Patents by Inventor Christopher Foster

Christopher Foster 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).

  • Patent number: 11076626
    Abstract: In one aspect, a method for compressing crop material for ensilage may include monitoring, with a computing device, a location of a work vehicle within a silage heap as the work vehicle traverses a layer of crop material within the silage heap. The method may also include determining, with the computing device, a current density of the layer of crop material as the work vehicle traverses the layer of crop material. Furthermore, the method may include controlling, with the computing device, an operation of the work vehicle based on the monitored location and the determined current density such that the work vehicle compresses the layer of crop material.
    Type: Grant
    Filed: March 5, 2019
    Date of Patent: August 3, 2021
    Assignee: CNH Industrial America LLC
    Inventors: Kevin M. Smith, John H. Posselius, Christopher A. Foster, Joshua David Harmon
  • Publication number: 20210176909
    Abstract: In one aspect, a system for determining soil clod size as an implement is being towed across a field by a work vehicle may include an imaging device provided in operative association with the work vehicle or the implement such that the imaging device is configured to capture images of the field. Furthermore, the system may include a controller communicatively coupled to the imaging device. The controller may be configured to receive, from the imaging device, image data associated with an imaged portion of the field. Moreover, the controller may be configured analyze the received image data to identify at least one edge of a soil clod within the imaged portion of the field. Additionally, the controller may be configured to determine a size of the soil clod based on the identified at least one edge of the soil clod.
    Type: Application
    Filed: December 11, 2019
    Publication date: June 17, 2021
    Inventors: Christopher A. Foster, James W. Henry, Luca Ferrari
  • Publication number: 20210127545
    Abstract: A system for assessing the performance of an agricultural implement may include a ground engaging tool configured to engage soil within a field as the agricultural implement is moved across the field such that the ground engaging tool creates a field material cloud aft of the ground engaging tool in a direction of travel of the agricultural implement. The system may further include a sensor configured to detect a cloud characteristic of the field material cloud and a controller communicatively coupled to the sensor. The controller may be configured to monitor data received from the sensor and assess the agricultural operation being performed based at least in part on the cloud characteristic.
    Type: Application
    Filed: October 30, 2019
    Publication date: May 6, 2021
    Inventors: Christopher A. Foster, Trevor Stanhope, Christopher Barrick
  • Publication number: 20210132028
    Abstract: A system for monitoring field conditions of a field includes a sensor supported on an agricultural implement, the sensor having a field of view directed towards an aft portion of the field disposed rearward of the agricultural implement relative to a direction of travel of the agricultural implement. The sensor generates data indicative of a field condition associated with the aft portion of the field. An actuator actuates the sensor back and forth relative to the agricultural implement along a sensor movement path. A controller receives data from the sensor indicative of the field condition as the actuator actuates the sensor such that the field of view of the sensor is oscillated across the aft portion of the field while the agricultural implement is being moved across the field. The controller monitors the field condition based at least in part on the data received from the sensor.
    Type: Application
    Filed: November 5, 2019
    Publication date: May 6, 2021
    Inventors: Christopher A. Foster, James W. Henry, John H. Posselius
  • Publication number: 20210123219
    Abstract: In one aspect, a system for detecting tripping of ground engaging tools on an agricultural implement may include a ground engaging tool coupled to an implement frame. Furthermore, the system may include a motion sensor installed on the implement frame, with the motion sensor configured to capture data indicative of motion of the implement frame. Moreover, the system may include a controller configured to monitor the motion of the implement frame based on the data received from the motion sensor. In addition, the controller may be further configured to determine when the ground engaging tool has tripped based on the monitored motion.
    Type: Application
    Filed: October 29, 2019
    Publication date: April 29, 2021
    Inventors: Christopher A. Foster, Joshua David Harmon
  • Patent number: 10973163
    Abstract: A system includes an electronic control system for an agricultural system, including a controller configured to receive a first signal indicative of a mission of a work vehicle of the agricultural system. The controller is configured to determine a first desired path of travel of the work vehicle based on the mission. The controller is configured to output a second signal to the work vehicle indicative of the first desired path of travel, to receive a third signal indicative of a change event from the work vehicle or from an operator, to determine a response to the change event that facilitates completion of the mission, and to output a fourth signal indicative of the response to the work vehicle.
    Type: Grant
    Filed: May 11, 2015
    Date of Patent: April 13, 2021
    Assignees: CNH Industrial America LLC, Autonomous Solutions, Inc.
    Inventors: Christopher A. Foster, John H. Posselius, Paul J. Lewis, Bret Todd Turpin, Jeremy Alexander Harris, James Brian Stewart, Max J. Barfuss, Joshua Hill Henrie, Daniel John Morwood, Brandon Chamberlain Adams
  • Publication number: 20200390018
    Abstract: A system for controlling an implement during a tillage operation may include a frame and a ground-engaging tool pivotally coupled to the frame and movable relative to the frame between a retracted position and an extended position. An actuator may be configured to bias the ground-engaging tool towards the extended position during the tillage operation. An adjustable valve may be configured to permit flow out of the actuator when a fluid pressure of the actuator exceeds a reset pressure such that the actuator allows the ground-engaging tool to pivot towards the retracted position. A controller may be configured to determine at least one of an actuator position or a load value indicative of a force applied by the ground-engaging tool against the soil during the tillage operation and adjust the reset pressure based on the at least one of the actuator position or the load value.
    Type: Application
    Filed: June 14, 2019
    Publication date: December 17, 2020
    Inventors: Kevin M. Smith, John H. Posselius, Christopher A. Foster, Joshua David Harmon, Bruce Anderson
  • Publication number: 20200390023
    Abstract: A system for monitoring the operational status of ground-engaging tools of an agricultural implement. The system includes a frame and an assembly including an attachment structure configured to be coupled to the frame and a ground-engaging tool pivotably coupled to the attachment structure at a pivot point. The system further includes a shear pin at least partially extending through both the attachment structure and ground-engaging tool to prevent pivoting of the ground-engaging tool about the pivot point. Additionally, the system includes a sensor configured to detect a load applied through a pivot member extending through at least one of the frame or assembly at any pivot point between the frame and the ground engaging tool. The system further includes a controller, communicatively coupled to the sensor, configured to determine a change in the working condition of the shear pin based on the detected load applied through the pivot member.
    Type: Application
    Filed: June 14, 2019
    Publication date: December 17, 2020
    Inventors: Joshua David Harmon, Christopher A. Foster
  • Patent number: 10773665
    Abstract: A system for detecting a damage condition associated with an agricultural machine. The system can include a component of the agricultural machine and a movement sensor configured to measure a movement parameter associated with the component. The system can include a controller communicatively coupled with the movement sensor. The controller can include a processor and associated memory. The memory may store instructions that, when executed by the processor, configure the controller to perform operations. The operations may include monitoring the movement parameter associated with the component and detecting a change in the monitored movement parameter over time that is associated with a damage pattern. The damage pattern may be indicative of damage to the agricultural machine. The operations may include automatically initiating a corrective action associated with preventing further damage to the agricultural machine when it is detected that the monitored movement parameter has experienced the damage pattern.
    Type: Grant
    Filed: October 16, 2018
    Date of Patent: September 15, 2020
    Assignee: CNH Industrial America LLC
    Inventors: Christopher A. Foster, Joshua David Harmon
  • Publication number: 20200285241
    Abstract: In one aspect, a method for distributing crop material for ensilage may include determining, with a computing device, a storage volume for the crop material. The method may also include dividing, with the computing device, the determined storage volume into a plurality of planes. Each plane of the plurality of planes may be spaced apart from each other plane of the plurality of planes along a vertical direction. Furthermore, the method may include controlling, with the computing device, an operation of at least one of a work vehicle or an associated implement in a manner that distributes a portion of the crop material on a given plane of the plurality of planes.
    Type: Application
    Filed: March 5, 2019
    Publication date: September 10, 2020
    Inventors: Kevin M. Smith, John H. Posselius, Cory Douglas Hunt, Christopher A. Foster, Joshua David Harmon
  • Publication number: 20200281248
    Abstract: In one aspect, a method for compressing crop material for ensilage may include monitoring, with a computing device, a location of a work vehicle within a silage heap as the work vehicle traverses a layer of crop material within the silage heap. The method may also include determining, with the computing device, a current density of the layer of crop material as the work vehicle traverses the layer of crop material. Furthermore, the method may include controlling, with the computing device, an operation of the work vehicle based on the monitored location and the determined current density such that the work vehicle compresses the layer of crop material.
    Type: Application
    Filed: March 5, 2019
    Publication date: September 10, 2020
    Inventors: Kevin M. Smith, John H. Posselius, Christopher A. Foster, Joshua David Harmon
  • Publication number: 20200114843
    Abstract: A system for detecting a damage condition associated with an agricultural machine. The system can include a component of the agricultural machine and a movement sensor configured to measure a movement parameter associated with the component. The system can include a controller communicatively coupled with the movement sensor. The controller can include a processor and associated memory. The memory may store instructions that, when executed by the processor, configure the controller to perform operations. The operations may include monitoring the movement parameter associated with the component and detecting a change in the monitored movement parameter over time that is associated with a damage pattern. The damage pattern may be indicative of damage to the agricultural machine. The operations may include automatically initiating a corrective action associated with preventing further damage to the agricultural machine when it is detected that the monitored movement parameter has experienced the damage pattern.
    Type: Application
    Filed: October 16, 2018
    Publication date: April 16, 2020
    Inventors: Christopher A. Foster, Joshua David Harmon
  • Publication number: 20200093054
    Abstract: A combine harvester comprising a controller, at least one first sensor adapted to measure a first parameter related to soil deformation, and at least one second sensor adapted to measure a second parameter related to wheel slip. The first sensor is adapted to provide a first output to the controller. The second sensor is adapted to provide a second output to the controller. The controller is configured to determine a ground bearing capacity based on a combination of the first output and the second output.
    Type: Application
    Filed: June 1, 2018
    Publication date: March 26, 2020
    Inventors: Glenn Aesaert, Christopher A. Foster, Bart M.A. Missotten, John H. Posselius
  • Patent number: 10448555
    Abstract: A system includes a scouting vehicle. The scouting vehicle includes a spatial location system configured to derive a geographic position of the scouting vehicle. The scouting vehicle further includes a computing device communicatively coupled to the spatial location system and to a communication system, the computing device comprising a processor configured to create a shape on a map based on a drive of the scouting vehicle. The scouting vehicle also includes the communication system configured to transmit the geographic position, a recording of the drive, the shape, or a combination thereof, to a base station.
    Type: Grant
    Filed: May 27, 2016
    Date of Patent: October 22, 2019
    Assignees: CNH Industrial America LLC, Autonomous Solutions, Inc.
    Inventors: Christopher A. Foster, John H. Posselius, Bret Todd Turpin, Daniel John Morwood, Michael G. Hornberger, Erik E. Veikle
  • Publication number: 20190317501
    Abstract: One embodiment describes a control system in an automation system including a first portion located at a first vehicle, which includes a first autonomous module that autonomously controls operation of the first vehicle to perform operations in a first area based at least in part on a first target operation result while the first portion is in an autonomous mode; and a second portion located at a second vehicle, in which the second portion includes a second autonomous module that autonomously controls operation of the second vehicle to perform operations in a second area based at least in part on a second target operation result while the second portion is in the autonomous mode and a first command module that determines the first target operation result and the second target operation result based at least in part on a global plan that indicates a total target operation result.
    Type: Application
    Filed: June 27, 2019
    Publication date: October 17, 2019
    Inventors: Christopher A. Foster, John H. Posselius, Bret T. Turpin, Daniel J. Morwood
  • Publication number: 20190317500
    Abstract: One embodiment describes a control system in an automation system including a first portion located at a first vehicle, which includes a first autonomous module that autonomously controls operation of the first vehicle to perform operations in a first area based at least in part on a first target operation result while the first portion is in an autonomous mode; and a second portion located at a second vehicle, in which the second portion includes a second autonomous module that autonomously controls operation of the second vehicle to perform operations in a second area based at least in part on a second target operation result while the second portion is in the autonomous mode and a first command module that determines the first target operation result and the second target operation result based at least in part on a global plan that indicates a total target operation result.
    Type: Application
    Filed: June 27, 2019
    Publication date: October 17, 2019
    Inventors: Christopher A. Foster, John H. Posselius, Bret T. Turpin, Daniel J. Morwood
  • Patent number: 10412893
    Abstract: The present invention is related to a method for harvesting crops from a field and to a method for working a field by towing an apparatus such as a tilling apparatus, wherein the methods of the invention employ manned and unmanned vehicles. The operation and movement of the unmanned vehicles is controlled by the drivers of the manned vehicles which are continuously in the vicinity of the unmanned vehicles.
    Type: Grant
    Filed: May 5, 2015
    Date of Patent: September 17, 2019
    Assignee: CNH Industrial America LLC
    Inventors: Bart M. A. Missotten, Christopher A. Foster, Neseth Cora Kong, John H. Posselius, Frederik Tallir, Karel M. C. Viaene
  • Patent number: 10394238
    Abstract: In one embodiment, a method for controlling one or more autonomous agricultural vehicles includes generating a number of mission plans for the one or more autonomous agricultural vehicles, determining a plan value for each of the number of mission plans, selecting a mission plan with the highest plan value, and executing the selected mission plan to control the one or more autonomous agricultural vehicles.
    Type: Grant
    Filed: January 6, 2017
    Date of Patent: August 27, 2019
    Assignees: CNH Industrial America LLC, Autonomous Solutions, Inc.
    Inventors: Christopher A. Foster, Nathan Eric Bunderson, Daniel John Morwood, Bret Todd Turpin
  • Patent number: 10382037
    Abstract: A modular capacitive sensing switch provides a separate circuit module attachable to a variety of electrode modules, the latter having different configurations. Embodiments providing adhesive mounting and network connections allow simple configuration of a wide variety of capacitive touch panel systems.
    Type: Grant
    Filed: March 31, 2015
    Date of Patent: August 13, 2019
    Assignee: Illinois Tool Works Inc.
    Inventors: Mark Banfield, Alan Capaldi-Tallon, Christopher Foster
  • Patent number: 10372126
    Abstract: One embodiment describes a control system in an automation system including a first portion located at a first vehicle, which includes a first autonomous module that autonomously controls operation of the first vehicle to perform operations in a first area based at least in part on a first target operation result while the first portion is in an autonomous mode; and a second portion located at a second vehicle, in which the second portion includes a second autonomous module that autonomously controls operation of the second vehicle to perform operations in a second area based at least in part on a second target operation result while the second portion is in the autonomous mode and a first command module that determines the first target operation result and the second target operation result based at least in part on a global plan that indicates a total target operation result.
    Type: Grant
    Filed: May 27, 2016
    Date of Patent: August 6, 2019
    Assignees: CNH Industrial America LLC, Autonomous Solutions, Inc.
    Inventors: Christopher A. Foster, John H. Posselius, Bret T. Turpin, Daniel J. Morwood