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US Patent 11604967 Stereo depth estimation using deep neural networks

Patent 11604967 was granted and assigned to NVIDIA on March, 2023 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
NVIDIA
NVIDIA
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Current Assignee
NVIDIA
NVIDIA
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116049670
Date of Patent
March 14, 2023
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Patent Application Number
173561400
Date Filed
June 23, 2021
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Patent Citations
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US Patent 10289469 Reliability enhancement utilizing speculative execution systems and methods
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US Patent 10372136 Local trajectory planning method and apparatus for smart vehicles
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US Patent 10489972 Realistic 3D virtual world creation and simulation for training automated driving systems
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US Patent 10580158 Dense depth estimation of image data
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US Patent 10599546 Autonomous vehicle testing systems and methods
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US Patent 10625748 Approaches for encoding environmental information
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US Patent 10635110 Sparse map autonomous vehicle navigation
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US Patent 10730517 Driving system and vehicle
...
Patent Citations Received
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US Patent 11972587 Method for establishing semantic distance map and related moving device
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Patent Primary Examiner
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Marcellus J Augustin
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Various examples of the present disclosure include a stereoscopic deep neural network (DNN) that produces accurate and reliable results in real-time. Both LIDAR data (supervised training) and photometric error (unsupervised training) may be used to train the DNN in a semi-supervised manner. The stereoscopic DNN may use an exponential linear unit (ELU) activation function to increase processing speeds, as well as a machine learned argmax function that may include a plurality of convolutional layers having trainable parameters to account for context. The stereoscopic DNN may further include layers having an encoder/decoder architecture, where the encoder portion of the layers may include a combination of three-dimensional convolutional layers followed by two-dimensional convolutional layers.

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