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US Patent 10025983 Ponding water detection on satellite imagery

Patent 10025983 was granted and assigned to The Climate Corporation on July, 2018 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
The Climate Corporation
The Climate Corporation
Current Assignee
The Climate Corporation
The Climate Corporation
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10025983
Date of Patent
July 17, 2018
Patent Application Number
14860247
Date Filed
September 21, 2015
Patent Citations Received
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US Patent 12127500 Machine control using a map with regime zones
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US Patent 11474523 Machine control using a predictive speed map
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US Patent 11477940 Mobile work machine control based on zone parameter modification
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US Patent 12069986 Map generation and control system
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US Patent 12082531 Systems and methods for predicting material dynamics
0
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US Patent 11467605 Zonal machine control
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US Patent 11234366 Image selection for machine control
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US Patent 11240961 Controlling a harvesting machine based on a geo-spatial representation indicating where the harvesting machine is likely to reach capacity
...
Patent Primary Examiner
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Richard Torrente
Patent abstract

A system for identifying ponding water located on a field from image data is described. In an approach, an image of an agricultural field is analyzed using a classifier that has been trained based on the spectral bands of labeled image pixels to identify a probability for each pixel within the image that the pixel corresponds to water. A flow simulation is performed to determine regions of the field that are likely to pool water after rainfall based on precipitation data, elevation data, and soil property data of the field. A graph of vertices representing the pixels and edges representing connections between neighboring pixels is generated. The probability of each pixel within the graph being ponding water is set based on the probability pixel being water, the likelihood that water will pool in the area represented by the pixel, the probability of neighboring pixels being ponding water, and a cropland mask that identifies which pixels correspond to cropland. A class for each pixel is then determined that maximizes the joint probability over the graph.

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