Patents by Inventor Kyle H. Holland

Kyle H. Holland 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: 9585307
    Abstract: A method for application of an agricultural product to a field, the method includes acquiring real-time sampled data using real-time agricultural sensors, wherein the real-time agricultural sensors include a soil sensor, auto-calibrating the real-time agricultural sensors using statistical characteristics of the real-time sampled data to determine an application rate, and applying the agricultural product to the field based on the application rate.
    Type: Grant
    Filed: June 16, 2014
    Date of Patent: March 7, 2017
    Inventor: Kyle H. Holland
  • Patent number: 9075008
    Abstract: A method and system of treating plants is provided. The method includes measuring optical properties of a plant using a plurality of spectral bands. The method further includes calculating in a computational device at least two vegetative indexes using the optical properties, each of the at least two vegetative indexes correlating to one or more plant growth parameters. The method further includes calculating in the computational device a water invariant chlorophyll index from at least two vegetative indexes using the plurality of spectral bands. The also provides for treating one or more of the plants based on the water invariant chlorophyll index.
    Type: Grant
    Filed: October 1, 2010
    Date of Patent: July 7, 2015
    Inventor: Kyle H. Holland
  • Patent number: 9026316
    Abstract: An apparatus configured for dispensing nutrients is provided. The apparatus includes a dispensing system configured for dispensing the nutrients, a variable rate controller operatively connected to the dispensing system and configured to control dispensement of the nutrients from the dispensing system. The variable rate controller is programmed to determine a primary nutrient application rate and an additional nutrient boost rate.
    Type: Grant
    Filed: October 2, 2012
    Date of Patent: May 5, 2015
    Inventor: Kyle H. Holland
  • Publication number: 20140358381
    Abstract: A method for application of an agricultural product to a field, the method includes acquiring real-time sampled data using real-time agricultural sensors, wherein the real-time agricultural sensors include a soil sensor, auto-calibrating the real-time agricultural sensors using statistical characteristics of the real-time sampled data to determine an application rate, and applying the agricultural product to the field based on the application rate.
    Type: Application
    Filed: June 16, 2014
    Publication date: December 4, 2014
    Inventor: Kyle H. Holland
  • Publication number: 20140346319
    Abstract: An apparatus configured for dispensing nutrients includes a dispensing system configured for dispensing the nutrients for a particular plant hybrid or plant variety and a variable rate controller operatively connected to the dispensing system and configured to control dispensement of the nutrients from the dispensing system. The variable rate controller may be programmed to use a plant growth response function for the particular plant hybrid or plant variety and adjust the dispensement of the nutrients from the dispensing system based on the plant growth response function and further programmed to use a pre-determined plug value for the particular plant hybrid or plant variety for initial calibration.
    Type: Application
    Filed: May 21, 2013
    Publication date: November 27, 2014
    Inventor: Kyle H. Holland
  • Publication number: 20140345340
    Abstract: A method for applying agrochemicals within a geographical area, the method includes determining identify of a first hybrid or variety within the geographical area, determining identify of a second hybrid or variety within the geographical area, and applying agrochemicals to the geographical area using a variable rate controller based on the identity of the first hybrid or variety and the identity of the second hybrid or variety and wherein the variable rate controller is configured to apply the agrochemicals using a first model for the first hybrid or variety within the geographical area and a second model for the second hybrid or variety within the geographical area.
    Type: Application
    Filed: May 21, 2013
    Publication date: November 27, 2014
    Inventor: Kyle H. Holland
  • Patent number: 8816262
    Abstract: A method for application of an agricultural product to a field is provided. The method includes acquiring real-time sampled data using real-time agricultural sensors, auto-calibrating the real-time agricultural sensors using statistical characteristics of the real-time sampled data to determine an application rate, and applying the agricultural product to the field based on the application rate. The step of auto-calibrating can be performed in various ways depending upon the type of agricultural product, the data available from the agricultural sensors or otherwise, or otherwise.
    Type: Grant
    Filed: September 29, 2011
    Date of Patent: August 26, 2014
    Inventor: Kyle H. Holland
  • Patent number: 8755049
    Abstract: A light sensing apparatus for measuring the reflectance of sub surface soil in real-time while attached to a moving vehicle is disclosed. Reflectance measurements from the apparatus can be related to the organic matter content of the soil. The apparatus is housed in a corrosion resistant enclosure having field rebuildable wear surfaces. The wear surfaces help extend the life of the apparatus by isolating the apparatus's main enclosure from soil abrasion. The wear surfaces also assist in conditioning the sensed soil surface by smoothing the surface prior to sensing. Signal conditioning circuitry in the apparatus is utilized to reject the influence of ambient light in the advent that the soil/apparatus interface opens. A digital processor or other “intelligent controller” is utilized in the apparatus to auto calibrate the apparatus in real-time and/or use predetermined tables or mathematical relationships in order to convert reflectance information into organic matter measurements.
    Type: Grant
    Filed: May 23, 2013
    Date of Patent: June 17, 2014
    Inventor: Kyle H. Holland
  • Publication number: 20140091199
    Abstract: An apparatus configured for dispensing nutrients is provided. The apparatus includes a dispensing system configured for dispensing the nutrients, a variable rate controller operatively connected to the dispensing system and configured to control dispensement of the nutrients from the dispensing system. The variable rate controller is programmed to determine a primary nutrient application rate and an additional nutrient boost rate.
    Type: Application
    Filed: October 2, 2012
    Publication date: April 3, 2014
    Inventor: Kyle H. Holland
  • Patent number: 8558157
    Abstract: An apparatus for applying agrochemicals within a geographical area includes a dispensing system configured for dispensing the agrochemicals and a variable rate controller operatively connected to the dispensing system and configured to control dispensement of agrochemicals from the dispensing system. The variable rate controller is programmed with an algorithm which uses a plant growth stage appropriate plug value for an initial calibration. A method for applying agrochemicals within a geographical area includes acquiring a growth stage appropriate plug value for an initial calibration, using the growth state appropriate plug value in the initial calibration, and applying agrochemicals to the geographical area according to the initial calibration.
    Type: Grant
    Filed: June 15, 2010
    Date of Patent: October 15, 2013
    Inventor: Kyle H. Holland
  • Publication number: 20130250280
    Abstract: A method and system of treating plants is provided. The method includes measuring optical properties of a plant using a plurality of spectral bands. The method further includes calculating in a computational device at least two vegetative indexes using the optical properties, each of the at least two vegetative indexes correlating to one or more plant growth parameters. The method further includes calculating in the computational device a water invariant chlorophyll index from at least two vegetative indexes using the plurality of spectral bands. The also provides for treating one or more of the plants based on the water invariant chlorophyll index.
    Type: Application
    Filed: May 9, 2013
    Publication date: September 26, 2013
    Inventor: Kyle H. Holland
  • Publication number: 20130250305
    Abstract: A light sensing apparatus for measuring the reflectance of sub surface soil in real-time while attached to a moving vehicle is disclosed. Reflectance measurements from the apparatus can be related to the organic matter content of the soil. The apparatus is housed in a corrosion resistant enclosure having field rebuildable wear surfaces. The wear surfaces help extend the life of the apparatus by isolating the apparatus's main enclosure from soil abrasion. The wear surfaces also assist in conditioning the sensed soil surface by smoothing the surface prior to sensing. Signal conditioning circuitry in the apparatus is utilized to reject the influence of ambient light in the advent that the soil/apparatus interface opens. A digital processor or other “intelligent controller” is utilized in the apparatus to auto calibrate the apparatus in real-time and/or use predetermined tables or mathematical relationships in order to convert reflectance information into organic matter measurements.
    Type: Application
    Filed: May 23, 2013
    Publication date: September 26, 2013
    Inventor: Kyle H. Holland
  • Patent number: 8451449
    Abstract: A light sensing apparatus for measuring the reflectance of sub surface soil in real-time while attached to a moving vehicle is disclosed. Reflectance measurements from the apparatus can be related to the organic matter content of the soil. The apparatus is housed in a corrosion resistant enclosure having field rebuildable wear surfaces. The wear surfaces help extend the life of the apparatus by isolating the apparatus's main enclosure from soil abrasion. The wear surfaces also assist in conditioning the sensed soil surface by smoothing the surface prior to sensing. Signal conditioning circuitry in the apparatus is utilized to reject the influence of ambient light in the advent that the soil/apparatus interface opens. A digital processor or other “intelligent controller” is utilized in the apparatus to auto calibrate the apparatus in real-time and/or use predetermined tables or mathematical relationships in order to convert reflectance information into organic matter measurements.
    Type: Grant
    Filed: October 28, 2010
    Date of Patent: May 28, 2013
    Inventor: Kyle H. Holland
  • Patent number: 8319165
    Abstract: An apparatus for applying agrochemicals within a geographical area includes a dispensing system configured for dispensing the agrochemicals and a variable rate controller operatively connected to the dispensing system and configured to control dispensement of agrochemicals from the dispensing system. The variable rate controller is programmed with an algorithm which uses a plant growth stage appropriate plug value for an initial calibration. A method for applying agrochemicals within a geographical area includes acquiring a growth stage appropriate plug value for an initial calibration, using the growth state appropriate plug value in the initial calibration, and applying agrochemicals to the geographical area according to the initial calibration.
    Type: Grant
    Filed: April 29, 2010
    Date of Patent: November 27, 2012
    Inventor: Kyle H. Holland
  • Publication number: 20120016517
    Abstract: A method for application of an agricultural product to a field is provided. The method includes acquiring real-time sampled data using real-time agricultural sensors, auto-calibrating the real-time agricultural sensors using statistical characteristics of the real-time sampled data to determine an application rate, and applying the agricultural product to the field based on the application rate. The step of auto-calibrating can be performed in various ways depending upon the type of agricultural product, the data available from the agricultural sensors or otherwise, or otherwise.
    Type: Application
    Filed: September 29, 2011
    Publication date: January 19, 2012
    Inventor: KYLE H. HOLLAND
  • Publication number: 20110102798
    Abstract: A light sensing apparatus for measuring the reflectance of sub surface soil in real-time while attached to a moving vehicle is disclosed. Reflectance measurements from the apparatus can be related to the organic matter content of the soil. The apparatus is housed in a corrosion resistant enclosure having field rebuildable wear surfaces. The wear surfaces help extend the life of the apparatus by isolating the apparatus's main enclosure from soil abrasion. The wear surfaces also assist in conditioning the sensed soil surface by smoothing the surface prior to sensing. Signal conditioning circuitry in the apparatus is utilized to reject the influence of ambient light in the advent that the soil/apparatus interface opens. A digital processor or other “intelligent controller” is utilized in the apparatus to auto calibrate the apparatus in real-time and/or use predetermined tables or mathematical relationships in order to convert reflectance information into organic matter measurements.
    Type: Application
    Filed: October 28, 2010
    Publication date: May 5, 2011
    Inventor: KYLE H. HOLLAND
  • Publication number: 20110047867
    Abstract: A method and system of treating plants is provided. The method includes measuring optical properties of a plant using a plurality of spectral bands. The method further includes calculating in a computational device at least two vegetative indexes using the optical properties, each of the at least two vegetative indexes correlating to one or more plant growth parameters. The method further includes calculating in the computational device a water invariant chlorophyll index from at least two vegetative indexes using the plurality of spectral bands. The also provides for treating one or more of the plants based on the water invariant chlorophyll index.
    Type: Application
    Filed: October 1, 2010
    Publication date: March 3, 2011
    Inventor: KYLE H. HOLLAND
  • Publication number: 20100249998
    Abstract: An apparatus for applying agrochemicals within a geographical area includes a dispensing system configured for dispensing the agrochemicals and a variable rate controller operatively connected to the dispensing system and configured to control dispensement of agrochemicals from the dispensing system. The variable rate controller is programmed with an algorithm which uses a plant growth stage appropriate plug value for an initial calibration. A method for applying agrochemicals within a geographical area includes acquiring a growth stage appropriate plug value for an initial calibration, using the growth state appropriate plug value in the initial calibration, and applying agrochemicals to the geographical area according to the initial calibration.
    Type: Application
    Filed: June 15, 2010
    Publication date: September 30, 2010
    Inventor: KYLE H. HOLLAND
  • Publication number: 20100222922
    Abstract: An apparatus for applying agrochemicals within a geographical area includes a dispensing system configured for dispensing the agrochemicals and a variable rate controller operatively connected to the dispensing system and configured to control dispensement of agrochemicals from the dispensing system. The variable rate controller is programmed with an algorithm which uses a plant growth stage appropriate plug value for an initial calibration. A method for applying agrochemicals within a geographical area includes acquiring a growth stage appropriate plug value for an initial calibration, using the growth state appropriate plug value in the initial calibration, and applying agrochemicals to the geographical area according to the initial calibration.
    Type: Application
    Filed: April 29, 2010
    Publication date: September 2, 2010
    Inventor: KYLE H. HOLLAND
  • Patent number: 6393927
    Abstract: A method and apparatus for the real time determination and application of optimum amounts of nitrogen fertilizer to corn and other arable crops such as cotton, sugar beats, wheat, etc. by the use of rapid, non-destructive sensors and various fertilizer application methods. In a first embodiment, optical reflectance measurements of the crop canopy and a reference strip at the fertilizer response plateau are taken by sensors carried by a center pivot irrigation system. A sensor controller receives, stores and analyzes the sensor data as well as position data received from a center pivot controller. The sensor controller then sends commands to the center pivot controller to order fertilizer application, as necessary, through the irrigation system. A second embodiment of the invention utilizes a tractor drawn fertilizer applicator with the sensors mounted on the application booms.
    Type: Grant
    Filed: October 8, 1996
    Date of Patent: May 28, 2002
    Assignee: Li-Cor, Inc.
    Inventors: Gregory L. Biggs, Tracey M. Blackmer, Tanvir H. Demetriades-Shah, Kyle H. Holland, James S. Schepers, John Henry Wurm