Patents by Inventor David Carroll Teeter

David Carroll Teeter 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: 8521447
    Abstract: A method that includes comparing a first brake pressure measured at a first transducer that is part of a braking system on a lead powered unit of a distributed power (DP) system to a second brake pressure measured at a second transducer that is part of a braking system on a remote powered unit of the DP system. The method also includes determining whether the second transducer is functioning within designated operational parameters when the DP system is operating in a DP mode based on comparing the first brake pressure to the second brake pressure.
    Type: Grant
    Filed: June 21, 2012
    Date of Patent: August 27, 2013
    Assignee: General Electric Company
    Inventors: Eugene A. Smith, David Carroll Teeter, John William Brand
  • Publication number: 20120260716
    Abstract: A method that includes comparing a first brake pressure measured at a first transducer that is part of a braking system on a lead powered unit of a distributed power (DP) system to a second brake pressure measured at a second transducer that is part of a braking system on a remote powered unit of the DP system. The method also includes determining whether the second transducer is functioning within designated operational parameters when the DP system is operating in a DP mode based on comparing the first brake pressure to the second brake pressure.
    Type: Application
    Filed: June 21, 2012
    Publication date: October 18, 2012
    Inventors: Eugene A. Smith, David Carroll Teeter, John William Brand
  • Patent number: 8224591
    Abstract: A system for verifying validity of a pressure reading from a transducer on a remote powered system, the system including a comparator subsystem configured to evaluate a pressure reading differential taken between a first transducer that is part of a braking system on a lead powered system and a second transducer that is a part of a braking system on a remote powered system, wherein the pressure reading differential is taken when the lead powered system and the remote powered system are operating in a distributed power application. A method and computer software code, stored on a computer readable media and executable with a processor, are also disclosed for verifying validity of a pressure reading from a transducer on a remote powered system.
    Type: Grant
    Filed: July 16, 2009
    Date of Patent: July 17, 2012
    Assignee: General Electric Company
    Inventors: Eugene A. Smith, David Carroll Teeter, John William Brand
  • Publication number: 20110015876
    Abstract: A system for verifying validity of a pressure reading from a transducer on a remote powered system, the system including a comparator subsystem configured to evaluate a pressure reading differential taken between a first transducer that is part of a braking system on a lead powered system and a second transducer that is a part of a braking system on a remote powered system, wherein the pressure reading differential is taken when the lead powered system and the remote powered system are operating in a distributed power application. A method and computer software code, stored on a computer readable media and executable with a processor, are also disclosed for verifying validity of a pressure reading from a transducer on a remote powered system.
    Type: Application
    Filed: July 16, 2009
    Publication date: January 20, 2011
    Inventors: Eugene A. Smith, David Carroll Teeter, John William Brand
  • Publication number: 20100130124
    Abstract: Communicating messages between an HOT device (48L) in a lead locomotive (14) and an EOT device (40) at an end-of-train position. The method comprises tuning a DP transceiver (28L) onboard a remote locomotive (12A) to an HOT/EOT communications channel frequency, transmitting a message from the EOT device (40) intended for the HOT device (48L) or transmitting a message from the HOT device (48L) intended for the EOT device (40), and receiving the message at the DP transceiver (28L). If the message was transmitted from EOT device (40), transmitting the message from the DP transceiver (28L) to HOT device (48L) and receiving and executing the message at the HOT device (48L). If the message was transmitted from the HOT device (48L), transmitting the message from the DP transceiver (28L) to the EOT device (40) and receiving and executing the message at the EOT device (40).
    Type: Application
    Filed: November 23, 2008
    Publication date: May 27, 2010
    Applicant: GENERAL ELECTRIC COMPANY
    Inventors: David Carroll Teeter, Eugene Smith, James Glen Corry, Robert James Foy, James P. Schmitz
  • Patent number: 7520472
    Abstract: A remote control system and method for the remote control operation of a locomotive in the performance of a car-kicking sequence comprises a portable control unit operable from a location off-board of the locomotive. The portable control unit includes an operator interface allowing an operator to initiate, with a single step, a predetermined sequence of locomotive operations for automatically performing a car-kicking procedure and generating a signal responsive to the single step for transmission to the locomotive. The system also includes a memory for storing a set of instructions corresponding to the predetermined sequence. An onboard slave control unit, interfaced with an operating system on the locomotive, receives the signal and automatically controls movement of the locomotive according to the set of instructions.
    Type: Grant
    Filed: April 25, 2005
    Date of Patent: April 21, 2009
    Assignee: General Electric Company
    Inventors: David Michael Peltz, Thomas Charles Leary, Mark Bradshaw Kraeling, Brian Lee Staton, David Carroll Teeter
  • Patent number: 7263647
    Abstract: A communication system for a distributed locomotive power/brake control system for a railroad train having a lead locomotive and one or more remote locomotives. Command and status signals are communicated over the system between the lead and remote locomotives. Each communicated message includes an information segment comprising the command or status information, and an error control segment for detecting errors in the information segment. The error control segment further comprises cyclic redundancy code words and parity bits formed according to the horizontal or vertical parity of the information segment and the cyclic redundancy code words.
    Type: Grant
    Filed: October 17, 2002
    Date of Patent: August 28, 2007
    Assignee: General Electric Company
    Inventors: Robert Francis Bryant, David Carroll Teeter, Robert James Foy, Joseph Bibb Cain, Adrian Jones, Don Keith Johnson, Frank Sanzone, Dale Henry Delaruelle
  • Patent number: 7177732
    Abstract: An automatic coupling system (10) for a locomotive (11). The automatic coupling system includes a means for detecting a coupling contact and for controlling locomotive systems such as throttle and brakes in response to such contact. The means for detecting contact may be a speed sensor (24), an accelerometer (26), a distance detector (28), and/or a wheel slip detector (30). The automatic coupling system may be integrated with a locomotive remote control system (22) to facilitate the coupling of a locomotive to a railcar (40) when the operator is not located in the locomotive cab.
    Type: Grant
    Filed: February 6, 2003
    Date of Patent: February 13, 2007
    Assignee: General Electric Company
    Inventors: Mark Bradshaw Kraeling, David Carroll Teeter, David Frank Kornick
  • Publication number: 20030182030
    Abstract: An automatic coupling system (10) for a locomotive (11). The automatic coupling system includes a means for detecting a coupling contact and for controlling locomotive systems such as throttle and brakes in response to such contact. The means for detecting contact may be a speed sensor (24), an accelerometer (26), a distance detector (28), and/or a wheel slip detector (30). The automatic coupling system may be integrated with a locomotive remote control system (22) to facilitate the coupling of a locomotive to a railcar (40) when the operator is not located in the locomotive cab.
    Type: Application
    Filed: February 6, 2003
    Publication date: September 25, 2003
    Inventors: Mark Bradshaw Kraeling, David Carroll Teeter, David Frank Kornick
  • Publication number: 20030178534
    Abstract: A remote control system and method for the remote control operation of a locomotive in the performance of a car-kicking sequence comprising a control unit, a remote control unit and a processor in communication with the locomotive onboard operating system. An operator interface of the operator control unit includes an input mechanism for inputting a command associated with at least one predetermined car-kicking sequence. The operator control unit generates a signal to the onboard operator's system indicative of the instruction to perform the car-kicking sequence. The processor is able to access a set of stored instructions for performing the car-kicking sequence.
    Type: Application
    Filed: February 13, 2003
    Publication date: September 25, 2003
    Inventors: David Michael Peltz, Thomas Charles Leary, Mark Bradshaw Kraeling, Brian Lee Staton, David Carroll Teeter
  • Publication number: 20030084395
    Abstract: A communication system for a distributed locomotive power/brake control system for a railroad train having a lead locomotive and one or more remote locomotives. Command and status signals are communicated over the system between the lead and remote locomotives. Each communicated message includes an information segment comprising the command or status information, and an error control segment for detecting errors in the information segment. The error control segment further comprises cyclic redundancy code words and parity bits formed according to the horizontal or vertical parity of the information segment and the cyclic redundancy code words.
    Type: Application
    Filed: October 17, 2002
    Publication date: May 1, 2003
    Inventors: Robert Francis Bryant, David Carroll Teeter, Robert James Foy, Joseph Bibb Cain, Adrian Jones, Don Keith Johnson, Frank Sanzone, Dale Henry Delaruelle