Drone delivery of coffee based on a cognitive state of an individual
US-2017174343-A1 · Jun 22, 2017 · US
US2017295352A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2017295352-A1 |
| Application number | US-201715484292-A |
| Country | US |
| Kind code | A1 |
| Filing date | Apr 11, 2017 |
| Priority date | Apr 12, 2016 |
| Publication date | Oct 12, 2017 |
| Grant date | — |
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A vision system for a vehicle includes first and second camera modules disposed at the vehicle so as to have respective first and second fields of view exterior of the vehicle. The first camera module includes a first lens and a first imager, and is operable to capture image data. The second camera module includes a second lens and a second imager, and is operable to capture image data. The first camera module is powered by a first power supply line and the second camera module is powered by a second power supply line. The first camera module includes an image processor operable to process image data captured by the first camera module and the second camera module. The second camera module comprises a second image processor operable to process image data captured by the first camera module and the second camera module.
Opening claim text (preview).
1 . A multi-camera vision system for a vehicle, said multi-camera vision system comprising: a first camera module disposed at a vehicle so as to have a first field of view exterior of the vehicle, wherein said first camera module comprises a first lens and a first imager, wherein said first camera module is operable to capture image data; a second camera module disposed at the vehicle so as to have a second field of view exterior of the vehicle, wherein said second camera module comprises a second lens and a second imager, wherein said second camera module is operable to capture image data; wherein said first camera module is powered by a first power supply line and wherein said second camera module is powered by a second power supply line; wherein said first camera module comprises a first image processor operable to process image data captured by said first camera module and said second camera module; and wherein said second camera module comprises a second image processor operable to process image data captured by said first camera module and said second camera module. 2 . The multi-camera vision system of claim 1 , wherein said first and second camera modules share image data captured by said first and second camera modules. 3 . The multi-camera vision system of claim 2 , wherein depth information computations and other image processing tasks are performed simultaneously by said first and second image processors of said first and second camera modules. 4 . The multi-camera vision system of claim 3 , wherein some of the depth information computations and other image processing tasks are performed at said first camera module and others of the depth information computations and other image processing tasks are performed at said second camera module for enhancement of system performance and enhanced balancing of image processing loads. 5 . The multi-camera vision system of claim 4 , wherein said vision system selectively combines processing by said first and second image processors depending on tasks to be performed by said multi-camera vision system. 6 . The multi-camera vision system of claim 1 , wherein processing of captured image data by said first image processor determines depth information. 7 . The multi-camera vision system of claim 1 , wherein said first and second camera modules are disposed in a common housing. 8 . The multi-camera vision system of claim 1 , wherein said first lens is different from said second lens. 9 . The multi-camera vision system of claim 1 , wherein said first camera module comprises spectral filtering that is different from spectral filtering of said second camera module. 10 . The multi-camera vision system of claim 1 , comprising at least six cameras each comprising a respective lens, imager and image processor, and wherein said multiple cameras are electrically connected together and to a central controller via a connection network. 11 . The multi-camera vision system of claim 10 , wherein said connection network comprises a series connection of said at least six cameras. 12 . The multi-camera vision system of claim 10 , wherein said connection network comprises two branches of serially connected cameras connected to said central controller. 13 . A multi-camera vision system for a vehicle, said multi-camera vision system comprising: a first camera module disposed at a vehicle so as to have a first field of view exterior of the vehicle, wherein said first camera module comprises a first lens and a first imager, wherein said first camera module is operable to capture image data; a second camera module disposed at the vehicle so as to have a second field of view exterior of the vehicle, wherein said second camera module comprises a second lens and a second imager, wherein said second camera module is operable to capture image data; wherein said first camera module is powered by a first power supply line and wherein said second camera module is powered by a second power supply line; wherein said first camera module comprises a first image processor operable to process image data captured by said first camera module and said second camera module; wherein said second camera module comprises a second image processor operable to process image data captured by said first camera module and said second camera module; wherein said first camera module communicates image data captured by said first camera module to said second camera module, and wherein said second camera module communicates image data captured by said second camera module to said first camera module; and wherein some image processing tasks are performed at said first camera module and other image processing tasks are performed at said second camera module for enhancement of system performance and enhanced balancing of image processing loads. 14 . The multi-camera vision system of claim 13 , wherein said vision system selectively combines processing by said first and second image processors depending on tasks to be performed by said multi-camera vision system. 15 . The multi-camera vision system of claim 13 , wherein said first and second camera modules are disposed in a common housing, and wherein at least one of (i) said first lens is different from said second lens, and (ii) said first camera module comprises spectral filtering that is different from spectral filtering of said second camera module. 16 . The multi-camera vision system of claim 15 , wherein processing of captured image data by said first image processor determines depth information. 17 . A multi-camera vision system for a vehicle, said multi-camera vision system comprising: a first camera module disposed at a vehicle so as to have a first field of view exterior of the vehicle, wherein said first camera module comprises a first lens and a first imager, wherein said first camera module is operable to capture image data; a second camera module disposed at the vehicle so as to have a second field of view exterior of the vehicle, wherein said second camera module comprises a second lens and a second imager, wherein said second camera module is operable to capture image data; wherein said first camera module is powered by a first power supply line and wherein said second camera module is powered by a second power supply line; wherein said first camera module comprises a first image processor operable to process image data captured by said first camera module and said second camera module; wherein said second camera module comprises a second image processor operable to process image data captured by said first camera module and said second camera module; wherein said first and second camera modules share image data captured by said first and second camera modules; wherein depth information computations and other image processing tasks are performed simultaneously by said first and second image processors of said first and second camera modules; and wherein some of the depth information computations and image processing tasks are performed at said first camera module and others of the depth information computations and image processing tasks are performed at said second camera module for enhancement of system performance and enhanced balancing of image processing loads. 18 . The multi-camera vision system of claim 17 , wherein said vision system selectively combines processing by said first and second image processors depending on tasks to be performed by said multi-camera vision system. 19 . The multi-camera vision system of claim 17 , wherein said fi
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