Patents by Inventor Andrew Gavens

Andrew Gavens 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: 9455791
    Abstract: A method and apparatus provide simultaneous bi-directional communications through a barrier using a pair of piezoelectric transducers. Outside-to-inside transmission of differentially encoded binary data is only sampled at the inside when a known repeated bit in a Barker sequence is transmitted in the other direction. Differentially encoded data is translated based on the absolute value of differences between each signal envelope sample and the previous signal envelope sample. Inside-to-outside data is transmitted by varying an electrical load on the inside transducer to vary the proportion of a continuous wave signal it reflects. The reflected portion of the continuous wave changes the electrical impedance of the outside transducer and this change is measured and interpreted as binary data. Two frequency selection algorithms select minimally sufficient and then optimal frequencies for power and data transmission by a frequency stepping process.
    Type: Grant
    Filed: March 21, 2013
    Date of Patent: September 27, 2016
    Assignee: RENSSELAER POLYTECHNIC INSTITUTE
    Inventors: Tristan J. Lawry, Gary J. Saulnier, Kyle R. Wilt, Jonathan D. Ashdown, Henry A. Scarton, Andrew Gavens
  • Publication number: 20150049587
    Abstract: A method and apparatus provide simultaneous bi-directional communications through a barrier using a pair of piezoelectric transducers. Outside-to-inside transmission of differentially encoded binary data is only sampled at the inside when a known repeated bit in a Barker sequence is transmitted in the other direction. Differentially encoded data is translated based on the absolute value of differences between each signal envelope sample and the previous signal envelope sample. Inside-to-outside data is transmitted by varying an electrical load on the inside transducer to vary the proportion of a continuous wave signal it reflects. The reflected portion of the continuous wave changes the electrical impedance of the outside transducer and this change is measured and interpreted as binary data. Two frequency selection algorithms select minimally sufficient and then optimal frequencies for power and data transmission by a frequency stepping process.
    Type: Application
    Filed: March 21, 2013
    Publication date: February 19, 2015
    Inventors: Tristan J. Lawry, Gary J. Saulnier, Kyle R. Wilt, Jonathan D. Ashdown, Henry A. Scarton, Andrew Gavens
  • Publication number: 20100027379
    Abstract: Apparatus for communicating information across a solid wall has one or two outside ultrasonic transducers coupled to an outside surface of the wall and connected to a carrier generator for sending an ultrasonic carrier signal into the wall and for receiving an output information signal from the wall. One or two inside ultrasonic transducers are coupled to an inside surface of the wall and one of them introduces the output information signal into the wall. When there are two inside transducers inside the wall, one receives the carrier signal and the second transmits the carrier after it is modulated by the output information from the sensor. When there is one inside transducer, the output information from the sensor is transmitted by changing the reflected or returned signal from the inside transducer. A power harvesting circuit inside the wall harvests power from the carrier signal and uses it to power the sensor.
    Type: Application
    Filed: October 1, 2007
    Publication date: February 4, 2010
    Inventors: Gary Saulnier, Henry Scarton, David Shoudy, Pankaj Das, Andrew Gavens