 , wherein the at least two optical sensors are part of a sensor array, wherein a geometrical center of the sensor array is offset from the optical axis of the detector.
3 . The detector of claim 2 , wherein the sensor array is movable relative to the optical axis of the detector.
4 . The detector of claim 3 , wherein the evaluation device is configured for:
firstly, determining s transversal position of a light spot generated by the light beam on the sensor array by using the sensor signals and secondly, moving the sensor array relative to the optical axis of the detector until the light spot is off-centered.
5 . The detector of claim 1 , wherein the at least two optical sensors are partial diodes of a quadrant diode, with a geometrical center of the quadrant diode being off-centered from the optical axis of the detector.
6 . The detector of claim 1 , wherein the evaluation device is configured for:
deriving at least one quotient signal Q by one or more of dividing the sensor signals, dividing multiples of the sensor signals and dividing linear combinations of the sensor signals; and determining the longitudinal coordinate by evaluating the at least one quotient signal Q.
7 . The detector of claim 6 , wherein the evaluation device is configured for using at least one predetermined relationship between the at least one quotient signal Q and the longitudinal coordinate.
8 . The detector of claim 1 , wherein the detector comprises at least one illumination source, wherein the at least one illumination source is:
adapted to illuminate the at least one object with at least one illumination light beam, and arranged such that a direction of propagation of the at least one illumination light beam is essentially parallel to the optical axis of the detector.
9 . The detector of claim 1 , wherein the detector comprises at least one illumination source, and the at least one illumination source and the optical axis of the detector are separated by a small baseline.
10 . A detector system for determining a position of at least one object, the detector system comprising:
at least one detector of claim 1 , and at least one beacon device adapted to direct at least one light beam towards the at least one detector, wherein the at least one beacon device is at least one of attachable to the at least one object, holdable by the at least one object and integratable into the at least one object.
11 . A human-machine interface for exchanging at least one item of information between a user and a machine, wherein the human-machine interface comprises at least one detector system of claim 10 , wherein the at least one beacon device is adapted to be at least one of directly or indirectly attached to the user and held by the user, wherein the human-machine interface is designed to determine at least one position of the user with the at least one detector system, and wherein the human-machine interface is designed to assign to the at least one position at least one item of information.
12 . An entertainment device for carrying out at least one entertainment function, wherein the entertainment device comprises at least one human-machine interface of claim 11 , wherein the entertainment device is designed to:
enable at least one item of information to be input by a player with the human-machine interface, and vary the at least one entertainment function in accordance with the at least one item of information.
13 . A tracking system for tracking a position of at least one movable object, the tracking system comprising: at least one detector system of claim 10 , and at least one track controller, wherein the at least one track controller is adapted to track a series of positions of the at least one object at specific points in time.
14 . A scanning system for determining a depth profile of a scenery, the scanning system comprising at least one detector of claim 1 , and at least one illumination source adapted to scan the scenery with at least one light beam.
15 . A camera for imaging at least one object, the camera comprising at least one detector of claim 1 .
16 . A readout device for optical storage media, the readout device comprising at least one detector of claim 1 .
17 . A method for determining a position of at least one object by using at least one detector, the method comprising the following steps:
(i) providing at least two optical sensors, each optical sensor comprising a light-sensitive area, wherein each light-sensitive area comprises a geometrical center, wherein the geometrical centers of the at least two optical sensors are spaced apart from an optical axis of the at least one detector by different separations, and wherein each optical sensor is configured to generate a sensor signal in response to an illumination of its respective light-sensitive area by a light; (ii) illuminating the at least two light-sensitive areas of the at least two optical sensors of the at least one detector with a light beam propagating from the at least one object to the at least one detector and, thereby, generating at least two sensor signals; and (iii) evaluating the sensor signals by combining the at least two sensor signals, thereby determining at least one longitudinal coordinate z of the at least one object.
18 . The method of claim 17 , wherein the evaluating comprises deriving at least one quotient signal Q by one or more of dividing the sensor signals, dividing multiples of the sensor signals and dividing linear combinations of the sensor signals, and
the determining comprises evaluating the at least one quotient signal Q.Join the waitlist — get patent alerts
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