Optical surface cleaning with directed energy waves
A vehicle sensor assembly includes an optical sensor surface, at least two transducers arranged to input energy into the optical surface to produce an energy wave through the optical sensor surface and sense an attribute of an energy wave within the optical sensor surface. A controller arranged to drive the at least two transducers to input energy into the optical surface to produce an energy wave within the optical sensor surface to dislodge debris from the optical sensor surface.
1. A vehicle sensor assembly comprising:
an optical sensor surface;
a first transducer and a second transducer, each arranged to input energy into the optical surface to produce an energy wave through the optical sensor surface and sense at least one attribute of the energy wave within the optical sensor surface;
a controller configured to determine a location of the debris on the optical sensor surface based on the sensed at least one attribute of the energy wave;
wherein the controller is further configured to generate a first energy wave with the first transducer and a second energy wave with the second transducer to interfere with the first energy wave at the determined location of the debris to dislodge the debris; and
a memory device in communication with the controller and containing data comprising a library of predefined attributes of the energy wave corresponding to a category of debris and the controller is configured to determine that debris is present on the optical sensor surface by comparing the at least one sensed attribute of the energy wave within the optical sensor surface with the predefined attributes of the energy wave and determine that debris is present based on the comparison meeting a predefined acceptance criteria.
2. The vehicle sensor assembly as recited in claim 1 , wherein the optical sensor surface comprises a surface that is transparent to at least one of visible and non-visible light.
3. The vehicle sensor assembly as recited in claim 1 , wherein the first transducer and the second transducer each comprise multiple transducers disposed within a periphery of the optical sensor surface.
4. The vehicle sensor assembly as recited in claim 3 , wherein the controller is further configured to determine that an imperfection is present within the optical sensor surface based on the sensed at least one attribute of the energy wave.
5. The vehicle sensor assembly as recited in claim 4 , wherein the controller is further configured to generate a first energy wave with the first transducer and a second energy wave with the second transducer to constructively interfere with the first energy wave.
6. The vehicle sensor assembly as recited in claim 1 , wherein the optical sensor surface is part of one of a radar sensor, a LIDAR sensor or a camera.
7. The vehicle sensor assembly as recited in claim 1 , wherein the at least two transducers comprises a piezo-electric transducers or a capacitive micro-machined transducers.