Patents by Inventor Nilesh Pradhan

Nilesh Pradhan has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20220128658
    Abstract: A time-of-flight (TOF) sensor device is configured to perform classification analytics on a waveform signal representing a reflected light pulse, and to classify an object from which the light pulse was received based on characteristic properties of the reflected pulse. The TOF sensor device can compare the reflected pulse waveform with stored characteristic waveform profiles indicative of different types of objects or atmospheric particulates, including but not limited to snow, aerosol, water, fog, or mist. Some embodiments of TOF sensor device can also detect excessive levels of mist or suspended particulates that may reduce the detection accuracy of the sensor. To this end, such embodiments project focused light beams according to a defined pattern, and compare the reflected pattern with the defined pattern to determine a degree of pattern distortion attributable to the presence of mist.
    Type: Application
    Filed: January 5, 2022
    Publication date: April 28, 2022
    Inventors: Richard Galera, Anne E. Bowlby, Derek W. Jones, Nilesh Pradhan
  • Patent number: 11243294
    Abstract: A time-of-flight (TOF) sensor device is configured to perform classification analytics on a waveform signal representing a reflected light pulse, and to classify an object from which the light pulse was received based on characteristic properties of the reflected pulse. The TOF sensor device can compare the reflected pulse waveform with stored characteristic waveform profiles indicative of different types of objects or atmospheric particulates, including but not limited to snow, aerosol, water, fog, or mist. Some embodiments of TOF sensor device can also detect excessive levels of mist or suspended particulates that may reduce the detection accuracy of the sensor. To this end, such embodiments project focused light beams according to a defined pattern, and compare the reflected pattern with the defined pattern to determine a degree of pattern distortion attributable to the presence of mist.
    Type: Grant
    Filed: September 14, 2017
    Date of Patent: February 8, 2022
    Assignee: Rockwell Automation Technologies, Inc.
    Inventors: Richard Galera, Anne E. Bowlby, Derek W. Jones, Nilesh Pradhan
  • Patent number: 11125860
    Abstract: An optical safety scanner system comprises a first illumination source for detecting presence and distances of people or other objects within a hazardous industrial area based on triangulation, and a second illumination source that verifies accurate and reliable detection by the first illumination source. The first illumination source can project LED or laser light for triangulation of objects, and the second illumination source can project a wide beam of light for detection of other intrusive objects that may be blocking the scanner system's camera and preventing accurate triangulation of people or vehicles. If the image frame generated based on the second light identifies presence of an object that is not detected by the triangulation analysis of the laser light, the safety scanner system assumes that an object is obstructing the safety scanner system's camera, and performs a suitable safety action.
    Type: Grant
    Filed: September 29, 2017
    Date of Patent: September 21, 2021
    Assignee: Rockwell Automation Technologies, Inc.
    Inventors: Richard Galera, Anne E. Bowlby, Derek W. Jones, Nilesh Pradhan, Amanda Jimenez Marrufo, Fernando Manuel Medeiro Hidalgo, Rafael Dominguez Castro, Rafael Romay Juárez, Sergio Morillas Castillo
  • Publication number: 20190101623
    Abstract: An optical safety scanner system comprises a first illumination source for detecting presence and distances of people or other objects within a hazardous industrial area based on triangulation, and a second illumination source that verifies accurate and reliable detection by the first illumination source. The first illumination source can project LED or laser light for triangulation of objects, and the second illumination source can project a wide beam of light for detection of other intrusive objects that may be blocking the scanner system's camera and preventing accurate triangulation of people or vehicles. If the image frame generated based on the second light identifies presence of an object that is not detected by the triangulation analysis of the laser light, the safety scanner system assumes that an object is obstructing the safety scanner system's camera, and performs a suitable safety action.
    Type: Application
    Filed: September 29, 2017
    Publication date: April 4, 2019
    Inventors: Richard Galera, Anne E. Bowlby, Derek W. Jones, Nilesh Pradhan, Amanda Jimenez Marrufo, Fernando Manuel Medeiro Hidalgo, Rafael Dominguez Castro, Rafael Romay Juárez, Sergio Morillas Castillo
  • Patent number: 9921300
    Abstract: A time-of-flight (TOF) sensor device is provided that is capable of accurately recovering waveforms of reflected light pulses incident on the sensor's photo-receiver array using a low sampling rate. A number of samples for a received light pulse incident on a given photo-receiver are obtained by emitting a light pulse to the viewing field, integrating the electrical output generated by the photo receiver over an integration period, and adding the integral values for respective integration cycles to yield an accumulation value. This process is repeated for multiple accumulation cycles; however, for each consecutive accumulation cycle the start of the integration period is delayed relative the start time of the integration period for the previous cycle by a delay period. Sampled values for the waveform are obtained by determining the difference values between consecutive accumulation values for the respective accumulation cycles.
    Type: Grant
    Filed: January 29, 2015
    Date of Patent: March 20, 2018
    Assignees: Rockwell Automation Technologies, Inc., Innovaciones Microelectrónicas S.L.
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard, Rafael Dominguez Castro, Sergio Morillas Castillo, Rafael Romay Juárez
  • Publication number: 20180003807
    Abstract: A time-of-flight (TOF) sensor device is configured to perform classification analytics on a waveform signal representing a reflected light pulse, and to classify an object from which the light pulse was received based on characteristic properties of the reflected pulse. The TOF sensor device can compare the reflected pulse waveform with stored characteristic waveform profiles indicative of different types of objects or atmospheric particulates, including but not limited to snow, aerosol, water, fog, or mist. Some embodiments of TOF sensor device can also detect excessive levels of mist or suspended particulates that may reduce the detection accuracy of the sensor. To this end, such embodiments project focused light beams according to a defined pattern, and compare the reflected pattern with the defined pattern to determine a degree of pattern distortion attributable to the presence of mist.
    Type: Application
    Filed: September 14, 2017
    Publication date: January 4, 2018
    Inventors: Richard Galera, Anne E. Bowlby, Derek W. Jones, Nilesh Pradhan
  • Patent number: 9696424
    Abstract: An imaging sensor device is configured to illuminate a viewing field using an array of focused light spots spaced across the viewing field rather than uniformly illuminating the viewing field, thereby reducing the amount of illumination energy required to produce a given intensity of light reflected from the spots. In some embodiments, the imaging sensor device can project an array of focused light spots at two different intensities or brightness levels, such that high intensity and low intensity light spots are interlaced across the viewing field. This ensures that both relatively dark and relatively bright or reflective objects can be reliably detected within the viewing field. The intensities of the light spots can be modulated based on measured conditions of the viewing field, including but not limited to the measured ambient light or a determined dynamic range of reflectivity of objects within the viewing field.
    Type: Grant
    Filed: November 25, 2014
    Date of Patent: July 4, 2017
    Assignee: ROCKWELL AUTOMATION TECHNOLOGIES, INC.
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard
  • Patent number: 9477907
    Abstract: An industrial safety system is provided that integrates optical safety monitoring with machine control. The safety system includes an imaging sensor device supporting pixel array processing functions that allow time-of-flight (TOF) analysis to be performed on selected portions of the pixel array, while two-dimensional imaging analysis is performed on the remaining portions of the array, reducing processing load and response time relative to performing TOF analysis for all pixels of the array. The portion of the pixel array designated for TOF analysis can be pre-defined through configuration of the imaging sensor device, or can be dynamically selected based on object detection and classification by the two-dimensional imaging analysis. The imaging sensor device can also implement a number of safety and redundancy functions to achieve a high degree of safety integrity.
    Type: Grant
    Filed: November 17, 2015
    Date of Patent: October 25, 2016
    Assignee: Rockwell Automation Technologies, Inc.
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard
  • Publication number: 20160070991
    Abstract: An industrial safety system is provided that integrates optical safety monitoring with machine control. The safety system includes an imaging sensor device supporting pixel array processing functions that allow time-of-flight (TOF) analysis to be performed on selected portions of the pixel array, while two-dimensional imaging analysis is performed on the remaining portions of the array, reducing processing load and response time relative to performing TOF analysis for all pixels of the array. The portion of the pixel array designated for TOF analysis can be pre-defined through configuration of the imaging sensor device, or can be dynamically selected based on object detection and classification by the two-dimensional imaging analysis. The imaging sensor device can also implement a number of safety and redundancy functions to achieve a high degree of safety integrity.
    Type: Application
    Filed: November 17, 2015
    Publication date: March 10, 2016
    Applicant: Rockwell Automation Technologies, Inc.
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard
  • Patent number: 9256944
    Abstract: An industrial safety system is provided that integrates optical safety monitoring with machine control. The safety system includes an imaging sensor device supporting pixel array processing functions that allow time-of-flight (TOF) analysis to be performed on selected portions of the pixel array, while two-dimensional imaging analysis is performed on the remaining portions of the array, reducing processing load and response time relative to performing TOF analysis for all pixels of the array. The portion of the pixel array designated for TOF analysis can be pre-defined through configuration of the imaging sensor device, or can be dynamically selected based on object detection and classification by the two-dimensional imaging analysis. The imaging sensor device can also implement a number of safety and redundancy functions to achieve a high degree of safety integrity.
    Type: Grant
    Filed: November 25, 2014
    Date of Patent: February 9, 2016
    Assignee: Rockwell Automation Technologies, Inc.
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard
  • Publication number: 20150331092
    Abstract: A time-of-flight (TOF) sensor device is provided that is capable of accurately recovering waveforms of reflected light pulses incident on the sensor's photo-receiver array using a low sampling rate. A number of samples for a received light pulse incident on a given photo-receiver are obtained by emitting a light pulse to the viewing field, integrating the electrical output generated by the photo receiver over an integration period, and adding the integral values for respective integration cycles to yield an accumulation value. This process is repeated for multiple accumulation cycles; however, for each consecutive accumulation cycle the start of the integration period is delayed relative the start time of the integration period for the previous cycle by a delay period. Sampled values for the waveform are obtained by determining the difference values between consecutive accumulation values for the respective accumulation cycles.
    Type: Application
    Filed: January 29, 2015
    Publication date: November 19, 2015
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard, Rafael Dominguez Castro, Sergio Morillas Castillo, Rafael Romay Juárez
  • Publication number: 20150334371
    Abstract: An imaging sensor device includes pixel array processing functions that allow time-of-flight (TOF) analysis to be performed on selected portions of the pixel array, while two-dimensional imaging analysis is performed on the remaining portions of the array, reducing processing load and response time relative to performing TOF analysis for all pixels of the array. The portion of the pixel array designated for TOF analysis can be pre-defined through configuration of the imaging sensor device. Alternatively, the imaging sensor device can dynamically select the portions of the pixel array on which TOF analysis is to be performed based on object detection and classification by the two-dimensional imaging analysis. Embodiments of the imaging sensor device can also implement a number of safety and redundancy functions to achieve a high degree of safety integrity, making the sensor suitable for use in various types of safety monitoring applications.
    Type: Application
    Filed: October 27, 2014
    Publication date: November 19, 2015
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard
  • Publication number: 20150332463
    Abstract: An industrial safety system is provided that integrates optical safety monitoring with machine control. The safety system includes an imaging sensor device supporting pixel array processing functions that allow time-of-flight (TOF) analysis to be performed on selected portions of the pixel array, while two-dimensional imaging analysis is performed on the remaining portions of the array, reducing processing load and response time relative to performing TOF analysis for all pixels of the array. The portion of the pixel array designated for TOF analysis can be pre-defined through configuration of the imaging sensor device, or can be dynamically selected based on object detection and classification by the two-dimensional imaging analysis. The imaging sensor device can also implement a number of safety and redundancy functions to achieve a high degree of safety integrity.
    Type: Application
    Filed: November 25, 2014
    Publication date: November 19, 2015
    Applicant: Rockwell Automation Technologies, Inc.
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard
  • Publication number: 20150331107
    Abstract: An imaging sensor device is configured to illuminate a viewing field using an array of focused light spots spaced across the viewing field rather than uniformly illuminating the viewing field, thereby reducing the amount of illumination energy required to produce a given intensity of light reflected from the spots. In some embodiments, the imaging sensor device can project an array of focused light spots at two different intensities or brightness levels, such that high intensity and low intensity light spots are interlaced across the viewing field. This ensures that both relatively dark and relatively bright or reflective objects can be reliably detected within the viewing field. The intensities of the light spots can be modulated based on measured conditions of the viewing field, including but not limited to the measured ambient light or a determined dynamic range of reflectivity of objects within the viewing field.
    Type: Application
    Filed: November 25, 2014
    Publication date: November 19, 2015
    Applicant: Rockwell Automation Technologies, Inc.
    Inventors: Richard Galera, Anne Bowlby, Derek W. Jones, Nilesh Pradhan, Francis L. Leard